Event-Based Neuromorphic Systems

Event-Based Neuromorphic Systems
Author :
Publisher : John Wiley & Sons
Total Pages : 440
Release :
ISBN-10 : 9780470018491
ISBN-13 : 0470018496
Rating : 4/5 (91 Downloads)

Book Synopsis Event-Based Neuromorphic Systems by : Shih-Chii Liu

Download or read book Event-Based Neuromorphic Systems written by Shih-Chii Liu and published by John Wiley & Sons. This book was released on 2015-02-16 with total page 440 pages. Available in PDF, EPUB and Kindle. Book excerpt: Neuromorphic electronic engineering takes its inspiration from the functioning of nervous systems to build more power efficient electronic sensors and processors. Event-based neuromorphic systems are inspired by the brain's efficient data-driven communication design, which is key to its quick responses and remarkable capabilities. This cross-disciplinary text establishes how circuit building blocks are combined in architectures to construct complete systems. These include vision and auditory sensors as well as neuronal processing and learning circuits that implement models of nervous systems. Techniques for building multi-chip scalable systems are considered throughout the book, including methods for dealing with transistor mismatch, extensive discussions of communication and interfacing, and making systems that operate in the real world. The book also provides historical context that helps relate the architectures and circuits to each other and that guides readers to the extensive literature. Chapters are written by founding experts and have been extensively edited for overall coherence. This pioneering text is an indispensable resource for practicing neuromorphic electronic engineers, advanced electrical engineering and computer science students and researchers interested in neuromorphic systems. Key features: Summarises the latest design approaches, applications, and future challenges in the field of neuromorphic engineering. Presents examples of practical applications of neuromorphic design principles. Covers address-event communication, retinas, cochleas, locomotion, learning theory, neurons, synapses, floating gate circuits, hardware and software infrastructure, algorithms, and future challenges.


Event-Based Neuromorphic Systems Related Books

Event-Based Neuromorphic Systems
Language: en
Pages: 440
Authors: Shih-Chii Liu
Categories: Technology & Engineering
Type: BOOK - Published: 2015-02-16 - Publisher: John Wiley & Sons

DOWNLOAD EBOOK

Neuromorphic electronic engineering takes its inspiration from the functioning of nervous systems to build more power efficient electronic sensors and processor
Neuromorphic Systems Engineering
Language: en
Pages: 462
Authors: Tor Sverre Lande
Categories: Technology & Engineering
Type: BOOK - Published: 2007-08-26 - Publisher: Springer

DOWNLOAD EBOOK

Neuromorphic Systems Engineering: Neural Networks in Silicon emphasizes three important aspects of this exciting new research field. The term neuromorphic expre
Advances in Neuromorphic Memristor Science and Applications
Language: en
Pages: 318
Authors: Robert Kozma
Categories: Medical
Type: BOOK - Published: 2012-06-28 - Publisher: Springer Science & Business Media

DOWNLOAD EBOOK

Physical implementation of the memristor at industrial scale sparked the interest from various disciplines, ranging from physics, nanotechnology, electrical eng
Neuromorphic Devices for Brain-inspired Computing
Language: en
Pages: 258
Authors: Qing Wan
Categories: Technology & Engineering
Type: BOOK - Published: 2022-05-16 - Publisher: John Wiley & Sons

DOWNLOAD EBOOK

Explore the cutting-edge of neuromorphic technologies with applications in Artificial Intelligence In Neuromorphic Devices for Brain-Inspired Computing: Artific
Advances in Neuromorphic Hardware Exploiting Emerging Nanoscale Devices
Language: en
Pages: 210
Authors: Manan Suri
Categories: Technology & Engineering
Type: BOOK - Published: 2017-01-21 - Publisher: Springer

DOWNLOAD EBOOK

This book covers all major aspects of cutting-edge research in the field of neuromorphic hardware engineering involving emerging nanoscale devices. Special emph