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Energy-efficient mobile relay deployment scheme for cellular relay networks

机译:蜂窝中继网络的节能移动中继部署方案

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In this paper, an efficient mobile relay deployment scheme to select the deployment sites for mobile relay stations (MRSs) from the candidate positions is proposed, aiming at maximizing energy efficiency (EE) while guaranteeing the spectral efficiency (SE) requirement and the coverage constraints of mobile users (MUs). Firstly, an interference graph construction method is proposed to calculate the interference at MUs served by MRSs. Then, the deployment scheme at each observation time is proposed and our framework consists of three main algorithms. The first algorithm based on the extended Hungarian deployment algorithm is proposed to find the optimal solution, i.e., minimum movement distance. In addition, a greedy deployment algorithm and a static deployment algorithm are proposed to compare with the extended Hungarian deployment algorithm. Furthermore, we compare the performance of these algorithms via simulations and analyze the impact of various parameters on the performance. Simulation results demonstrate that the extended Hungarian deployment algorithm can considerably improve system EE compared to the other two algorithms. Moreover, relay switching occurs more frequently and average relay service time reduces with the increase of maximum speed of MUs. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种从候选位置中选择移动中继站(MRS)部署站点的有效移动中继部署方案,旨在在确保频谱效率(SE)要求和覆盖范围约束的同时最大化能源效率(EE)。的移动用户(MU)。首先,提出了一种干扰图构造方法来计算MRS服务于MU的干扰。然后,提出了每个观测时间的部署方案,我们的框架由三个主要算法组成。提出了基于扩展匈牙利部署算法的第一种算法,以找到最佳解决方案,即最小移动距离。此外,提出了贪婪部署算法和静态部署算法,以与扩展的匈牙利部署算法进行比较。此外,我们通过仿真比较了这些算法的性能,并分析了各种参数对性能的影响。仿真结果表明,与其他两种算法相比,扩展的匈牙利部署算法可以显着改善系统EE。而且,继电器切换更频繁地发生,并且平均继电器服务时间随着MU的最大速度的增加而减少。 (C)2016 Elsevier B.V.保留所有权利。

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