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定向偏振相机的偏振测量精度分析及改进方法

Polarization measurement accuracy analysis and improvement methods for the directional polarimetric camera.

作者信息

Huang Chan, Chang Yuyang, Xiang Guangfeng, Han Lin, Chen Feinan, Luo Donggen, Li Shuang, Sun Liang, Tu Bihai, Meng Binghuan, Hong Jin

出版信息

Opt Express. 2020 Dec 21;28(26):38638-38666. doi: 10.1364/OE.405834.

Abstract

The directional polarimetric camera (DPC) is a remote-sensing instrument for the characterization of atmospheric aerosols and clouds by simultaneously conducting spectral, angular, and polarimetric measurements. Polarization measurement accuracy is an important index to evaluate the performance of the DPC and mainly related to the calibration accuracy of instrumental parameters. In this paper, firstly, the relationship between the polarization measurement accuracy of DPC and the parameter calibration errors caused by the nonideality of the components of DPC are analyzed, and the maximum polarization measurement error of DPC in the central field of view and edge field of view after initial calibration is evaluated respectively. Secondly, on the basis of the radiometric calibration of the DPC onboard the GaoFen-5 satellite in an early companion paper [Opt. Express2813187 (2020)10.1364/OE.391078], a series of simple and practical methods are proposed to improve the calibration accuracy of the parameters-the diattenuation of the optics, absolute azimuth angle, and relative transmission corresponding to each pixel, thereby improving the polarization measurement accuracy of DPC. The calibration results show that, compared with the original methods, the accuracy of the diattenuation of the optics, relative azimuth angle, and relative transmission of three polarized channels obtained with the improved methods are improved from ±1%, 0.1 degree and ±2% to ±0.4%, 0.05 degree and ±0.2%, respectively. Finally, two verification experiments based on a non-polarized radiation source and a polarizing system were carried out in the laboratory respectively to verify the improvement of the parameters modified by the proposed methods on the polarization measurement accuracy of the DPC to be boarding the GaoFen-5 (02) satellite. The experimental results show that when the corrected parameters were employed, the average error in measuring the degree of linear polarization of non-polarized light source for all pixels in the three polarized bands and the maximum deviation of the degree of linear polarization between the values set by the polarizing system and the values measured by the DPC at several different field of view angles for each polarized spectral band are obviously reduced. Both the mean absolute errors and the root mean square errors of the degree of linear polarization obtained with the corrected parameters are much lower than those obtained with the original parameters. All of these prove the effectiveness of the proposed methods.

摘要

定向偏振相机(DPC)是一种遥感仪器,通过同时进行光谱、角度和偏振测量来表征大气气溶胶和云层。偏振测量精度是评估DPC性能的一个重要指标,主要与仪器参数的校准精度有关。本文首先分析了DPC的偏振测量精度与DPC各组件非理想性导致的参数校准误差之间的关系,并分别评估了初始校准后DPC在中心视场和边缘视场的最大偏振测量误差。其次,在早期的一篇相关论文[Opt. Express 28, 13187 (2020) 10.1364/OE.391078]中对高分五号卫星上搭载的DPC进行辐射定标的基础上,提出了一系列简单实用的方法来提高参数的校准精度,即光学元件的二向色性、绝对方位角以及每个像素对应的相对透射率,从而提高DPC的偏振测量精度。校准结果表明,与原方法相比,改进方法得到的三个偏振通道的光学元件二向色性、相对方位角和相对透射率的精度分别从±1%、0.1度和±2%提高到了±0.4%、0.05度和±0.2%。最后,分别在实验室中基于非偏振辐射源和偏振系统进行了两个验证实验,以验证所提方法修正后的参数对即将搭载高分五号(02)卫星的DPC偏振测量精度的提升效果。实验结果表明,采用校正后的参数时;三个偏振波段中所有像素测量非偏振光源线性偏振度的平均误差以及每个偏振光谱带在几个不同视场角下偏振系统设定值与DPC测量值之间的线性偏振度最大偏差均明显减小。使用校正参数得到的线性偏振度的平均绝对误差和均方根误差均远低于使用原始参数得到的值。所有这些都证明了所提方法的有效性。

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