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Cloud-based Enabling Mechanisms for Container Deployment and Migration at the Network Edge

机译:基于云的容器部署和网络边缘迁移的启用机制

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摘要

In recent years, a new trend of advanced applications with huge demands in terms of Quality of Service (QoS) is gaining ground. Even though Cloud computing provides mature management facilities with ubiquitous capabilities, novel requirements and workloads, foisted by new services, start to expose its weaknesses. In this context, a new Information and Communication Technologies (ICI) trend aims at pushing computation from the Cloud to be much close as possible to data sources, raising in the evolution of new paradigms namely Fog and Mist computing. Specifically, the Fog computing paradigm exploits powerful nodes such as servers, routers, and cloudlets that are coupled with the end devices or their access networks accordingly; they are "relatively" close by the data sources. Whereas Mist computing, which is a lightweight form of Fog computing, pushes the resources even closer. Precisely, Mist computing uses particular nodes that could reside within the same network (e.g., Local Area Network (LAN)) as the end-devices. Considering the advancement that the hardware is knowing nowadays, Fog and Mist nodes are seen suitable to provide resources such as processing, storage, and networking in the proximity of data sources; thereby, the requirements of the new services could be met. Together with the Cloud, the Fog and Mist paradigms introduce a stacked architecture for data processing where a data pre-processing could be performed at the Mist level, then offloaded vertically to the upper layers (i.e., Fog nodes or the Cloud). In these circumstances, it is fundamental to build a management system able to provision efficiently the Fog/Mist-based applications. For this purpose, the Operating System (OS)-level virtualization using containerization technologies, considering its light footprint, fits as a suitable solution to provide Fog/Mist services. The industrial-grade Cloud middlewares, such as OpenStack, which is a reference architecture for Infrastructure-as-a-Service solutions, are still far away from incorporating this new trend. This article proposes an OpenStack-based middleware platform through which containers can be deployed/managed at the Fog/Mist levels.
机译:近年来,在服务质量(QoS)方面具有巨大需求的新趋势是越来越多的。尽管云计算提供了具有普遍存在的能力的成熟管理设施,但新的要求和工作负载,通过新服务驾驶,开始暴露其弱点。在这种情况下,新的信息和通信技术(ICI)趋势旨在推动云的计算尽可能接近数据来源,从而在新的范例中升高,即雾和雾气计算。具体而言,雾计算范例利用强大的节点,例如相应地与最终设备或其接入网络耦合的服务器,路由器和Cloudlet;它们是“相对”的数据来源关闭。虽然薄雾计算,这是一种轻质形式的雾计算,推动资源更近。精确地,雾化计算使用可以驻留在同一网络内(例如,局域网(LAN))作为最终设备的特定节点。考虑到硬件所知的进步现在,可以看到雾和雾节点适合于提供数据源附近的处理,存储和网络等资源;由此,可以满足新服务的要求。与云一起,雾和雾范式引入了用于数据处理的堆叠架构,其中可以在雾水平上执行数据预处理,然后垂直地卸载到上层(即,雾节点或云)。在这种情况下,构建能够有效地提供雾/雾的应用程序的管理系统是基础的。为此目的,考虑其光线印迹,操作系统(OS) - 使用集装箱技术的虚拟化,适合提供雾/雾服务的合适解决方案。工业级云横向边缘,例如OpenStack,这是基础设施的AS-Service解决方案的参考架构,仍远离融入这种新趋势。本文提出了一个基于OpenStack的中间件平台,通过该平台可以在雾/雾水平上部署/管理。

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