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A High Throughput Pilot Assignment Strategy with Low Complexity in Multi-Cell Massive MIMO Systems

机译:具有低复杂性的高吞吐量试验策略,在多电池大量MIMO系统中具有低复杂性

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This paper investigates a massive multiple input multiple output (MIMO) system utilizing time division duplexing (TDD) for transmission and reception. In the training phase, acquisition of the channel state information (CSI) undergoes significant deviation caused by the pilot contamination effect. In order to remedy this impact, a low-overhead iterative pilot assignment strategy is devised in which both overhead order and complexity order are significantly reduced in comparison with the conventional schemes. To this end, initially, the problem of pilot assignment is formulated by an optimization problem whose optimization problems are continuous. In the following, it is attempted to approximate the resultant problem by an optimization problem with discrete variables. Finally, a convex realization of the outgoing optimization problem is presented, where the global optimum is insured. Numerical results reveals that although the proposed pilot assignment strategy undergoes much smaller complexity as well as a lower overhead compared to the exhaustive search algorithm, the system confronts a minor performance loss.
机译:本文调查了利用时分双工(TDD)进行传输和接收的大量多输入多输出(MIMO)系统。在训练阶段,获取信道状态信息(CSI)经历由导频污染效应引起的显着偏差。为了解决这种影响,设计了低开销迭代导频分配策略,其中与传统方案相比,开销顺序和复杂性顺序显着减少。为此,最初,通过优化问题连续的优化问题来制定导频分配问题。在下文中,尝试通过离散变量的优化问题来近似结果问题。最后,介绍了外向优化问题的凸面实现,其中全局最佳被保险。数值结果表明,与详尽的搜索算法相比,虽然所提出的导频分配策略具有更小的复杂性以及较低的开销,但是系统面对较小的性能损失。

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