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Artificial Intelligence in Logic Design (Hardcover, Reprinted from ARTIFICIAL INTELLIGENCE REVIEW, 20:3-4, 2004): Svetlana N.... Artificial Intelligence in Logic Design (Hardcover, Reprinted from ARTIFICIAL INTELLIGENCE REVIEW, 20:3-4, 2004)
Svetlana N. Yanushkevich
R4,332 Discovery Miles 43 320 Ships in 12 - 17 working days

There are three outstanding points of this book. First: for the first time, a collective point of view on the role of artificial intelligence paradigm in logic design is introduced. Second, the book reveals new horizons of logic design tools on the technologies of the near future. Finally, the contributors of the book are twenty recognizable leaders in the field from the seven research centres. The chapters of the book have been carefully reviewed by equally qualified experts. All contributors are experienced in practical electronic design and in teaching engineering courses. Thus, the book's style is accessible to graduate students, practical engineers and researchers.

Introduction to Logic Design (Hardcover): Svetlana N. Yanushkevich, Vlad P. Shmerko Introduction to Logic Design (Hardcover)
Svetlana N. Yanushkevich, Vlad P. Shmerko
R4,796 Discovery Miles 47 960 Ships in 12 - 17 working days

With an abundance of insightful examples, problems, and computer experiments, Introduction to Logic Design provides a balanced, easy-to-read treatment of the fundamental theory of logic functions and applications to the design of digital devices and systems. Requiring no prior knowledge of electrical circuits or electronics, it supplies the essential material to understand the basic operation and design of digital systems.

Satisfying the Requirements of an Introductory Course

The text presents a clear picture of basic concepts, effective problem-solving techniques, modern technologies, and applications. It focuses on the relationships between and the manipulation of various data structures. By examining the similarities and differences between assorted theoretical approaches for the representation, manipulation, and optimization of Boolean functions, the authors provide a unified overview of the relationships among digital system design, computer organization, micro- and nanoelectronics, and numerical methods. The book also describes classical minimization techniques, along with advanced and emerging problems of logic design.

Meeting the Needs of Developing Technology

Reflecting the integrated nature of modern engineering, this text shows how theoretical ideas, physical devices, and design methodologies come together to form a successful design approach. It provides the basis to explore even more sophisticated aspects in the field.

Decision Diagram Techniques for Micro- and Nanoelectronic Design Handbook (Paperback): Svetlana N. Yanushkevich, D.Michael... Decision Diagram Techniques for Micro- and Nanoelectronic Design Handbook (Paperback)
Svetlana N. Yanushkevich, D.Michael Miller, Vlad P. Shmerko, Radomir S Stankovic
R1,931 Discovery Miles 19 310 Ships in 12 - 17 working days

Decision diagram (DD) techniques are very popular in the electronic design automation (EDA) of integrated circuits, and for good reason. They can accurately simulate logic design, can show where to make reductions in complexity, and can be easily modified to model different scenarios. Presenting DD techniques from an applied perspective, Decision Diagram Techniques for Micro- and Nanoelectronic Design Handbook provides a comprehensive, up-to-date collection of DD techniques. Experts with more than forty years of combined experience in both industrial and academic settings demonstrate how to apply the techniques to full advantage with more than 400 examples and illustrations. Beginning with the fundamental theory, data structures, and logic underlying DD techniques, they explore a breadth of topics from arithmetic and word-level representations to spectral techniques and event-driven analysis. The book also includes abundant references to more detailed information and additional applications. Decision Diagram Techniques for Micro- and Nanoelectronic Design Handbook collects the theory, methods, and practical knowledge necessary to design more advanced circuits and places it at your fingertips in a single, concise reference.

Computer Arithmetics for Nanoelectronics (Paperback): Vlad P. Shmerko, Svetlana N. Yanushkevich, Sergey Edward Lyshevski Computer Arithmetics for Nanoelectronics (Paperback)
Vlad P. Shmerko, Svetlana N. Yanushkevich, Sergey Edward Lyshevski
R2,198 Discovery Miles 21 980 Ships in 12 - 17 working days

Emphasizes the Basic Principles of Computational Arithmetic and Computational Structure DesignTaking an interdisciplinary approach to the nanoscale generation of computer devices and systems, Computer Arithmetics for Nanoelectronics develops a consensus between computational properties provided by data structures and phenomenological properties of nano and molecular technology. Covers All Stages of the Design Cycle, from Task Formulation to Molecular-Based ImplementationThe book introduces the theoretical base and properties of various data structures, along with techniques for their manipulation, optimization, and implementation. It also assigns the computational properties of logic design data structures to 3D structures, furnishes information-theoretical measures and design aspects, and discusses the testability problem. The last chapter presents a nanoscale prospect for natural computing based on assorted computing paradigms from nature. Balanced Coverage of State-of-the-Art Concepts, Techniques, and Practices Up-to-date, comprehensive, and pragmatic in its approach, this text provides a unified overview of the relationship between the fundamentals of digital system design, computer architectures, and micro- and nanoelectronics.

Computer Arithmetics for Nanoelectronics (Hardcover, New): Vlad P. Shmerko, Svetlana N. Yanushkevich, Sergey Edward Lyshevski Computer Arithmetics for Nanoelectronics (Hardcover, New)
Vlad P. Shmerko, Svetlana N. Yanushkevich, Sergey Edward Lyshevski
R5,623 Discovery Miles 56 230 Ships in 12 - 17 working days

"Emphasizes the Basic Principles of Computational Arithmetic and Computational Structure Design"

Taking an interdisciplinary approach to the nanoscale generation of computer devices and systems, Computer Arithmetics for Nanoelectronics develops a consensus between computational properties provided by data structures and phenomenological properties of nano and molecular technology.

"Covers All Stages of the Design Cycle, from Task Formulation to Molecular-Based Implementation"

The book introduces the theoretical base and properties of various data structures, along with techniques for their manipulation, optimization, and implementation. It also assigns the computational properties of logic design data structures to 3D structures, furnishes information-theoretical measures and design aspects, and discusses the testability problem. The last chapter presents a nanoscale prospect for natural computing based on assorted computing paradigms from nature.

"Balanced Coverage of State-of-the-Art Concepts, Techniques, and Practices"

Up-to-date, comprehensive, and pragmatic in its approach, this text provides a unified overview of the relationship between the fundamentals of digital system design, computer architectures, and micro- and nanoelectronics.

Decision Diagram Techniques for Micro- and Nanoelectronic Design Handbook (Hardcover): Svetlana N. Yanushkevich, D.Michael... Decision Diagram Techniques for Micro- and Nanoelectronic Design Handbook (Hardcover)
Svetlana N. Yanushkevich, D.Michael Miller, Vlad P. Shmerko, Radomir S Stankovic
R4,549 Discovery Miles 45 490 Ships in 12 - 17 working days

Decision diagram (DD) techniques are very popular in the electronic design automation (EDA) of integrated circuits, and for good reason. They can accurately simulate logic design, can show where to make reductions in complexity, and can be easily modified to model different scenarios. Presenting DD techniques from an applied perspective, Decision Diagram Techniques for Micro- and Nanoelectronic Design Handbook provides a comprehensive, up-to-date collection of DD techniques. Experts with more than forty years of combined experience in both industrial and academic settings demonstrate how to apply the techniques to full advantage with more than 400 examples and illustrations. Beginning with the fundamental theory, data structures, and logic underlying DD techniques, they explore a breadth of topics from arithmetic and word-level representations to spectral techniques and event-driven analysis. The book also includes abundant references to more detailed information and additional applications. Decision Diagram Techniques for Micro- and Nanoelectronic Design Handbook collects the theory, methods, and practical knowledge necessary to design more advanced circuits and places it at your fingertips in a single, concise reference.

Logic Design of NanoICS (Hardcover, New): Svetlana N. Yanushkevich, Vlad P. Shmerko, Sergey Edward Lyshevski Logic Design of NanoICS (Hardcover, New)
Svetlana N. Yanushkevich, Vlad P. Shmerko, Sergey Edward Lyshevski
R4,483 Discovery Miles 44 830 Ships in 12 - 17 working days

Today's engineers will confront the challenge of a new computing paradigm, relying on micro- and nanoscale devices. Logic Design of NanoICs builds a foundation for logic in nanodimensions and guides you in the design and analysis of nanoICs using CAD. The authors present data structures developed toward applications rather than a purely theoretical treatment. Requiring only basic logic and circuits background, Logic Design of NanoICs draws connections between traditional approaches to design and modern design in nanodimensions. The book begins with an introduction to the directions and basic methodology of logic design at the nanoscale, then proceeds to nanotechnologies and CAD, graphical representation of switching functions and networks, word-level and linear word-level data structures, 3-D topologies based on hypercubes, multilevel circuit design, and fault-tolerant computation in hypercube-like structures. The authors propose design solutions and techniques, going beyond the underlying technology to provide more applied knowledge. This design-oriented reference is written for engineers interested in developing the next generation of integrated circuitry, illustrating the discussion with approximately 250 figures and tables, 100 equations, 250 practical examples, and 100 problems. Each chapter concludes with a summary, references, and a suggested reading section.

Introduction to Noise-Resilient Computing (Paperback): Svetlana N. Yanushkevich, Seiya Kasai, Golam Tangim, A H Tran Introduction to Noise-Resilient Computing (Paperback)
Svetlana N. Yanushkevich, Seiya Kasai, Golam Tangim, A H Tran
R1,032 Discovery Miles 10 320 Ships in 10 - 15 working days

Noise abatement is the key problem of small-scaled circuit design. New computational paradigms are needed -- as these circuits shrink, they become very vulnerable to noise and soft errors. In this lecture, we present a probabilistic computation framework for improving the resiliency of logic gates and circuits under random conditions induced by voltage or current fluctuation. Among many probabilistic techniques for modeling such devices, only a few models satisfy the requirements of efficient hardware implementation -- specifically, Boltzman machines and Markov Random Field (MRF) models. These models have similar built-in noise-immunity characteristics based on feedback mechanisms. In probabilistic models, the values 0 and 1 of logic functions are replaced by degrees of beliefs that these values occur. An appropriate metric for degree of belief is probability. We discuss various approaches for noise-resilient logic gate design, and propose a novel design taxonomy based on implementation of the MRF model by a new type of binary decision diagram (BDD), called a cyclic BDD. In this approach, logic gates and circuits are designed using 2-to-1 bi-directional switches. Such circuits are often modeled using Shannon expansions with the corresponding graph-based implementation, BDDs. Simulation experiments are reported to show the noise immunity of the proposed structures. Audiences who may benefit from this lecture include graduate students taking classes on advanced computing device design, and academic and industrial researchers. Table of Contents: Introduction to probabilistic computation models / Nanoscale circuits and fluctuation problems / Estimators and Metrics / MRF Models of Logic Gates / Neuromorphic models / Noise-tolerance via error correcting / Conclusion and future work

Artificial Intelligence in Logic Design (Paperback, Softcover reprint of hardcover 1st ed. 2004): Svetlana N. Yanushkevich Artificial Intelligence in Logic Design (Paperback, Softcover reprint of hardcover 1st ed. 2004)
Svetlana N. Yanushkevich
R4,241 Discovery Miles 42 410 Ships in 10 - 15 working days

There are three outstanding points of this book. First: for the first time, a collective point of view on the role of artificial intelligence paradigm in logic design is introduced. Second, the book reveals new horizons of logic design tools on the technologies of the near future. Finally, the contributors of the book are twenty recognizable leaders in the field from the seven research centres. The chapters of the book have been carefully reviewed by equally qualified experts. All contributors are experienced in practical electronic design and in teaching engineering courses. Thus, the book's style is accessible to graduate students, practical engineers and researchers.

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