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A CMOS vision system on-chip with multicore sensorry processing ar-chitecture for image analysis above 1,000F/s

机译:芯片上的CMOS视觉系统,具有多核敏感法处理AR-Chitecture,用于上方1,000F / s以上的图像分析

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This paper describes a Vision-System-on-Chip (VSoC) capable of doing: image acquisition, image processing through on-chip embedded structures, and generation of pertinent reaction commands at thousand's frame-per-second rate. The chip employs a distributed processing architecture with a pre-processing stage consisting of an array of programmable sensory-processing cells, and a post-processing stage consisting of a digital microprocessor. The pre-processing stage operates as a retina-like sensor front-end. It performs parallel processing of the images captured by the sensors which are embedded together with the processors. This early processing serves to extract image features relevant to the intended tasks. The front-end incorporates also smart read-out structures which are conceived to transmit only these relevant fea-tures, thus precluding full gray-scale frames to be coded and transmitted. The chip is capable to close action-reaction loops based on the analysis of visual flow at rates above 1,000F/s with power budget below 1W peak. Also, the incorpo-ration of processors close to the sensors enables signal-dependent, local adaptation of the sensor gains and hence high-dynamic range signal acquisition.
机译:本文介绍了一种能够进行的芯片系统(VSOC),其能够做出:通过片上嵌入式结构的图像采集,图像处理,并以千秒的每秒帧速率产生相关的反应命令。该芯片采用分布式处理架构,其具有由可编程感觉处理单元的阵列组成的预处理阶段,以及由数字微处理器组成的后处理阶段。预处理阶段作为视网膜状传感器前端操作。它执行由嵌入与处理器一起嵌入的传感器捕获的图像的并行处理。该早期处理用于提取与预期任务相关的图像特征。前端还包含智能读出结构,该结构被认为只能传输这些相关的FEA - 特性,从而排除要编码和传输的全灰度帧。该芯片能够基于在高于1,000F / s的速率下的视觉流量的分析来关闭动作反应环,其功率预算低于1W峰值。此外,靠近传感器的处理器的沟通使得能够依赖于信号,传感器增益的局部适应性,并且因此高动态范围信号采集。

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