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Scanning Modulation Transfer Function Model of TDI CMOS Image Sensor

机译:TDI CMOS图像传感器的扫描调制传递函数模型

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摘要

An analytical model of Modulation Transfer Function (MTF) for Time-Delay-Integration CMOS Image Sensor (TDI-CIS) in the scanning direction is proposed. Impacts of pixel valid sensitive ratio, scanning efficiency, velocity mismatch ratio and TDI stage on MTF are studied based on the analysis of TDI-CMOS temporal oversampling rolling-shutter readout timing principle. By establishing a TDI-CIS imaging-simulation system according to geometric perspective and light transmission relationship from continuous known objects to a discrete image on the pixel plane, simulations of TDI-CIS imaging process under different circumstances are carried out. Then knife-edge method is used to calculate MTF of the TDI image. The simulation results show that MTF is inversely proportional to valid sensitive ratio and scanning efficiency. MTF keeps steady when velocity mismatch ratio is 0, and it decreases with the increase of TDI stage when velocity mismatch ratios are non-zero values. At the same time, the tendency that the MTF decreases with the increase of velocity mismatch ratio is getting more obvious when TDI stage increases. MTF at a specific frequency can even drop to almost 0 when the velocity mismatch ratio increases to 30 % and the number of TDI stages is 16.
机译:提出了一种时延积分CMOS图像传感器(TDI-CIS)在扫描方向上的调制传递函数(MTF)分析模型。在分析TDI-CMOS时间过采样滚动快门读出时序原理的基础上,研究了像素有效灵敏度,扫描效率,速度失配率和TDI阶段对MTF的影响。通过根据几何连续性和从连续已知物体到像素平面上离散图像的光透射关系建立TDI-CIS成像模拟系统,对不同情况下的TDI-CIS成像过程进行了模拟。然后使用刀口法计算TDI图像的MTF。仿真结果表明,MTF与有效灵敏度比和扫描效率成反比。速度失配比为0时,MTF保持稳定;速度失配比为非零值时,MTF随TDI级的增加而减小。同时,随着TDI级数的增加,MTF随速度失配率的增加而减小的趋势越来越明显。当速度失配比增加到30%并且TDI级数为16时,特定频率下的MTF甚至可以降至几乎为0。

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