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GSC-based adaptive beamforming with multiple-beam constraints under random array position errors

机译:随机阵列位置误差下具有多光束约束的基于GSC的自适应波束成形

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This paper deals with the problem of adaptive beamforming under random array position errors to provide multiple-beam constraints and suppress jammers simultaneously. Using a steering matrix with each column vector corresponding to the steering vector of a selective beam and a constraint vector with each entry equal to the gain of a selective beam, we construct the quiescent weight vector and the blocking matrix required by a generalized sidelobe canceller (GSC) to achieve a GSC-based adaptive array beamformer with multiple-beam constraints. For coping with the performance degradation due to random perturbations in array sensor positions, an iterative matrix reconstruction scheme in conjunction with derivative constraints is presented to alleviate the effect of random position errors. Simulation results show the effectiveness of the proposed technique.
机译:本文研究了随机阵列位置误差下的自适应波束形成问题,以提供多波束约束并同时抑制干扰。使用每个列向量对应于选择性波束的引导向量的转向矩阵和每个条目等于选择性波束的增益的约束向量的转向矩阵,我们构造了静态权重向量和广义旁瓣抵消器所需的阻塞矩阵( GSC),以实现具有多光束约束的基于GSC的自适应阵列波束形成器。为了应对由于阵列传感器位置中的随机扰动而导致的性能下降,提出了一种与导数约束结合的迭代矩阵重建方案,以减轻随机位置误差的影响。仿真结果表明了该技术的有效性。

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