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Relativistic effects in bistatic SAR processing and system synchronization

机译:双基地SAR处理和系统同步中的相对论效应

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This paper addresses relativistic effects in bistatic and multistatic SAR systems and missions. It is shown that the use of different reference frames for bistatic SAR processing and bistatic radar synchronization is prone to notable phase and time errors. These errors are a direct consequence of the relativity of simultaneity and can be explained in good approximation within the framework of Einstein''s special theory of relativity. Using the invariance of the spacetime interval, an analytic expression is derived which shows that the time and phase errors increase with increasing along-track distance between the satellites. The predicted errors are in excellent agreement with measurements from TanDEM-X and provide a satisfactory explanation for previously observed DEM height offsets that exceeded ±10 m. Consideration of the unexpected relativistic effects is essential for accurate DEM generation in TanDEM-X and has in the meantime been implemented in the operational processing chain.
机译:本文讨论了双基地和多基地SAR系统和任务中的相对论效应。结果表明,在双基地SAR处理和双基地雷达同步中使用不同的参考帧容易产生明显的相位和时间误差。这些误差是同时性相对性的直接结果,可以在爱因斯坦的相对性特殊理论的框架内很好地解释。利用时空间隔的不变性,得出了一个解析表达式,该表达式表明时间和相位误差随着卫星之间沿轨道距离的增加而增加。预测的误差与TanDEM-X的测量非常吻合,并为先前观察到的超出±10 m的DEM高度偏移提供了令人满意的解释。对于TanDEM-X中精确生成DEM而言,考虑到意想不到的相对论效应是至关重要的,并且同时已在操作处理链中实现。

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