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IEICE TRANSACTIONS エレクトロニクス > 巻 E107-C No.11

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score_name" 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">早期公開へ</li> <li class="tab latest is-active">最新号へ</li> </ul> </div> <section class="box advance"> <h3>先行公開(受付後すぐにWeb公開)</h3> <div class="list"> <ul> <li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SES0001/_advpub_f"><span class="TEXT-TITLE">2つのジョセフソン発振器からなるRSFQハードウェア乱数発生器の動作</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshinao MIZUGAKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kenta SATO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi SHIMADA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/11/20</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5043/_advpub_f"><span class="TEXT-TITLE">結合マイクロストリップ線路構造に基づくバンドパスフィルタリング電力増幅器の設計</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Baoquan ZHONG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zhiqun CHENG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Minshi JIA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Bingxin LI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kun WANG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zhenghao YANG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zheming ZHU</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/11/06</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0004/_advpub_f"><span class="TEXT-TITLE">S字型曲線からの太陽電池回路パラメータのベイズ推定 <i>I</i>-<i>V</i> 手頃な計算コストで実現できる特性</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuya TADA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/10/31</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMP0001/_advpub_f"><span class="TEXT-TITLE">ビニル基を有するナフタレンジイミドの蒸着</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Suguru KURATOMI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Satoshi USUI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yoko TATEWAKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroaki USUI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/10/08</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0004/_advpub_f"><span class="TEXT-TITLE">2次元MDMプラズモニック導波路で構築された導波路不連続性を有する光共振器の解析</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshihiro NAKA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masahiko NISHIMOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mitsuhiro YOKOTA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/09/20</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0007/_advpub_f"><span class="TEXT-TITLE">指紋油吸収コーティング材を用いたモスアイフィルムへの耐指紋性付与</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroki Hoshino</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kentaro Kusama</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Takayuki Arai</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/09/18</dd></dl><dl><dt></dt><dd>招待論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REI0001/_advpub_f"><span class="TEXT-TITLE">高精度電磁場解析手法の構築とその応用</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tsuneki YAMASAKI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/09/12</dd></dl><dl><dt></dt><dd>招待論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0002/_advpub_f"><span class="TEXT-TITLE">放射電磁場を解くための拡張ケルビン変換</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kengo SUGAHARA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/09/10</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0001/_advpub_f"><span class="TEXT-TITLE">複数の窓がある大規模建物による高周波平面波散乱解析</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Cuong Manh BUI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi SHIRAI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/09/06</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024RES0003/_advpub_f"><span class="TEXT-TITLE">マルチバンド使用時に一定のビーム幅を実現する正方形開口部を備えたマルチモードホーンの最適化されたモード係数</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroyuki DEGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masataka OHIRA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mikio TSUJI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/09/06</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0005/_advpub_f"><span class="TEXT-TITLE">横方向電界駆動に基づく電子ホログラフィー用超高解像度液晶デバイスの設計</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroto Tochigi</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masakazu Nakatani</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Ken-ichi Aoshima</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mayumi Kawana</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuta Yamaguchi</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kenji Machida</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Nobuhiko Funabashi</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hideo Fujikake</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/09/03</dd></dl><dl><dt></dt><dd>招待論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0002/_advpub_f"><span class="TEXT-TITLE">UV硬化性メソゲン添加液晶のスリット塗布後のUV照射による垂直配向転移の検討</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuki Imamura</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Daiki Fujii</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuki Enomoto</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuichi Ueno</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yosei Shibata</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Munehiro Kimura</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/29</dd></dl><dl><dt></dt><dd>招待論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0001/_advpub_f"><span class="TEXT-TITLE">48VDC/50A-600A抵抗回路で発生する開離アークの各アーク長に対する電圧-電流特性</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keiya IMORI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Junya SEKIKAWA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/29</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0002/_advpub_f"><span class="TEXT-TITLE">100VDC/5A 抵抗回路で発生する開離時アークに対する接触面から吹き出される空気流量の影響</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Naoki KANDA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Junya SEKIKAWA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/29</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5022/_advpub_f"><span class="TEXT-TITLE">スケールモデルによる太陽光発電電力線通信の等価放射エミッションの調査</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yongzhe Wei</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zhongyuan Zhou</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zhicheng Xue</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shunyu Yao</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Haichun Wang</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/28</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5023/_advpub_f"><span class="TEXT-TITLE">THzアイソレータ用磁性メタ表面の最適設計に関する研究</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Mio TANIGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Akito IGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuhide TSUJI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/26</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6007/_advpub_f"><span class="TEXT-TITLE">再現性に優れた同軸給電型大口径カットオフ円形導波管を用いた液体の誘電測定</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kouji SHIBATA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masaki KOBAYASHI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/26</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5059/_advpub_f"><span class="TEXT-TITLE">アンテナ間の結合を利用したデカップリング回路の設計手順</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Zhi Earn TAN</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kenjiro MATSUMOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masaya TAKAGI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiromasa SAEKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masaya TAMURA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/15</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0004/_advpub_f"><span class="TEXT-TITLE">有線/無線通信におけるCGHビデオのネットワークストリーミングシステムの開発</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Misato ONISHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuhiro YAMAGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuji SAKAMOTO</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>招待論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5014/_advpub_f"><span class="TEXT-TITLE">低遅延・短距離光通信のための微小共振器型周波数コム光源を用いた光伝送実験のフィールド試験</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Koya TANIKAWA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shun FUJII</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Soma KOGURE</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shuya TANAKA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shun TASAKA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Koshiro WADA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Satoki KAWANISHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Takasumi TANABE</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5016/_advpub_f"><span class="TEXT-TITLE">地上アプリケーション向け 65 nm バルクプロセスによる耐放射線性フリップフロップ 耐放射線性とパフォーマンスのオーバーヘッドへの対処</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shotaro SUGITANI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Ryuichi NAKAJIMA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Keita YOSHIDA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Jun FURUTA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kazutoshi KOBAYASHI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0003/_advpub_f"><span class="TEXT-TITLE">水中に光学部品を埋め込むことで水面の波の影響を受けない水中映像を実現</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryosuke Ichikawa</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Takumi Watanabe</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroki Takatsuka</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shiro Suyama</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotsugu Yamamoto</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/08/01</dd></dl><dl><dt></dt><dd>招待論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5032/_advpub_f"><span class="TEXT-TITLE">セルライブラリの実現可能かつ効率的な物理設計検証のためのパターンマッチング</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Chan-Liang Wu</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Chih-Wen Lu</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/07/23</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6002/_advpub_f"><span class="TEXT-TITLE">伝送線路スタブが共鳴トンネルダイオード発振器に及ぼす強い非線形効果</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Umer FAROOQ</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masayuki MORI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Koichi MAEZAWA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/07/17</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6003/_advpub_f"><span class="TEXT-TITLE">Ga-Sn-O薄膜、ミストCVD法、アナログメモリスタ:ニューロモルフィックシステムへの有望な提案</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryo ITO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Sumio SUGISAKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Toshiyuki KAWAHARAMURA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Tokiyoshi MATSUDA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hidenori KAWANISHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mutsumi KIMURA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/07/17</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0002/_advpub_f"><span class="TEXT-TITLE">仮想現実と拡張現実のダイナミックフォーカスを実現するバイオプラスチックの調整可能な液晶レンズ</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Paul Cain</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/07/16</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0006/_advpub_f"><span class="TEXT-TITLE">セキュリティアプリケーションにおける隠蔽物体検出のための誘電体レンズベースのミリ波イメージング</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Arie SETIAWAN</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shu SATO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Naruto YONEMOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hitoshi NOHMI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi MURATA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/07/11</dd></dl><dl><dt></dt><dd>招待論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0001/_advpub_f"><span class="TEXT-TITLE">青色有機発光ダイオードの極めて低いターンオン電圧の起源</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Seiichiro Izawa</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/07/11</dd></dl><dl><dt></dt><dd>概要ペーパー</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5007/_advpub_f"><span class="TEXT-TITLE">インテリジェントガスセンサー交換のための連合モデル更新方法</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hang Liu</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Fei Wu</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/06/27</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5010/_advpub_f"><span class="TEXT-TITLE">後方過渡散乱場成分の応答波形の数値データを用いたTD-SPTによる散乱体情報推定法</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keiji GOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Toru KAWANO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Ryohei NAKAMURA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/06/18</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5054/_advpub_f"><span class="TEXT-TITLE">期間推定のための ARS の VLSI 設計と実装</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Takahiro SASAKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yukihiro KAMIYA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/06/11</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5001/_advpub_f"><span class="TEXT-TITLE">人工伝送路を介したデュアルバンド MIMO アンテナの相互結合の低減</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Xiang XIONG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Wen LI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Xiaohua TAN</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yusheng HU</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/06/11</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_advpub_f"><span class="TEXT-TITLE">腎脱神経における温度依存性の組織特性を考慮した高精度温度解析</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tohgo HOSODA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuyuki SAITO</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/05/21</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_pdf_advpub" target="_blank"><i class="fas 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href="https://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5057/_advpub_f"><span class="TEXT-TITLE">GAFDEM探査における深さに焦点を当てた波形のための広帯域共振伝送の設計</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shengbao YU</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Fanze MENG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yihan SHEN</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuzhu HAO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Haigen ZHOU</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>公開:</dt><dd>2024/05/02</dd></dl><dl><dt></dt><dd>論文</dd></dl></div><div class="action"><ul><li class="html"><a href="https://ja.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://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/E107-C_10"><span>前へ</span></a> </li> <li class="next"></li> </ul> </div> <!-- <table cellspacing="0" cellpadding="0" border="0"> <tr><td align="right"><a href="https://ja.global.ieice.org/en_transactions/electronics/E107-C_10"><span>Previous</span></a> </td><td align="left" nowrap></td></tr> </table> --> <h3>Volume&nbsp;E107-C&nbsp;No.11&nbsp;&nbsp;(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">シミュレーション技術の最近の進歩とエレクトロニクスへの応用に関する特別セクション</span><hr noshade="" align="right" width="97%" size="1" color="#cccccc"><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESF0001/_f"><span class="TEXT-TITLE">はじめに</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Masayuki%20KIMISHIMA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Masayuki KIMISHIMA</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">FOREWORD</dd></dl><br><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESI0001/_f"><span class="TEXT-TITLE">多層型ピクセルスケールフィルタアレイを用いたシングルショット分光センサ</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Yasuo%20OHTERA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuo OHTERA</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">INVITED PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/02/22</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">スナップショット マルチスペクトル カメラで撮影した単一の画像から入射光のスペクトルを再構成する方法について報告します。カメラには、CMOS イメージ センサーに統合された誘電体多層マルチスペクトル フィルター アレイ (MSFA) があります。スペクトルを再構成するために、スパース推定アルゴリズムが適用されました。さまざまな帯域幅と中心波長を持つガウス関数を基底行列として使用することで、このアルゴリズムは、波長帯域に関係なく、狭帯域単色および広帯域蛍光発光ダイオード (LED) のスペクトルを非常に正確に推定できることが実証されています。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0002/_f"><span class="TEXT-TITLE">NRDガイドのための3Dフルベクトル双方向ビーム伝搬法</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Hyunuk%20AHN"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hyunuk AHN</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Akito%20IGUCHI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akito IGUCHI</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Keita%20MORIMOTO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keita MORIMOTO</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Yasuhide%20TSUJI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuhide TSUJI</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/03/08</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">我々は、平行金属板に垂直な方向に導波プロファイルが変化する非放射性誘電体導波路(NRD ガイド)コンポーネントを扱うために、新しい 3D 完全ベクトル有限要素双方向ビーム伝搬法(3DFV-BiBPM)を開発しました。BiBPM は、有限差分または有限要素スキームを使用して横断面のみを離散化する必要がある転送行列ベースの方法の XNUMX つであり、標準 BPM とは異なり、後方反射と多重反射を処理できます。エアギャップ付き NRD ガイドとサファイア共振器付きフィルタを、誘電損失を考慮して数値的に解析し、このアプローチの妥当性を調査します。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0004/_f"><span class="TEXT-TITLE">光導波路デバイスの最適設計を実現する座標変換に基づく有限要素ビーム伝播法</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Haonan%20CHEN"><span id="skip_info" class="notranslate TEXT-AUTHOR">Haonan CHEN</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Akito%20IGUCHI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akito IGUCHI</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Yasuhide%20TSUJI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuhide TSUJI</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/02/05</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">伝搬方向に沿ってゆっくりと変化する導波路構造を持つ光デバイスを計算するために、座標変換を伴う有限要素ビーム伝搬法 (FE-BPM) を開発しました。このアプローチでは、縦方向に変化する導波路を等価な直線導波路に変換することで、各伝搬ステップでのメッシュ更新やフィールド補間プロセスなど、FE-BPM の面倒なプロセスを回避できます。このシミュレーション手法を光デバイスの形状最適化に使用し、モード変換器の設計例を示します。このアプローチの有効性を示すために、設計されたデバイスの計算結果を有限要素法 (FEM) または標準 FE-BPM と比較します。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0006/_f"><span class="TEXT-TITLE">全波電磁界解析における領域分割法の収束特性</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Toshio%20MURAYAMA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Toshio MURAYAMA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Amane%20TAKEI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Amane TAKEI</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/07/23</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">領域分割法は、大規模な電磁気問題の解析に広く利用されています。この方法では、対象モデルを小さな独立したサブドメインに分割します。電磁気解析は、本質的に、クリロフ部分空間アルゴリズムなどの反復アルゴリズムで解析される遅い収束に悩まされています。DDM は、システム全体をサブドメイン問題に分解し、ローカルな結果をインターフェース問題として収集して調整し、全体のソリューションを達成することで、この問題を解決します。この論文では、いくつかのメッシュ サイズでローカル ドメインのサイズと領域の形状を変更しながら、領域分割法の収束特性を報告します。実験結果が示すように、収束速度は、インターフェース問題変数の数とローカル領域の形状の選択に依存します。さらに、収束特性は対象周波数によって異なります。一般に、大きな立方体サブドメインの形状で収束速度を加速できることが実証されています。支配方程式の条件数の分析に基づいて、サブドメインの選択戦略を提案します。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0003/_f"><span class="TEXT-TITLE">11 ポール TM の正確な設計<sub>010</sub> 新しい容量結合構造を備えたモード誘電体共振器 BPF</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Fan%20LIU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Fan LIU</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Zhewang%20MA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Zhewang MA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Masataka%20OHIRA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Masataka OHIRA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Dongchun%20QIAO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Dongchun QIAO</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Guosheng%20PU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Guosheng PU</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Masaru%20ICHIKAWA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Masaru ICHIKAWA</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/03/22</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">本論文では、複雑な結合トポロジーを持つ高次バンドパスフィルタ(BPF)の正確な設計法を提案し、TMを用いた11極BPFの設計を通じて実証する。<sub>010</sub> モード誘電体共振器(DR)。TMとDの混在使用を回避する新しいZ字型結合構造が提案されている。<sub>010</sub> およびTM<sub>01<i>δ</i></sub> モードが複数あり、フィルタの調整と組み立てがはるかに簡単になります。BPF の結合トポロジには、DR の 11 つのカスケード トリプレット (CT) が含まれ、CT 内の容量結合と誘導結合は両方とも独立して調整可能に設計されているため、フィルタの通過帯域の両側に XNUMX つの制御可能な伝送ゼロが生成されます。BPF の結合マトリックスをその物理的寸法にマッピングする手順が開発され、これらの物理的寸法の反復的な最適化が実装されて、最高のパフォーマンスが実現されます。XNUMX 極 BPF の設計は、フィルタの電磁シミュレーション応答と目的のターゲット仕様との間の優れた一致によって非常に正確であることが示されています。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESP0005/_f"><span class="TEXT-TITLE">直線偏波ホーンアンテナ用の単層円偏光子</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Ryo%20KUMAGAI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryo KUMAGAI</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Ryosuke%20SUGA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryosuke SUGA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Tomoki%20UWANO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tomoki UWANO</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/04/26</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">本論文では、直線偏波ホーンアンテナ用の単層円偏波器を提案する。開口部とアレイ間の多重反射波は、垂直偏波と水平偏波の間に所望の位相差を提供する。製作したアンテナの測定利得は 14.4 dBic で、垂直偏波の半値ビーム幅は垂直面と水平面で 28 度と 24 度、水平偏波の半値ビーム幅は垂直面と水平面で 31 度と 23 度である。偏波器はプライマリホーンアンテナの利得とビーム幅にほとんど影響を与えず、その変化は 1.7 dB と 10 度以内である。軸比の 3 dB 比帯域幅は 1.4% と測定された。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0006/_f"><span class="TEXT-TITLE">高速逆ラプラス変換による物理光学を使用した、大型物体からの電磁散乱の過渡解析</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Seiya%20KISHIMOTO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Seiya KISHIMOTO</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Ryoya%20OGINO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryoya OGINO</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Kenta%20ARASE"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kenta ARASE</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Shinichiro%20OHNUKI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shinichiro OHNUKI</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/02/29</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">この論文では、広範囲散乱問題の過渡解析のための計算手法を紹介します。この新しい方法は、物理光学 (PO) と高速逆ラプラス変換 (FILT) の組み合わせに基づいています。PO は、大規模な物体からの電磁散乱を解析する手法です。PO を複素周波数領域に適用できるように修正し、散乱場を評価します。複素周波数関数は、FILT を使用して効率的に時間領域に変換されます。この組み合わせの有効性は、大規模な解析と短いパルス入射の過渡応答によって実証されます。精度は、基準ソリューションとの比較によって調査および検証されます。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0001/_f"><span class="TEXT-TITLE">連続分数展開法と組み合わせたFILTによる多層分散媒の過渡解析手法の基礎検討</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Kensei%20ITAYA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kensei ITAYA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Ryosuke%20OZAKI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryosuke OZAKI</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Tsuneki%20YAMASAKI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tsuneki YAMASAKI</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/03/08</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">本論文では、高速反転ラプラス変換(FILT)と連分数展開法を組み合わせて多層分散媒質を解析する過渡解析手法を提案する。数値結果は、反射応答、時間内応答波形、反射成分の電界分布によって示される。さらに、収束テストを使用して、2つのタイプに対するFILT法の計算精度を検証する。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0004/_f"><span class="TEXT-TITLE">一次元反復クランクニコルソンベースの FDTD 法の数値分散解析</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Akira%20KAWAHARA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akira KAWAHARA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Jun%20SHIBAYAMA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Jun SHIBAYAMA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Kazuhiro%20FUJITA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuhiro FUJITA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Junji%20YAMAUCHI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Junji YAMAUCHI</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Hisamatsu%20NAKANO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hisamatsu NAKANO</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/03/01</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">反復クランク・ニコルソン(ICN)法に基づく有限差分時間領域(FDTD)法の数値分散特性を調査した。数値分散関係は増幅行列から新たに導出され、その特性は行列の固有値に注目して議論された。ICN-FDTD法は条件付きで安定であるが、わずかに散逸的であることが示された。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0005/_f"><span class="TEXT-TITLE">深層学習における地中レーダー画像の切り出しを使用した簡単な拡張手法</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Jun%20SONODA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Jun SONODA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Kazusa%20NAKAMICHI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazusa NAKAMICHI</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/04/26</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">地中レーダ(GPR)は、道路下の空洞や埋設管などの内部構造を非破壊かつ迅速に検査できるという利点がある。しかし、GPR画像から内部構造を推定する必要がある。最近、ディープラーニングを用いたGPR画像の認識・検出法が研究されている。本稿では、ディープラーニングでGPR画像を正確に推定するために必要な切り取り法を用いたデータ拡張法を検討する。本研究で使用したすべてのオブジェクトに対して、切り取り拡張は、一般的に使用されている水平シフト拡張よりも高い検出率を示すことがわかった。</p> </div></div></li><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ESS0002/_f"><span class="TEXT-TITLE">リアルタイム心拍数予測を備えたウォーキング用心拍数制御システム</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Kaiji%20OWAKI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kaiji OWAKI</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Yusuke%20KANDA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yusuke KANDA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Hideaki%20KIMURA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hideaki KIMURA</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/04/23</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">近年、日本では少子高齢化が深刻な問題となっています。これらの問題を解決するために、我々はエッジAIをベースにしたシステムを開発しました。このシステムは、歩行中の将来の心拍数をリアルタイムで予測し、フィードバックすることで運動の質を向上させ、健康寿命を延ばすものです。本稿では、提案システムに基づいて心拍数をリアルタイムで予測し、フィードバックを行いました。実験は、予測心拍数なしとありで実施し、比較することで予測心拍数の有効性を実証しました。</p> </div></div></li><span style="padding: 0.2em 0.2em; margin: 2em 0; background: #f5f5dc;" class="TEXT-SPL">一般号</span><hr noshade="" align="right" width="97%" size="1" color="#cccccc"><li><h4><a href="https://ja.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5046/_f"><span class="TEXT-TITLE">臨床応用のためのマイクロ波ベースの腎除神経カテーテルの開発</span></a>&nbsp;<span class="open_access">オープンアクセス</span></h4><p class="gt-block"><a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Shohei%20MATSUHARA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shohei MATSUHARA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Kazuyuki%20SAITO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuyuki SAITO</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Tomoyuki%20TAJIMA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tomoyuki TAJIMA</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Aditya%20RAKHMADI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Aditya RAKHMADI</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Yoshiki%20WATANABE"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshiki WATANABE</span></a>&nbsp;&nbsp;<a href="https://ja.global.ieice.org/en_transactions/Author/a_name=Nobuyoshi%20TAKESHITA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Nobuyoshi TAKESHITA</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER-Microwaves, Millimeter-Waves</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; 公開:</dt><dd class="TEXT-COL">2024/05/20</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; ページ:</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://ja.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://ja.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">腎除神経(RDN)は、従来の降圧薬が効かない高血圧の潜在的な治療法として開発されてきた。この技術は、血管の内側から腎動脈周囲の神経線維をアブレーションし、交感神経活動を抑制して降圧効果をもたらすことを目的とする。現在、治療抵抗性高血圧の治療におけるRDNの有効性を評価するための臨床研究が行われている。高周波(RF)アブレーションカテーテルは一般的に使用されているが、その加熱能力には限界がある。マイクロ波カテーテルはRDNの別の選択肢として検討されている。我々は、マイクロ波カテーテルをRDNに適用する際の技術的な課題を解決することを目指している。本稿では、らせん構造とマイクロ波(2.45GHz)アンテナを備えたカテーテルを設計した。アンテナは同軸スロットアンテナであり、その寸法はシミュレーションによって反射係数を最適化することで決定された。測定されたカテーテル反射係数は、卵白を使用して-23.6dB、腎動脈で-32dBであった。プロトタイプカテーテルは、 <i>ビトロ</i> シミュレーションを検証するための実験。手順は成功裏に実行され、 <i>インビボの</i> 豚の腎動脈のアブレーションに関する実験。病理学的評価により、腎動脈に重大な損傷を与えることなく、血管周囲組織の広い範囲(&gt; 5 mm)が単一の象限でアブレーションされたことが確認されました。私たちが提案するデバイスは、アブレーション位置の制御を可能にし、内膜や周囲の血液を過熱することなく深部神経のアブレーションを実現し、非常に有能な新しい神経除去カテーテルを示唆しています。</p> </div></div></li><input type="hidden" name="request_uri" 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