In this paper, we analyze the average age of information (AoI) and the average peak AoI (PAoI) of a multiuser mobile edge computing (MEC) system where a base station (BS) generates and transmits computation-intensive packets to user equipments (UEs). In this MEC system, we focus on three computing schemes: (i) The local computing scheme where all computational tasks are computed by the local server at the UE, (ii) The edge computing scheme where all computational tasks are computed by the edge server at the BS, and (iii) The partial computing scheme where computational tasks are partially allocated at the edge server and the rest are computed by the local server. Considering exponentially distributed transmission time and computation time and adopting the first come first serve (FCFS) queuing policy, we derive closed-form expressions for the average AoI and average PAoI. To address the complexity of the average AoI expression, we derive simple upper and lower bounds on the average AoI, which allow us to explicitly examine the dependence of the optimal offloading decision on the MEC system parameters. Aided by simulation results, we verify our analysis and illustrate the impact of system parameters on the AoI performance.
翻译:在本文中,我们分析了多用户移动边缘计算(MEC)系统的信息(AoI)和平均峰值AoI(PaoI)的平均信息年龄(AoI)和多用户移动边缘计算(MEC)系统的平均峰值(PaoI),基站(BS)生成和向用户设备(UES)传输计算密集型包。在这个MEC系统中,我们侧重于三个计算方案:(一) 由UE的当地服务器计算所有计算任务的本地计算方案,(二) 所有计算任务由BS的边端服务器计算的所有计算任务的边际计算方案,以及(三) 计算部分由边端服务器分配计算任务和其余部分由本地服务器计算的部分计算方案。考虑到快速分布的传输时间和计算时间,并采用第一个到的(FCFCFS)排队政策,我们为平均AoI和普通PAoI的封闭式表达式表达方式。为了解决平均AoI表达方式的复杂性,我们在平均AoI的边端服务器上获得简单的上下限和下限,从而我们能够明确检查MEC系统最佳卸载决定对AoI系统参数的参数的依赖,我们通过模拟结果验证我们的模拟结果。