System-level performance of downlink NOMA for future LTE enhancements

A. Benjebbour, Anxin Li, Yuya Saito, Y. Kishiyama, A. Harada, Takehiro Nakamura
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引用次数: 334

Abstract

This paper investigates the system-level performance of downlink non-orthogonal multiple access (NOMA) with power-domain user multiplexing at the transmitter side and successive interference canceller (SIC) on the receiver side. The goal is to clarify the performance gains of NOMA for future LTE (Long-Term Evolution) enhancements, taking into account design aspects related to the LTE radio interface such as, frequency-domain scheduling with adaptive modulation and coding (AMC), and NOMA specific functionalities such as error propagation of SIC receiver, multi-user pairing and transmit power allocation. In particular, a pre-defined user grouping and fixed per-group power allocation are proposed to reduce the overhead associated with power allocation signalling. Based on computer simulations, we show that for both wideband and subband scheduling and both low and high mobility scenarios, NOMA can still provide a hefty portion of its expected gains even with error propagation, and also when the proposed simplified user grouping and power allocation are used.
未来LTE增强下行链路NOMA的系统级性能
本文研究了在发射端采用功率域用户复用技术,在接收端采用连续干扰消除技术的下行链路非正交多址(NOMA)系统级性能。目标是阐明NOMA在未来LTE(长期演进)增强方面的性能提升,同时考虑到与LTE无线电接口相关的设计方面,如自适应调制和编码(AMC)的频域调度,以及NOMA特定的功能,如SIC接收器的错误传播、多用户配对和发射功率分配。特别提出了预定义的用户分组和固定的组间功率分配,以减少功率分配信令带来的开销。基于计算机模拟,我们表明,对于宽带和子带调度以及低和高移动性场景,即使存在错误传播,以及使用所提出的简化用户分组和功率分配,NOMA仍然可以提供其预期增益的很大一部分。
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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