Receiver and resource allocation optimization for uplink NOMA in 5G wireless networks

Mohammed Al-Imari, P. Xiao, M. Imran
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引用次数: 38

Abstract

Non-Orthogonal Multiple Access (NOMA) is a promising multiple access technique for 5G wireless networks. In uplink NOMA, more than one user can use the same subcarrier, which increases the system throughput and fairness. Due to the non-orthogonality among the users, joint processing is required at the receiver to retrieve the users' signals. In this paper, we propose solutions to optimize the receiver and the radio resource allocation of uplink NOMA. First, we propose an iterative multiuser detection and decoding (MUDD) to improve the performance of the multiuser detector by utilizing the information derived by the channel decoder. In addition, a novel subcarrier and power allocation algorithm is proposed for NOMA scheme that maximizes the users' weighted sum-rate. The link-level performance evaluation has shown that the proposed iterative MUDD approach brings about 4.5 dB and 9.8 dB performance improvements at block error rate equal to 10-2 comparing to conventional multiuser detection, for QPSK and 16QAM modulations, respectively. Furthermore, the system-level results show that the proposed resource allocation algorithm achieves the system spectral efficiency upper-bound, making NOMA significantly outperforms OFDMA in terms of spectral efficiency and fairness.
5G无线网络上行NOMA的接收机和资源分配优化
非正交多址(NOMA)是5G无线网络中一种很有前途的多址技术。在上行NOMA中,多个用户可以使用同一子载波,提高了系统吞吐量和公平性。由于用户之间的非正交性,需要在接收端进行联合处理来检索用户信号。本文提出了优化上行NOMA接收机和无线电资源分配的解决方案。首先,我们提出了一种迭代多用户检测和解码(MUDD),利用信道解码器导出的信息来提高多用户检测器的性能。此外,针对NOMA方案,提出了一种新的子载波和功率分配算法,使用户加权和率最大化。链路级性能评估表明,对于QPSK和16QAM调制,与传统的多用户检测相比,所提出的迭代MUDD方法在块错误率为10-2的情况下分别带来了4.5 dB和9.8 dB的性能提升。此外,系统级结果表明,所提出的资源分配算法达到了系统频谱效率的上限,使得NOMA在频谱效率和公平性方面明显优于OFDMA。
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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