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Search results for: Lixin Tao

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Tao</h1> <div class="card publication-listing mb-3 mt-3"> <h5 class="card-header" style="font-size:.9rem"><span class="badge badge-info">4</span> The Dividend Payments for General Claim Size Distributions under Interest Rate</h5> <div class="card-body"> <p class="card-text"><strong>Authors:</strong> <a href="https://publications.waset.org/search?q=Li-Li%20Li">Li-Li Li</a>, <a href="https://publications.waset.org/search?q=Jinghai%20Feng"> Jinghai Feng</a>, <a href="https://publications.waset.org/search?q=Lixin%20Song"> Lixin Song</a> </p> <p class="card-text"><strong>Abstract:</strong></p> This paper evaluates the dividend payments for general claim size distributions in the presence of a dividend barrier. The surplus of a company is modeled using the classical risk process perturbed by diffusion, and in addition, it is assumed to accrue interest at a constant rate. After presenting the integro-differential equation with initial conditions that dividend payments satisfies, the paper derives a useful expression of the dividend payments by employing the theory of Volterra equation. Furthermore, the optimal value of dividend barrier is found. Finally, numerical examples illustrate the optimality of optimal dividend barrier and the effects of parameters on dividend payments. <p class="card-text"><strong>Keywords:</strong> <a href="https://publications.waset.org/search?q=Dividend%20payout" title="Dividend payout">Dividend payout</a>, <a href="https://publications.waset.org/search?q=Integro-differential%20equation" title=" Integro-differential equation"> Integro-differential equation</a>, <a href="https://publications.waset.org/search?q=Jumpdiffusion%20model" title=" Jumpdiffusion model"> Jumpdiffusion model</a>, <a href="https://publications.waset.org/search?q=Volterra%20equation" title=" Volterra equation"> Volterra equation</a> </p> <a href="https://publications.waset.org/1016/the-dividend-payments-for-general-claim-size-distributions-under-interest-rate" class="btn btn-primary btn-sm">Procedia</a> <a href="https://publications.waset.org/1016/apa" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">APA</a> <a href="https://publications.waset.org/1016/bibtex" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">BibTeX</a> <a href="https://publications.waset.org/1016/chicago" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">Chicago</a> <a href="https://publications.waset.org/1016/endnote" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">EndNote</a> <a href="https://publications.waset.org/1016/harvard" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">Harvard</a> <a href="https://publications.waset.org/1016/json" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">JSON</a> <a href="https://publications.waset.org/1016/mla" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">MLA</a> <a href="https://publications.waset.org/1016/ris" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">RIS</a> <a href="https://publications.waset.org/1016/xml" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">XML</a> <a href="https://publications.waset.org/1016/iso690" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">ISO 690</a> <a href="https://publications.waset.org/1016.pdf" target="_blank" class="btn btn-primary btn-sm">PDF</a> <span class="bg-info text-light px-1 py-1 float-right rounded"> Downloads <span class="badge badge-light">1804</span> </span> </div> </div> <div class="card publication-listing mb-3 mt-3"> <h5 class="card-header" style="font-size:.9rem"><span class="badge badge-info">3</span> Formal Verification of Cache System Using a Novel Cache Memory Model</h5> <div class="card-body"> <p class="card-text"><strong>Authors:</strong> <a href="https://publications.waset.org/search?q=Guowei%20Hou">Guowei Hou</a>, <a href="https://publications.waset.org/search?q=Lixin%20Yu"> Lixin Yu</a>, <a href="https://publications.waset.org/search?q=Wei%20Zhuang"> Wei Zhuang</a>, <a href="https://publications.waset.org/search?q=Hui%20Qin"> Hui Qin</a>, <a href="https://publications.waset.org/search?q=Xue%20Yang"> Xue Yang</a> </p> <p class="card-text"><strong>Abstract:</strong></p> <p>Formal verification is proposed to ensure the correctness of the design and make functional verification more efficient. As cache plays a vital role in the design of System on Chip (SoC), and cache with Memory Management Unit (MMU) and cache memory unit makes the state space too large for simulation to verify, then a formal verification is presented for such system design. In the paper, a formal model checking verification flow is suggested and a new cache memory model which is called &ldquo;exhaustive search model&rdquo; is proposed. Instead of using large size ram to denote the whole cache memory, exhaustive search model employs just two cache blocks. For cache system contains data cache (Dcache) and instruction cache (Icache), Dcache memory model and Icache memory model are established separately using the same mechanism. At last, the novel model is employed to the verification of a cache which is module of a custom-built SoC system that has been applied in practical, and the result shows that the cache system is verified correctly using the exhaustive search model, and it makes the verification much more manageable and flexible.</p> <p class="card-text"><strong>Keywords:</strong> <a href="https://publications.waset.org/search?q=Cache%20system" title="Cache system">Cache system</a>, <a href="https://publications.waset.org/search?q=formal%20verification" title=" formal verification"> formal verification</a>, <a href="https://publications.waset.org/search?q=novel%20model" title=" novel model"> novel model</a>, <a href="https://publications.waset.org/search?q=System%20on%20Chip%20%28SoC%29." title=" System on Chip (SoC)."> System on Chip (SoC).</a> </p> <a href="https://publications.waset.org/10000775/formal-verification-of-cache-system-using-a-novel-cache-memory-model" class="btn btn-primary btn-sm">Procedia</a> <a href="https://publications.waset.org/10000775/apa" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">APA</a> <a href="https://publications.waset.org/10000775/bibtex" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">BibTeX</a> <a href="https://publications.waset.org/10000775/chicago" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">Chicago</a> <a href="https://publications.waset.org/10000775/endnote" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">EndNote</a> <a href="https://publications.waset.org/10000775/harvard" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">Harvard</a> <a href="https://publications.waset.org/10000775/json" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">JSON</a> <a href="https://publications.waset.org/10000775/mla" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">MLA</a> <a href="https://publications.waset.org/10000775/ris" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">RIS</a> <a href="https://publications.waset.org/10000775/xml" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">XML</a> <a href="https://publications.waset.org/10000775/iso690" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">ISO 690</a> <a href="https://publications.waset.org/10000775.pdf" target="_blank" class="btn btn-primary btn-sm">PDF</a> <span class="bg-info text-light px-1 py-1 float-right rounded"> Downloads <span class="badge badge-light">2299</span> </span> </div> </div> <div class="card publication-listing mb-3 mt-3"> <h5 class="card-header" style="font-size:.9rem"><span class="badge badge-info">2</span> Authentic Learning for Computer Network with Mobile Device-Based Hands-On Labware</h5> <div class="card-body"> <p class="card-text"><strong>Authors:</strong> <a href="https://publications.waset.org/search?q=Kai%20Qian">Kai Qian</a>, <a href="https://publications.waset.org/search?q=Ming%20Yang"> Ming Yang</a>, <a href="https://publications.waset.org/search?q=Minzhe%20Guo"> Minzhe Guo</a>, <a href="https://publications.waset.org/search?q=Prabir%20Bhattacharya"> Prabir Bhattacharya</a>, <a href="https://publications.waset.org/search?q=Lixin%20Tao"> Lixin Tao</a> </p> <p class="card-text"><strong>Abstract:</strong></p> <p>Computer network courses are essential parts of&nbsp;college computer science curriculum and hands-on networking&nbsp;experience is well recognized as an effective approach to help&nbsp;students understand better about the network concepts, the layered&nbsp;architecture of network protocols, and the dynamics of the networks.&nbsp;However, existing networking labs are usually server-based and&nbsp;relatively cumbersome, which require a certain level of specialty and&nbsp;resource to set up and maintain the lab environment. Many&nbsp;universities/colleges lack the resources and build-ups in this field and&nbsp;have difficulty to provide students with hands-on practice labs. A&nbsp;new affordable and easily-adoptable approach to networking labs is&nbsp;desirable to enhance network teaching and learning. In addition,&nbsp;current network labs are short on providing hands-on practice for&nbsp;modern wireless and mobile network learning. With the prevalence of&nbsp;smart mobile devices, wireless and mobile network are permeating&nbsp;into various aspects of our information society. The emerging and&nbsp;modern mobile technology provides computer science students with&nbsp;more authentic learning experience opportunities especially in&nbsp;network learning. A mobile device based hands-on labware can&nbsp;provide an excellent &lsquo;real world&rsquo; authentic learning environment for&nbsp;computer network especially for wireless network study. In this&nbsp;paper, we present our mobile device-based hands-on labware (series&nbsp;of lab module) for computer network learning which is guided by&nbsp;authentic learning principles to immerse students in a real world&nbsp;relevant learning environment. We have been using this labware in&nbsp;teaching computer network, mobile security, and wireless network&nbsp;classes. The student feedback shows that students can learn more&nbsp;when they have hands-on authentic learning experience.&nbsp;</p> <p class="card-text"><strong>Keywords:</strong> <a href="https://publications.waset.org/search?q=Mobile%20computing" title="Mobile computing">Mobile computing</a>, <a href="https://publications.waset.org/search?q=android" title=" android"> android</a>, <a href="https://publications.waset.org/search?q=network" title=" network"> network</a>, <a href="https://publications.waset.org/search?q=labware." title=" labware."> labware.</a> </p> <a href="https://publications.waset.org/16312/authentic-learning-for-computer-network-with-mobile-device-based-hands-on-labware" class="btn btn-primary btn-sm">Procedia</a> <a href="https://publications.waset.org/16312/apa" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">APA</a> <a href="https://publications.waset.org/16312/bibtex" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">BibTeX</a> <a href="https://publications.waset.org/16312/chicago" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">Chicago</a> <a href="https://publications.waset.org/16312/endnote" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">EndNote</a> <a href="https://publications.waset.org/16312/harvard" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">Harvard</a> <a href="https://publications.waset.org/16312/json" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">JSON</a> <a href="https://publications.waset.org/16312/mla" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">MLA</a> <a href="https://publications.waset.org/16312/ris" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">RIS</a> <a href="https://publications.waset.org/16312/xml" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">XML</a> <a href="https://publications.waset.org/16312/iso690" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">ISO 690</a> <a href="https://publications.waset.org/16312.pdf" target="_blank" class="btn btn-primary btn-sm">PDF</a> <span class="bg-info text-light px-1 py-1 float-right rounded"> Downloads <span class="badge badge-light">2075</span> </span> </div> </div> <div class="card publication-listing mb-3 mt-3"> <h5 class="card-header" style="font-size:.9rem"><span class="badge badge-info">1</span> The Design of Multiple Detection Parallel Combined Spread Spectrum Communication System</h5> <div class="card-body"> <p class="card-text"><strong>Authors:</strong> <a href="https://publications.waset.org/search?q=Lixin%20Tian">Lixin Tian</a>, <a href="https://publications.waset.org/search?q=Wei%20Xue"> Wei Xue</a> </p> <p class="card-text"><strong>Abstract:</strong></p> <p>Many jobs in society go underground, such as mine mining, tunnel construction and subways, which are vital to the development of society. Once accidents occur in these places, the interruption of traditional wired communication is not conducive to the development of rescue work. In order to realize the positioning, early warning and command functions of underground personnel and improve rescue efficiency, it is necessary to develop and design an emergency ground communication system. It is easy to be subjected to narrowband interference when performing conventional underground communication. Spreading communication can be used for this problem. However, general spread spectrum methods such as direct spread communication are inefficient, so it is proposed to use parallel combined spread spectrum (PCSS) communication to improve efficiency. The PCSS communication not only has the anti-interference ability and the good concealment of the traditional spread spectrum system, but also has a relatively high frequency band utilization rate and a strong information transmission capability. So, this technology has been widely used in practice. This paper presents a PCSS communication model-multiple detection parallel combined spread spectrum (MDPCSS) communication system. In this paper, the principle of MDPCSS communication system is described, that is, the sequence at the transmitting end is processed in blocks and cyclically shifted to facilitate multiple detection at the receiving end. The block diagrams of the transmitter and receiver of the MDPCSS communication system are introduced. At the same time, the calculation formula of the system bit error rate (BER) is introduced, and the simulation and analysis of the BER of the system are completed. By comparing with the common parallel PCSS communication, we can draw a conclusion that it is indeed possible to reduce the BER and improve the system performance. Furthermore, the influence of different pseudo-code lengths selected on the system BER is simulated and analyzed, and the conclusion is that the larger the pseudo-code length is, the smaller the system error rate is.</p> <p class="card-text"><strong>Keywords:</strong> <a href="https://publications.waset.org/search?q=Cyclic%20shift" title="Cyclic shift">Cyclic shift</a>, <a href="https://publications.waset.org/search?q=multiple%20detection" title=" multiple detection"> multiple detection</a>, <a href="https://publications.waset.org/search?q=parallel%20combined%20spread%20spectrum" title=" parallel combined spread spectrum"> parallel combined spread spectrum</a>, <a href="https://publications.waset.org/search?q=PN%20code." title=" PN code."> PN code.</a> </p> <a href="https://publications.waset.org/10010572/the-design-of-multiple-detection-parallel-combined-spread-spectrum-communication-system" class="btn btn-primary btn-sm">Procedia</a> <a 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