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Nested array receiver with time-delayers for joint target range and angle estimation

机译:具有时延的嵌套阵列接收机,用于联合目标范围和角度估计

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Phased-array provides range-independent beampattern and consequently it cannot detect/suppress range-dependent targets/interferences. Moreover, an M-element phased-array can resolve at most M - 1 targets simultaneously. This study proposes a nested array receiver using diverse time-delayers (DTDs) for jointly estimating the range and angle of targets. The essence is to construct a new array structure by systematically nesting two uniform linear arrays through DTDs instead of phase controlling in traditional nested array technique. Using the second-order statistics of the received data, an M-element array can resolve O(M2) targets. Moreover, the nested DTD receiver design is exploited for minimum variance distortionless response beamforming and direction finding. The improvements offered by the proposed method, as compared with basic DTD receivers, are demonstrated by examining the output signal-to-interference-plus-noise ratio, the probability of detection and the Cramér-Rao lower bounds for estimating the range and angle of targets.
机译:相控阵提供了与范围无关的波束图,因此它无法检测/抑制与范围有关的目标/干扰。此外,M元素相控阵最多可同时分辨M-1个目标。这项研究提出了使用不同时延层(DTD)的嵌套阵列接收器,以共同估算目标的范围和角度。实质是通过利用DTD系统地嵌套两个均匀的线性阵列,而不是传统的嵌套阵列技术中的相位控制,来构建一种新的阵列结构。使用接收到的数据的二阶统计量,M元素数组可以解析O(M2)目标。此外,嵌套DTD接收机设计用于最小方差无失真响应波束成形和方向寻找。通过检查输出信噪比,检测概率以及Cramér-Rao下界以估计信号的范围和角度,可以证明与基本DTD接收机相比,该方法所提供的改进。目标。

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