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Design of CMOS-APS circuits for mixed image processing and analysis of their transfer characteristics

机译:用于混合图像处理的CMOS-APS电路设计及其传输特性分析

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摘要

CMOS APS Active Pixel Sensors (APS) are very important among others because of their possible technical innovations leading to ultra-low power image acquisition or efficient on-chip image preprocessing. The design of the novel CMOS APS imagers with focal plane parallel image preprocessing is presented in the first part of the paper. The general principle of analog interpixel subtraction is described. The edge detection algorithm for analog realization and patented focal plane circuits for analog image preprocessing (signals subtraction, addition, and edge detection) are described. Implementation of the image processing tasks (focal plane preprocessing and subsequent image processing) can be done effectively only with the consideration of known transfer characteristics of the imager itself. In the second part of the paper we present analysis of those characteristics. Geometrical Point Spread Function (PSF) depends on the certain geometric shape of active area in the particular design of CMOS APS. In this paper the concept of Modulation Transfer Function (MTF) analysis is generalized to be applicable to the sampled structures of CMOS APS. Recalling theoretical results we have analytically derived the detector MTF in the closed form for some special active area shapes.
机译:CMOS APS有源像素传感器(APS)在其他方面非常重要,因为其可能的技术创新可导致超低功耗图像采集或高效的片上图像预处理。本文的第一部分介绍了采用焦平面平行图像预处理的新型CMOS APS成像器的设计。描述了模拟像素间减法的一般原理。描述了用于模拟实现的边缘检测算法和用于模拟图像预处理(信号减法,加法和边缘检测)的专利焦平面电路。仅考虑成像器本身的已知传输特性,才能有效地完成图像处理任务(焦平面预处理和后续图像处理)的实现。在本文的第二部分,我们对这些特征进行了分析。几何点扩散函数(PSF)取决于CMOS APS特定设计中有效区域的某些几何形状。本文对调制传递函数(MTF)分析的概念进行了概括,以适用于CMOS APS的采样结构。回顾理论结果,我们已经针对某些特殊的活动区域形状以封闭形式分析性地得出了探测器MTF。

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