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A Capillary Computing Architecture for Dynamic Internet of Things: Orchestration of Microservices from Edge Devices to Fog and Cloud Providers

机译:动态物联网的毛细管计算架构:从边缘设备到雾和云提供商的微服务编排

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摘要

The adoption of advanced Internet of Things (IoT) technologies has impressively improved in recent years by placing such services at the extreme Edge of the network. There are, however, specific Quality of Service (QoS) trade-offs that must be considered, particularly in situations when workloads vary over time or when IoT devices are dynamically changing their geographic position. This article proposes an innovative capillary computing architecture, which benefits from mainstream Fog and Cloud computing approaches and relies on a set of new services, including an Edge/Fog/Cloud Monitoring System and a Capillary Container Orchestrator. All necessary Microservices are implemented as Docker containers, and their orchestration is performed from the Edge computing nodes up to Fog and Cloud servers in the geographic vicinity of moving IoT devices. A car equipped with a Motorhome Artificial Intelligence Communication Hardware (MACH) system as an Edge node connected to several Fog and Cloud computing servers was used for testing. Compared to using a fixed centralized Cloud provider, the service response time provided by our proposed capillary computing architecture was almost four times faster according to the 99th percentile value along with a significantly smaller standard deviation, which represents a high QoS.
机译:通过将此类服务置于网络的最边缘,近年来,先进的物联网(IoT)技术的采用已取得了显着改善。但是,必须考虑特定的服务质量(QoS)权衡,尤其是在工作负载随时间变化或IoT设备动态更改其地理位置的情况下。本文提出了一种创新的毛细管计算架构,该架构将从主流的Fog和Cloud计算方法中受益,并依赖于一组新服务,包括Edge / Fog / Cloud监控系统和Capillary Container Orchestrator。所有必要的微服务都实现为Docker容器,其编排从Edge计算节点到移动IoT设备地理区域内的Fog和Cloud服务器执行。测试使用了一辆装有Motorhome人工智能通信硬件(MACH)系统作为与多个Fog和Cloud计算服务器连接的Edge节点的汽车。与使用固定的集中式云提供商相比,根据第99个百分位数的值以及显着较小的标准偏差(表示高QoS),我们提出的毛细管计算架构所提供的服务响应时间几乎快了四倍。

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