First Assessment of Bistatic Geometric Calibration and Geolocation Accuracy of Innovative Spaceborne Synthetic Aperture Radar LuTan-1

IF 4.1 2区 地球科学 Q2 ENVIRONMENTAL SCIENCES Remote Sensing Pub Date : 2023-11-07 DOI:10.3390/rs15225280
Jingwen Mou , Yu Wang , Jun Hong , Yachao Wang , Aichun Wang , Shiyu Sun , Guikun Liu 
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Abstract

LuTan-1 (LT-1) is a bistatic synthetic aperture radar (BiSAR) system consisting of two identical L-band SAR satellites. The bistatic mode of LT-1 plays a critical role in generating high-precision digital elevation models (DEMs), which requires precise geometric calibration of initial range and azimuth times for both SARs to ensure the reliability and quality of geolocation. However, existing geometric calibration methods predominantly focus on monostatic SAR systems, with limited literature on slave SAR calibration in bistatic systems. This research addresses this gap by establishing geometric calibration models for both SARs based on signal echo history and the range–Doppler model. The geometric errors are effectively resolved using corner reflector data from Xinjiang, China. Through statistical analysis of LT-1 SAR images acquired between July and November in bistatic mode, this paper has demonstrated range delay accuracy of better than 5 ns and azimuth time accuracy of better than 0.1 ms. This level of precision translates into a positional accuracy better than 0.8 m. The proposed models have been successfully applied to geometric calibration, providing precise geolocation for LT-1, thus enhancing its utility for a wide range of Earth observation applications. This paper is the first endeavor to present the assessment of the geometric calibration and geolocation accuracy of LT-1 and discuss the results of the bistatic geometric calibration of the master and slave SARs in a BiSAR formation.
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新型星载合成孔径雷达陆天一号双基地几何定标与定位精度首次评估
LuTan-1 (LT-1)是一种双基地合成孔径雷达(BiSAR)系统,由两颗相同的l波段SAR卫星组成。LT-1的双基地模式在生成高精度数字高程模型(dem)中起着至关重要的作用,这需要对两个sar的初始距离和方位角时间进行精确的几何定标,以确保地理定位的可靠性和质量。然而,现有的几何定标方法主要集中在单基地SAR系统上,关于双基地SAR辅助定标的文献很少。本研究通过建立基于信号回波历史和距离-多普勒模型的sar几何校准模型来解决这一空白。利用新疆的角反射镜数据有效地解决了几何误差。通过对7 - 11月双基地模式下获取的LT-1 SAR图像进行统计分析,距离延迟精度优于5 ns,方位时间精度优于0.1 ms。这一精度水平转化为优于0.8米的定位精度。该模型已成功地应用于几何校准,为LT-1提供了精确的地理定位,从而提高了LT-1在广泛的地球观测应用中的实用性。本文首次对LT-1的几何定标和地理定位精度进行了评价,并对BiSAR编队中主从sar的双基地几何定标结果进行了讨论。
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来源期刊
Remote Sensing
Remote Sensing REMOTE SENSING-
CiteScore
8.30
自引率
24.00%
发文量
5435
审稿时长
20.66 days
期刊介绍: Remote Sensing (ISSN 2072-4292) publishes regular research papers, reviews, letters and communications covering all aspects of the remote sensing process, from instrument design and signal processing to the retrieval of geophysical parameters and their application in geosciences. Our aim is to encourage scientists to publish experimental, theoretical and computational results in as much detail as possible so that results can be easily reproduced. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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