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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >Focusing of General Bistatic SAR Configuration Data With 2-D Inverse Scaled FFT
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Focusing of General Bistatic SAR Configuration Data With 2-D Inverse Scaled FFT

机译:利用二维反比例FFT聚焦一般双基地SAR配置数据

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This paper presents a bistatic focusing solution for the general case, when transmitter and receiver trajectories move along nonparallel trajectories with different velocities. The approach in this paper is based on the point target reference spectrum for an arbitrary bistatic configuration, derived from our previous publications. Based on various simulations, the validity of the formula for both airborne and spaceborne configurations is demonstrated. Focusing for special bistatic azimuth time-invariant configurations, “tandem” and “translationally invariant” constellations are accomplished. All focusing algorithms have been developed in an interactive data language and verified with adequate simulation results. The bistatic algorithm was further successfully applied to real bistatic data acquired by the German Research Establishment for Applied Natural Sciences'' PAMIR and AER-II synthetic aperture radar systems. Processing in the general case turns out to be additionally truly azimuth time variant. It is solved by implementing a novel two-dimensional inverse-scaled fast Fourier transform algorithm.
机译:当发射器和接收器的轨道沿着不平行的轨道以不同的速度运动时,本文为一般情况提供了一种双基地聚焦解决方案。本文中的方法基于任意双基地配置的点目标参考光谱,该光谱源自我们以前的出版物。基于各种模拟,论证了该公式对于机载和星载配置的有效性。专注于特殊的双基地方位时不变配置,可以实现“串联”和“平移不变”星座。所有聚焦算法均以交互式数据语言开发,并已得到足够的仿真结果验证。该双基地算法进一步成功地应用于德国应用自然科学研究院的PAMIR和AER-II合成孔径雷达系统获得的真实双基地数据。在一般情况下,处理实际上是真正的方位角时变。它是通过实现一种新颖的二维反比例快速傅里叶变换算法来解决的。

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