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Platform as a service gateway for the Fog of Things

机译:平台作为物雾服务网关

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Internet of Things (IoT), one of the key research topics in recent years, together with concepts from Fog Computing, brings rapid advancements in Smart City, Monitoring Systems, industrial control, transportation and other fields. These applications require a reconfigurable sensor architecture that can span multiple scenarios, devices and use cases that allow storage, networking and computational resources to be efficiently used on the edge of the network. There are a number of platforms and gateway architectures that have been proposed to manage these components and enable application deployment. These approaches lack horizontal integration between multiple providers as well as higher order functionalities like load balancing and clustering. This is partly due to the strongly coupled nature of the deployed applications, a lack of abstraction of device communication layers as well as a lock-in for communication protocols. This limitation is a major obstacle for the development of a protocol agnostic application environment that allows for single application to be migrated and to work with multiple peripheral devices with varying protocols from different local gateways. This research looks at existing platforms and their shortcomings as well as proposes a messaging based modular gateway platform that enables clustering of gateways and the abstraction of peripheral communication protocol details. These novelties allow applications to send and receive messages regardless of their deployment location and destination device protocol, creating a more uniform development environment. Furthermore, it results in a more streamlined application development and testing while providing more efficient use of the gateway's resources. Our evaluation of a prototype for the system shows the need for the migration of resources and the QoS advantages of such a system. The examined use case scenarios show that clustering proves to be an advantage in certain use cases as well as presenting the deployment of a larger testing and control environment through the platform.
机译:物联网(IoT)是近年来的主要研究主题之一,与来自Fog Computing的概念一起,在智能城市,监控系统,工业控制,交通运输和其他领域带来了飞速发展。这些应用程序需要可重配置的传感器体系结构,该体系结构可以跨越多个方案,设备和用例,以允许在网络边缘上有效地使用存储,网络和计算资源。已经提出了许多平台和网关体系结构来管理这些组件并支持应用程序部署。这些方法缺乏多个提供商之间的水平集成以及诸如负载平衡和集群之类的更高阶功能。部分原因是由于已部署应用程序的强耦合特性,缺少设备通信层的抽象以及通信协议的锁定。此限制是开发协议不可知应用程序环境的主要障碍,该环境允许单个应用程序迁移并与来自不同本地网关的具有不同协议的多个外围设备一起使用。这项研究着眼于现有平台及其缺点,并提出了一种基于消息的模块化网关平台,该平台可实现网关的集群和外围通信协议细节的抽象。这些新颖性使应用程序可以发送和接收消息,而不管其部署位置和目标设备协议如何,从而创建了更加统一的开发环境。此外,它可以简化应用程序的开发和测试,同时可以更有效地利用网关的资源。我们对系统原型的评估表明,需要进行资源迁移以及此类系统的QoS优势。检验的用例场景表明,在某些用例中,集群被证明是一个优势,并且可以通过该平台展示更大的测试和控制环境的部署。

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