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Experimental Results and Algorithm Analysis of DEM Generation Using Bistatic SAR Interferometry With Stationary Receiver

机译:固定接收器双基地SAR干涉法生成DEM的实验结果和算法分析

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This paper presents the theory, algorithm, and results of a new bistatic interferometry synthetic aperture radar (InSAR) method. It employs the data acquired in an innovative bistatic configuration, which uses the orbital sensors as transmitters of opportunity and the stationary receivers on the ground, to generate a digital elevation model (DEM). In the bistatic spaceborne/stationary InSAR configuration, the interferometric phase only depends on the target-receiver range, which could not be obtained directly from the measured bistatic range. Therefore, the conventional transforming relationship between the interferometric phase and the topographic height is no longer practical. In order to solve the problem, we introduce a new conversion relationship between the interferometric phase and the topographic height, which is derived by the model of the ellipsoidal projection in the bistatic configuration. Meanwhile, the error analysis of the new conversion is carried out through a simulation. Both the simulated and measured data are used to test and verify the feasibility of the new bistatic InSAR method. In the spaceborne/stationary InSAR experiment, YaoGan-3 (an L-band spaceborne SAR system launched by China) was selected as the transmitter and two stationary receivers were mounted on the top of a tall building. The generated DEM of high quality shows that the presented method performs very well in the bistatic InSAR data process.
机译:本文介绍了一种新的双基地干涉合成孔径雷达(InSAR)方法的理论,算法和结果。它使用以创新的双基地配置获取的数据,该配置使用轨道传感器作为机会的发送器,并使用地面上的固定接收器来生成数字高程模型(DEM)。在双基地星载/静止InSAR配置中,干涉相位仅取决于目标接收器范围,而这不能直接从所测量的双基地范围获得。因此,干涉相与形貌高度之间的常规变换关系不再可行。为了解决该问题,我们引入了干涉相与形貌高度之间的新转换关系,该关系是由双基地配置中的椭圆投影模型推导的。同时,通过仿真对新转换进行误差分析。仿真和实测数据均用于测试和验证新的双基地InSAR方法的可行性。在星载/静止InSAR实验中,选择了YaoGan-3(中国发射的L波段星载SAR系统)作为发射器,并在高层建筑的顶部安装了两个固定接收器。生成的高质量DEM表明,该方法在双站InSAR数据处理中表现良好。

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