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Delay Analysis of Random Scheduling and Round Robin in Small Cell Networks

机译:小型蜂窝网络中随机调度和循环调度的时延分析

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We analyze the delay performance of small cell networks operating under random scheduling (RS) and round Robin (RR) protocols. Based on stochastic geometry and queuing theory, we derive accurate and tractable expressions for the distribution of mean delay, which accounts for the impact of random traffic arrivals, queuing interactions, and failed packet retransmissions. Our analysis asserts that RR outperforms RS in terms of mean delay, regardless of traffic statistic. Moreover, the gain from RR is more pronounced in the presence of heavy traffic, which confirms the importance of accounting fairness in the design of scheduling policy. We also find that constrained on the same delay outage probability, RR is able to support more user equipments than that of RS, demonstrating it as an appropriate candidate for the traffic scheduling policy of Internet-of-Things network.
机译:我们分析了在随机调度(RS)和轮询(RR)协议下运行的小型蜂窝网络的延迟性能。基于随机几何和排队理论,我们得出平均延迟分布的准确且易于处理的表达式,该表达式说明了随机流量到达,排队交互和失败的数据包重传的影响。我们的分析断言,无论流量统计如何,RR在平均延迟方面都优于RS。此外,在业务繁忙的情况下,来自RR的收益更加明显,这证实了在计划策略设计中会计公平的重要性。我们还发现,在相同的延迟中断概率下,RR比RS能够支持更多的用户设备,这证明它是物联网网络流量调度策略的合适候选者。

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