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Basics and first experiments demonstrating isolation improvements in the agile polarimetric FM-CW radar – PARSAX

机译:基础知识和首次实验证明了敏捷极化FM-CW雷达– PARSAX的隔离性能得到了改善

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摘要

The article describes the IRCTR PARSAX radar system, the S-band high-resolution Doppler polarimetric frequency modulated continuous wave (FM-CW) radar with dual-orthogonal sounding signals, which has the possibility to measure all elements of the radar target polarization scattering matrix simultaneously, in one sweep. The performance of such radar depends of the level of sounding signals orthogonality. In the main operational mode, the radar will be used for atmospheric remote sensing and polarimetric studies of ground-based targets. In such mode it will use a pair of synchronous linearly- frequency modulated (LFM) continuous signals with opposite frequency excursions of 50 MHz and duration of 1 ms. Such a combination of sounding signals has limited orthogonality even for huge BT-products, which produce cross-channel interferences. These interferences in case of radar scene with multiple pointed and distributed targets can completely degrade radar operational performance. In this article, we propose simple and effective technique to suppress interferences and to restore radar performance. The technique has been tested using simulation and has been implemented in multi-channel digital receiver of the PARSAX radar. The real radar measurements presented to illustrate effectiveness of cross-channel interferences suppression. The proposed technique can be useful not only for polarimetric radar design, but also in much wide radar applications, which use waveforms with high orthogonality.
机译:本文介绍了IRCTR PARSAX雷达系统,这是一种具有双正交探测信号的S波段高分辨率多普勒极化调频连续波(FM-CW)雷达,它可以测量雷达目标极化散射矩阵的所有元素同时进行一次扫描。这种雷达的性能取决于探测信号正交性的水平。在主要操作模式下,雷达将用于大气遥感和对地面目标的极化研究。在这种模式下,它将使用一对同步线性调频(LFM)连续信号,其反向频率偏移为50 MHz,持续时间为1 ms。即使对于产生跨信道干扰的巨大的BT产品,这种探测信号的组合也具有有限的正交性。在雷达场景具有多个指向目标和分布式目标的情况下,这些干扰会完全降低雷达的运行性能。在本文中,我们提出了一种简单有效的技术来抑制干扰并恢复雷达性能。该技术已通过仿真进行了测试,并已在PARSAX雷达的多通道数字接收器中实现。实际雷达测量结果说明了跨通道干扰抑制的有效性。所提出的技术不仅对极化雷达设计有用,而且在使用具有高正交性的波形的广泛雷达应用中也很有用。

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