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Titlebook: Memristor-Based Nanoelectronic Computing Circuits and Architectures; Foreword by Leon Chu Ioannis Vourkas,Georgios Ch. Sirakoulis Book 2016

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書目名稱Memristor-Based Nanoelectronic Computing Circuits and Architectures
副標題Foreword by Leon Chu
編輯Ioannis Vourkas,Georgios Ch. Sirakoulis
視頻videohttp://file.papertrans.cn/631/630544/630544.mp4
概述Brings together a series of topics of memristive devices, circuits, and computational systems which were never previously studied and analyzed in a single volume.Presents a comprehensive review of the
叢書名稱Emergence, Complexity and Computation
圖書封面Titlebook: Memristor-Based Nanoelectronic Computing Circuits and Architectures; Foreword by Leon Chu Ioannis Vourkas,Georgios Ch. Sirakoulis Book 2016
描述This book considers the design and development of nanoelectronic computing circuits, systems and architectures focusing particularly on memristors, which represent one of today’s latest technology breakthroughs in nanoelectronics. The book studies, explores, and addresses the related challenges and proposes solutions for the smooth transition from conventional circuit technologies to emerging computing memristive nanotechnologies. Its content spans from fundamental device modeling to emerging storage system architectures and novel circuit design methodologies, targeting advanced non-conventional analog/digital massively parallel computational structures. Several new results on memristor modeling, memristive interconnections, logic circuit design, memory circuit architectures, computer arithmetic systems, simulation software tools, and applications of memristors in computing are presented. High-density memristive data storage combined with memristive circuit-design paradigms and computational tools applied to solve NP-hard artificial intelligence problems, as well as memristive arithmetic-logic units, certainly pave the way for a very promising memristive era in future electronic sy
出版日期Book 2016
關(guān)鍵詞Artificial Intelligence; Circuit Design; Circuit Simulation; Computation; Graphs; Memristive Circuits; Mem
版次1
doihttps://doi.org/10.1007/978-3-319-22647-7
isbn_softcover978-3-319-37359-1
isbn_ebook978-3-319-22647-7Series ISSN 2194-7287 Series E-ISSN 2194-7295
issn_series 2194-7287
copyrightSpringer International Publishing Switzerland 2016
The information of publication is updating

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Memristor Modeling,behavior of memristor when fitted to other widely used published models. Therefore, it can be used to provide accurate enough circuit simulations for a wide range of memristor devices and voltage inputs, while it can be incorporated as a circuit element in any current computer-aided design work.
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Memristor-Based Logic Circuits,e presented, which aim to address several drawbacks of other existing design concepts in the literature, and to facilitate the incorporation of memristors in currently established logic circuit architectures. Thus they could be promising candidates to be used in future electronic systems design. The
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Memristive Crossbar-Based Nonvolatile Memory,g (i) novel storage cell structures, and (ii) modifications in the memory architecture. More specifically, (i) anti-parallel memristive switches are studied as potential cross-point elements in ReRAM arrays, in comparison with anti-serial (complementary) memristive switches. A comprehensive and comp
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High-Radix Arithmetic-Logic Unit (ALU) Based on Memristors,it storage in a more robust manner. Radix-4 representation is used because: (i) it balances the offered advantages with the peripheral binary conversion circuitry overhead; and (ii) it provides a good density/reliability trade-off. The fine operation and accuracy of the proposed system architecture
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