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Angular Light Polarization and Stokes Parameters Information in a Hybrid Image Sensor with Division of Focal Plane

机译:焦平面划分的混合图像传感器中的角光偏振和斯托克斯参数信息

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摘要

Targeting 3D image reconstruction and depth sensing, a desirable feature for complementary metal oxide semiconductor (CMOS) image sensors is the ability to detect local light incident angle and the light polarization. In the last years, advances in the CMOS technologies have enabled dedicated circuits to determine these parameters in an image sensor. However, due to the great number of pixels required in a cluster to enable such functionality, implementing such features in regular CMOS imagers is still not viable. The current state-of-the-art solutions require eight pixels in a cluster to detect local light intensity, incident angle and polarization. The technique to detect local incident angle is widely exploited in the literature, and the authors have shown in previous works that it is possible to perform the job with a cluster of only four pixels. In this work, the authors explore three novelties: a mean to determine three of four Stokes parameters, the new paradigm in polarization cluster-pixel design, and the extended ability to detect both the local light angle and intensity. The features of the proposed pixel cluster are demonstrated through simulation program with integrated circuit emphasis (SPICE) of the regular Quadrature Pixel Cluster and Polarization Pixel Cluster models, the results of which are compliant with experimental results presented in the literature.
机译:瞄准3D图像重建和深度感应,互补金属氧化物半导体(CMOS)图像传感器的一项理想功能是能够检测局部光入射角和光偏振。近年来,CMOS技术的进步使专用电路能够确定图像传感器中的这些参数。但是,由于群集中启用此类功能所需的大量像素,因此在常规CMOS成像器中实现此类功能仍然不可行。当前的最新解决方案需要一个群集中的八个像素来检测局部光强度,入射角和偏振。在文献中,检测局部入射角的技术得到了广泛的利用,作者在以前的工作中已经表明,仅用四个像素的簇就可以完成这项工作。在这项工作中,作者探索了三种新颖性:确定四个Stokes参数中的三个的均值,偏振簇像素设计中的新范例以及检测局部光角度和强度的扩展功能。拟议的像素簇的功能通过常规的正交像素簇和偏振像素簇模型的集成电路重点(SPICE)仿真程序进行演示,其结果与文献中提供的实验结果相符。

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