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Sporadic Cloud-Based Mobile Augmentation on the Top of a Virtualization Layer: A Case Study of Collaborative Downloads in VANETs

机译:虚拟化层顶部的零星基于云的移动增强:一个案例研究了Vanets的协作下载

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摘要

Current approaches to Cloud-based Mobile Augmentation (CMA) leverage (cloud-based) resources to meet the requirements of rich mobile applications, so that a terminal (the so-called application node or AppN) can borrow resources lent by a set of collaborator nodes (CNs). In the most sophisticated approaches proposed for vehicular scenarios, the collaborators are nearby vehicles that must remain together near the application node because the augmentation service is interrupted when they move apart. This leads to disruption in the execution of the applications and consequently impoverishes the mobile users' experience. This paper describes a CMA approach that is able to restore the augmentation service transparently when AppNs and CNs separate. The functioning is illustrated by a NaaS model where the AppNs access web contents that are collaboratively downloaded by a set of CNs, exploiting both roadside units and opportunistic networking. The performance of the resulting approach has been evaluated via simulations, achieving promising results in terms of number of downloads, average download times, and network overhead.
机译:目前基于云的移动增强(CMA)利用(基于云)资源的方法,以满足丰富的移动应用程序的要求,使终端(所谓的应用程序节点或Appn)可以借用一组协作者的资源节点(CNS)。在提出车辆方案的最复杂的方法中,协作者是附近的车辆,必须在应用程序节点附近保持在一起,因为增强服务在分开时被中断。这导致申请执行中断,从而使移动用户的体验中断。本文介绍了一种CMA方法,可以在APPN和CNS分开时透明地透明地恢复增强服务。该功能由NAAS模型说明,其中APPNS访问Web内容由一组CNS协作,利用路边单位和机会网络化。通过仿真评估了所得方法的性能,从而在下载数量,平均下载时间和网络开销方面实现了有希望的结果。

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