论文标题

启用MEC的无线系统中的时空可靠任务执行服务

Spatiotemporal Dependable Task Execution Services in MEC-enabled Wireless Systems

论文作者

Emara, Mustafa, ElSawy, Hesham, Filippou, Miltiades C., Bauch, Gerhard

论文摘要

多访问边缘计算(MEC)启用计算和能量受限的设备,可以在强大的服务器上卸载和执行其任务。由于频谱和计算资源的稀缺性质,重要的是要共同考虑i)基于竞争的通信,用于卸载和ii)平行计算和占用失败的MEC处理资源(虚拟机)。任务卸载和成功执行任务的可行性几乎没有在操作时间内没有失败,需要从组合的角度集体研究。为此,这封信提出了一个新颖的时空框架,该框架利用随机几何形状和连续的时间马尔可夫链共同表征可靠的MEC启用无线无线系统的通信和计算性能。基于设计的框架,我们评估了各种系统参数对不同可靠性指标的影响,例如(i)计算资源可用性,(ii)任务执行可执行性和(iii)任务执行能力。我们的发现展示了有大量的虚拟机,用于在MEC服务器上并行计算,以最大化任务执行能力。

Multi-access Edge Computing (MEC) enables computation and energy-constrained devices to offload and execute their tasks on powerful servers. Due to the scarce nature of the spectral and computation resources, it is important to jointly consider i) contention-based communications for task offloading and ii) parallel computing and occupation of failure-prone MEC processing resources (virtual machines). The feasibility of task offloading and successful task execution with virtually no failures during the operation time needs to be investigated collectively from a combined point of view. To this end, this letter proposes a novel spatiotemporal framework that utilizes stochastic geometry and continuous time Markov chains to jointly characterize the communication and computation performance of dependable MEC-enabled wireless systems. Based on the designed framework, we evaluate the influence of various system parameters on different dependability metrics such as (i) computation resources availability, (ii) task execution retainability, and (iii) task execution capacity. Our findings showcase that there exists an optimal number of virtual machines for parallel computing at the MEC server to maximize the task execution capacity.

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