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Analysis of sum spectrum efficiency in multiple antennas multi-user MIMO cellular system for millimeter wave communications

机译:用于毫米波通信的多天线多用户MIMO蜂窝系统中的总和频谱效率分析

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In this paper, sum spectrum efficiency of two cell multiple-input multiple-output (MIMO) system having multiple antennas at base station (BS) and multiple user equipments (UEs) is analysed. The maximum ratio (MR) and multi-cell minimum mean squared error (M-MMSE) techniques are utilized for detection/precoding in the uplink/downlink scenario. In this paper, two boundary cases of propagation channel model: line of sight (LoS) and non-line of sight (NLoS), and generalized propagation channel model of millimeter wave (mmWave) are compared using MR and MMSE detection techniques. The closed bound expressions of sum spectrum efficiency of MR are expressed and simulated, whereas for M-MMSE, Monte-Carlo simulations are performed on the basis of its weighting vector. The fundamental limits on the system performance, using large antenna arrays and many UEs satisfying practical constraints like desired signal to noise ratio (SNR), low complexity in signal processing, gain of inter cell interference and finite-dimensional channels are analysed.
机译:在本文中,分析了在基站(BS)处具有多个天线的两个小区多输入多输出(MIMO)系统的SUM频谱效率和多个用户设备(UE)。最大比率(MR)和多小区最小均值误差(M-MMSE)技术用于在上行链路/下行链路场景中检测/预编码。在本文中,使用MR和MMSE检测技术比较了两个传播信道模型的边界案例:视线(LOS)和非瞄准器(NLO),以及毫米波(MMWAVE)的广义传播信道模型。表达和模拟MR的SUM频谱效率的封闭式表达式,而对于M-MMSE,基于其加权载体进行蒙特卡罗模拟。系统性能的基本限制,使用大天线阵列和许多满足实际限制的许多UE,如期望的信号到噪声比(SNR),信号处理中的低复杂性,间电池间干扰和有限尺寸信道的增益。

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