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Real-time motion detection using an analog VLSI zero-crossing chip

机译:使用模拟VLSI过零芯片进行实时运动检测

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Abstract: The authors have designed and tested a one-dimensional 64 pixel, analog CMOS VLSI chip which localizes intensity edges in real-time. This device exploits on-chip photoreceptors and the natural filtering properties of resistive networks to implement a scheme similar to and motivated by the Difference of Gaussians (DOG) operator proposed by Marr and Hildreth (1980). The chip computes the zero-crossings associated with the difference of two exponential weighting functions and reports only those zero-crossings at which the derivative is above an adjustable threshold. A real-time motion detection system based on the zero- crossing chip and a conventional microprocessor provides linear velocity output over two orders of magnitude of light intensity and target velocity.!
机译:摘要:作者设计并测试了一种实时定位强度边缘的一维64像素模拟CMOS VLSI芯片。该器件利用片上感光器和电阻网络的自然滤波特性来实现类似于Marr和Hildreth(1980)提出的高斯差分(DOG)算子并由其推动的方案。芯片计算与两个指数加权函数之差相关的零交叉,并仅报告导数高于可调阈值的那些零交叉。基于过零芯片和常规微处理器的实时运动检测系统可在光强度和目标速度两个数量级上提供线速度输出。

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