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Signal processing for low-light-level high-precision CCD imaging

机译:弱光高精度CCD成像的信号处理

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Abstract: CCD signal-processing schemes attempt to reduce the effect of KTC, 1/f, and broadband noise on the output signal. A number of schemes have been reported over the years. These schemes employ time delay and subtraction to eliminate KTC noise and attenuate 1/f noise. They also include a low-pass function to reduce the effect of broadband noise. Signal processing schemes include dual-slope integration, double-correlated sampling, a variation of double-correlated sampling referred to in this paper as 'switched exponential filtering,' and transverse filters. Transfer functions for signal and noise are presented for each of these schemes. Performance comparisons are given with emphasis on their applicability to relatively high-speed CCD readout applications (readout rates of 1 megapixel per second and faster). Recent technology has produced CCDs with high-output gains in terms of volts per electron. Such devices feature very small output gate capacitance and hence, reduced KTC noise. Signal processing that does not use delay and subtraction to eliminate KTC noise is discussed. Again, the emphasis is on applicability to relatively high-speed readout. !
机译:摘要:CCD信号处理方案试图减少KTC,1 / f和宽带噪声对输出信号的影响。这些年来,已经报道了许多方案。这些方案采用时间延迟和减法来消除KTC噪声并衰减1 / f噪声。它们还包括低通功能,以减少宽带噪声的影响。信号处理方案包括双斜率积分,双相关采样,双相关采样的变体(在本文中称为“开关指数滤波”)和横向滤波器。针对这些方案中的每一个都提供了信号和噪声的传递函数。性能比较的重点是它们在相对高速CCD读取应用中的适用性(每秒1兆像素和更快的读取速率)。最近的技术已经产生了以每电子伏特为单位的具有高输出增益的CCD。这样的器件具有非常小的输出栅极电容,因此可降低KTC噪声。讨论了不使用延迟和减法来消除KTC噪声的信号处理。同样,重点在于适用于相对高速的读数。 !

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