

Memristor-Based Nanoelectronic Computing Circuits and Architectures by Ioannis Vourkas
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 systems. Furthermore, these graph-based NP-hard problems are solved on memristive networks, and coupled with Cellular Automata (CA)-inspired computational schemes that enable computation within memory. All chapters are written in an accessible manner and are lavishly illustrated. The book constitutesan informative cornerstone for young scientists and a comprehensive reference to the experienced reader, hoping to stimulate further research on memristive devices, circuits, and systems.-
Non-Uniform Cellular Automata
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Attractor Dimension Estimates for Dynamical Systems: Theory and Computation
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Automata and Complexity
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The Mathematical Artist
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Quantum Game Simulation
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Numerical Infinities and Infinitesimals in Optimization
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Guided Self-Organization: Inception
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Probabilistic Cellular Automata
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Irreducibility and Computational Equivalence
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Applications of Membrane Computing in Systems and Synthetic Biology
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Recent Advances in the Theory and Application of Fitness Landscapes
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Chaotic Systems with Multistability and Hidden Attractors
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Infobiotics
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The Evolution of Complexity
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ISCS 2013: Interdisciplinary Symposium on Complex Systems
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Reaction-Diffusion Automata: Phenomenology, Localisations, Computation
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A Metaheuristic Approach to Protein Structure Prediction
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Reversibility and Universality
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Intelligent Astrophysics
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Behaviourism in Studying Swarms: Logical Models of Sensing and Motoring
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Automata, Universality, Computation
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Shortest Path Solvers. From Software to Wetware
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Naming Game
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From Astrophysics to Unconventional Computation
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Self-organizing Coalitions for Managing Complexity
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Advances in Unconventional Computing
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Advances in Physarum Machines
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Emergent Computation
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Modern Trends in Controlled Stochastic Processes:
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From Pattern Formation to Material Computation
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Cellular Automata in Image Processing and Geometry
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Real-life Applications with Membrane Computing
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Inspired by Nature
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Methods and Applications of Algorithmic Complexity
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A Route to Chaos Using FPGAs
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| Title | Memristor-Based Nanoelectronic Computing Circuits and Architectures |
| Author | Ioannis Vourkas |
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| Condition | Unavailable |
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| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
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