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An SDN approach to route massive data flows of sensor networks

机译:SDN方法可路由大量传感器网络数据流

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With the advent of the Internet of Things (IoT), more and more devices can establish a connection with local area networks and use routing protocols to forward all information to the sink. But these devices may not have enough resources to execute a complex routing protocol or to memorize all information about the network. With proactive routing protocols, each node calculates the best path, and it needs enough resources to memorize the network topology. With reactive routing protocols, each node has to broadcast the message to learn the right path that the packets must follow. In all cases, in large networks such as IoT, this is not an appropriate mechanism. This paper presents a new software-defined network (SDN)-based network architecture to optimize the resource consumption of each IoT object while securing the exchange of messages between the embedded devices. In this architecture, the controller is in charge of all decisions, and objects only exchange messages and forward packets among themselves. In the case of large networks, the network is organized into clusters. Our proposed network architectures are tested with 1000 things grouped in five clusters and managed by one SDN controller. The tests using OpenDayLight and IoT embedded applications have been implemented on several scenarios providing the ability and the scalability from dynamic reorganization of the end-devices. This approach explores the network performance issues using a virtualized SDN-clustered environment which contributes to a new model for future network architectures.
机译:随着物联网(IoT)的出现,越来越多的设备可以与局域网建立连接,并使用路由协议将所有信息转发到接收器。但是这些设备可能没有足够的资源来执行复杂的路由协议或存储有关网络的所有信息。使用主动路由协议,每个节点都会计算出最佳路径,并且需要足够的资源来存储网络拓扑。使用反应式路由协议,每个节点必须广播消息以了解数据包必须遵循的正确路径。在所有情况下,在物联网等大型网络中,这都不是合适的机制。本文提出了一种新的基于软件定义网络(SDN)的网络架构,以优化每个IoT对象的资源消耗,同时确保嵌入式设备之间的消息交换。在这种体系结构中,控制器负责所有决策,而对象仅在它们之间交换消息并转发数据包。如果是大型网络,则将网络组织为群集。我们提议的网络体系结构经过1000个事物的测试,这些事物被分为五个集群并由一个SDN控制器进行管理。使用OpenDayLight和IoT嵌入式应用程序进行的测试已在几种情况下实施,从而提供了通过动态重组终端设备实现的能力和可扩展性。这种方法使用虚拟化的SDN群集环境探索网络性能问题,该环境为将来的网络体系结构提供了新的模型。

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