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Improved digital beam-forming approach with scaling function for range multi-channel synthetic aperture radar system

机译:改进的具有缩放功能的数字波束形成方法,用于距离多通道合成孔径雷达系统

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摘要

For the next generation of space-borne synthetic aperture radar (SAR) remote sensing satellites, high resolution and wide coverage are important goals. Digital beam forming (DBF) with multiple channels in elevation (e.g.SCan-On-REceive) is a promising candidate to cover ultra-wide swaths. This scheme could increase the receiver gain and signal-to-noise ratio so as to enhance the performance of an SAR system. As the swath width expanding, ultra-wide beam in range for illuminated scene is needed. However, in this case, the signals received by different channels cannot always be co-registered during the receiving window before combining them due to the imaging geometry of the DBF-SAR system. The relative migration would cause gain loss while performing DBF. In this study, according to the geometric relationship among the receiving channels, the migration of signal received by each elevation channel is analysed and the explicit expressions are derived in detail. Then, an improved DBF approach based on scaling function is proposed for registering the received signals of different channels and combining them. This proposed process can be implemented with better performance than other approach. Finally, the simulation results validate this improved method.
机译:对于下一代星载合成孔径雷达(SAR)遥感卫星,高分辨率和宽覆盖范围是重要目标。具有多个仰角通道的数字波束成形(DBF)(例如SCan-On-Receive)是覆盖超宽条带的有希望的候选者。该方案可以增加接收机增益和信噪比,从而提高SAR系统的性能。随着条幅宽度的扩大,需要照明范围内的超宽光束。但是,在这种情况下,由于DBF-SAR系统的成像几何形状,在组合它们之前,在接收窗口期间不能总是将不同通道接收的信号进行共配准。相对迁移会在执行DBF时导致增益损失。在这项研究中,根据接收通道之间的几何关系,分析了每个高程通道接收到的信号的迁移,并详细推导了明确的表达式。然后,提出了一种基于缩放函数的改进DBF方法,用于注册不同信道的接收信号并将其组合。与其他方法相比,可以以更好的性能来实现此提议的过程。最后,仿真结果验证了该改进方法的有效性。

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