Effect of Transceiver Impairments on the Capacity of Correlated MIMO Channel in LTE Systems

Mohammed Auday Abdullah, W. Al-Masoody
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Abstract

In this paper, the effect of transceiver impairment on the capacity of the MIMO system is studied. Different from the conventional knowledge that the correlation among antenna elements degrade the system performance, this paper proposes an algorithm that simulates the capacity of the correlated MIMO channel that suffers from Rayleigh flat fading with the presence of a physical transmitter and physical receiver. We also assume that the channel state information at the receiver (CSIR) is available. Also, this work will be devoted to long-term evolution systems (LTE). The simulation process of the proposed algorithm is manipulated by MATLAB software with 10000 realizations of the channel. Each realization of the channel is generated randomly. The transceiver impairment levels (k) used in the simulation are 0.08 and 0.175. The simulation results of the proposed algorithm showed that the capacity of the correlated MIMO channel with the presence of a physical transmitter and physical receiver is stopped growing at a particular value in the high SNR regime, which is called the capacity limit. Also, the results showed that the correlation coefficient has an influential role in determining the value of the capacity limit. These results contradicted the results of the traditional MIMO system, in which the traditional MIMO channel capacity grows infinitely at the high-SNRs regime.
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LTE系统中收发器损伤对相关MIMO信道容量的影响
本文研究了收发器损伤对MIMO系统容量的影响。与传统的天线单元之间的相关性会降低系统性能的认识不同,本文提出了一种算法,该算法模拟了在存在物理发射器和物理接收器的情况下,相关MIMO信道遭受瑞利平坦衰落的容量。我们还假设接收端(CSIR)的通道状态信息是可用的。此外,这项工作将致力于长期演进系统(LTE)。采用MATLAB软件对该算法进行仿真,仿真过程中有10000个信道实现。每个信道的实现都是随机生成的。仿真中使用的收发器损伤水平(k)分别为0.08和0.175。仿真结果表明,在高信噪比条件下,存在物理发送端和物理接收端时,相关MIMO信道的容量在特定值停止增长,该值称为容量极限。结果还表明,相关系数对容量限值的确定具有重要影响。这些结果与传统MIMO系统的结果相矛盾,传统MIMO系统的信道容量在高信噪比下无限增长。
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