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Considerations on downlink non-orthogonal multiple access (NOMA) combined with closed-loop SU-MIMO

机译:结合闭环SU-MIMO的下行非正交多址(NOMA)考虑

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As a promising downlink multiple access scheme for further cellular enhancements toward 5G, non-orthogonal multiple access (NOMA) improves both cell average and cell-edge user throughput compared to orthogonal multiple access (OMA) in the cellular downlink. When NOMA is combined with multi-antenna technology in practice, some aspects are of great interest, such as error propagation (EP) of successive interference cancellation (SIC) receiver and user velocity. This paper investigates the system-level throughput of NOMA with closed-loop single-user multiple-input multiple-output (SU-MIMO) in the cellular downlink and clarifies the potential gains over OMA with SU-MIMO taking into account these practical aspects. Two EP models are presented into the NOMA with closed-loop (CL) SU-MIMO. Their impacts on performance of NOMA with CL SU-MIMO are investigated by system-level simulations with practical assumptions. Furthermore, impact of user velocity on performance gain of NOMA with CL SU-MIMO is also evaluated. Simulation results show that even with the worst case EP model, NOMA with CL SU-MIMO can still provide large performance gains for both low and high mobility scenarios.
机译:作为用于朝着5G进一步进行蜂窝增强的有希望的下行链路多址接入方案,与蜂窝下行链路中的正交多址接入(OMA)相比,非正交多址接入(NOMA)可以提高小区平均和小区边缘用户吞吐量。在实践中,将NOMA与多天线技术结合使用时,某些方面引起了极大的兴趣,例如连续干扰消除(SIC)接收机的误差传播(EP)和用户速度。本文研究了蜂窝下行链路中具有闭环单用户多输入多输出(SU-MIMO)的NOMA的系统级吞吐量,并考虑了这些实际方面,阐明了使用SU-MIMO的OMA的潜在收益。闭环(CL)SU-MIMO向NOMA提出了两种EP模型。在实际可行的前提下,通过系统级仿真研究了它们对CL SU-MIMO对NOMA性能的影响。此外,还评估了用户速度对使用CL SU-MIMO的NOMA性能增益的影响。仿真结果表明,即使使用最坏情况的EP模型,带有CL SU-MIMO的NOMA仍然可以为低移动性和高移动性场景提供巨大的性能提升。

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