Analysis of Quadratic Phase Error Introduced by Orbit Determination in Spaceborne Trinodal Pendulum Sar Formation Real-Time Imaging with Monte Carlo Simulation

Xiaoyu Yan, Jie Chen, H. Nies, H. Zeng, O. Loffeld
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Abstract

Real-time imaging products using Spaceborne Trinodal Pendulum synthetic aperture radar formation can provide valuable information in certain applications. The onboard orbit determination data of the spaceborne SAR platform is essential for the SAR imaging procedure. For real-time SAR imaging, the onboard orbit determination data is relatively low in accuracy compared with the orbit data obtained by off-line processing for the focusing of SAR data. The influence of errors in onboard real-time orbit determination data on SAR image quality should be considered. This paper proposes a Monte Carlo simulation model for inspecting the influence of onboard orbit determination data on imaging quality. This simulation model and its result may be helpful for the development of SAR real-time imaging focusing on providing terrain change information in a short time.
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星载三位摆Sar编队实时成像中定轨引入的二次相位误差分析
星载三节摆合成孔径雷达编队实时成像产品可以在某些应用中提供有价值的信息。星载SAR平台的星载定轨数据是SAR成像过程中必不可少的数据。在实时SAR成像中,星载定轨数据的精度相对于离线处理SAR数据聚焦得到的轨道数据要低一些。需要考虑星载实时定轨数据误差对SAR图像质量的影响。提出了一种检测星载定轨数据对成像质量影响的蒙特卡罗仿真模型。该仿真模型及其结果对以短时间内提供地形变化信息为重点的SAR实时成像技术的发展具有一定的指导意义。
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