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Sum-Rate-Driven Energy Efficiency Optimization in Massive MIMO Relay Networks

机译:大规模MIMO中继网络中求和速率驱动的能效优化

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In this paper, we address the problem of energy-efficient resource allocation in two-hop massive multiple-input multiple-output (MIMO) decode-and-forward relay networks, which accounts for the improved power consumption model and imperfect instantaneous channel state information. We formulate an energy efficiency (EE) maximization problem while ensuring system sum rate requirement. The problem which maximizes EE by jointly optimizing user-pairs as well as power allocation at both users and the relay turns out to be a mixed integer non-convex problem that is nontrivial to solve. The new scheme decomposes the original challenge into two subproblems, and solve them iteratively based on successive approximation. Numerical studies are conducted to illustrate the impacts of different parameters on EE and sum rate, and performance evaluations are presented to demonstrate the effectiveness of the proposed scheme compared with other schemes.
机译:在本文中,我们解决了两跳大规模多输入多输出(MIMO)解码转发中继网络中的节能资源分配问题,该问题解决了改进的功耗模型和不完善的瞬时信道状态信息。我们制定了能效(EE)最大化问题,同时确保了对系统总和的要求。通过共同优化用户对以及两个用户和中继器上的功率分配来最大化EE的问题原来是一个混合整数非凸问题,这是不容易解决的问题。新方案将原始挑战分解为两个子问题,并在逐次逼近的基础上迭代求解。进行了数值研究,以说明不同参数对EE和总和率的影响,并进行了性能评估,以证明该方案与其他方案相比的有效性。

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