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A Joint Handoff and Offloading Decision Algorithm for Mobile Edge Computing (MEC)

机译:移动边缘计算(MEC)的联合切换和卸载决策算法

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The main feature of Mobile Edge Computing (MEC) is to push computational resources and storage to the network edges (e.g., cellular base stations (BSs)) in order to offload computation-intensive and latency-sensitive applications from mobile devices. However, the deployment of MEC with a BS adds extra traffic to the already crowded cellular network that may lead to a radio congestion. On the other hand, user mobility triggers handoffs (HOs) not only between two BSs but also between two MECs, which creates new unique challenges of performing HOs to a target BS with an MEC which must have sufficient computational resources. Unfortunately, existing HO decision algorithms for traditional cellular networks cannot ad- dress these challenges. In addition, the radio network congestion issue is being utterly ignored. In this paper, we propose a novel HO decision algorithm for MEC systems that cooperates both radio and computation offloading. The proposed HO decision algorithm cooperates with femtocells to reduce the effect of radio congestion by offloading static traffic. It also cooperates with the remote cloud to reduce the impact of congestion at the MEC by offloading delay- tolerant computation. Simulation results show that our proposed HO decision algorithm significantly improves the offloading success and the service failure rates. To the best of our knowledge, this is the first HO decision algorithm that addresses both radio and computation offloading issues and mobility together in MEC systems.
机译:移动边缘计算(MEC)的主要功能是将计算资源和存储推送到网络边缘(例如,蜂窝基站(BS)),以便从移动设备上卸载计算密集型和时延敏感的应用程序。但是,与BS一起部署MEC会给已经拥挤的蜂窝网络增加额外的流量,这可能导致无线电拥塞。另一方面,用户移动性不仅触发两个BS之间而且还触发两个MEC之间的切换(HO),这产生了新的独特挑战,即向必须具有足够计算资源的MEC执行对目标BS的HO。不幸的是,用于传统蜂窝网络的现有HO决策算法无法应对这些挑战。此外,无线电网络的拥塞问题已被完全忽略。在本文中,我们为MEC系统提出了一种新颖的HO决策算法,该算法可同时实现无线电和计算分流。提出的HO决策算法与毫微微小区配合使用,通过减轻静态流量的负担来降低无线电拥塞的影响。它还与远程云合作,通过减轻延迟容忍计算的负担来减少MEC处的拥塞影响。仿真结果表明,本文提出的HO决策算法显着提高了卸载成功率和服务失败率。据我们所知,这是第一个同时解决MEC系统中无线电和计算分流问题以及移动性的HO决策算法。

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