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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Achieving Global Optimality for Joint Source and Relay Beamforming Design in Two-Hop Relay Channels
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Achieving Global Optimality for Joint Source and Relay Beamforming Design in Two-Hop Relay Channels

机译:在两跳中继通道中实现联合源和中继波束成形设计的全局最优性

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摘要

This paper deals with joint source and relay beamforming (BF) design for an amplify-and-forward (AF) multiantenna multirelay network. Considering that the channel state information (CSI) from relays to a destination is imperfect, we aim to maximize the worst-case received signal-to-noise ratio (SNR). The associated optimization problem is then solved in two steps. In the first step, by fixing the source BF vector, a semi-closed-form solution of the relay BF matrices is obtained, up to a power-allocation factor. In the second step, the global optimal source BF vector is obtained based on the polyblock outer approximation (PA) algorithm. We also propose two low-complexity methods for obtaining the source BF vector, which differ in their complexity and performances. The optimal joint source and relay BF solution obtained by the proposed algorithms serves as the benchmark for evaluating the existing schemes and the proposed low-complexity methods. Simulation results show that the proposed robust design can significantly reduce the sensitivity of the channel uncertainty to the system performance.
机译:本文讨论了用于放大转发(AF)多天线多中继网络的联合源和中继波束成形(BF)设计。考虑到从中继站到目的地的信道状态信息(CSI)不完善,我们的目标是使最坏情况下的接收信噪比(SNR)最大化。然后分两步解决相关的优化问题。第一步,通过固定源BF向量,获得中继BF矩阵的半封闭解,直到功率分配因子为止。第二步,基于多块外部近似(PA)算法获得全局最优源BF向量。我们还提出了两种低复杂度的方法来获取源BF向量,它们的复杂度和性能各不相同。所提出的算法获得的最优联合源和中继BF解决方案可作为评估现有方案和所提出的低复杂度方法的基准。仿真结果表明,所提出的鲁棒设计可以显着降低通道不确定性对系统性能的敏感性。

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