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An Elementary Neuro-Morphic Circuit for Visual Motion Detection with Single-Electron Devices Based on Correlation Neural Networks

机译:基于相关神经网络的单电子设备视觉运动检测的基本神经形态电路

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摘要

This paper proposes a bio-inspired single-electron circuit for detecting motion in projected images. Motion detection is a primary task performed in the retina as part of early vision processing. Based on motion detection models: the correlation model and spatiotemporal gradient model, a number of motion detecting circuits have been proposed and implemented with CMOS mediums. In this paper, based on the correlation model, we propose a possible single-electron circuit configuration that can detect motion in incident images, and demonstrate its basic performance with a one-dimensional construction. Through Monte-Carlo based computer simulations, we confirmed that this construction can compute motion in projected images.
机译:本文提出了一种生物启发的单电子电路,用于检测投影图像中的运动。运动检测是在视网膜中执行的主要任务,是早期视力处理的一部分。基于运动检测模型:相关模型和时空梯度模型,提出了许多运动检测电路,并采用CMOS介质实现。在本文中,基于相关模型,我们提出了一种可能的单电子电路配置,它可以检测入射图像中的运动,并通过一维结构展示其基本性能。通过基于蒙特卡洛的计算机仿真,我们证实了这种构造可以计算投影图像中的运动。

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