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JSSC 2015第3期Image Sensors180nm CMOS

Selective Change Driven Vision Sensor With Continuous-Time Logarithmic Photoreceptor and Winner-Take-All Circuit for Pixel Selection Fernando Pardo, Jose A. Boluda, and Francisco V egara

选择性变化驱动视觉传感器通过高速胜者全取电路实现高效运动检测。
64×64像素阵列,2μs时间分辨率
选择性变化驱动视觉传感器运动检测胜者全取电路对数光接收
基于对数连续时间单元的光捕获技术
高速数千输入胜者全取电路实现单胜者选择
自适应场景条件并优化带宽利用率
Abstract
The objective of Selective Change Driven (SCD) Vision is to capture and process those scene pixels that have the greatest impact in the motion estimation task. The implemented SCD Vision sensor delivers the pixels ordered according to the illu- mination change undergone by each pixel, from the last time each pixel was read-out. This ordering strategy is especially interesting for motion detection algorithms, since it allows for a reduction in data bandwidth requirements without decreasing accuracy. The speed of the obtained pixel flow allows movement detection and tracking at a speed several orders of magnitude higher than conventional vision systems. To ac complish these objectives, the sensor is based on a well-known logarithm continuous time cell for light capture, and a new high-speed several thousand input Winner-Take-All (WTA) circuit with single winner selection. This WTA circuit differentiates this sensor from others, since it allows for a constant synchronous pixel rate, self-adaptation to scene conditions, the operation being controlled by the processing hard- ware, the complete use of the available processing and bandwid th resources, and illumination and address event delivery at the same time resolution of 2 µs. A 64 × 64 SCD Vision sensor is presented w h i c hh a sb e e ni m p l e m e n t e di ns t a n d a r d1 8 0n mC M O S .