系统级性能的下行链路NOMA与未来LTE增强的SU-MIMO相结合

A. Benjebbour, Anxin Li, Y. Kishiyama, Huiling Jiang, Takehiro Nakamura
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引用次数: 70

摘要

本文研究了下行链路非正交多址(NOMA)与单用户MIMO (SU-MIMO)相结合的系统级性能,以用于未来LTE(长期演进)的增强。目标是澄清NOMA结合SU-MIMO传输的性能增益,考虑到LTE无线电接口,如频域调度、自适应调制和编码(AMC),以及NOMA特定的功能,如多用户配对/排序和传输功率分配。我们特别提出了将NOMA与LTE中规定的开环SU-MIMO(传输模式3:TM3)和闭环SU-MIMO(传输模式4:TM4)有效结合的实用方案。在计算机仿真的基础上,我们比较了遗传辅助信道质量信息(CQI)估计和近似CQI估计,以及使用不同数量的功率集,在调度和MCS(调制和编码方案)选择的不同粒度下NOMA的性能增益。评估结果表明,即使使用近似的CQI估计和有限数量的功率集,以及适用于LTE兼容子带调度和宽带MCS的情况下,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。
System-level performance of downlink NOMA combined with SU-MIMO for future LTE enhancements
This paper investigates the system-level performance of downlink non-orthogonal multiple access (NOMA) combined with single user MIMO (SU-MIMO) for future LTE (Long-Term Evolution) enhancements. The goal is to clarify the performance gains of NOMA combined with SU-MIMO transmission, taking into account the LTE radio interface such as frequency-domain scheduling, adaptive modulation and coding (AMC), and NOMA specific functionalities such as multi-user pairing/ordering and transmit power allocation. In particular, we propose practical schemes to efficiently combine NOMA with open-loop SU-MIMO (Transmission Mode 3: TM3) and closed-loop SU-MIMO (Transmission Mode 4: TM4) specified in LTE. Based on computer simulations, we compare NOMA performance gains for different granularities of scheduling and MCS (modulation and coding scheme) selection, for both genie-aided channel quality information (CQI) estimation and approximated CQI estimation, and using different number of power sets. Evaluation results show that NOMA can still provide a hefty portion of its expected gains even with approximated CQI estimation and limited number of power sets, and also when LTE compliant subband scheduling and wideband MCS are applied.
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