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Hybrid optimization-based pilot scheduling for reducing pilot contamination in massive MIMO systems

机译:基于混合优化的导频调度,用于降低大规模MIMO系统中的导频污染

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摘要

Massive multiple-input multiple-output (MIMO) is an emerging technology used in next-generation cellular networks. The major challenge in the massive MIMO system is the pilot contamination. The contamination of the pilot sequences causes inaccurate channel estimation leading to huge errors in the transmissions. This paper proposes an approach for pilot contamination reduction in massive MIMO systems. In order to reduce the pilot contamination, a pilot scheduling algorithm is devised by proposing an optimization algorithm named Elephant-based Spider Monkey Optimization (ESMO) for scheduling the pilots. The proposed ESMO is designed by combining Elephant Herding Optimization (EHO) into Spider Monkey Optimization (SMO). The pilot scheduling approach employs proposed ESMO and user degradation for scheduling the pilots. Moreover, the optimal pilot scheduling is carried out using the newly devised fitness function that considers achievable rate using various user grouping parameters, such as utility function, and grouping parameter. Thus, the proposed ESMO-based pilot scheduling and fitness function are responsible for initiating optimal pilot scheduling. The performance of the proposed method is compared with the existing methods, and the proposed ESMO outperformed the existing methods with maximal achievable rate value of 39.257 bps/Hz, and maximal SINR with value 118.75dB, respectively.
机译:大量多输入多输出(MIMO)是下一代蜂窝网络中使用的新兴技术。大规模MIMO系统中的主要挑战是试验污染。导频序列的污染导致通道估计不准确,导致传输中的巨大错误。本文提出了一种巨型MIMO系统中导频污染的方法。为了降低导频污染,通过提出名为基于Elephant的蜘蛛猴优化(ESMO)的优化算法来设计飞行调度算法来调度导频。拟议的ESMO是通过将大象放牧优化(EHO)组合成蜘蛛猴优化(SMO)来设计。试点调度方法采用提议的ESMO和用户劣化来调度导频。此外,使用新设计的健身功能来执行最佳导频调度,该功能使用各种用户分组参数,例如uyility函数和分组参数来考虑可实现的速率。因此,所提出的基于ESMO的导频调度和健身功能负责启动最佳导频调度。将该方法的性能与现有方法进行比较,所提出的ESMO优于现有的方法,具有39.257bps / Hz的最大可实现率值,分别具有118.75dB的最大SINR。

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