Effect of Mutual Coupling on the Performance of STCM-MIMO Systems

Fatemeh Asghari Azhiri, R. Abdolee, B. M. Tazehkand
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引用次数: 4

Abstract

Space-time coded massive (STCM) multiple-input multiple-output (MIMO) system provides superior bit error rate (BER) performance compared with the conventional space-time coding and massive MIMO techniques. The transmitter of the STCM-MIMO system consists of a large antenna array. In a practical system, the self-interference created by the signals transmitted by the elements of this antenna array, known as mutual coupling (MC), degrades the performance of the system. The MC effect is pronounced in communication systems with a large antenna array. On the other hand, increasing the number of transmitting antennas results in improved BER performance. Hence, there is a trade off in selecting the optimum number of transmitting antennas in an STCM-MIMO system. In order to take the impact of MC into account, we have derived an analytical expression for the received signal to accurately model the STCM-MIMO system under the existence of the MC effect. We present an algorithm to select the optimal number of antennas to minimize mutual coupling and the system bit error rate (BER). Through computer simulations, we investigate the BER performance of the STCM-MIMO system for different numbers of array elements.
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互耦合对STCM-MIMO系统性能的影响
空时编码海量(STCM)多输入多输出(MIMO)系统与传统的空时编码和海量MIMO技术相比,具有更好的误码率性能。STCM-MIMO系统的发射机由一个大型天线阵列组成。在实际系统中,这种天线阵列的元件所传输的信号所产生的自干扰,即互耦(MC),会降低系统的性能。在具有大型天线阵的通信系统中,MC效应非常明显。另一方面,增加发射天线的数量可以提高误码率性能。因此,在STCM-MIMO系统中选择最佳发射天线数量需要权衡。为了考虑MC的影响,我们推导了接收信号的解析表达式,以准确地模拟存在MC效应下的STCM-MIMO系统。提出了一种选择最佳天线数的算法,以最小化互耦和系统误码率(BER)。通过计算机仿真,研究了不同阵列元数下STCM-MIMO系统的误码率性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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