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Joint Optimization of Source Power Allocation and Relay Beamforming in Multiuser Cooperative Wireless Networks

机译:多用户协作无线网络中源功率分配和中继波束成形的联合优化

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Relay beamforming techniques have been shown to significantly enhance the sum capacity of a multiuser cooperative wireless network through the optimization of the relay weights, where concurrent communications of multiple source-destination pairs are achieved via spatial multiplexing. Further optimization of the transmit power allocation over the source nodes is expected to improve the network throughput as well. In this paper, we maximize the sum capacity of a multiuser cooperative wireless network through the joint optimization of power allocation among source nodes and relay beamforming weights across the relay nodes. We consider a two-hop cooperative wireless network, consisting of single-antenna nodes, in which multiple concurrent links are relayed by a number of cooperative nodes. When a large number of relay nodes are available, the channels of different source-destination pairs can be orthogonalized, yielding enhanced sum network capacity. Such cooperative advantage is particularly significant in high signal-to-noise ratio (SNR) regime, in which the capacity follows a logarithm law with the SNR, whereas exploiting spatial multiplexing of multiple links yields capacity increment linear to the number of users. However, the capacity performance is compromised when the input SNR is low and/or when the number of relay nodes is limited. Joint optimization of source power allocation and relay beamforming is important when the input SNR and/or the number of relay nodes are moderate or the wireless channels experience different channel variances. In these cases, joint optimization of source power and distributed beamforming weights achieves significant capacity increment over both source selection and equal source power spatial multiplexing schemes. With consideration of the needs to deliver data from each source node, we further examine the optimization of global sum capacity in the presence of individual capacity requirements by maximizing sum capacity of the network subject to a minimum capacity constraint over each individual user.
机译:中继波束成形技术已显示出通过优化中继权重来显着增强多用户协作无线网络的总容量,其中,通过空间复用实现多个源-目标对的并发通信。源节点上的发射功率分配的进一步优化也有望改善网络吞吐量。在本文中,我们通过联合优化源节点之间的功率分配和跨中继节点的中继波束成形权重,最大程度地提高了多用户协作无线网络的总容量。我们考虑由单天线节点组成的两跳协作无线网络,其中多个并发链路由多个协作节点中继。当有大量中继节点可用时,可以将不同源-目标对的信道正交化,从而增强总和网络容量。这种协作优势在高信噪比(SNR)方案中尤其重要,在该方案中,容量遵循SNR的对数定律,而利用多链路的空间复用会产生与用户数量成线性关系的容量增量。但是,当输入SNR低和/或中继节点的数量受到限制时,容量性能会受到损害。当输入SNR和/或中继节点的数量适中或无线信道经历不同的信道变化时,联合优化源功率分配和中继波束成形非常重要。在这些情况下,源功率和分布式波束成形权重的联合优化在源选择和相等源功率空间复用方案上都实现了显着的容量增加。考虑到从每个源节点传递数据的需求,我们进一步研究了在存在单个容量需求的情况下,通过最大化网络的总容量,并在每个单个用户上受到最小容量约束的情况下,优化全局总容量。

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