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IEICE TRANSACTIONS 전자제품 > Volume E107-C No.11
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id="skip_info">Eigenfactor</p> <p class="score">0.002</p> </li> <li> <p class="notranslate score_name" id="skip_info">article influence</p> <p class="score">0.1</p> </li> <li> <p class="notranslate score_name" id="skip_info">Cite Score</p> <p class="score">1.3</p> </li> </ul> </div> <div class="action_box"> <ul> <li> <span class="cap js-modal-open" data-tippy-content="add issue to my alerts" data-target="modal_sign_personal"> <a href="add_alerts/electronics/"><i class="fas fa-plus-square" style="color: #C0C0C0"></i></a> </span> </li> </ul> </div> </div> <div class="left_box"> <div class="nav-tab"> <ul class="clearfix"> <li class="tab advance">사전 출판으로</li> <li class="tab latest is-active">최신호로</li> </ul> </div> <section class="box advance"> <h3>사전 게재 (접수 즉시 온라인 게재)</h3> <div class="list"> <ul> <li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0002/_advpub_f"><span class="TEXT-TITLE">FPGA 기반 리소스 효율적 유선 논리 DNN 프로세서를 위한 조대 및 미세 분할 LUT 구현의 분석 및 설계</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuxuan PAN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Dongzhu LI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mototsugu HAMADA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Atsutake KOSUGE</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/28</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (10MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SEI0002/_advpub_f"><span class="TEXT-TITLE">Nb/AlO를 이용한 단일 플럭스 양자 기반 일치 회로<sub><i>x</i></sub>/Nb 임계 전류 밀도가 10 kA/cm인 조셉슨 접합<sup>2</sup></span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shigeyuki Miyajima</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotaka Terai</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shigehito Miki</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/28</dd></dl><dl><dt></dt><dd>초청 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SEI0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SEI0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (895.1KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0001/_advpub_f"><span class="TEXT-TITLE">가중치 링 데이터 흐름을 갖춘 고재사용 양자화 비트 직렬 합성 신경망 처리 요소 배열</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Xiaoshu CHENG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yiwen WANG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hongfei LOU</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Weiran DING</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Ping LI</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/27</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.1MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0003/_advpub_f"><span class="TEXT-TITLE">신경에서 영감을 받은 색상 불변성 알고리즘을 사용한 실시간 이미지 분류를 위한 임베디드 지능형 시스템</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akito MORITA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotsugu OKUNO</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/27</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0003/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0003/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (4.1MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0004/_advpub_f"><span class="TEXT-TITLE">빛의 속도로 에너지 효율적인 추론을 위한 합성 RNN의 광전자 파이프라인 아키텍처</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Chunlu WANG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yutaka MASUDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Tohru ISHIHARA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/26</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0004/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0004/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (2.4MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0002/_advpub_f"><span class="TEXT-TITLE">쌍극자 에너지 기반 마찰 전기 발전기로서 폴리비닐알코올 필름으로부터의 전력 전송</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Dai TAGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takaaki MANAKA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mitsumasa IWAMOTO</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/26</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (845.8KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0008/_advpub_f"><span class="TEXT-TITLE">역 유기 다기능 다이오드의 수용자층 조사</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kento KOBAYASHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Riku IMAEDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masahiro MORIMOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shigeki NAKA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/26</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0008/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0008/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (361.7KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SES0001/_advpub_f"><span class="TEXT-TITLE">두 개의 조셉슨 발진기로 구성된 RSFQ 하드웨어 난수 생성기의 작동</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshinao MIZUGAKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kenta SATO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi SHIMADA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/20</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SES0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SES0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1023.3KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5043/_advpub_f"><span class="TEXT-TITLE">결합 마이크로스트립 라인 구조에 기반한 대역 통과 필터링 전력 증폭기 설계</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Baoquan ZHONG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zhiqun CHENG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Minshi JIA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Bingxin LI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kun WANG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zhenghao YANG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zheming ZHU</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/11/06</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5043/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5043/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (901.8KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0004/_advpub_f"><span class="TEXT-TITLE">S자형으로부터의 태양광 전지 회로 매개변수의 베이지안 추정 <i>I</i>-<i>V</i> 저렴한 계산 비용을 가진 특성</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuya TADA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/10/31</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0004/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0004/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (402.6KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMP0001/_advpub_f"><span class="TEXT-TITLE">비닐기를 갖는 나프탈렌디이미드의 증착</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Suguru KURATOMI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Satoshi USUI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yoko TATEWAKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroaki USUI</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/10/08</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMP0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMP0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (4MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0004/_advpub_f"><span class="TEXT-TITLE">2차원 MDM 플라스모닉 도파관으로 구성된 도파관 불연속성을 갖는 광 공진기의 분석</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshihiro NAKA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masahiko NISHIMOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mitsuhiro YOKOTA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/09/20</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0004/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0004/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (552.3KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0007/_advpub_f"><span class="TEXT-TITLE">지문 오일 흡수 코팅 재료를 사용하여 나방 눈 필름에 지문 방지 속성 부여</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroki Hoshino</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kentaro Kusama</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takayuki Arai</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/09/18</dd></dl><dl><dt></dt><dd>초청 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0007/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0007/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (571KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REI0001/_advpub_f"><span class="TEXT-TITLE">전자기장에 대한 고정밀 분석 방법의 구축 및 응용</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tsuneki YAMASAKI</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/09/12</dd></dl><dl><dt></dt><dd>초청 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REI0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REI0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (696.7KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0002/_advpub_f"><span class="TEXT-TITLE">방사 전자기장을 해결하기 위한 확장 켈빈 변환</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kengo SUGAHARA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/09/10</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (5.6MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0001/_advpub_f"><span class="TEXT-TITLE">다중 창문이 있는 대형 건물의 고주파 평면파 산란 분석</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Cuong Manh BUI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi SHIRAI</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/09/06</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (5.5MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024RES0003/_advpub_f"><span class="TEXT-TITLE">다중대역 사용을 위한 일정한 빔폭을 달성하는 사각 조리개를 갖춘 다중모드 호른의 최적화된 모드 계수</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroyuki DEGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masataka OHIRA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mikio TSUJI</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/09/06</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024RES0003/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024RES0003/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.1MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0005/_advpub_f"><span class="TEXT-TITLE">측면 전기장 구동을 기반으로 한 전자 홀로그래피를 위한 초고해상도 액정 소자 설계</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroto Tochigi</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masakazu Nakatani</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Ken-ichi Aoshima</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mayumi Kawana</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuta Yamaguchi</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kenji Machida</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Nobuhiko Funabashi</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hideo Fujikake</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/09/03</dd></dl><dl><dt></dt><dd>초청 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0005/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0005/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.1MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0002/_advpub_f"><span class="TEXT-TITLE">자외선 경화형 메조겐 첨가 액정의 슬릿 코팅 후 자외선 조사에 의한 수직 배향 전이에 관한 연구</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuki Imamura</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Daiki Fujii</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuki Enomoto</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuichi Ueno</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yosei Shibata</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Munehiro Kimura</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/29</dd></dl><dl><dt></dt><dd>초청 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (868.6KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0001/_advpub_f"><span class="TEXT-TITLE">48VDC/50A-600A 저항회로에서 생성된 차단아크의 아크길이별 전압-전류 특성</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keiya IMORI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Junya SEKIKAWA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/29</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (541.4KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0002/_advpub_f"><span class="TEXT-TITLE">100VDC/5A 저항회로에서 발생하는 브레이크 아크에 대한 접촉면에서 불어오는 공기유량의 영향</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Naoki KANDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Junya SEKIKAWA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/29</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.7MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5022/_advpub_f"><span class="TEXT-TITLE">스케일 모델을 통한 태양광 전력선 통신의 등가 복사 방출 조사</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yongzhe Wei</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zhongyuan Zhou</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zhicheng Xue</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shunyu Yao</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Haichun Wang</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/28</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5022/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5022/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (815.6KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5023/_advpub_f"><span class="TEXT-TITLE">THz 절연체를 위한 자기-메타표면의 최적 설계에 관한 연구</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Mio TANIGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Akito IGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuhide TSUJI</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/26</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5023/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5023/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.8MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6007/_advpub_f"><span class="TEXT-TITLE">반복성이 우수한 동축 피드형 대구경 컷오프 원형 도파관을 사용한 액체의 유전율 측정</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kouji SHIBATA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masaki KOBAYASHI</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/26</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6007/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6007/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (405.6KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5059/_advpub_f"><span class="TEXT-TITLE">안테나 간 커플링을 활용한 디커플링 회로 설계 절차</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Zhi Earn TAN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kenjiro MATSUMOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masaya TAKAGI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiromasa SAEKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masaya TAMURA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/15</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5059/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5059/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.8MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0004/_advpub_f"><span class="TEXT-TITLE">유무선 통신에서 CGH 영상을 위한 네트워크 스트리밍 시스템 개발</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Misato ONISHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuhiro YAMAGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuji SAKAMOTO</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>초청 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0004/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0004/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (4.3MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5014/_advpub_f"><span class="TEXT-TITLE">저지연, 단거리 광통신을 위한 마이크로 공진기 주파수 빗 광원을 사용하는 광전송 실험의 현장 시험</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Koya TANIKAWA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shun FUJII</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Soma KOGURE</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shuya TANAKA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shun TASAKA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Koshiro WADA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Satoki KAWANISHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takasumi TANABE</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5014/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5014/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (5.9MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5016/_advpub_f"><span class="TEXT-TITLE">방사선 경도 및 성능 오버헤드에 대처하는 지상 응용 분야를 위한 65nm 벌크 프로세스의 방사선 경화 플립플롭</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shotaro SUGITANI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Ryuichi NAKAJIMA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Keita YOSHIDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Jun FURUTA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kazutoshi KOBAYASHI</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5016/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5016/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.9MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0003/_advpub_f"><span class="TEXT-TITLE">수중 이미지가 수면 기복에 영향을 받지 않도록 광학 부품을 물에 내장</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryosuke Ichikawa</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takumi Watanabe</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroki Takatsuka</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shiro Suyama</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotsugu Yamamoto</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/08/01</dd></dl><dl><dt></dt><dd>초청 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0003/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0003/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.2MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5032/_advpub_f"><span class="TEXT-TITLE">셀 라이브러리의 실현 가능하고 효율적인 물리적 설계 검증을 위한 패턴 매칭</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Chan-Liang Wu</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Chih-Wen Lu</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/07/23</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5032/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5032/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.7MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6002/_advpub_f"><span class="TEXT-TITLE">공진 터널링 다이오드 발진기에 대한 전송선 스터브의 강력한 비선형 효과</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Umer FAROOQ</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masayuki MORI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Koichi MAEZAWA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/07/17</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.5MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6003/_advpub_f"><span class="TEXT-TITLE">Ga-Sn-O 박막, 미스트-CVD 방법 및 아날로그 멤리스터: 뉴로모픽 시스템을 위한 유망한 제안</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryo ITO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Sumio SUGISAKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Toshiyuki KAWAHARAMURA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Tokiyoshi MATSUDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hidenori KAWANISHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mutsumi KIMURA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/07/17</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6003/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6003/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.8MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0002/_advpub_f"><span class="TEXT-TITLE">가상 및 증강 현실에서 동적 초점을 위한 바이오플라스틱 조정 가능 액정 렌즈</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Paul Cain</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/07/16</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (506.3KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0006/_advpub_f"><span class="TEXT-TITLE">보안 응용 분야에서 숨겨진 물체 감지를 위한 유전체 렌즈 기반 밀리미터파 이미징</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Arie SETIAWAN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shu SATO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Naruto YONEMOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hitoshi NOHMI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi MURATA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/07/11</dd></dl><dl><dt></dt><dd>초청 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0006/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0006/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.4MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0001/_advpub_f"><span class="TEXT-TITLE">청색 유기발광다이오드의 극히 낮은 턴온 전압의 유래</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Seiichiro Izawa</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/07/11</dd></dl><dl><dt></dt><dd>간략한 논문</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (581.3KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5007/_advpub_f"><span class="TEXT-TITLE">지능형 가스 센서 교체를 위한 연합 모델 업데이트 방법</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hang Liu</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Fei Wu</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/06/27</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5007/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5007/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (953.9KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5010/_advpub_f"><span class="TEXT-TITLE">역방향 과도 산란장 성분의 응답 파형 수치 데이터를 이용한 TD-SPT에 의한 산란체 정보 추정 방법</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keiji GOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Toru KAWANO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Ryohei NAKAMURA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/06/18</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5010/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5010/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (801.7KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5054/_advpub_f"><span class="TEXT-TITLE">기간 추정을 위한 ARS의 VLSI 설계 및 구현</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Takahiro SASAKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yukihiro KAMIYA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/06/11</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5054/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5054/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.3MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5001/_advpub_f"><span class="TEXT-TITLE">인공 전송선을 통한 듀얼 밴드 MIMO 안테나의 상호 결합 감소</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Xiang XIONG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Wen LI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Xiaohua TAN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yusheng HU</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/06/11</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (2.4MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_advpub_f"><span class="TEXT-TITLE">신장신경차단 시 온도 의존적 조직 특성을 고려한 고정밀 온도 분석</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tohgo HOSODA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuyuki SAITO</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/05/21</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (6.8MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5051/_advpub_f"><span class="TEXT-TITLE">무부하 4T SRAM을 사용하는 시간 다중화 XNOR 곱셈기에 기반한 영역 효율적인 이진화 신경망 추론 가속기</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yihan ZHU</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takashi OHSAWA</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/05/08</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5051/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5051/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (2MB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5057/_advpub_f"><span class="TEXT-TITLE">GAFDEM 탐사에서 깊이 중심 파형을 위한 광대역 공진 전송 설계</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shengbao YU</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Fanze MENG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yihan SHEN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuzhu HAO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Haigen ZHOU</span> <br> </p><div class="data"> <dl><dt>공개:</dt><dd>2024/05/02</dd></dl><dl><dt></dt><dd>밑종이</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5057/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5057/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.1MB) </span></a></li></ul></div></li> </ul> </div> </section> <section class="box latest is-show"> <div class="whole_issue"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.E107-C_202411/_pdf_Wholeissue" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Whole issue <span>(29.5MB)</span> </span></a></div><style> .whole_issue00 { display: block; text-decoration: none; width: 200px; text-align: center; color: #fff; border: solid 1px #b03527; background-color: gray; border-radius: 50px; padding: 10px 0; margin: 0 auto 20px 0; position: absolute; top: 25px; } </style> <div class="pagination top"> <ul style="justify-content: center; text-align: center;"> <li class="prev"><a href="https://ko.global.ieice.org/en_transactions/electronics/E107-C_10"><span>이전</span></a> </li> <li class="next"></li> </ul> </div> <!-- <table cellspacing="0" cellpadding="0" border="0"> <tr><td align="right"><a href="https://ko.global.ieice.org/en_transactions/electronics/E107-C_10"><span>Previous</span></a> </td><td align="left" nowrap></td></tr> </table> --> <h3>Volume E107-C No.11 (Publication Date:2024/11/01)</h3> <div class="list"> <ul> <span style="padding: 0.2em 0.2em; margin: 2em 0; background: #f5f5dc;" class="TEXT-SPL">시뮬레이션 기술의 최신 발전과 전자공학에 대한 응용에 관한 특별 섹션</span><hr noshade="" align="right" width="97%" size="1" color="#cccccc"><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESF0001/_f"><span class="TEXT-TITLE">머리말</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Masayuki%20KIMISHIMA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Masayuki KIMISHIMA</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">FOREWORD</dd></dl><br><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">440-440</dd></dl></div><div class="action"><ul><span class="summary toggle"></span><span class="summary_txt"></span> <input type="hidden" name="pid" value="e107-c_11_440" id="hidden0"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESF0001/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESF0001/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (194KB) </span></a></li></ul></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESI0001/_f"><span class="TEXT-TITLE">다층형 픽셀 스케일 필터 어레이를 활용한 싱글샷 스펙트럼 센서</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Yasuo%20OHTERA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuo OHTERA</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">INVITED PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/02/22</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">441-449</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_441" id="hidden1"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESI0001/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESI0001/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (6.7MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">우리는 스냅샷 멀티 스펙트럼 카메라로 촬영한 단일 이미지에서 입사광 스펙트럼을 재구성하는 방법에 대해 보고합니다. 카메라에는 CMOS 이미지 센서에 통합된 유전체 다층 멀티 스펙트럼 필터 어레이(MSFA)가 있습니다. 희소 추정 알고리즘을 적용하여 스펙트럼을 재구성했습니다. 다양한 대역폭과 중심 파장을 가진 가우시안 함수를 기본 행렬로 사용하여 이 알고리즘은 파장 대역에 관계없이 협대역 단색 및 광대역 형광 발광 다이오드(LED)의 스펙트럼을 추정하는 데 매우 정확한 것으로 나타났습니다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0002/_f"><span class="TEXT-TITLE">NRD 가이드를 위한 3D 전체 벡터 양방향 빔 전파 방법</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Hyunuk%20AHN"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hyunuk AHN</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Akito%20IGUCHI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akito IGUCHI</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Keita%20MORIMOTO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keita MORIMOTO</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Yasuhide%20TSUJI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuhide TSUJI</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/03/08</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">450-456</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_450" id="hidden2"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0002/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0002/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (2.9MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">우리는 평행한 금속판에 수직인 방향으로 도파관 프로파일이 변하는 비방사성 유전체 도파관(NRD 가이드) 구성 요소를 처리하기 위해 새로운 3D 전체 벡터 유한 요소 양방향 빔 전파 방법(3DFV-BiBPM)을 개발합니다. BiBPM은 횡단면만 유한 차분 또는 유한 요소 체계를 사용하여 이산화해야 하는 전달 매트릭스 기반 방법 중 하나이며 표준 BPM과 달리 역방향 및 다중 반사를 처리할 수 있습니다. 공기 간격이 있는 NRD 가이드와 사파이어 공진기가 있는 필터는 유전 손실을 고려하여 수치적으로 분석하여 접근 방식의 타당성을 조사합니다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0004/_f"><span class="TEXT-TITLE">광 도파관 장치의 최적 설계를 위한 좌표 변환 기반 유한 요소 빔 전파 방법</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Haonan%20CHEN"><span id="skip_info" class="notranslate TEXT-AUTHOR">Haonan CHEN</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Akito%20IGUCHI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akito IGUCHI</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Yasuhide%20TSUJI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuhide TSUJI</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/02/05</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">457-464</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_457" id="hidden3"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0004/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0004/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (1.6MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">전파 방향을 따라 느리게 변하는 도파관 구조를 가진 광자 소자를 계산하기 위해 좌표 변환을 사용한 유한 요소 빔 전파 방법(FE-BPM)을 개발했습니다. 이 접근 방식에서는 세로로 변하는 도파관을 동등한 직선 도파관으로 변환하여 각 전파 단계에서 메시 업데이트 및 필드 보간 프로세스와 같은 FE-BPM의 번거로운 프로세스를 피할 수 있습니다. 이 시뮬레이션 기술을 광자 소자의 형상 최적화에 사용하고 모드 변환기의 설계 예를 보여줍니다. 이 접근 방식의 타당성을 보여주기 위해 설계된 소자의 계산 결과를 유한 요소법(FEM) 또는 표준 FE-BPM과 비교합니다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0006/_f"><span class="TEXT-TITLE">전파 전자기 분석을 위한 도메인 분해 방법의 수렴 특성</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Toshio%20MURAYAMA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Toshio MURAYAMA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Amane%20TAKEI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Amane TAKEI</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/07/23</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">465-471</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_465" id="hidden4"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0006/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0006/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (2.8MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">도메인 분해 방법은 대규모 전자기 문제를 분석하는 데 널리 사용됩니다. 이 방법은 대상 모델을 작은 독립적인 하위 도메인으로 분해합니다. 전자기 분석은 본질적으로 Krylov 부분 공간 알고리즘과 같은 반복 알고리즘으로 분석된 늦은 수렴으로 어려움을 겪습니다. DDM은 전체 시스템을 하위 도메인 문제로 분해하고 로컬 결과를 인터페이스 문제로 수집하여 전체 솔루션을 달성하기 위해 조정함으로써 이 문제를 해결합니다. 이 논문에서는 여러 메시 크기에서 로컬 도메인의 크기와 영역 모양을 수정하는 동안 도메인 분해 방법의 수렴 특성을 보고합니다. 실험 결과에서 알 수 있듯이 수렴 속도는 인터페이스 문제 변수의 수와 로컬 영역 모양의 선택에 따라 달라집니다. 또한 수렴 특성은 대상 주파수에 따라 다릅니다. 일반적으로 수렴 속도는 큰 입방 하위 도메인 모양으로 가속화될 수 있음이 입증되었습니다. 지배 방정식의 조건 수 분석을 기반으로 하위 도메인 선택 전략을 제안합니다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0003/_f"><span class="TEXT-TITLE">11극 TM의 정밀한 설계<sub>010</sub> 새로운 용량성 결합 구조를 갖춘 모드 유전체 공진기 BPF</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Fan%20LIU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Fan LIU</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Zhewang%20MA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Zhewang MA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Masataka%20OHIRA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Masataka OHIRA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Dongchun%20QIAO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Dongchun QIAO</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Guosheng%20PU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Guosheng PU</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Masaru%20ICHIKAWA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Masaru ICHIKAWA</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/03/22</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">472-478</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_472" id="hidden5"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0003/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0003/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (3.5MB) </span></a></li></ul><div class="summary_txt"> <p class="gt-block TEXT-COL">본 논문에서는 복잡한 결합 토폴로지를 갖는 고차 대역 통과 필터(BPF)의 정밀한 설계 방법을 제안하고 TM을 이용한 11극 BPF의 설계를 통해 이를 입증한다.<sub>010</sub> 모드 유전체 공진기(DR). TM의 혼합 사용을 피하는 새로운 Z형 커플링 구조가 제안됩니다.<sub>010</sub> 및 TM<sub>01<i>δ</i></sub> 모드와 필터의 튜닝과 조립을 훨씬 더 쉽게 할 수 있습니다. BPF의 커플링 토폴로지는 DR의 세 개의 캐스케이드 트리플릿(CT)을 포함하고 CT의 용량성 및 유도성 커플링은 모두 독립적으로 튜닝 가능하도록 설계되어 결과적으로 필터의 통과 대역 양쪽에 세 개의 제어 가능한 전송 제로를 생성합니다. BPF의 커플링 행렬을 물리적 차원에 매핑하는 절차가 개발되고 이러한 물리적 차원의 반복적 최적화가 구현되어 최상의 성능을 달성합니다. 11극 BPF의 설계는 필터의 전자기 시뮬레이션 응답과 원하는 대상 사양 간의 우수한 일치로 매우 정밀함이 입증되었습니다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0005/_f"><span class="TEXT-TITLE">선형 편파 혼 안테나용 단층 원형 편광판</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Ryo%20KUMAGAI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryo KUMAGAI</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Ryosuke%20SUGA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryosuke SUGA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Tomoki%20UWANO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tomoki UWANO</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/04/26</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">479-485</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_479" id="hidden6"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0005/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0005/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (4.8MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">이 논문에서는 선형 편파 혼 안테나를 위한 단일 층 원형 편파기를 제안한다. 개구부와 어레이 사이의 다중 반사파는 수직 및 수평 편파 사이에 원하는 위상 차이를 제공한다. 제작된 안테나의 측정 이득은 14.4 dBic이고 수직 편파의 반전력 빔폭은 수직 및 수평 평면에서 28 및 24도이고 수평 편파의 반전력 빔폭은 31 및 23도이다. 편파기는 1.7차 혼 안테나의 이득과 빔폭에 미치는 영향이 적고 그 변화는 10 dB 및 3도 이내이다. 축비의 1.4 dB 분수 대역폭은 XNUMX%로 측정되었다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0006/_f"><span class="TEXT-TITLE">고속 역라플라스 변환을 이용한 물리광학을 이용한 대형 물체의 전자기 산란 과도 분석</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Seiya%20KISHIMOTO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Seiya KISHIMOTO</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Ryoya%20OGINO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryoya OGINO</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Kenta%20ARASE"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kenta ARASE</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Shinichiro%20OHNUKI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shinichiro OHNUKI</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/02/29</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">486-489</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_486" id="hidden7"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0006/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0006/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (1.2MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">이 논문은 광범위한 산란 문제의 과도 분석을 위한 계산적 접근 방식을 소개합니다. 이 새로운 방법은 물리 광학(PO)과 빠른 역 라플라스 변환(FILT)의 조합을 기반으로 합니다. PO는 대규모 물체의 전자기 산란을 분석하는 기술입니다. 우리는 산란된 장이 평가되는 복소 주파수 영역에 적용하기 위해 PO를 수정합니다. 복소 주파수 함수는 FILT를 사용하여 시간 영역으로 효율적으로 변환됩니다. 이 조합의 효과는 대규모 분석과 짧은 펄스 입사에 대한 과도 응답을 통해 입증됩니다. 정확도는 기준 솔루션과 비교하여 조사되고 검증됩니다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0001/_f"><span class="TEXT-TITLE">연속분할확장법을 결합한 FILT의 다층 분산매체에 대한 과도해석 기법의 기초 고찰</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Kensei%20ITAYA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kensei ITAYA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Ryosuke%20OZAKI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryosuke OZAKI</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Tsuneki%20YAMASAKI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tsuneki YAMASAKI</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/03/08</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">490-493</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_490" id="hidden8"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0001/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0001/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (564.2KB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">본 논문에서는 고속 역 라플라스 변환(FILT)과 연속 분수 확장 방법을 조합하여 다층 분산 매체를 분석하는 과도 해석 기법을 제안한다. 수치 결과는 반사 응답, 내부 시간 응답 파형, 반사 성분의 전계 분포에 의해 주어진다. 또한 수렴 시험을 사용하여 두 유형에 대한 FILT 방법의 계산 정확도를 검증한다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0004/_f"><span class="TEXT-TITLE">1차원 반복 크랭크-니콜슨 기반 FDTD 방법의 수치 분산 분석</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Akira%20KAWAHARA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akira KAWAHARA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Jun%20SHIBAYAMA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Jun SHIBAYAMA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Kazuhiro%20FUJITA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuhiro FUJITA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Junji%20YAMAUCHI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Junji YAMAUCHI</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Hisamatsu%20NAKANO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hisamatsu NAKANO</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/03/01</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">494-496</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_494" id="hidden9"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0004/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0004/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (145.5KB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">반복된 크랭크-니콜슨(ICN) 방식에 기반한 유한차분 시간영역(FDTD) 방법에 대한 수치 분산 특성을 조사합니다. 수치 분산 관계는 증폭 행렬에서 새롭게 도출되었으며, 행렬의 고유값에 주의를 기울여 그 특성을 논의합니다. ICN-FDTD 방법은 조건부로 안정적이지만 약간 소산적임을 보여줍니다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0005/_f"><span class="TEXT-TITLE">딥러닝에서 지상 투과 레이더 이미지에 대한 컷아웃을 사용한 간단한 확대 방법</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Jun%20SONODA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Jun SONODA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Kazusa%20NAKAMICHI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazusa NAKAMICHI</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/04/26</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">497-500</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_497" id="hidden10"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0005/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0005/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (1.2MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">지상투과레이더(GPR)는 도로 아래의 공동 및 매설된 파이프와 같은 내부 구조물을 비파괴적이고 빠르게 검사할 수 있다는 장점이 있습니다. 그러나 GPR 이미지에서 내부 구조물을 추정해야 합니다. 최근 딥러닝을 이용한 GPR 이미지의 인식 및 탐지 방법이 연구되었습니다. 이 논문에서는 딥러닝을 사용하여 GPR 이미지를 정확하게 추정하는 데 필요한 컷아웃 방법을 사용한 데이터 증강 방법을 살펴봅니다. 이 연구에서 사용된 모든 객체에 대해 컷아웃 증강이 일반적으로 사용되는 수평 이동 증강보다 더 높은 탐지율을 보입니다.</p> </div></div></li><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0002/_f"><span class="TEXT-TITLE">실시간 심박수 예측을 통한 걷기 심박수 제어 시스템</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Kaiji%20OWAKI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kaiji OWAKI</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Yusuke%20KANDA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yusuke KANDA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Hideaki%20KIMURA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hideaki KIMURA</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/04/23</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">501-505</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_501" id="hidden11"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0002/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0002/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (561.8KB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">최근 몇 년 동안, 출산율 감소와 고령화는 일본에서 심각한 문제가 되었습니다. 이러한 문제를 해결하기 위해, 우리는 엣지 AI 기반 시스템을 개발했습니다. 이 시스템은 걷는 동안의 미래 심박수를 실시간으로 예측하고 운동의 질을 개선하고 건강한 수명을 연장하기 위한 피드백을 제공합니다. 이 논문에서는 제안된 시스템을 기반으로 심박수를 실시간으로 예측하고 피드백을 제공했습니다. 예측된 심박수가 없는 경우와 예측된 심박수가 있는 경우의 실험을 수행했으며, 예측된 심박수의 효과를 보여주기 위해 비교했습니다.</p> </div></div></li><span style="padding: 0.2em 0.2em; margin: 2em 0; background: #f5f5dc;" class="TEXT-SPL">일반 섹션</span><hr noshade="" align="right" width="97%" size="1" color="#cccccc"><li><h4><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5046/_f"><span class="TEXT-TITLE">임상적용을 위한 마이크로파 기반 신장신경차단 카테터 개발</span></a> <span class="open_access">오픈 액세스</span></h4><p class="gt-block"><a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Shohei%20MATSUHARA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shohei MATSUHARA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Kazuyuki%20SAITO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuyuki SAITO</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Tomoyuki%20TAJIMA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tomoyuki TAJIMA</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Aditya%20RAKHMADI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Aditya RAKHMADI</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Yoshiki%20WATANABE"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshiki WATANABE</span></a> <a href="https://ko.global.ieice.org/en_transactions/Author/a_name=Nobuyoshi%20TAKESHITA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Nobuyoshi TAKESHITA</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER-Microwaves, Millimeter-Waves</dd></dl><br><dl> <dt class="TEXT-COL"> 공개:</dt><dd class="TEXT-COL">2024/05/20</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> 페이지:</dt><dd class="TEXT-COL">506-516</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_11_506" id="hidden12"><li class="html"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5046/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://ko.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5046/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (3.8MB) </span></a></li></ul><div class="summary_txt"> <p class="gt-block TEXT-COL">신장 신경 차단술(RDN)은 기존 항고혈압제에 내성이 있는 고혈압의 잠재적 치료법으로 개발되었습니다. 이 기술은 혈관 내부에서 신동맥 주변의 신경 섬유를 절제하는 것을 포함하며, 이는 교감신경 활동을 억제하고 항고혈압 효과를 내기 위한 것입니다. 현재 치료 저항성 고혈압 치료에 RDN의 효과를 평가하기 위한 임상 연구가 진행 중입니다. 무선 주파수(RF) 절제 카테터가 일반적으로 사용되지만 가열 용량이 제한적입니다. 마이크로파 카테터는 RDN의 또 다른 옵션으로 고려되고 있습니다. 우리는 마이크로파 카테터를 RDN에 적용하는 데 따른 기술적 과제를 해결하는 것을 목표로 합니다. 이 논문에서는 나선형 구조와 마이크로파(2.45GHz) 안테나가 있는 카테터를 설계했습니다. 안테나는 동축 슬롯 안테나이며, 그 크기는 시뮬레이션을 통해 반사 계수를 최적화하여 결정했습니다. 측정된 카테터 반사 계수는 달걀 흰자를 사용하여 -23.6dB이고 신동맥에서는 -32dB입니다. 프로토타입 카테터는 다음에 의해 평가되었습니다. <i>체외에서</i> 시뮬레이션을 검증하기 위한 실험. 절차는 성공적으로 수행되었습니다. <i>생체내에서</i> 돼지 신동맥 절제와 관련된 실험. 병리학적 평가 결과, 신동맥에 상당한 손상 없이 단일 사분면에서 주변 혈관 조직의 넓은 영역(>5mm)이 절제되었음을 확인했습니다. 제안된 장치는 절제 위치를 제어할 수 있으며 내막이나 주변 혈액을 과열시키지 않고 깊은 신경 절제를 생성하여 매우 유능한 새로운 신경 제거 카테터를 제안합니다.</p> </div></div></li><input type="hidden" name="request_uri" value="/en_transactions/electronics" id="set_request_uri"><input type="hidden" name="site_url" value="https://ko.global.ieice.org/" id="set_site_url"> </ul> </div> <div class="pagination"> <ul> <li class="prev"><a href="https://ko.global.ieice.org/en_transactions/electronics/E107-C_10"><span>이전</span></a> </li> <li class="next"></li> </ul> </div> </section> </div> <div class="right_box"> <!-- <div id="aside"></div> --> <!-- -------------aside.html------------- --> <section class="latest_issue"> <h4 id="skip_info" class="notranslate">Latest Issue</h4> <ul id="skip_info" class="notranslate"> <li class="a"><a href="https://ko.global.ieice.org/en_transactions/fundamentals">IEICE Trans. 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