A Novel Non-Orthogonal Multiple Access Based On Maximum Welch Bound Equality

Zhanji Wu, Xuanbo Shao
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Abstract

A novel spreading non-orthogonal multiple access (NOMA) scheme is proposed for the future 5G communication system, which is called maximum Welch-bound spreading multiple access (MWSMA). In the transmitter, each user’s modulated symbols are spread by a complex-valued short spreading sequence and then sent simultaneously on the same frequency spectrum. We design spreading sequences via maximum-Welch-bound-equality (MWBE) to minimize the maximum cross-correlation amplitude. Theoretical analysis on cross-correlation and average mutual information (AMI) proves that the proposed MWSMA scheme is much superior to the current orthogonal frequency division multiple access (OFDMA) and two key NOMA schemes, multi-user shared access (MUSA) and sparse code multiple access (SCMA), especially for high spectral efficiency (SE). Simulation results also verify that MWSMA can achieve significant 0.8dB, 0.8dB and 3.9dB signal-to-noise-ratio (SNR) gain at target block error rate (BLER) 10−1 as compared with MUSA, SCMA and OFDMA, respectively.
一种新的基于最大韦尔奇界不等式的非正交多址
针对未来5G通信系统,提出了一种新的扩展非正交多址(NOMA)方案,即最大Welch-bound扩展多址(MWSMA)。在发射机中,每个用户的调制符号通过复值短扩展序列进行扩展,然后在同一频谱上同时发送。我们通过最大韦尔奇界等式(MWBE)来设计扩频序列,以最小化最大互相关幅度。相互关联和平均互信息(AMI)的理论分析表明,该方案明显优于当前的正交频分多址(OFDMA)和两种关键的NOMA方案,即多用户共享接入(MUSA)和稀疏码多址(SCMA),特别是在高频谱效率(SE)方面。仿真结果还验证了与MUSA、SCMA和OFDMA相比,MWSMA在目标块错误率(BLER)为10−1时,分别可以获得显著的0.8dB、0.8dB和3.9dB信噪比增益。
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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