Book description
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.
Table of contents
- Coverpage
- Titlepage
- Copyright
- Dedication
- Contents
- List of Contributors
- Foreword
- Acknowledgments
- List of Abbreviations and Acronyms
- 1 Introduction
-
Part I UNDERSTANDING NEUROMORPHIC SYSTEMS
- 2 Communication
- 3 Silicon Retinas
- 4 Silicon Cochleas
- 5 Locomotion Motor Control
- 6 Learning in Neuromorphic Systems
-
Part II BUILDING NEUROMORPHIC SYSTEMS
- 7 Silicon Neurons
- 8 Silicon Synapses
- 9 Silicon Cochlea Building Blocks
-
10 Programmable and Configurable Analog Neuromorphic ICs
- 10.1 Introduction
- 10.2 Floating-Gate Circuit Basics
- 10.3 Floating-Gate Circuits Enabling Capacitive Circuits
- 10.4 Modifying Floating-Gate Charge
- 10.5 Accurate Programming of Programmable Analog Devices
- 10.6 Scaling of Programmable Analog Approaches
- 10.7 Low-Power Analog Signal Processing
- 10.8 Low-Power Comparisons to Digital Approaches: Analog Computing in Memory
- 10.9 Analog Programming at Digital Complexity: Large-Scale Field Programmable Analog Arrays
- 10.10 Applications of Complex Analog Signal Processing
- 10.11 Discussion
- References
-
11 Bias Generator Circuits
- 11.1 Introduction
-
11.2 Bias Generator Circuits
- 11.2.1 Bootstrapped Current Mirror Master Bias Current Reference
- 11.2.2 Master Bias Power Supply Rejection Ratio (PSRR)
- 11.2.3 Stability of the Master Bias
- 11.2.4 Master Bias Startup and Power Control
- 11.2.5 Current Splitters: Obtaining a Digitally Controlled Fraction of the Master Current
- 11.2.6 Achieving Fine Monotonic Resolution of Bias Currents
- 11.2.7 Using Coarse–Fine Range Selection
- 11.2.8 Shifted-Source Biasing for Small Currents
- 11.2.9 Buffering and Bypass Decoupling of Individual Biases
- 11.2.10 A General Purpose Bias Buffer Circuit
- 11.2.11 Protecting Bias Splitter Currents from Parasitic Photocurrents
- 11.3 Overall Bias Generator Architecture Including External Controller
- 11.4 Typical Characteristics
- 11.5 Design Kits
- 11.6 Discussion
- References
- 12 On-Chip AER Communication Circuits
- 13 Hardware Infrastructure
- 14 Software Infrastructure
- 15 Algorithmic Processing of Event Streams
- 16 Towards Large-Scale Neuromorphic Systems
- 17 The Brain as Potential Technology
- Index
Product information
- Title: Event-Based Neuromorphic Systems
- Author(s):
- Release date: February 2015
- Publisher(s): Wiley
- ISBN: 9780470018491
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