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Compact real-time 2D gradient-based analog VLSI motion sensor

机译:紧凑型实时基于2D梯度的模拟VLSI运动传感器

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Abstract: In this work we present the first working focal plane analog VLSI sensor for the spatially resolved computation of the 2D motion field based on temporal and spatial derivatives. Using an adaptive CMOS photoreceptor the temporal derivative and a function of the spatial derivative of the local high intensity are computed. By multiplying these values separately for both spatial dimensions a vector is obtained, which points in the direction of the normal optical flow and whose magnitude for a given stimulus is proportional to its velocity. The circuit consists of only 31 MOSFETs and three capacitors per pixel. We present measurements data from fully functional prototype 2D pixel arrays for natural stimuli of varying velocity, orientation, contrast and spatial frequency. High direction selectivity even for very low contrast input is demonstrated. As application it is shown how the pixel-parallel architecture of the sensor can favorably be used for real-time computation of the focus of expansion and the axis of rotation. Because of its compactness, its robust operation and its uncritical handling the sensor might be favorably applied in industrial applications. !19
机译:摘要:在这项工作中,我们提出了第一个工作焦平面模拟VLSI传感器,用于基于时间和空间导数对二维运动场进行空间分辨计算。使用自适应CMOS感光器,可以计算出局部高强度的时间导数和空间导数的函数。通过将两个空间尺寸的这些值分别相乘,可以得到一个向量,该向量指向法向光流的方向,并且给定刺激的大小与其速度成正比。该电路每个像素仅包含31个MOSFET和三个电容器。我们提出了来自功能齐全的原型2D像素阵列的测量数据,用于变化速度,方向,对比度和空间频率的自然刺激。甚至在对比度非常低的情况下,也显示出高方向选择性。作为应用,示出了如何将传感器的像素平行结构有利地用于扩展焦点和旋转轴的实时计算。由于它的紧凑性,坚固的操作和不苛刻的操作方式,传感器可能会在工业应用中得到很好的应用。 !19

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