NOMA-Based Optimal Multiplexing Method for Downlink Service Channels to Maximize Integrated System Throughput

Teruaki Shikuma, Y. Yuda, K. Higuchi
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引用次数: 3

Abstract

We propose a novel non-orthogonal multiple access (NOMA)-based optimal multiplexing method for multiple downlink service channels to maximize the integrated system throughput. In the fifth generation (5G) mobile communication system, the support of various wireless communication services such as massive machine-type communications (mMTC), ultra-reliable low latency communications (URLLC), and enhanced mobile broadband (eMBB) is expected. These services will serve different numbers of terminals and have different requirements regarding the spectrum efficiency and fairness among terminals. Furthermore, different operators may have different policies regarding the overall spectrum efficiency and fairness among services. Therefore, efficient radio resource allocation is essential during the multiplexing of multiple downlink service channels considering these requirements. The proposed method achieves better system performance than the conventional orthogonal multiple access (OMA)-based multiplexing method thanks to the wider transmission bandwidth per terminal and inter-terminal interference cancellation using the successive interference canceller (SIC). Computer simulation results reveal that the effectiveness of the proposed method is especially significant when the system prioritizes the fairness among terminals (including fairness among services).
基于noma的下行业务信道最优复用方法以最大化综合系统吞吐量
提出了一种新的基于非正交多址(NOMA)的多下行业务信道最优复用方法,以最大限度地提高集成系统吞吐量。在第五代(5G)移动通信系统中,预计将支持大规模机器类型通信(mMTC)、超可靠低延迟通信(URLLC)、增强型移动宽带(eMBB)等多种无线通信业务。这些业务将服务于不同数量的终端,并且对终端之间的频谱效率和公平性有不同的要求。此外,不同的运营商对整体频谱效率和业务之间的公平性可能有不同的政策。因此,考虑到这些需求,在多个下行业务信道的复用过程中,有效的无线电资源分配至关重要。该方法具有较宽的终端传输带宽和采用逐次干扰消除器(SIC)消除终端间干扰的特点,比传统的基于正交多址(OMA)的多路复用方法具有更好的系统性能。计算机仿真结果表明,当系统优先考虑终端间公平性(包括服务间公平性)时,该方法的有效性尤为显著。
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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