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A CMOS focal-plane motion sensor with BJT-based retinal smoothing network and modified correlation-based algorithm

机译:具有基于BJT的视网膜平滑网络和改进的基于相关算法的CMOS焦平面运动传感器

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This work presents and implements a CMOS real-time focal-plane motion sensor intended to detect the global motion, using the bipolar junction transistor (BJT)-based retinal smoothing network and the modified correlation-based algorithm. In the proposed design, the BJT-based retinal photoreceptor and smoothing network are adopted to acquire images and enhance the contrast of an image while the modified correlation-based algorithm is used in signal processing to determine the velocity and direction of the incident image. The deviations of the calculated velocity and direction for different image patterns are greatly reduced by averaging the correlated output over 16 frame-sampling periods. The proposed motion sensor includes a 32×32 pixel array with a pixel size of 100×100 Μm2. The fill factor is 11.6% and the total chip area is 4200×4000 Μm2. The DC power consumption is 120 mW at 5 V in the dark. Experimental results have successfully confirmed that the proposed motion sensor can work with different incident images and detect a velocity between 1 pixel/s and 140,000 pixels/s via controlling the frame-sampling period. The minimum detectable displacement in a frame-sampling period is 5 Μm. Consequently, the proposed high-performance new motion sensor can be applied to many real-time motion detection systems.
机译:这项工作提出并实现了一个CMOS实时焦平面运动传感器,该传感器旨在使用基于双极结晶体管(BJT)的视网膜平滑网络和改进的基于相关性的算法来检测全局运动。在提出的设计中,采用基于BJT的视网膜感光器和平滑网络来获取图像并增强图像的对比度,同时将改进的基于相关性的算法用于信号处理以确定入射图像的速度和方向。通过对16个帧采样周期内的相关输出求平均,可以大大减少针对不同图像模式计算出的速度和方向的偏差。提出的运动传感器包括具有100×100Mm2的像素大小的32×32像素阵列。填充率为11.6%,总芯片面积为4200×4000Μm2。在黑暗中5 V时的DC功耗为120 mW。实验结果已成功证实,所提出的运动传感器可以处理不同的入射图像,并通过控制帧采样周期来检测1像素/ s至140,000像素/ s的速度。帧采样期间的最小可检测位移为5微米。因此,所提出的高性能新型运动传感器可以应用于许多实时运动检测系统。

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