论文标题

NR-U的下行链路通道访问性能:命理学和迷你插槽对5 GHz频段中Wi-Fi共存的影响

Downlink channel access performance of NR-U: Impact of numerology and mini-slots on coexistence with Wi-Fi in the 5 GHz band

论文作者

Kosek-Szott, Katarzyna, Valvo, Alice Lo, Szott, Szymon, Gallo, Pierluigi, Tinnirello, Ilenia

论文摘要

当LTE许可证辅助访问(LAA)进入无执照的频段时,细胞系统与Wi-Fi之间的共存引起了研究社区的注意。 NR-U最近引入了5G的一部分,引入了新的共存机会,因为它实现了可扩展的命理学(灵活的子载波间距和OFDM符号长度),以及基于非锁定的调度(迷你插槽),这会极大地影响通道访问。本文分析了NR-U设置对其与Wi-Fi网络共存的影响,并使用模拟和实验将其与LAA操作进行了比较。首先,我们提出了一个下行链路通道访问模拟模型,该模型解决了由于NR-U引入的同步机制而导致的不同节点传输尝试的依赖性和不均匀性的问题。其次,我们使用基于FPGA的LAA,NR-U和Wi-Fi原型验证了所提出的模型的准确性,并具有空中传输。此外,我们表明,用NR-U代替LAA不仅可以克服由预订信号引起的带宽浪费问题,而且在某些情况下,还可以保留计划和随机访问系统的通道访问中的公平性。最后,我们得出的结论是,通常不能保证上述系统中上述系统的公平共存,并且一般可以保证,对于改善基于计划的技术和基于竞争的技术之间的资源共享是必要的。

Coexistence between cellular systems and Wi-Fi gained the attention of the research community when LTE License Assisted Access (LAA) entered the unlicensed band. The recent introduction of NR-U as part of 5G introduces new coexistence opportunities because it implements scalable numerology (flexible subcarrier spacing and OFDM symbol lengths), and non-slot based scheduling (mini-slots), which considerably impact channel access. This paper analyzes the impact of NR-U settings on its coexistence with Wi-Fi networks and compares it with LAA operation using simulations and experiments. First, we propose a downlink channel access simulation model, which addresses the problem of the dependency and non-uniformity of transmission attempts of different nodes, as a result of the synchronization mechanism introduced by NR-U. Second, we validate the accuracy of the proposed model using FPGA-based LAA, NR-U, and Wi-Fi prototypes with over-the-air transmissions. Additionally, we show that replacing LAA with NR-U would not only allow to overcome the problem of bandwidth wastage caused by reservation signals but also, in some cases, to preserve fairness in channel access for both scheduled and random-access systems. Finally, we conclude that fair coexistence of the aforementioned systems in unlicensed bands is not guaranteed in general, and novel mechanisms are necessary for improving the sharing of resources between scheduled and contention-based technologies.

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