Distributed beamforming and power allocation in two-way multi-relay networks with second-order channel statistics

Yun Cao, C. Tellambura
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引用次数: 2

Abstract

We investigate distributed beamforming and power allocation for a single-antenna two-way relay network, which consists of multiple, parallel amplify-and-forward relays. The goal is to maximize the smaller of the two signal-to-noise-ratios (SNRs) while maintaining the total transmit power in each time slot below a predefined threshold. While related previous studies have assumed that the two transceivers know perfect instantaneous channel state information (CSI) of the entire network, in this paper, each transceiver only knows its own channel to the relays and the second-order-statistics (SOS) of the channel gains from the other transceiver to the relays. We develop optimal and sub-optimal solutions. The optimal one requires eigenvalue decomposition and iteratively exhaustive search, while the sub-optimal one uses a Taylor series approximation, but gives a near-optimal solution with significantly low computational complexity.
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基于二阶信道统计的双向多中继网络中的分布式波束形成和功率分配
我们研究了单天线双向中继网络的分布式波束形成和功率分配,该网络由多个并行放大和转发中继组成。目标是最大化两个信噪比(SNRs)中较小的那个,同时保持每个时隙的总发射功率低于预定义的阈值。以往的相关研究假设两个收发器都知道整个网络的完美的瞬时信道状态信息(CSI),而在本文中,每个收发器只知道自己对中继的信道,而另一个收发器对中继的信道增益的二阶统计量(SOS)。我们开发最优和次最优解。最优解需要特征值分解和迭代穷举搜索,而次优解使用泰勒级数近似,但给出了计算复杂度显著降低的近最优解。
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