论文标题
Nakagami-M褪色的MIMO NOMA系统的短包通信:BLER和最小区块分析
Short-Packet Communications for MIMO NOMA Systems over Nakagami-m Fading: BLER and Minimum Blocklength Analysis
论文作者
论文摘要
最近,已经提出了使用短包装的超级可靠和低延迟通信(URLLC),以满足5G和超越网络中新兴应用程序的可靠性和延迟的严格要求。此外,多输入多输出非正交多访问(MIMO NOMA)是提高无线系统频谱效率,可靠性,延迟和连接性的潜在候选者。在本文中,我们研究了中Nakagami-M的多源下行链路MIMO NOMA系统中的短包通信(SPC),并建议考虑两个具有不同优先级的用户群体的天线 - 用户选择方法。与广泛使用的长期数据包装假设相反,SPC分析需要重新设计通信协议和新型性能指标。在这种情况下,我们使用平均块错误率(BLER)和最小区块长度分析了MIMO NOMA系统的SPC性能,而不是传统的指标,例如Ergodic容量和中断能力。更具体地说,要表征有关SPC的系统性能,渐近(以高信号噪声比率)和用户平均BLER的近似闭合形式表达式得出。基于平均BLER的渐近行为,对多样性顺序,最小区块长度和最佳功率分配进行了分析。实现的结果表明,与Mimo Oma相比,MIMO Noma可以同时使用较小的区块长度为多个用户服务,从而证明了MIMO Noma对SPC的好处,以最大程度地减少传输潜伏期。此外,我们的结果表明,所提出的方法不仅可以提高效果效果,而且还可以保证各自用户的全部多样性增长。
Recently, ultra-reliable and low-latency communications (URLLC) using short-packets has been proposed to fulfill the stringent requirements regarding reliability and latency of emerging applications in 5G and beyond networks. In addition, multiple-input multiple-output non-orthogonal multiple access (MIMO NOMA) is a potential candidate to improve the spectral efficiency, reliability, latency, and connectivity of wireless systems. In this paper, we investigate short-packet communications (SPC) in a multiuser downlink MIMO NOMA system over Nakagami-m fading, and propose two antenna-user selection methods considering two clusters of users having different priority levels. In contrast to the widely-used long data-packet assumption, the SPC analysis requires the redesign of the communication protocols and novel performance metrics. Given this context, we analyze the SPC performance of MIMO NOMA systems using the average block error rate (BLER) and minimum blocklength, instead of the conventional metrics such as ergodic capacity and outage capacity. More specifically, to characterize the system performance regarding SPC, asymptotic (in the high signal-to-noise ratio regime) and approximate closed-form expressions of the average BLER at the users are derived. Based on the asymptotic behavior of the average BLER, an analysis of the diversity order, minimum blocklength, and optimal power allocation is carried out. The achieved results show that MIMO NOMA can serve multiple users simultaneously using a smaller blocklength compared with MIMO OMA, thus demonstrating the benefits of MIMO NOMA for SPC in minimizing the transmission latency. Furthermore, our results indicate that the proposed methods not only improve the BLER performance but also guarantee full diversity gains for the respective users.