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Systolic robust adaptive beamforming with an adjustable constraint

机译:可调约束的脉动鲁棒自适应波束形成

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摘要

This paper presents a novel, fully parallel algorithm for robust linearly constrained minimum variance (LCMV) beamforming. The robustness results from the use of an adjustable constraint to compensate for the unavoidable small mismatch between the nominal and the actual steering vector of the signal-of-interest. The need for parallelism follows from the large computational demands of beamforming algorithms and by the high data rates which are typically present in communications applications. The algorithm exhibits good numerical properties as it is based on orthogonal transformations only. Two systolic architectures are presented on which the throughput is independent of the size of the beamformer
机译:本文提出了一种新颖的,完全并行的算法,用于鲁棒的线性约束最小方差(LCMV)波束成形。鲁棒性来自于使用可调约束来补偿感兴趣信号的标称和实际转向矢量之间不可避免的微小失配。对并行性的需求源于波束赋形算法的大量计算需求以及通信应用中通常存在的高数据速率。该算法仅基于正交变换,因此具有良好的数值特性。提出了两种收缩架构,其吞吐率与波束形成器的大小无关

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