A spatiotemporal scenario to mitigate pilot contamination in 5G massive MIMO systems

Mahmoud M. Badr, M. Fouda, A. S. Eldien
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Abstract

Massive multiple-input multiple-output (MIMO) or large-scale MIMO is the magical technology that can provide the required large system capacity in the future fifth generation (5G) cellular networks. Massive MIMO is characterized by a large number of base station (BS) antennas, which makes it less susceptible to noise and fast fading. Unfortunately, this large antennas number does not enable the massive MIMO to get rid of the inter-cell interference originated from the problem of pilot contamination. In this article, we propose a spatiotemporal scenario that can mitigate the pilot contamination effects by avoiding synchronous pilot transmission in the time domain and following a pilot allocation algorithm in the spatial domain. We show that our proposed scenario provides a reduced level of inter-cell interference, which eventually gives it the ability to enhance the minimum and the mean achievable capacities per terminal.
缓解5G大规模MIMO系统中导污染的时空情景
大规模多输入多输出(Massive multiple-input multiple-output, MIMO)或大规模多输入多输出(large-scale MIMO)是未来第五代(5G)蜂窝网络所需的大系统容量的神奇技术。大规模MIMO的特点是基站天线数量多,不易受噪声和快速衰落的影响。不幸的是,如此庞大的天线数量并不能使大规模MIMO摆脱由导频污染问题引起的小区间干扰。在本文中,我们提出了一个时空场景,通过避免在时域中同步导频传输和在空域中遵循导频分配算法来减轻导频污染效应。我们表明,我们提出的方案提供了一个低水平的小区间干扰,这最终使它能够提高每个终端的最小和平均可实现容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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