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Compact Analog Temporal Edge Detector Circuit With Programmable Adaptive Threshold for Neuromorphic Vision Sensors

机译:用于神经形态视觉传感器的具有可编程自适应阈值的紧凑型模拟时间边缘检测器电路

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This paper presents a low-power compact analog circuit for processing time varying signals. The proposed circuit implements temporal differentiation, amplification and rectification, i.e., separation of outputs into on and off pathways. It is based on a hysteretic differentiator circuit, commonly used in neuromorphic vision sensors to implement temporal edge detection. This paper presents a thorough analysis of the original circuit and identifies the source of the problems and limitations it has for processing real-world sensory signals. The steps required to solve this problem are presented as well as an extended circuit with tunable gain and adaptable threshold that allows thresholding of small temporal changes (noise) and high-pass filtering of large temporal changes. The new circuit proposed is particularly suited for focal plane implementation of both gradient based and token based motion algorithms that require robust detection of temporal discontinuities. The circuit has been designed and successfully integrated into a 64 × 1 test prototype motion chip, fabricated in standard 350 nm CMOS technology. The paper provides extensive experimental characterization results.
机译:本文提出了一种用于处理时变信号的低功耗紧凑型模拟电路。所提出的电路实现了时间上的微分,放大和整流,即,将输出分成开和关路径。它基于迟滞微分电路,通常在神经形态视觉传感器中用于实现时间边缘检测。本文对原始电路进行了全面的分析,并确定了处理现实感官信号时存在的问题和局限性。提出了解决此问题所需的步骤,以及具有可调增益和自适应阈值的扩展电路,该电路允许对较小的时间变化(噪声)进行阈值化,并对较大的时间变化进行高通滤波。提出的新电路特别适合于需要对时间不连续性进行鲁棒检测的基于梯度和基于令牌的运动算法的焦平面实现。该电路已被设计并成功集成到采用标准350 nm CMOS技术制造的64×1测试原型运动芯片中。本文提供了广泛的实验表征结果。

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