Multi-user MIMO enhances throughput by simultaneously transmitting/receiving parallel data streams to/from a group of users. However, the throughput analysis does not ac-count for variable data traffic. The research objective of this project is to analyze the effect of variable traffic as it will change the system behavior. The two characteristic features of variable traffic viz. packet size variation and traffic burstiness have been considered for the analysis in this project. Their effects have been studied individually to provide an insight into the problem. Through simulations, we show that in certain scenarios the system performance of MU-MIMO deteriorates significantly due to both packet size variations and traffic burstiness individually even under ideal conditions with respect to channel variations, channel correlation, mobility, etc. Furthermore, we show that under bursty traffic with higher offered load the aggregate throughput first re-mains steady until a certain peak to average rate ratio and then deteriorates linearly instead of exponentially. Also, un-der high amount of traffic burstiness, the throughputs are in-dependent of the aggregation rates. A thorough analysis is provided to explain these two phenomena. This is the first research work that considers the impact of variable traffic on the performance of MU-MIMO. Therefore, the implications for MAC protocol design are significant.
翻译:多用户MIMO通过同时向用户群体传输/接收平行数据流/从用户群体接收平行数据流来提高吞吐量。然而,吞吐量分析没有计算变量数据流量。该项目的研究目标是分析可变流量的影响,因为它将改变系统行为。在分析这一项目时考虑了可变流量的两种特征,即包尺寸变化和交通不便性能的特征。对这些特征进行了单独研究,以洞察问题。通过模拟,我们表明在某些假设中,MU-MIMO的系统性能会大幅恶化,因为包体大小的变化和流量突发,即使在频道变异、频道相关、流动性等理想条件下也是如此。此外,我们表明,在爆炸性流量较高的情况下,总吞吐量首先保持稳定,直到达到一定的峰值,然后是线性恶化,而不是指数化。此外,在非高度的流量起伏性波动性能中,通量取决于汇总率。我们进行了彻底的分析,以解释这两种现象。这是考虑可变流量设计对IMIMIMMU的重大影响的第一个研究工作。