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Non-linear statistical photocalibration of photodetectors without calibrated light sources

机译:无校准光源的光电探测器的非线性统计光学算法

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摘要

Calibration of CCD arrays is commonly conducted using dark frames. Non-absolute calibration techniques only measure the relative response of the detectors. For absolute calibration to be achieved, a second calibration is sometimes utilized by looking at sources with known radiances. A process like this can be used to calibrate photodetectors if a calibration source is available and sensor time can be spared to perform the operation. A previous attempt at creating a procedure for calibrating a photodetector using the underlying Poisson nature of the photodetection statistics relied on a linear model. This effort produced the statistically applied non-uniformity calibration algorithm, which demonstrated an ability to relate the measured signal with the true radiance of the source. Reliance on a completely linear model does not allow for non-linear behaviors to be described, thus potentially producing poor photocalibration over large dynamic ranges. In this paper, a photocalibration procedure is defined that requires only first and second moments of the measurements and allows the response to be modeled using a non-linear function over the dynamic range of the detector. The technique is applied to image data containing a light source measured with different integration times showing that the non-linear technique achieves significant improvement over the linear model over a large dynamic range.
机译:CCD阵列的校准通常使用暗框架进行。非绝对校准技术仅测量探测器的相对响应。对于要实现的绝对校准,有时通过用已知的辐射来源使用第二校准。如果校准源可用并且可以施加传感器时间以执行操作,则可以使用这样的过程来校准光电探测器。使用光电统计的底层泊松性质依赖于线性模型来创建用于校准光电探测器的过程的先前尝试。这项努力产生了统计上施加的非均匀性校准算法,其展示了将测量信号与源的真实辐射相关的能力。依赖于完全线性模型不允许描述的非线性行为,因此可能在大型动态范围内产生差的光电串。在本文中,定义了一种光电串算法,其仅需要测量的第一和第二矩,并且允许使用在检测器的动态范围内使用非线性函数进行建模的响应。该技术应用于包含用不同积分时间测量的光源的图像数据,示出非线性技术在大动态范围内通过线性模型实现显着改善。

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    《Applied optics》 |2020年第9期|共9页
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  • 正文语种 eng
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