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A CCD programmable image processor and its neural network applications

机译:CCD可编程图像处理器及其神经网络应用

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A charge coupled device (CCD)-based image processor that performs 2D filtering of a gray-level image with 20 programmable 8-b 7*7 spatial filters is described. The processor consists of an analog input buffer, 49 multipliers, and 49 8-b 20-stage local memories in a 29-mm/sup 2/ chip area. Better than 99.999% charge transfer efficiency and greater than 42-dB dynamic range have been achieved by the processor, which performs one billion arithmetic operations per second and dissipates less than 1 W when clocked at 10 MHz. The device is also suited for neural networks with local connections and replicated weights. Implementation of a specific neural network, the neocognitron, based on this CCD processor has been simulated. The effect of weight quantization imposed by use of this CCD device on the performance of the neocognitron is presented.
机译:描述了基于电荷耦合器件(CCD)的图像处理器,该图像处理器使用20个可编程的8-b 7 * 7空间滤波器对灰度图像执行2D滤波。该处理器由一个模拟输入缓冲器,49个乘法器和49mm / sup 2 /芯片区域中的49个8-b 20级本地存储器组成。该处理器已实现了优于99.999%的电荷传输效率和大于42 dB的动态范围,该处理器每秒执行10亿次算术运算,并以10 MHz的时钟频率耗散不到1 W的功率。该设备还适用于具有本地连接和重复权重的神经网络。已经模拟了基于此CCD处理器的特定神经网络新认知器的实现。提出了使用这种CCD装置施加的重量量化对新认知器性能的影响。

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