中国空间科学技术 ›› 2025, Vol. 45 ›› Issue (4): 123-130.doi: 10.16708/j.cnki.1000-758X.2025.0064

• 论文 • 上一篇    下一篇

陆地探测四号01星合成孔径雷达载荷设计与实现

李光廷*,谭小敏,李财品,聂世康,林晨晨,朱雅琳,刘波   

  1. 西安空间无线电技术研究所,西安710100
  • 收稿日期:2024-02-18 修回日期:2024-08-30 录用日期:2024-09-03 发布日期:2025-07-22 出版日期:2025-08-01

The load design and implementation of LT-4 space-borne SAR

LI Guangting*,TAN Xiaomin, LI Caipin,NIE Shikang,LIN Chenchen, ZHU Yalin,LIU Bo   

  1. Xi'an Institute of Space Radio Technology,Xi'an 710100, China
  • Received:2024-02-18 Revision received:2024-08-30 Accepted:2024-09-03 Online:2025-07-22 Published:2025-08-01

摘要: 为了满足国家防灾减灾对SAR系统高重访宽覆盖的要求,设计并研制了世界首颗地球同步轨道SAR卫星-陆地探测四号01星(LT-4)。该卫星采用环形可展形反射面天线加相控阵馈源体制,工作于L频段,轨道的特殊性使该卫星天然具备了高重访宽覆盖的特点。为了对陆地探测四号01星SAR载荷系统进行全面介绍,首先对高轨SAR区别于低轨SAR的特点进行了说明,并给出了SAR载荷的关键性能参数;然后介绍了SAR载荷成像工作过程,阐述了SAR载荷关键设备的主要功能性能;最后对十余年的载荷研制历程进行了简述,并给出了载荷集成测试项目与试验验证情况。SAR载荷首次开机成像即得到世界首幅高轨SAR图像,图像信息丰富,载荷在轨状态稳定。成像结果表明陆地探测四号01星SAR载荷设计合理,地面测试与验证充分,可以为国灾防灾减灾提供有利的信息支持。

关键词: 陆地探测四号, 地球同步轨道, 载荷, 集成测试

Abstract:

In order to meet the requirement of high revisit and wide coverage of SAR system for national disaster prevention and reduction, the world’s first geosynchronous orbit SAR named Land Exploration 4rd(LT-4) was designed and developed. The satellite uses a ring-shaped reflector antenna and combined with phased array feed system, operating at L-band. The particularity of the orbit makes the satellite naturally have the characteristics of high revisit and wide coverage. In order to give a comprehensive description of the SAR payload system of LT-4, the characteristics of high orbit SAR which are different from low orbit SAR are described, and the key performance parameters of SAR payload are given. Then the working process of SAR payload is introduced, and the main functions and performance of the key equipment of SAR payload are expounded. At last, the history of load development for more than ten years is briefly described, and the load integration test items and test verification are given. The world's first high-orbit SAR image is obtained when the SAR payload works for the first time on orbit. The image information is rich and the payload’s on-orbit state is stable. The imaging results show that the SAR payload design is reasonable and the ground test and verification are sufficient, which can provide favorable information support for national disaster prevention and reduction.

Key words: LT-4, geostationary orbit, load design, integration testing