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A Low-Complexity Power Allocation Strategy to Minimize Sum-Source-Power for Multi-User Single-AF-Relay Networks

机译:一种低复杂度的功率分配策略,可将多用户单AF中继网络的总和源功率降至最低

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摘要

Because of its outstanding performance in extending coverage and reducing transmit power, wireless relay cooperation is deemed as one of the promising techniques to realize green-broadband communication in the future. In such relay cooperative systems, optimal power allocation not only can prolong the lifetime of users, but also is an effective way to reduce radiation in the environment. In this paper, for amplify-and-forward-relay cooperative networks, where multiple communication pairs share a common relay, we propose a novel power allocation scheme, which has considerably lower complexity compared with the existing solution schemes. The objective of this paper is to minimize sum-source-power consumption under the conditions that the transmit power of all nodes in the network is constrained and their predetermined target signal-to-noise ratios are satisfied. By providing sufficient analytical evidence, we study the optimality, convergence, and computational complexity of our proposed scheme. Through numerical simulation, we further justify the effectiveness and efficacy of our scheme compared with the existing works.
机译:由于其在扩展覆盖范围和降低发射功率方面的出色性能,无线中继协作被认为是未来实现绿色宽带通信的有前途的技术之一。在这样的中继协作系统中,最优的功率分配不仅可以延长用户的寿命,而且是减少环境辐射的有效途径。在本文中,对于多个通信对共享一个公共中继的放大转发中继协作网络,我们提出了一种新颖的功率分配方案,与现有的解决方案相比,它的复杂度要低得多。本文的目的是在网络中所有节点的发射功率受到约束且满足其预定目标信噪比的条件下,将总和源功耗降至最低。通过提供足够的分析证据,我们研究了我们提出的方案的最优性,收敛性和计算复杂性。通过数值模拟,与现有研究相比,我们进一步证明了该方案的有效性和有效性。

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