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FogRoute: DTN-Based Data Dissemination Model in Fog Computing

机译:FogRoute:雾计算中基于DTN的数据分发模型

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Fog computing, known as “cloud closed to ground,” deploys light-weight compute facility, called Fog servers, at the proximity of mobile users. By precatching contents in the Fog servers, an important application of Fog computing is to provide high-quality low-cost data distributions to proximity mobile users, e.g., video/live streaming and ads dissemination, using the single-hop low-latency wireless links. A Fog computing system is of a three tier Mobile–Fog–Cloud structure; mobile user gets service from Fog servers using local wireless connections, and Fog servers update their contents from Cloud using the cellular or wired networks. This, however, may incur high content update cost when the bandwidth between the Fog and Cloud servers is expensive, e.g., using the cellular network, and is therefore inefficient for nonurgent, high volume contents. How to economically utilize the Fog–Cloud bandwidth with guaranteed download performance of users thus represents a fundamental issue in Fog computing. In this paper, we address the issue by proposing a hybrid data dissemination framework which applies software-defined network and delay-tolerable network (DTN) approaches in Fog computing. Specifically, we decompose the Fog computing network with two planes, where the cloud is a control plane to process content update queries and organize data flows, and the geometrically distributed Fog servers form a data plane to disseminate data among Fog servers with a DTN technique. Using extensive simulations, we show that the proposed framework is efficient in terms of data-dissemination success ratio and content convergence time among Fog servers.
机译:称为“封闭云”的Fog计算在移动用户附近部署了轻量级的计算设施,称为Fog服务器。通过在Fog服务器中预捕获内容,Fog计算的重要应用是使用单跳低延迟无线链接为邻近移动用户提供高质量,低成本的数据分发,例如视频/实时流和广告分发。 。雾计算系统具有三层移动-雾-云结构;移动用户使用本地无线连接从Fog服务器获得服务,而Fog服务器使用蜂窝或有线网络从Cloud更新其内容。然而,当Fog和Cloud服务器之间的带宽昂贵时,例如,使用蜂窝网络,这会招致高昂的内容更新成本,因此对于非紧急的大量内容而言效率低下。因此,如何经济地利用Fog-Cloud带宽并保证用户的下载性能是Fog计算中的一个基本问题。在本文中,我们通过提出一种混合数据分发框架来解决此问题,该框架将软件定义的网络和延迟容许网络(DTN)方法应用于雾计算。具体来说,我们将Fog计算网络分解为两个平面,其中云是用于控制内容更新查询和组织数据流的控制平面,几何分布的Fog服务器形成数据平面,以DTN技术在Fog服务器之间分发数据。通过广泛的仿真,我们证明了所提出的框架在数据分发成功率和Fog服务器之间的内容收敛时间方面是有效的。

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