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Case study and performance evaluation of MDMA-A non-orthogonal multiple access scheme for 5G cellular systems

机译:5G蜂窝系统MDMA-A非正交多址方案的案例研究和性能评估

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摘要

Multipath division multiple access (MDMA) has recently been proposed as a non-orthogonal multiple access scheme which exploits multipath domain to separate its users [1]. It is claimed that both the system capacity and total data throughput can be enhanced to a large amount. Yet, it is at its early stage of developments and it needs to be further investigated and clarified for its real use. In this paper, the feasibility and realizability of the MDMA cellular system are demonstrated by computer simulation. The receiver operation is also described in detail. Besides, the system performance is compared with those claimed in the original paper [1]. In addition, practical considerations on implementing the MDMA cellular system are discussed as well. With considerable amount of channel estimation error, it is shown that the system can still achieve 16 bps/Hz/cell with 300 BS antennas in cellular spectrum efficiency, which is an order of magnitude larger than the currently used first-generation to fourth-generation multiple access schemes. Thus, the MDMA can be considered as an implementable and spectrum efficient non-orthogonal multiple access scheme for future 5G systems.
机译:多径分割多址(MDMA)最近已被提出作为一种非正交的多址方案,该方案利用多径域来分离其用户[1]。据称,系统容量和总数据吞吐量都可以大大提高。但是,它尚处于发展的初期,需要进一步研究和澄清其实际用途。本文通过计算机仿真证明了MDMA蜂窝系统的可行性和可实现性。还详细描述了接收器操作。此外,将系统性能与原始论文[1]中要求的性能进行了比较。另外,还讨论了关于实现MDMA蜂窝系统的实际考虑。在信道估计误差相当大的情况下,表明使用300 BS天线,系统仍可以在蜂窝频谱效率方面达到16 bps / Hz / cell,这比当前使用的第一代至第四代大一个数量级。多路访问方案。因此,对于未来的5G系统,MDMA可被视为一种可实现且频谱有效的非正交多址方案。

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