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用于定向偏振相机的星载面阵CCD非均匀性校准方法

Non-uniformity calibration method of space-borne area CCD for directional polarimetric camera.

作者信息

Yao Pingping, Tu Bihai, Xu Sunlong, Yu Xinyu, Xu Zhilong, Luo Donggen, Hong Jin

出版信息

Opt Express. 2021 Feb 1;29(3):3309-3326. doi: 10.1364/OE.410768.

Abstract

The directional polarimetric camera (DPC) is a polarization sensor with the characteristics of ultra-wide-angle and low-distortion imaging. The multi-angle polarization information is helpful to obtain the spatial distribution of target radiation, and multiple data fusion relies on the non-uniformity calibration of image plane. The non-uniformity consists of many factors such as lens, detector assembly, spatial stray light, etc. The single correction method can not distinguish the error source effectively. In consideration of the in-flight operation mode of DPC based on the adjustment of exposure time, the non-uniformity correction method of the detector based on multi parameters is proposed. Through the electro-optical performance measurement system of the CCD detector, the sensitive factors such as temperature, dark current, exposure time and spectral response are obtained. After a series of preprocessing of the image including removal of dark signal, removal of smearing effect and temperature compensation, the non-uniformity calibration based on multi-parameters is imposed on the detector. The low-frequency unbalanced response difference of the image surface is eliminated, and the high-frequency difference is effectively suppressed. The experimental results show that the photo response non-uniformity of 95% full well single frame data is reduced from 2.86% to 0.36%. After correction, the data noise is shown as shot noise, and the detector has good ability of dynamic range adjustment. The non-uniformity calibration by the proposed method can offer data support for the instrumental calibration and in-flight fast calculation, and provide effective reference for the subsequent polarization remote sensing instruments.

摘要

定向偏振相机(DPC)是一种具有超广角和低畸变成像特性的偏振传感器。多角度偏振信息有助于获取目标辐射的空间分布,而多数据融合依赖于像面的非均匀性校准。非均匀性由镜头、探测器组件、空间杂散光等多种因素组成。单一的校正方法无法有效区分误差源。考虑到基于曝光时间调整的DPC飞行工作模式,提出了基于多参数的探测器非均匀性校正方法。通过CCD探测器的电光性能测量系统,获取了温度、暗电流、曝光时间和光谱响应等敏感因素。在对图像进行包括去除暗信号、去除拖影效应和温度补偿等一系列预处理后对探测器进行基于多参数的非均匀性校准。消除了图像表面的低频不平衡响应差异,有效抑制了高频差异。实验结果表明,95%满阱单帧数据的光响应非均匀性从2.86%降低到0.36%。校正后,数据噪声表现为散粒噪声,探测器具有良好的动态范围调整能力。所提方法的非均匀性校准可为仪器校准和飞行快速计算提供数据支持,并为后续偏振遥感仪器提供有效参考。

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