Enhancement of spectral and energy efficiency in massive MIMO systems with linear schemes

Prasad Rayi, M. Prasad
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引用次数: 1

Abstract

Massive-Multi Input and Multi Output (MIMO) antenna system is considered as the key technology to improve both spectral efficiency (SE) and energy efficiency (EE) for 5G systems. Where pilot contamination and inter-cell interference have been considered as basic limiting factors to achieve high data rate. These parameters will saturate the SE and truncate to a constant value. In this work, we explore the effective evaluation of SE and EE of the M-MIMO antenna system with optimal users. In this work, we basically considered linear processing algorithms such as zero-forcing (ZF), maximum ratio combing (MRC) and minimum mean square error (MMSE) for the analysis SE for the both single and multi-cell scenario in M-MIMO systems. In this paper, we provide a platform to improve the SE and EE with a variation of base station (BS) antennas M and pilot reuse factor λ. We also derived the explicit and exact expressions for the analysis of SE and EE with perfect and imperfect channel state information (CSI). Which are very tight and tractable approximations in the prospective of realistic system scenario. We mainly focused on the asymptotic limit of SE and also obtain optimal user terminals K. It has been noticed that the SE performance greatly depends on the receiving combined scheme. We compared the simulation results for SE based the parameters such as varying antennas at the BS M, optimal UTs K and finally pilot reuse factors λ=4 and λ=7. Here, the simulation results of the BS antennas per-user (M/K) and optimal users K, highly depend on the receive technique and the BS antennas M. We also demonstrated the simulation results with the variation of per-user SE versus the BS antennas. The simulation results were performed by using Matlab 2015b.
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线性方案下大规模MIMO系统频谱和能量效率的提高
大规模多输入多输出(MIMO)天线系统被认为是提高5G系统频谱效率(SE)和能效(EE)的关键技术。其中,导频污染和小区间干扰被认为是实现高数据速率的基本限制因素。这些参数将使SE饱和并截断为一个恒定值。在这项工作中,我们探讨了具有最优用户的M-MIMO天线系统的SE和EE的有效评估。在这项工作中,我们基本上考虑了线性处理算法,如零强迫(ZF),最大比率梳理(MRC)和最小均方误差(MMSE),用于分析M-MIMO系统中单小区和多小区场景的SE。在本文中,我们提供了一个平台,通过改变基站(BS)天线M和导频复用因子λ来提高SE和EE。我们还推导了具有完全和不完全通道状态信息(CSI)的SE和EE的显式和精确表达式。这是非常紧密的和易于处理的近似在现实系统场景的前景。我们主要研究了SE的渐近极限,并得到了最优的用户终端k。注意到SE的性能很大程度上取决于接收组合方案。我们比较了基于BS M下不同天线、最优ut K和导频复用系数λ=4和λ=7等参数的SE仿真结果。这里,BS天线的每用户(M/K)和最优用户K的仿真结果高度依赖于接收技术和BS天线M。我们还演示了每个用户SE与BS天线的变化的仿真结果。利用Matlab 2015b进行仿真。
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