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Agile Waveforms for Joint SAR-GMTI Processing

机译:联合SAR-GMTI处理的敏捷波形

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Wideband radar waveforms that employ spread-spectrum techniques were investigated and experimentally tested. The waveforms combine bi-phase coding with a traditional LFM chirp and are applicable to joint SAR-GMTI processing. After de-spreading, the received signals can be processed to support simultaneous GMTI and high resolution SAR imaging missions by airborne radars. The spread spectrum coding techniques can provide nearly orthogonal waveforms and offer enhanced operations in some environments by distributing the transmitted energy over a large instantaneous bandwidth. The LFM component offers the desired Doppler tolerance. In this paper, the waveforms are formulated and a shift-register approach for de-spreading the received signals is described. Hardware loop-back testing has shown the feasibility of using these waveforms in experimental radar testbed.
机译:对采用扩频技术的宽带雷达波形进行了研究和实验测试。该波形将双相编码与传统的LFM线性调频脉冲相结合,适用于SAR-GMTI联合处理。解扩后,可以对接收到的信号进行处理,以支持机载雷达同时进行GMTI和高分辨率SAR成像任务。扩频编码技术可以通过在较大的瞬时带宽上分配所传输的能量来提供近乎正交的波形,并在某些环境中提供增强的操作。 LFM组件可提供所需的多普勒容差。在本文中,阐述了波形,并描述了用于对接收信号进行解扩的移位寄存器方法。硬件环回测试表明了在实验雷达测试台中使用这些波形的可行性。

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