A Promising Distributed Position and Orientation System with Flexible Baseline for Array SAR Applications

Yanhong Liu, X. Ning, Jianli Li, Wen Ye, Chunyu Qu
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Abstract

Array Synthetic Aperture Radar (SAR), Interferometric Synthetic Aperture Radar (InSAR) and multi-task imaging sensors are the most attractive development directions in the field of high resolution earth observation. Distributed Position and Orientation System (DPOS) can measure accurately multi-node motion information with transfer alignment, which further advances efficiency and quality of imaging sensors. In practical case, influenced by external disturbance, the performance of transfer alignment is restricted by flexible deformation between master system and slave system. Aiming at this problem, this paper proposes a promising DPOS with flexible baseline. The flexible deformation between master system and slave system is obtained by vision measurement system. The high-precision motion parameters of the master system compensated by flexible deformation are provided for each slave system as reference, and transfer alignment with position-velocity-attitude matching is applied.
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一种具有柔性基线的阵列SAR分布式定位系统
阵列合成孔径雷达(SAR)、干涉合成孔径雷达(InSAR)和多任务成像传感器是高分辨率对地观测领域最具吸引力的发展方向。分布式位置和姿态系统(DPOS)可以通过传递对准精确测量多节点的运动信息,进一步提高了成像传感器的效率和质量。在实际情况中,受外界扰动的影响,传递对准的性能受到主从系统之间柔性变形的制约。针对这一问题,本文提出了一种具有柔性基线的DPOS。通过视觉测量系统获得主系统与从系统之间的柔性变形量。将主系统经柔性变形补偿后的高精度运动参数提供给各从系统作为参考,采用位置-速度-姿态匹配的传递对准方法。
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