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Low power high-performance smart camera system based on SCAMP vision sensor

机译:基于SCAMP视觉传感器的低功耗高性能智能相机系统

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摘要

Vision sensors based upon pixel-parallel cellular processor arrays offer the unique opportunity to realise high-performance, flexible, low power image processing systems. By virtue of processing on the focalplane, the energy-demanding requirement to digitize a captured frame's raw pixel data is reduced, with returned data constituting only that which is salient. We describe a stand-alone vision system incorporating a SCAMP-3 vision chip, an FPGA and an ARM Cortex-M3 microcontroller. SCAMP integrated circuits operate as SIMD computers; each pixel incorporating a compact but powerful analogue processor and local memory, with all operations occurring in parallel over the 128 x 128 array. Algorithms are developed to operate natively upon the focal-plane as far as possible, with additional serial and higher-level operations occurring on the microcontroller. The power consumption of the system is algorithm-dependent. An algorithm developed for loiterer detection at 8 fps has been shown to consume an average power of 5.5 mW, with a more complex object tracking and counting system consuming 29 mW.
机译:基于像素并行蜂窝处理器阵列的视觉传感器为实现高性能,灵活,低功耗的图像处理系统提供了独特的机会。通过在焦平面上进行处理,减少了将捕获的帧的原始像素数据数字化的能量需求,而返回的数据仅构成了突出的数据。我们描述了一个独立的视觉系统,该系统集成了SCAMP-3视觉芯片,FPGA和ARM Cortex-M3微控制器。 SCAMP集成电路用作SIMD计算机;每个像素都包含一个紧凑但功能强大的模拟处理器和本地内存,所有操作在128 x 128阵列上并行进行。开发了算法,以尽可能在焦平面上进行本机操作,并在微控制器上进行其他串行操作和更高级别的操作。系统的功耗取决于算法。一种用于以8 fps侦查游荡者的算法已显示平均功耗为5.5 mW,而更复杂的对象跟踪和计数系统则消耗29 mW。

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