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MU-MIMO Downlink Transmission Strategy Based on the Distributed Antennas for 3GPP LTE-A

机译:3GPP LTE-A的基于分布式天线的MU-MIMO下行传输策略

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The multiple input multiple output (MIMO) technology and the distributed antenna system (DAS) have emerged as the promising candidates for the future mobile communications. In this paper, we observe the downlink (DL) transmission in a single-cell multi-user MIMO (MU-MIMO) system based on the distributed antennas for 3GPP Long Term Evolution-Advanced (LTE-A). It is found that the existing methods presented in 3GPP LTE discussion may deteriorate system throughput sharply due to the inaccurate channel information feedback from user equipment (UE). We propose a novel strategy including several methods for the MU-MIMO DL transmission in DAS. First, a UE-specific channel vector quantization method is proposed to enable the BS to acquire more accurate channel direction information (CDI). In addition, we develop a new method for the channel quality information (CQI) computation at the side of UE. The extensive simulation performed in the various scenarios discloses that the proposed strategy achieves the performance gain in terms of system throughput by 600% at most and 20% at least.
机译:多输入多输出(MIMO)技术和分布式天线系统(DAS)已成为未来移动通信的有希望的候选者。在本文中,我们在基于用于3GPP长期演进 - 高级(LTE-A)的分布式天线的单小区多用户MIMO(MU-MIMO)系统中的下行链路(DL)传输。结果发现,由于来自用户设备(UE)的不准确的信道信息反馈,在3GPP LTE讨论中呈现的现有方法可能会急剧恶化系统吞吐量。我们提出了一种新颖的策略,包括DAS中MU-MIMO DL传输的几种方法。首先,提出了一种特定于UE特定的信道矢量量化方法,以使BS能够获取更准确的信道方向信息(CDI)。此外,我们在UE的侧面开发了一种新方法,用于侧面的频道质量信息(CQI)计算。在各种情景中执行的广泛模拟公开了拟议的策略至少在系统吞吐量方面实现了600%,最多20%的性能增益。

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