Container-based Task Offloading for Time-Critical Fog Computing

Ahmed Chebaane, Simon Spornraft, Abdelmajid Khelil
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引用次数: 2

Abstract

Moving applications from the local Internet of Things (IoT) device to the neighboring infrastructures has been the highlight of the current distributed computing era. Due to high latency and network bottlenecks, Cloud Computing has become rather problematic for real-time applications. Accordingly, Fog Computing, well supported by 5G, has been presented as the missing piece to provide along with cloud computing for virtually all applications. Application virtualization through containers has become more and more popular in the context of Cloud Computing as it simplifies live migration of the application or it’s selected tasks. The concept has been adapted to Fog computing too, However, time-critical task migration and in particular task offloading have not been sufficiently investigated. This work proposes a novel approach to offload time-critical application tasks from the application initiator to surrounding Fog nodes based on Docker containers and Checkpointing. The result is a flexible layer-oriented framework that effectively restricts the offloading to only necessary steps in only two message rounds. Performance evaluations show that through careful easy arrangements the framework performs remarkably well concerning offloading latency.
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基于容器的时间临界雾计算任务卸载
将应用程序从本地物联网(IoT)设备转移到邻近的基础设施已成为当前分布式计算时代的亮点。由于高延迟和网络瓶颈,云计算已经成为实时应用程序的一大问题。因此,在5G的良好支持下,雾计算已被视为与云计算一起为几乎所有应用程序提供的缺失部分。通过容器实现的应用程序虚拟化在云计算上下文中变得越来越流行,因为它简化了应用程序或其选定任务的实时迁移。这个概念也适用于雾计算,然而,时间关键型任务迁移,特别是任务卸载还没有得到充分的研究。这项工作提出了一种基于Docker容器和检查点的新方法,将时间关键型应用程序任务从应用程序启动器卸载到周围的Fog节点。其结果是一个灵活的面向层的框架,它有效地将卸载限制为仅在两个消息轮中的必要步骤。性能评估表明,通过精心的简单安排,框架在卸载延迟方面表现得非常好。
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