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A spatial domain based method against pilot contamination for multi-cell massive MIMO systems

机译:基于空间域基于空间域的方法,用于多电池大量MIMO系统的试验污染

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Massive multiple-input and multiple-output (MIMO) system has shown its outstanding performance in energy saving and spectrum efficiency, with channel state information (CSI) available at base-station (BS) side for downlink beam-forming [1]. Further study revealed that performance of massive-MIMO will be limited by so-called pilot contamination in multi-cell scenario [2], where the transmit CSI at one BS is a superposition of channel coefficient of its serving user and channel coefficients of users in adjacent cells using same pilot, which introduces inter-cell interference. The analysis in [2] ignored a fact that the spatial and/or temporal characters of channel coefficients of different users are different such that they are distinguishable in certain extends. However, the optimal method which can entirely isolate the user channels is extremely hard to achieve or even not feasible in certain cases. This paper presents a suboptimal spatial domain method which uses a pre-determined angular-tunable narrow beam pattern to match the desired user. Simulation results show that the majority of pilot contamination effect can be suppressed even with a not-so-well designed beam pattern.
机译:大量多输入和多输出(MIMO)系统在节能和频谱效率方面表现出其出色的性能,具有用于下行链路波束形成的基站(BS)侧可用的信道状态信息(CSI)[1]。进一步的研究表明,MASTive-MIMO的性能将受到多小区场景中所谓的导频污染的限制,其中一个BS处的发送CSI是其服务用户和用户信道系数的信道系数的叠加使用相同导频的相邻单元引入细胞间干扰。 [2]中的分析忽略了不同用户的信道系数的空间和/或时间特征是不同的,使得它们在某些延伸中可区分。然而,在某些情况下,可以完全隔离用户通道的最佳方法非常难以实现甚至不可行。本文介绍了一种次优空间域方法,它使用预定的角度可调窄波束图案来匹配期望的用户。仿真结果表明,即使使用非良好设计的光束图案,也可以抑制大部分导频污染效果。

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