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Radiometric calibration of tempospatially modulated polarization interference imaging spectrometer

机译:时空调制偏振干涉成像光谱仪的辐射定标

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The tempospatially modulated polarization interference imaging spectrometer (TSMPIIS) nominated by the Ministry of Scence and Technology, takes part in the " Eleventh Five-Year National Science and Technology Exhibition." In order to improve the detecting precision of the TSMPIIS, its radiometric calibration scheme is proposed on the basis of the solar simulator, integrating sphere, monochromator, and spectroradiometer. Under the conditions of changing the exposure time and radiant brightness, the CCD linear responses for the TSMPIIS were first tested to validate the reliability of the radiometric calibration performed with a linear response model, and the linear errors were less than 0.15% and 1.15%, respectively. A novel method is put forward to calibrate the nonuniformity of CCD pixels, and the least squares method can commendably correct the uneven effect in the spatial direction. Besides, the absolute radiometric calibration establishes a corresponding relation between the dimensionless intensity output from the TSMPIIS and the target radiant brightness. The study lays the foundation for the engineering application of the TSMPIIS, such as remote sensing detection, and has an important significance for the development of our instrument and equipment technology with independent intellectual property rights. (C) 2016 Optical Society of America.
机译:由科学技术部提名的时空调制偏振干涉成像光谱仪(TSMPIIS)参加了“十一五全国科学技术展览会”。为了提高TSMPIIS的探测精度,在太阳模拟器,积分球,单色仪和光谱仪的基础上提出了辐射定标方案。在改变曝光时间和辐射亮度的条件下,首先测试了TSMPIIS的CCD线性响应,以验证使用线性响应模型执行的辐射校准的可靠性,并且线性误差分别小于0.15%和1.15%,分别。提出了一种校正CCD像素不均匀性的新方法,最小二乘法可以很好地校正空间方向上的不均匀效果。此外,绝对辐射定标建立了从TSMPIIS输出的无量纲强度与目标辐射亮度之间的对应关系。该研究为TSMPIIS的遥感检测等工程应用奠定了基础,对发展我国具有自主知识产权的仪器设备技术具有重要意义。 (C)2016年美国眼镜学会。

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