China Aero Geophysical Survey & Remote Sensing Center for Land and Resources, Beijing 100083, China.
School of Remote Sensing and Information Engineering, Wuhan University, Wuhan 430079, China.
Sensors (Basel). 2018 Jul 2;18(7):2121. doi: 10.3390/s18072121.
The evaluation of geometric accuracy of high-resolution satellite images (HRSIs) has been increasingly recognized in recent years. The traditional approach is to verify each satellite individually. It is difficult to directly compare the difference in their accuracy. In order to evaluate geometric accuracy for multiple satellite images based on the same ground control benchmark, a reliable test field in Xianning (China) was utilized for geometric accuracy validation of HRSIs. Our research team has obtained multiple HRSIs in the Xianning test field, such as SPOT-6, Pleaides, ALOS, ZY-3 and TH-1. In addition, ground control points (GCPs) were acquired with GPS by field surveying, which were used to select the significant feature area on the images. We assess the orientation accuracy of the HRSIs with the single image and stereo models. Within this study, the geometrical performance of multiple HRSIs was analyzed in detail, and the results of orientation are shown and discussed. As a result, it is feasible and necessary to establish such a geometric verification field to evaluate the geometric quality of multiple HRSIs.
近年来,高分辨率卫星图像(HRSI)的几何精度评价越来越受到重视。传统的方法是单独验证每颗卫星,难以直接比较它们的精度差异。为了基于同一地面控制基准评估多颗卫星图像的几何精度,我们在咸宁(中国)建立了一个可靠的测试场,用于验证 HRSI 的几何精度。我们的研究团队已经获得了咸宁测试场的多颗 HRSI,如 SPOT-6、Pleiades、ALOS、ZY-3 和 TH-1。此外,还通过野外测量使用 GPS 采集了地面控制点(GCP),用于在图像上选择显著特征区域。我们使用单影像和立体模型评估 HRSI 的定向精度。在本研究中,详细分析了多颗 HRSI 的几何性能,并展示和讨论了定向结果。因此,建立这样一个几何验证场来评估多颗 HRSI 的几何质量是可行且必要的。