在高度动态和不稳定的环境中可靠和高效的移动边缘计算

Minh Le, Z. Song, Young-Woo Kwon, E. Tilevich
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引用次数: 22

摘要

边缘计算在感知数据产生时就对其进行处理,从而减少了延迟,提高了响应能力,并在数据密集型应用中节省了网络带宽。然而,现有的边缘计算解决方案是在假设边缘基础设施将由一组预先部署的、自定义配置的计算设备组成的前提下运行的,这些设备由可靠的本地网络连接。尽管边缘计算在高度动态和不稳定的环境(包括灾难恢复场景和野外探险)中具有提供必要计算资源的巨大潜力,但该领域现有的分布式系统架构无法抵御由网络断开引起的部分故障。在本文中,我们提出了一种新的边缘计算系统架构,通过动态适应处理故障来提供抗故障和高效的应用程序;如果边缘服务器不可达,则设备集群通过P2P通信开始执行分配的任务,直到边缘服务器恢复可达。我们的实验结果表明,参考实现在面对部分故障时具有较高的响应性和弹性。这些结果表明,所提出的解决方案可以将移动设备的单个容量集成到强大的边缘云中,在高度动态和不稳定的环境中为最终用户提供高效可靠的服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliable and efficient mobile edge computing in highly dynamic and volatile environments
By processing sensory data in the vicinity of its generation, edge computing reduces latency, improves responsiveness, and saves network bandwidth in data-intensive applications. However, existing edge computing solutions operate under the assumption that the edge infrastructure will comprise a set of pre-deployed, custom-configured computing devices, connected by a reliable local network. Although edge computing has great potential to provision the necessary computational resources in highly dynamic and volatile environments, including disaster recovery scenes and wilderness expeditions, extant distributed system architectures in this domain are not resilient against partial failure, caused by network disconnections. In this paper, we present a novel edge computing system architecture that delivers failure-resistant and efficient applications by dynamically adapting to handle failures; if the edge server becomes unreachable, device clusters start executing the assigned tasks by communicating P2P, until the edge server becomes reachable again. Our experimental results with the reference implementation show high responsiveness and resilience in the face of partial failure. These results indicate that the presented solution can integrate the individual capacities of mobile devices into powerful edge clouds, providing efficient and reliable services for end-users in highly dynamic and volatile environments.
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