Fatriot:使用 SmartNIC 的关键任务系统容错 MEC 架构

IF 7.7 2区 计算机科学 Q1 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Taejune Park , Myoungsung You , Jinwoo Kim , Seungsoo Lee
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引用次数: 0

摘要

多接入边缘计算(MEC)可在终端设备附近部署云基础设施并减少延迟,在智能电网、自动驾驶汽车和医疗保健等关键任务服务中发挥着举足轻重的作用。确保容错性对关键任务服务至关重要,因为这些服务的故障可能导致致命事故和停电。然而,MEC 架构的分布式特性使其比传统云系统更容易出现故障。该领域的现有研究主要集中在增强鲁棒性,以防止 MEC 系统发生故障,而不是从故障条件下恢复系统。为了弥补这一差距,我们引入了 Fatriot,这是一种基于 SmartNIC 的架构,旨在确保 MEC 系统的容错性。Fatriot 可主动监控 MEC 主机上的异常情况,并在检测到故障时将传入的服务流量无缝重定向到备份主机。Fatriot 作为 SmartNIC 上的独立解决方案,即使在 MEC 主机出现严重错误(如内核故障)时,也能保证其容错机制的持续运行,从而维持关键任务服务的不间断服务。我们在 NetFPGA-SUME 上实现的 Fatriot 原型展示了对各种故障情况的有效缓解,并以最小的服务开销(低于 1%)实现了这一目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fatriot: Fault-tolerant MEC architecture for mission-critical systems using a SmartNIC

Multi-access edge computing (MEC), deploying cloud infrastructures proximate to end-devices and reducing latency, takes pivotal roles for mission-critical services such as smart grids, self-driving cars, and healthcare. Ensuring fault-tolerance is paramount for mission-critical services, as failures in these services can lead to fatal accidents and blackouts. However, the distributed nature of MEC architectures makes them more susceptible to failures than traditional cloud systems. Existing research in this field has focused on enhancing robustness to prevent failures in MEC systems rather than restoring them from failure conditions. To bridge this gap, we introduce Fatriot, a SmartNIC-based architecture designed to ensure fault-tolerance in MEC systems. Fatriot actively monitors for anomalies on MEC hosts and seamlessly redirects incoming service traffic to backup hosts upon detecting failures. Operating as a stand-alone solution on a SmartNIC, Fatriot guarantees the continuous operation of its fault-tolerance mechanism, even during severe errors (e.g., kernel failure) on the MEC host, maintaining uninterrupted service in mission-critical services. Our prototype of Fatriot, implemented on the NetFPGA-SUME, demonstrates effective mitigation of various failure scenarios, achieving this with minimal overhead to services (less than 1%).

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来源期刊
Journal of Network and Computer Applications
Journal of Network and Computer Applications 工程技术-计算机:跨学科应用
CiteScore
21.50
自引率
3.40%
发文量
142
审稿时长
37 days
期刊介绍: The Journal of Network and Computer Applications welcomes research contributions, surveys, and notes in all areas relating to computer networks and applications thereof. Sample topics include new design techniques, interesting or novel applications, components or standards; computer networks with tools such as WWW; emerging standards for internet protocols; Wireless networks; Mobile Computing; emerging computing models such as cloud computing, grid computing; applications of networked systems for remote collaboration and telemedicine, etc. The journal is abstracted and indexed in Scopus, Engineering Index, Web of Science, Science Citation Index Expanded and INSPEC.
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