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Distributed Robust Beamforming Based on Low-Rank and Cross-Correlation Techniques: Design and Analysis

机译:基于低秩和互相关技术的分布式鲁棒波束成形:设计与分析

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In this work, we present a novel robust distributed beamforming (RDB) approach based on low-rank and cross-correlation techniques. The proposed RDB approach mitigates the effects of channel errors in wireless networks equipped with relays based on the exploitation of the cross-correlation between the received data from the relays at the destination and the system output and low-rank techniques. The relay nodes are equipped with an amplify-and-forward (AF) protocol and the channel errors are modeled using an additive matrix perturbation, which results in degradation of the system performance. The proposed method, denoted low-rank and cross-correlation RDB (LRCC-RDB), considers a total relay transmit power constraint in the system and the goal of maximizing the output signal-to-interference-plus-noise ratio (SINR). We carry out a performance analysis of the proposed LRCC-RDB technique along with a computational complexity study. The proposed LRCC-RDB does not require any costly online optimization procedure and simulations show an excellent performance as compared to previously reported algorithms.
机译:在这项工作中,我们提出了一种基于低秩和互相关技术的新型鲁棒分布式波束成形(RDB)方法。基于对来自目的地的中继的接收数据与系统输出和低秩技术之间的互相关的利用,所提出的RDB方法减轻了配备有中继的无线网络中信道错误的影响。中继节点配备了放大转发(AF)协议,并且使用附加矩阵扰动对信道错误进行建模,这会导致系统性能下降。所提出的方法称为低秩和互相关RDB(LRCC-RDB),它考虑了系统中的总中继发射功率约束,并考虑了最大输出信号与干扰加噪声比(SINR)的目标。我们对建议的LRCC-RDB技术进行了性能分析,并进行了计算复杂性研究。拟议的LRCC-RDB不需要任何昂贵的在线优化程序,并且与以前报道的算法相比,仿真显示出出色的性能。

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