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MmWave MIMO-OFDM with Index Modulation: A Pareto-Optimal Trade-off on Spectral-Energy Efficiency

机译:MMWAVE MIMO-OFDM具有索引调制:探针 - 能源效率的Pareto-Optal折衷

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Multiple-input multiple-output orthogonal frequency division multiplexing with index modulation (MIMO-OFDM-IM) has the potential advantage to balance the trade-off between spectral efficiency (SE) and energy efficiency (EE). This paper investigates the application of MIMO-OFDM-IM to millimeter wave (mmWave) communication systems. Taking advantage of the properties of Pareto optimality, we propose a feasible solution to achieve a globally Pareto-optimal trade-off between SE and EE, and the collision constraints of multi-objective optimization problem (MOP) can be solved efficiently. The MOP of SE-EE trade-off can then be converted into a Pareto-optimal set (POS) solution problem. This combinatorial-oriented resource allocation approach on SE-EE relation considers the optimal beam design and power reallocation for downlink multi-user mmWave transmission. We adopt the Poisson point process (PPP) to model the mobile data traffic, and the evolutionary algorithm is applied to speed up the search efficiency of the Pareto front. Compared with benchmarks, the experimental results collected from extensive simulations reveal that the proposed optimization approach is vastly superior to existing algorithms.
机译:具有索引调制(MIMO-OFDM-IM)的多输入多输出正交频分复用具有平衡谱效率(SE)和能效(EE)之间的折衷的折衷所潜在的优势。本文研究了MIMO-OFDM-IM到毫米波(MMWAVE)通信系统的应用。利用帕累托最优性的性质,我们提出了一种可行的解决方案,以实现SE和EE之间的全球帕累托最优权衡,并且可以有效地解决多目标优化问题(MOP)的碰撞约束。然后可以将SE-EE折衷的换算转换为帕累托 - 最佳集合(POS)解决方案问题。 SE-EE关系的这种面向组合的资源分配方法考虑了下行链路多用户MMWAVE传输的最佳光束设计和功率重新分配。我们采用泊松点流程(PPP)来模拟移动数据流量,并应用进化算法来加快Pareto前面的搜索效率。与基准相比,从广泛的模拟中收集的实验结果表明,所提出的优化方法远远优于现有算法。

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