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Interference Mitigation for Airborne MIMO Radar

机译:机载MIMO雷达的干扰减轻

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Coherent multiple-input multiple-output (MIMO) radar has been shown to offer many advantages over conventional phased-array radars. However, it is know that the overall transmit gain of coherent MIMO radar is lower than that of phased-array radar due to the employment of orthogonal waveforms, which leads to lower signal-to-noise ratio (SNR) levels. Although subarray-based MIMO radar (e.g. phased-MIMO radar) provides higher transmit gain compared to coherent MIMO radar, the transmit degrees of freedoms (DOFs) are reduced as a trade-off. In this work, the loss of SNR in coherent MIMO radar is compensated by using longer coherent processing intervals (CPI) in combination with a reduced dimension interference mitigation algorithm. It is demonstrated by simulation results that once the SNR loss is compensated for, coherent MIMO radar outperforms both phased-array radars and subarray-based MIMO radar, in airborne radar ground moving target detection.
机译:相干的多输入多输出(MIMO)雷达已被示出为传统相控阵雷达的许多优点。然而,由于正交波形,相干MIMO雷达的整体传输增益低于相干MIMO雷达的总传输增益,这导致了降低信噪比(SNR)水平的较低信噪比。尽管与相干MIMO雷达相比,基于子阵列的MIMO雷达(例如相位-MIMO雷达)提供更高的发射增益,但是作为折衷减少了透射自由度(DOF)的发射自由度(DOF)。在这项工作中,通过使用更长的相干处理间隔(CPI)与减小的尺寸干扰缓解算法结合使用相干的MIMO雷达中的SNR中的SNR丢失。通过仿真结果证明了一旦SNR损耗得到了相干的MIMO雷达,在机载雷达接地移动目标检测中,连贯的MIMO雷达优于分阶段阵列雷达和基于子阵列的MIMO雷达。

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