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Bioinspired Focal-Plane Polarization Image Sensor Design: From Application to Implementation

机译:受生物启发的焦平面偏振图像传感器设计:从应用到实施

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In this paper, a bioinspired monolithic complementary metal–oxide–semiconductor (CMOS) polarization image sensor is described as a solution to real-time polarization image capture. Metallic wire-grid gratings are integrated onto standard CMOS image sensor arrays with different orientations. A numerical analysis is performed to guide the design of the wire-grid arrays. Experimental results from different CMOS processing units are compared. A current-mode polarization processing unit is designed, fabricated, and tested in order to perform the extraction of the polarization characteristics from the captured intensities. This paper illustrates how polarization image processing can be used to monitor live cells. Several polarization processing methods with different computational complexity and data requirements have been applied and compared.
机译:在本文中,以生物启发的单片互补金属-氧化物-半导体(CMOS)偏振图像传感器为例,描述了实时偏振图像捕获的解决方案。金属线栅被集成到具有不同方向的标准CMOS图像传感器阵列上。进行数值分析以指导线栅阵列的设计。比较了来自不同CMOS处理单元的实验结果。设计,制造和测试电流模式极化处理单元,以便从捕获的强度中提取极化特性。本文说明了极化图像处理如何用于监视活细胞。并比较了几种计算复杂度和数据要求不同的极化处理方法。

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