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首页> 外文期刊>IEEE Transactions on Communications >Uplink Sum-Rate and Power Scaling Laws for Multi-User Massive MIMO-FBMC Systems
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Uplink Sum-Rate and Power Scaling Laws for Multi-User Massive MIMO-FBMC Systems

机译:用于多用户大型MIMO-FBMC系统的上行链路和速率和功率缩放规律

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This paper analyses the performance of filter bank multicarrier (FBMC) signaling in conjunction with offset quadrature amplitude modulation (OQAM) in multi-user (MU) massive multiple-input multiple-output (MIMO) systems. Initially, closed form expressions are derived for tight lower bounds corresponding to the achievable uplink sum-rates for FBMC-based single-cell MU massive MIMO systems relying on maximum ratio combining (MRC), zero forcing (ZF) and minimum mean square error (MMSE) receiver processing with/without perfect channel state information (CSI) at the base station (BS). This is achieved by exploiting the statistical properties of the intrinsic interference that is characteristic of FBMC systems. Analytical results are also developed for power scaling in the uplink of MU massive MIMO-FBMC systems. The above analysis of the achievable sum-rates and corresponding power scaling laws is subsequently extended to multi-cell scenarios considering both perfect as well as imperfect CSI, and the effect of pilot contamination. The delay-spread-induced performance erosion imposed on the linear processing aided BS receiver is numerically quantified by simulations. Numerical results are presented to demonstrate the close match between our analysis and simulations, and to illustrate and compare the performance of FBMC and traditional orthogonal frequency division multiplexing (OFDM)-based MU massive MIMO systems.
机译:本文分析了滤波器组多载波(FBMC)信令与多用户(MU)大规模多输入多输出(MIMO)系统中的偏移正交幅度调制(OQAM)的表现。最初,导出闭合表达式,用于对应于基于FBMC的单细胞MU大量MIMO系统的可实现的上行链路总和速率的紧密下限,依赖于最大比率(MRC),零强制(ZF)和最小均方误差( MMSE)在基站(BS)中具有/不具有完美信道状态信息(CSI)的接收器处理。这是通过利用FBMC系统特征的内在干扰的统计特性来实现的。在MU大量MIMO-FBMC系统的上行链路中,还开发了分析结果。随后,考虑到完美的CSI和飞行员污染的效果,随后将可实现的总和和相应的电力缩放法律分析到多个细胞情景。通过模拟计算施加在线性处理辅助BS接收器上的延迟扩散诱导的性能蚀力。提出了数值结果来展示我们的分析和仿真之间的密切匹配,并说明并比较FBMC和传统正交频分复用(OFDM)的性能 - 基于MU大规模MIMO系统。

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