无线网络中多天线组播的延迟性能

M. Kountouris, Apostolos Avranas
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引用次数: 3

摘要

由于任务关键型物联网(IoT)应用和以内容为中心的服务的出现,低延迟通信目前引起了极大的关注。深入了解延迟性能对于有效的无线系统设计和端到端延迟保证至关重要。在本文中,我们研究了物理层多天线组播的网络层性能,即当相同的数据同时传送给多个用户时。我们用Mellin变换给出了服务过程的统计特征,并利用随机网络微积分的工具导出了服务过程的概率延迟界。在此基础上,利用极值理论刻画了用户数量非常大时的服务过程,并推导出天线和用户数量趋近无穷大时的标度规律。我们的研究结果可用于无线组播网络的系统维数,以保证延迟要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delay Performance of Multi-Antenna Multicasting in Wireless Networks
Low-latency communication is currently attracting significant attention due to the emergence of mission-critical Internet of Things (IoT) applications and content-centric services. A deep understanding of the delay performance is essential for efficient wireless system design and end-to-end latency guarantees. In this paper, we investigate the network-layer performance of physical layer multi-antenna multicasting, i.e., when the same data is simultaneously conveyed to multiple users. We provide a statistical characterization of the service process in terms of its Mellin transform and derive probabilistic delay bounds using tools from stochastic network calculus. Furthermore, using extreme value theory, we characterize the service process for very large number of users and derive scaling laws as the number of antennas an d/or users is taken to infinity. Our results can be used for system dimensioning to guarantee the delay requirements in wireless multicast networks.
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