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Phased-MIMO Antenna Arrays of Radar System in Detection Performance

机译:检测性能下雷达系统的相控 - MIMO天线阵列

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The use of multiple antennas in radar systems that establish antenna arrays in transmitter (Tx) and receiver (Rx) has become of current interest. The Phased-MIMO radar (PMIMO) combines simultaneously the high coherent directional gain capabilities of the phased array (PA) radar and the high multi-target detection capabilities of the MIMO radar. This can be realized because of the use of overlapped subarrays in Tx so that it improves the detection performance flexibly such as the detection and false alarm probabilities. In this paper, the detection performance of this radar for the optimal detector has been derived and validated and then compared with the performance of other multi-antenna radars based on the effect of the threshold, SNR, and the number of subarrays in Tx. The results of the evaluation show that the PMIMO radar is more flexible through its subarrays variations than the PA and the MIMO radars for its performance capabilities under various target environmental conditions. For example, to achieve a detection performance that fulfil the tolerance of a certain threshold, which is above 35, the resulting false alarm probability is above 10e-4 with a detection probability of more than 99%.
机译:在发射机(TX)和接收器(RX)中建立天线阵列的雷达系统中的多个天线的使用已经成为当前的兴趣。相控--MIMO雷达(PMIMO)同时结合了相控阵列(PA)雷达的高相干方向增益能力和MIMO雷达的高多目标检测能力。这可以实现,因为在TX中使用重叠的子阵列,使得它可以灵活地提高了检测性能,例如检测和误报概率。在本文中,已经得出和验证了该雷达的检测性能,然后基于阈值,SNR和Tx中子阵列的子阵列的效果相比,与其他多天线雷达的性能进行了比较。评估结果表明,PMIMO雷达通过其子阵列变化比PA和MIMO雷达更加灵活,因为它在各种目标环境条件下的性能能力。例如,为了实现满足高于35的特定阈值的检测性能,产生的误报概率高于10E-4,检测概率超过99%。

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