Non-Orthogonal Neighbor Election Random Access for Distributed 6G Wireless Networks

Xu Li, Wenjun Huang, Mingqiang Yang, Yanan Liang
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Abstract

Target the increasing access demand in the upcoming sixth-generation (6G) wireless networks, this paper firstly introduces an efficient non-orthogonal neighbor election random access scheme with immediate neighborhood information maintenance, successive interference cancellation (SIC) and iterative decoding. We firstly derive the distribution of the number of transmitting neighbors and reveal that there are up to two neighboring transmitters in over 98% of cases, which is naturally suitable for SIC procedures. Accordingly, an approximated analytical model of NO-NERA performance is established. Numerical results verify the validity of the approximations and show that NO-NERA can improve both the area spectrum efficiency and mean delay of the existing distributed neighbor election scheme in both unicast and broadcast traffic scenarios.
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分布式6G无线网络的非正交邻居选择随机接入
针对即将到来的第六代(6G)无线网络日益增长的接入需求,本文首先介绍了一种具有即时邻域信息维护、连续干扰消除(SIC)和迭代译码的高效非正交邻居选举随机接入方案。我们首先推导了发射邻居数量的分布,并发现在98%以上的情况下,最多有两个相邻的发射机,这自然适合于SIC程序。据此,建立了NO-NERA性能的近似解析模型。数值结果验证了该算法的有效性,表明在单播和广播业务场景下,NO-NERA都能提高现有分布式邻居选举方案的区域频谱效率和平均延迟。
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