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Sub-pixel accuracy evaluation of FY-3D MERSI-2 geolocation based on OLI reference imagery

机译:基于OLI参考图像的FY-3D MERSI-2地理定位子像素精度评估

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摘要

The geolocation quality of satellite observation datasets is causally related to the credibility of operational products. The twice-daily global Earth observations provided by FY-3D/MERSI-2 (FengYun-3D/MEdium Resolution Spectral Imager II) have been used to generate various remote sensing application products, but their geolocation performance has not yet been documented, while the comprehensive analysis of geometric accuracy provides important guidance for improving geolocation accuracy and data application in the future. In this paper, a combination of phase-only correlation and anomaly isolation techniques was used to design a robust algorithm of sub-pixel geolocation displacement detection for MERSI-2 data with 1 km spatial resolution. Utilizing MERSI-2 data from three typical regions and monthly Landsat 8 OLI (Operational Land Imager) data synthesized by Google Earth Engine (GEE), an exhaustive presentation of how the developed method quantifies the geometric displacements of the Level 1 dataset to along-track and cross-track directions is described, ultimately revealing the deterioration of MERSI-2 on-orbit geolocation performance. During the 17 months of official operational products, the geolocation error increases by a factor of 1.13 in along-track direction and 1.56 in cross-track direction. But approximately 70% of the geometric displacements remain within +/- 300 m in both along-track and cross-track directions, while about 92% are within +/- 500 m. This method reliably ascertains that the geolocation accuracy of MERSI-2 matches within 1/2 Instantaneous Field of View (IFOV).
机译:卫星观察数据集的地理位置质量与操作产品的可信度有关。由FY-3D / MERSI-2(Fengyun-3D /中分辨率光谱成像器II)提供的两次全球地球观测已经用于产生各种遥感应用产品,但它们的地理位置性能尚未记录,而且几何精度综合分析为提高未来地理定位准确性和数据应用提供了重要指导。在本文中,使用相位相关和异常隔离技术的组合来设计一种具有1km空间分辨率的MERSI-2数据的子像素地理位置位移检测的稳健算法。利用来自三个典型地区的MERSI-2数据和由Google地球发动机(GEE)合成的每月LANDSAT 8 OLI(运营陆地成像器)数据,详尽演示了开发方法如何定量级别1数据集的几何位移到轨道描述了交叉轨道方向,最终揭示了MERSI-2在轨道地理位置性能的恶化。在官方运营产品的17个月期间,地理定位误差沿轨道方向沿轨道方向增大1.13,交叉轨道方向1.56。但大约70%的几何位移仍然在轨道和交叉轨道方向上留在+/- 300米内,而大约92%在+/- 500米范围内。该方法可靠地确定MERSI-2在1/2内部视野(IFOV)内的MERSI-2匹配的地理位置准确性。

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  • 来源
    《International journal of remote sensing》 |2021年第20期|7215-7238|共24页
  • 作者单位

    Nanjing Univ Aeronaut & Astronaut Coll Astronaut Nanjing 211106 Jiangsu Peoples R China;

    Nanjing Univ Aeronaut & Astronaut Coll Astronaut Nanjing 211106 Jiangsu Peoples R China;

    China Meteorol Adm Key Lab Radiometr Calibrat & Validat Environm Sat Beijing Peoples R China|China Meteorol Adm Natl Satellite Meteorol Ctr Beijing 100081 Peoples R China;

    Nanjing Joint Inst Atmospher Sci Nanjing Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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