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Bistatic TerraSAR-X/F-SAR Spaceborne–Airborne SAR Experiment: Description, Data Processing, and Results

机译:双基地TerraSAR-X / F-SAR星空机载SAR实验:说明,数据处理和结果

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We report about the first X-band spaceborne–airborne bistatic synthetic aperture radar (SAR) experiment, conducted early November 2007, using the German satellite TerraSAR-X as transmitter and the German Aerospace Center's (DLR) new airborne radar system F-SAR as receiver. The importance of the experiment resides in both its pioneering character and its potential to serve as a test bed for the validation of nonstationary bistatic acquisitions, novel calibration and synchronization algorithms, and advanced imaging techniques. Due to the independent operation of the transmitter and receiver, an accurate synchronization procedure was needed during processing to make high-resolution imaging feasible. Precise phase-preserving bistatic focusing can only be achieved if time and phase synchronization exist. The synchronization approach, based on the evaluation of the range histories of several reference targets, was verified through a separate analysis of the range and Doppler contributions. After successful synchronization, nonstationary focusing was performed using a bistatic backprojection algorithm. During the campaign, stand-alone TerraSAR-X monostatic as well as interoperated TerraSAR-X/F-SAR bistatic data sets were recorded. As expected, the bistatic image shows a space-variant behavior in spatial resolution and in signal-to-noise ratio. Due to the selected configuration, the bistatic image outperforms its monostatic counterpart in almost the complete imaged scene. A detailed comparison between monostatic and bistatic images is given, illustrating the complementarity of both measurements in terms of backscatter and Doppler information. The results are of fundamental importance for the development of future nonsynchronized bistatic SAR systems.
机译:我们报告了2007年11月上旬进行的首个X波段星空机载双基地合成孔径雷达(SAR)实验,该实验使用了德国卫星TerraSAR-X作为发射机,德国航空航天中心(DLR)的新机载雷达系统F-SAR作为接收器。实验的重要性在于其开创性和作为验证非平稳双基地采集,新颖的校准和同步算法以及先进的成像技术的试验台的潜力。由于发射器和接收器的独立操作,在处理过程中需要精确的同步过程以使高分辨率成像可行。只有在存在时间和相位同步的情况下,才能实现精确的相位保持双基地聚焦。通过对距离和多普勒贡献的单独分析,验证了基于对几个参考目标的距离历史进行评估的同步方法。成功同步后,使用双基地反投影算法执行非平稳聚焦。在活动期间,记录了独立的TerraSAR-X单基地以及互操作的TerraSAR-X / F-SAR双基地数据集。如预期的那样,双基地图像在空间分辨率和信噪比方面显示出空间变化的行为。由于选择的配置,在几乎完整的成像场景中,双基地图像的性能优于其单基地图像。给出了单静态和双静态图像之间的详细比较,说明了两种测量在反向散射和多普勒信息方面的互补性。这些结果对于未来非同步双基地SAR系统的开发具有至关重要的意义。

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