论文标题

6G时间敏感服务的移动边缘计算的延迟表征

Delay Characterization of Mobile Edge Computing for 6G Time-Sensitive Services

论文作者

Cao, Jianyu, Feng, Wei, Ge, Ning, Lu, Jianhua

论文摘要

时间敏感服务(TSSS)已被广泛设想,以供未来的第六代(6G)无线通信网络。由于其固有的低延迟优势,移动边缘计算(MEC)将是TSS的必不可少的推动器。用户经历的延迟的随机特征是反映TSSS服务质量(QoS)的关键指标。关于MEC的大多数研究都集中在平均延迟上。只有少数研究工作用于其他随机延迟特征,例如通过解耦MEC的传输和计算过程,例如延迟约束违规概率和延迟的概率分布。但是,如果这两个过程无法解耦,则耦合将为分析随机延迟特性带来新的挑战。在本文中,考虑了边缘服务器上具有有限计算缓冲区的MEC系统。在此系统中,传输过程和计算过程形成反馈循环,无法解耦。我们制定一个离散的两阶段串联排队系统。然后,通过使用矩阵几何方法,我们获得了随机延迟特性的估计方法,包括延迟的概率分布,延迟绑定违规概率,平均延迟和延迟标准偏差。估计方法通过模拟验证。通过数值实验来分析随机延迟特性,该实验揭示了MEC的传输过程和计算过程之间的耦合关系。这些结果将在很大程度上有助于详细的沟通和计算资源分配,以改善TSSS的QoS。

Time-sensitive services (TSSs) have been widely envisioned for future sixth generation (6G) wireless communication networks. Due to its inherent low-latency advantage, mobile edge computing (MEC) will be an indispensable enabler for TSSs. The random characteristics of the delay experienced by users are key metrics reflecting the quality of service (QoS) of TSSs. Most existing studies on MEC have focused on the average delay. Only a few research efforts have been devoted to other random delay characteristics, such as the delay bound violation probability and the probability distribution of the delay, by decoupling the transmission and computation processes of MEC. However, if these two processes could not be decoupled, the coupling will bring new challenges to analyzing the random delay characteristics. In this paper, an MEC system with a limited computation buffer at the edge server is considered. In this system, the transmission process and computation process form a feedback loop and could not be decoupled. We formulate a discrete-time two-stage tandem queueing system. Then, by using the matrix-geometric method, we obtain the estimation methods for the random delay characteristics, including the probability distribution of the delay, the delay bound violation probability, the average delay and the delay standard deviation. The estimation methods are verified by simulations. The random delay characteristics are analyzed by numerical experiments, which unveil the coupling relationship between the transmission process and computation process for MEC. These results will largely facilitate elaborate allocation of communication and computation resources to improve the QoS of TSSs.

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