Achievable Rate Performance Analysis for Massive MIMO Relay Transmission

Lili Guo, Mingxiang Guan, Chongwu Sun, Yang Wang
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Abstract

Achievable rate is important performance indicator for cooperative massive MIMO relay systems. We analyze the rate performance of a cooperative transmission system based on ZF linear processing. At the same time, relevant factors affecting the rate are discussed, including the number of massive transmitting and receiving antennas array set by the relay station, transmitting power of the relay station and loop interference. The system performance will be affected by the relay station loop interference, resulting in the system rate performance decline. Generally, a large scale transmitting and receiving antenna can be set up on the relay station to avoid the continuous influence of loop interference on system performance. The total achievable rate of the system depends on the minimum achievable rate of the two links from the source station to the receiving end of the relay station, and the transmitting end of the relay station to the destination. We adjusted transmission power which is set by the relay station to make the sum achievable rate increase to a certain extent, that is to say, the minimum achievable rate of the above two links increases. Experimental data show that better achievable speed can be obtained by adjusting the transmission power of the relay end when the signal to noise ratio(SNR) is high. The achievable rate can be improved continuously in the whole channel state signal-to-noise ratio condition by setting different power of relay station simultaneously.
大规模MIMO中继传输的可达速率性能分析
可达速率是协作型大规模MIMO中继系统的重要性能指标。分析了基于ZF线性处理的协同传输系统的速率性能。同时讨论了影响传输速率的相关因素,包括中继站设置的大规模发射和接收天线阵列的数量、中继站的发射功率和环路干扰。系统性能会受到中继站环路干扰的影响,导致系统速率性能下降。为了避免环路干扰对系统性能的持续影响,一般可以在中继站上设置大规模的发射和接收天线。系统的总可实现速率取决于从源站到中继站的接收端和中继站的发射端到目的地的两条链路的最小可实现速率。我们调整中继站设置的传输功率,使总可达速率提高到一定程度,也就是说提高了以上两个链路的最小可达速率。实验数据表明,在信噪比较高的情况下,通过调整继电器端的发射功率可以获得较好的可达速度。通过同时设置不同的中继站功率,可以在全信道状态信噪比条件下不断提高可达速率。
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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