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A Survey on Massive MIMO Systems in Presence of Channel and Hardware Impairments

机译:存在信道和硬件损害的大规模MIMO系统调查

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摘要

Massive multiple input multiple output (MIMO) technology is one of the promising technologies for fifth generation (5G) cellular communications. In this technology, each cell has a base station (BS) with a large number of antennas, allowing the simultaneous use of the same resources (e.g., frequency and/or time slots) by multiple users of a cell. Therefore, massive MIMO systems can bring very high spectral and power efficiencies. However, this technology faces some important issues that need to be addressed. One of these issues is the performance degradation due to hardware impairments, since low-cost RF chains need to be employed. Another issue is the channel estimation and channel aging effects, especially in fast mobility environments. In this paper we will perform a comprehensive study on these two issues considering two of the most promising candidate waveforms for massive MIMO systems: Orthogonal frequency division multiplexing (OFDM) and single-carrier frequency domain processing (SC-FDP). The studies and the results show that hardware impairments and inaccurate channel knowledge can degrade the performance of massive MIMO systems extensively. However, using suitable low complex estimation and compensation techniques and also selecting a suitable waveform can reduce these effects.
机译:大规模多输入多输出(MIMO)技术是第五代(5G)蜂窝通信的有前途的技术之一。在该技术中,每个小区具有带有大量天线的基站(BS),从而允许小区的多个用户同时使用相同的资源(例如,频率和/或时隙)。因此,大规模MIMO系统可以带来非常高的频谱和功率效率。但是,该技术面临一些需要解决的重要问题。这些问题之一是由于硬件受损而导致的性能下降,因为需要使用低成本的RF链。另一个问题是信道估计和信道老化效应,尤其是在快速移动性环境中。在本文中,我们将针对大规模MIMO系统的两个最有希望的候选波形,对这两个问题进行全面研究:正交频分复用(OFDM)和单载波频域处理(SC-FDP)。研究和结果表明,硬件损伤和不正确的信道知识可能会严重降低大规模MIMO系统的性能。但是,使用合适的低复杂度估计和补偿技术以及选择合适的波形可以减少这些影响。

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