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Nomad: An Efficient Consensus Approach for Latency-Sensitive Edge-Cloud Applications

机译:NOMAD:延迟敏感边缘云应用的有效共识方法

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The rise of edge computing gives birth to a spectrum of delay-sensitive applications. Many of these applications build their services atop the functionality that the edge nodes quickly negotiate a unique order on the events received from a massive number of client devices, even under very high event rates. To this end, we propose a protocol, called Nomad, for achieving fast event ordering in edge computing environments. Nomad is designed as a consensus protocol that employs a lease-based approach to take advantage of the locality of the unbalanced workload across the system. It also dynamically adjusts the leadership distribution on the edge nodes based on the recent running history, and relies on a cloud-based arbitrator to resolve contentions. Experiments demonstrate that Nomad outperforms the existing solutions, such as Multi-Paxos, Mencius and E-Paxos, in achieving fast event ordering for large-scale, delay-sensitive edge-cloud applications.
机译:边缘计算的兴起产生了延迟敏感应用的频谱。这些应用程序中的许多应用程序在其工作中构建了它们的服务,即即使在非常高的事件速率下,也可以在从大量客户端设备接收的事件中协商独特的顺序。为此,我们提出了一个称为Nomad的协议,以实现边缘计算环境中的快速事件排序。 Nomad被设计为共识协议,采用基于租赁的方法来利用整个系统的不平衡工作量的局部性。它还根据最近的运行历史记录动态调整边缘节点上的领导分布,并依赖于基于云的仲裁器来解决满足。实验表明,Nomad优于现有的解决方案,例如多PAXOS,MECIUS和E-PAXOS,以实现大型延迟敏感的边云应用程序的快速事件排序。

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