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Filter-and-Forward Distributed Beamforming in Relay Networks With Frequency Selective Fading

机译:具有频率选择性衰落的中继网络中的滤波前馈分布式波束成形

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摘要

A new approach to distributed cooperative beamforming in relay networks with frequency selective fading is proposed. It is assumed that all the relay nodes are equipped with finite impulse response (FIR) filters and use a filter-and-forward (FF) strategy to compensate for the transmitter-to-relay and relay-to-destination channels. Three relevant half-duplex distributed beamforming problems are considered. The first problem amounts to minimizing the total relay transmitted power subject to the destination quality-of-service (QoS) constraint. In the second and third problems, the destination QoS is maximized subject to the total and individual relay transmitted power constraints, respectively. For the first and second problems, closed-form solutions are obtained, whereas the third problem is solved using convex optimization. The latter convex optimization technique can be also directly extended to the case when the individual and total power constraints should be jointly taken into account. Simulation results demonstrate that in the frequency selective fading case, the proposed FF approach provides substantial performance improvements as compared to the commonly used amplify-and-forward (AF) relay beamforming strategy.
机译:提出了一种具有频率选择性衰落的中继网络分布式协作波束成形的新方法。假定所有中继节点都配备了有限脉冲响应(FIR)滤波器,并使用了滤波转发(FF)策略来补偿发射机到中继信道和中继到目的地信道。考虑了三个相关的半双工分布式波束成形问题。第一个问题是使受目标服务质量(QoS)约束的中继传输总功率最小化。在第二个和第三个问题中,分别根据总中继传输功率约束和单个中继传输功率约束,将目标QoS最大化。对于第一个和第二个问题,获得了封闭形式的解,而第三个问题使用了凸优化。后者的凸面优化技术也可以直接扩展到应共同考虑单个功率约束和总功率约束的情况。仿真结果表明,在频率选择性衰落的情况下,与常用的放大转发(AF)中继波束成形策略相比,所提出的FF方法可显着提高性能。

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