An analog VLSI which emulates biological vision

T. Yagi, Y. Hayashida, S. Kameda
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引用次数: 1

Abstract

A linear analog network model is proposed to describe the neural circuit of the outer retina. Using the model, we characterized the spatial filtering properties of the circuit in terms of the standard regularization theory in which the early vision problems are attributed to minimization of a cost function. Inspired by the algorithm/architecture of the circuit, a vision chip was designed using analog CMOS VLSI circuit technology. The chip fabricated is an one-dimensional 100 pixel line sensor. In the chip, sample/hold amplifier circuits are incorporated to compensate for the fixed pattern noise of photosensors as well as statistic transistor mismatch. The chip effectively extracts contour of given images by controlling the receptive field size, simulating a light-adaptive mechanism suggested in the vertebrate retinal circuit.
一种模拟生物视觉的超大规模集成电路
提出了一种线性模拟网络模型来描述外视网膜的神经回路。使用该模型,我们根据标准正则化理论描述了电路的空间滤波特性,其中早期视觉问题归因于成本函数的最小化。受该电路的算法/架构的启发,采用模拟CMOS VLSI电路技术设计了一款视觉芯片。所制得的芯片为一维100像素线传感器。在该芯片中,采用采样/保持放大电路来补偿光电传感器的固定模式噪声以及统计晶体管失配。该芯片通过控制接受野的大小,模拟脊椎动物视网膜回路中的光适应机制,有效地提取给定图像的轮廓。
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