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Modified Phase History Model for High Resolution Spaceborne Bistatic SAR

机译:高分辨率星载双基地SAR的相位历史模型的改进

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Recently bistatic synthetic aperture radar (SAR), especially spaceborne SARs, has attracted the attention of many radar researchers. Generally, the orbit of satellite for remote sensing purposes is an ellipse with small eccentricity, and the earth should be modeled as an ellipsoid. It is well known that a second-order relative motion model can be a good approximation to a monostatic spaceborne SAR. However, for bistatic cases, this phase history model mismatches the real relative motion between a satellite and a rotating earth, dissatisfying the imaging accuracy requirement, and it limits the available azimuth resolution. In order to use the well studied SAR imaging algorithms, we develop a new second-order phase history model for bistatic spaceborne SAR using the phase error fitting method based on the ephemeris data. The new model strengthens the applicability of the conventional second-order phase history model of spaceborne bistatic SAR significantly.
机译:最近,双基地合成孔径雷达(SAR),特别是星载SAR,引起了许多雷达研究者的关注。通常,用于遥感目的的卫星轨道是一个偏心率小的椭圆形,并且地球应建模为椭圆形。众所周知,二阶相对运动模型可以很好地近似于单基地星载SAR。但是,对于双基地情况,此相位历史模型与卫星和旋转地球之间的实际相对运动不匹配,从而无法满足成像精度要求,并且限制了可用的方位角分辨率。为了使用经过充分研究的SAR成像算法,我们使用了基于星历数据的相位误差拟合方法,为双基地星载SAR开发了一个新的二阶相位历史模型。新模型大大增强了星载双基地SAR常规二阶相历史模型的适用性。

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