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Process state synchronization-based application execution management for mobile edge/cloud computing

机译:基于过程状态同步的应用程序执行管理,用于移动边缘/云计算

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Mobile cloud computing (MCC) and mobile edge computing (MEC) facilitate the mobile devices to augment their capabilities by utilizing the resources and services offered by Cloud and Edge Cloud, respectively. However, due to mobility, network connection becomes unstable that causes application execution disruption. Such disruption increases the execution time and in some cases restrain the mobile devices from getting execution results from the cloud. This research work analyzes the impact of user mobility on the execution of cloud-based mobile applications. We propose a Process State Synchronization (PSS)based execution management to solve the aforementioned problem. We analytically compute a sufficient condition on synchronization interval that ensure reduction in mobile application execution time under PSS in case of disconnection. Similarly, we compute the upper bound on synchronization interval whereby a larger synchronization interval did not result in significant benefits in terms of execution time for the mobile application. The analytical results were confirmed by the sample implementation of PSS with the computed synchronization intervals. Moreover, we also compare the performance of proposed solution with the state-of-the-art solutions. The results show that the PSS-based execution outperforms the other contemporary solutions. (C) 2018 Elsevier B.V. All rights reserved.
机译:移动云计算(MCC)和移动边缘计算(MEC)分别通过利用Cloud和Edge Cloud提供的资源和服务来促进移动设备增强其功能。但是,由于移动性,网络连接变得不稳定,从而导致应用程序执行中断。这种中断会增加执行时间,并且在某些情况下会限制移动设备从云中获取执行结果。这项研究工作分析了用户移动性对基于云的移动应用程序执行的影响。我们提出了一种基于过程状态同步(PSS)的执行管理来解决上述问题。我们通过分析计算出同步间隔的充分条件,以确保在断开连接的情况下减少PSS下移动应用程序的执行时间。同样,我们计算了同步间隔的上限,由此,较大的同步间隔不会在移动应用程序的执行时间方面带来明显的好处。分析结果已通过PSS的示例实现以及计算出的同步间隔得到证实。此外,我们还比较了所提出的解决方案和最新解决方案的性能。结果表明,基于PSS的执行优于其他现代解决方案。 (C)2018 Elsevier B.V.保留所有权利。

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