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2006, ISBN: 9780470034880
eBooks, eBook Download (PDF), 1. Auflage, Although it is now possible to integrate many millions oftransistors on a single chip, traditional digital circuittechnology is now reaching its … More...
ISBN: 9780470034880
Although it is now possible to integrate many millions of transistors on a single chip, traditional digital circuit technology is now reaching its limits, facing problems of cost and tech… More...
ISBN: 9780470034880
A digital copy of "Analog Vlsi Circuits For The Perception Of Visual Motion" by Stocker. Download is immediately available upon purchase! 9780470034880,0470034882,analog,vlsi,circuits,per… More...
ISBN: 9780470034880
Wiley Electrical Engineering & Telecommunications possible; single chip; transistors; many millions; integrate; circuit; traditional; technology; limits; technical; eversmaller feature; c… More...
ISBN: 9780470034880
Analog VLSI Circuits for the Perception of Visual Motion: ab 121.99 € eBooks > Sachthemen & Ratgeber > Technik John Wiley & Sons eBook als pdf, John Wiley & Sons
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Details of the book - Analog VLSI Circuits for the Perception of Visual Motion
EAN (ISBN-13): 9780470034880
ISBN (ISBN-10): 0470034882
Publishing year: 2006
Publisher: John Wiley & Sons
242 Pages
Language: eng/Englisch
Book in our database since 2009-08-10T08:32:51-04:00 (New York)
Detail page last modified on 2024-02-29T10:37:28-05:00 (New York)
ISBN/EAN: 9780470034880
ISBN - alternate spelling:
0-470-03488-2, 978-0-470-03488-0
Alternate spelling and related search-keywords:
Book author: stöcker, alan stocker, wiley peter, chadwick
Book title: vlsi, analog, visual perception, circuits
Information from Publisher
Author: Alan A. Stocker
Title: Analog VLSI Circuits for the Perception of Visual Motion
Publisher: Wiley; John Wiley & Sons
242 Pages
Publishing year: 2006-03-30
Language: English
114,99 € (DE)
Not available (reason unspecified)
EA; E107; E-Book; Nonbooks, PBS / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Schaltkreise und Komponenten (Bauteile); Circuit Theory & Design / VLSI / ULSI; Electrical & Electronics Engineering; Elektrotechnik u. Elektronik; Intelligent Systems & Agents; Intelligente Systeme; Intelligente Systeme u. Agenten; Robotics; Robotik; Schaltkreise - Theorie u. Entwurf / VLSI / ULSI; VLSI; Schaltkreise - Theorie u. Entwurf / VLSI / ULSI; Intelligente Systeme u. Agenten; Robotik; BB
Foreword. Preface. 1 Introduction. 1.1 Artificial Autonomous Systems. 1.2 Neural Computation and Analog Integrated Circuits. 2 Visual Motion Perception. 2.1 Image Brightness. 2.2 Correspondence Problem. 2.3 Optical Flow. 2.4 Matching Models. 2.4.1 Explicit matching. 2.4.2 Implicit matching. 2.5 FlowModels. 2.5.1 Global motion. 2.5.2 Local motion. 2.5.3 Perceptual bias. 2.6 Outline for a Visual Motion Perception System. 2.7 Review of aVLSI Implementations. 3 Optimization Networks. 3.1 AssociativeMemory and Optimization. 3.2 Constraint Satisfaction Problems. 3.3 Winner-takes-all Networks. 3.3.1 Network architecture. 3.3.2 Global convergence and gain. 3.4 Resistive Network. 4 Visual Motion Perception Networks. 4.1 Model for Optical Flow Estimation. 4.1.1 Well-posed optimization problem. 4.1.2 Mechanical equivalent. 4.1.3 Smoothness and sparse data. 4.1.4 Probabilistic formulation. 4.2 Network Architecture. 4.2.1 Non-stationary optimization. 4.2.2 Network conductances. 4.3 Simulation Results for Natural Image Sequences. 4.4 Passive Non-linear Network Conductances. 4.5 Extended Recurrent Network Architectures. 4.5.1 Motion segmentation. 4.5.2 Attention and motion selection. 4.6 Remarks. 5 Analog VLSI Implementation. 5.1 Implementation Substrate. 5.2 Phototransduction. 5.2.1 Logarithmic adaptive photoreceptor. 5.2.2 Robust brightness constancy constraint. 5.3 Extraction of the Spatio-temporal Brightness Gradients. 5.3.1 Temporal derivative circuits. 5.3.2 Spatial sampling. 5.4 Single Optical Flow Unit. 5.4.1 Wide-linear-range multiplier. 5.4.2 Effective bias conductance. 5.4.3 Implementation of the smoothness constraint. 5.5 Layout. 6 Smooth Optical Flow Chip. 6.1 Response Characteristics. 6.1.1 Speed tuning. 6.1.2 Contrast dependence. 6.1.3 Spatial frequency tuning. 6.1.4 Orientation tuning. 6.2 Intersection-of-constraints Solution. 6.3 Flow Field Estimation. 6.4 DeviceMismatch. 6.4.1 Gradient offsets. 6.4.2 Variations across the array. 6.5 Processing Speed. 6.6 Applications. 6.6.1 Sensor modules for robotic applications. 6.6.2 Human-machine interface. 7 Extended Network Implementations. 7.1 Motion Segmentation Chip. 7.1.1 Schematics of the motion segmentation pixel. 7.1.2 Experiments and results. 7.2 Motion Selection Chip. 7.2.1 Pixel schematics. 7.2.2 Non-linear diffusion length. 7.2.3 Experiments and results. 8 Comparison to Human Motion Vision. 8.1 Human vs. Chip Perception. 8.1.1 Contrast-dependent speed perception. 8.1.2 Bias on perceived direction of motion. 8.1.3 Perceptual dynamics. 8.2 Computational Architecture. 8.3 Remarks. Appendix. A Variational Calculus. B Simulation Methods. C Transistors and Basic Circuits. D Process Parameters and Chips Specifications. References. Index.More/other books that might be very similar to this book
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