DocumentCode
3536454
Title
Motion vision sensor architecture with asynchronous self-signaling pixels
Author
Arias-Estrada, Miguel ; Poussart, Denis ; Tremblay, Marc
Author_Institution
Dept. of Electr. & Comput. Eng., Laval Univ., Que., Canada
fYear
1997
fDate
20-22 Oct 1997
Firstpage
75
Lastpage
83
Abstract
A custom CMOS imager with integrated motion computation is described. The architecture is based on correlating in time moving edges. Edges are located in time by a custom sensor; and correlated in a coprocessing module. The sensor architecture is centered around a compact pixel with analog signal processing and digital self-signaling capabilities. The sensor pixels detect moving edges in the image and communicate their position using an address-event protocol associated to temporal stamps. The coprocessing module correlates the edges and computes the velocity vector map. The motion sensor could be used in applications such as self-guided vehicles, mobile robotics and smart surveillance systems. The article details the motion sensor architecture, the simulated performance, the VLSI implementation and some preliminary results on fabricated prototypes
Keywords
CMOS integrated circuits; VLSI; computer vision; image sensors; motion estimation; protocols; VLSI implementation; address-event protocol; asynchronous self-signaling pixels; compact pixel; coprocessing module; custom CMOS imager; digital self-signaling capabilities; integrated motion computation; mobile robotics; motion sensor; motion vision sensor architecture; self-guided vehicles; simulated performance; smart surveillance systems; temporal stamps; time moving edges; velocity vector map; CMOS image sensors; Computer architecture; Digital signal processing; Image edge detection; Image sensors; Intelligent sensors; Intelligent vehicles; Pixel; Protocols; Sensor systems and applications;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Architecture for Machine Perception, 1997. CAMP 97. Proceedings. 1997 Fourth IEEE International Workshop on
Conference_Location
Cambridge, MA
Print_ISBN
0-8186-7987-5
Type
conf
DOI
10.1109/CAMP.1997.631903
Filename
631903
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