Li Lu, Zhang Fengli, Shao Yun, Wei Qiufang, Huang Qiqi, Jiao Yanan
Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100101, China.
College of Resources and Environment, University of Chinese Academy of Sciences, Beijing 100049, China.
Sensors (Basel). 2022 Jan 1;22(1):320. doi: 10.3390/s22010320.
To verify the performance of the high-resolution fully polarimetric synthetic aperture radar (SAR) sensor carried by the Xinzhou 60 remote-sensing aircraft, we used corner reflectors to calibrate the acquired data. The target mechanism in high-resolution SAR images is more complex than it is in low-resolution SAR images, the impact of the point target pointing error on the calibration results is more obvious, and the target echo signal of high-resolution images is more easily affected by speckle noise; thus, more accurate extraction of the point target position and the response energy is required. To solve this problem, this paper introduces image context information and proposes a method to precisely determine the integration region of the corner reflector using sliding windows based on the integral method. The validation indicates that the fully polarimetric SAR sensor on the Xinzhou 60 remote-sensing aircraft can accurately reflect the radiometric characteristics of the ground features and that the integral method can obtain more stable results than the peak method. The sliding window allows the position of the point target to be determined more accurately, and the response energy extracted from the image via the integral method is closer to the theoretical value, which means that the high-resolution SAR system can achieve a higher radiometric calibration accuracy. Additionally, cross-validation reveals that the airborne SAR images have similar quality levels to Sentinel-1A and Gaofen-3 images.
为验证新舟60遥感飞机搭载的高分辨率全极化合成孔径雷达(SAR)传感器的性能,我们使用角反射器对采集的数据进行校准。高分辨率SAR图像中的目标机制比低分辨率SAR图像中的更复杂,点目标指向误差对校准结果的影响更明显,且高分辨率图像的目标回波信号更容易受到斑点噪声的影响;因此,需要更精确地提取点目标位置和响应能量。为解决这一问题,本文引入图像上下文信息,并提出一种基于积分法的滑动窗口精确确定角反射器积分区域的方法。验证表明,新舟60遥感飞机上的全极化SAR传感器能够准确反映地物的辐射特性,且积分法比峰值法能获得更稳定 的结果。滑动窗口可更精确地确定点目标的位置,通过积分法从图像中提取的响应能量更接近理论值,这意味着高分辨率SAR系统可实现更高的辐射校准精度。此外,交叉验证表明,机载SAR图像的质量水平与哨兵1A和高分3号图像相似。