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Logically Centralized-Physically Distributed Software Defined Network Controller Architecture

机译:逻辑上集中式物理分布式软件定义的网络控制器体系结构

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Due to the large usage of internet, our environment is transformed into digital society, in which everything is connected together and can be accessed from anywhere. This is the Internet of things (IoT), which refers to the usage of intelligently connected devices and systems. These devices usually collect their data from sensors and actuators in machines and other physical objects. This makes Wireless Sensor Network (WSN) a subset of an Internet of things (IoT) topology, and hence it acts like a bridge that connects the real world to the digital world. So it is important to find a flexible network that can support this development rather than our traditional network. But WSN has a major problem, which is the highest energy consumption of nodes which reduces network lifetime. So we propose to use Software Defined Network (SDN) as a solution for this problem, as SDN's main feature consists of separating between data plane and control plane. This usually transforms data plane sensor node from forwarding node to dummy devices, which reduces energy consumption and hence prolong network lifetime. SDN usually can be implemented in different architectures. We study different SDN-based WSN management structures, and we accommodate logically centralized-physically distributed controller in a WSN environment. Our simulation test held using Mininet-WIFI simulator indicates that logically centralized-physically distributed controller is the one with higher throughput and less delay in IoT environment compared to other architectures.
机译:由于Internet的大量使用,我们的环境已转变为数字社会,其中所有事物都连接在一起并且可以从任何地方访问。这就是物联网(IoT),是指智能连接的设备和系统的使用。这些设备通常从机器和其他物理对象中的传感器和执行器收集数据。这使无线传感器网络(WSN)成为物联网(IoT)拓扑的子集,因此它就像将现实世界连接到数字世界的桥梁一样。因此,重要的是找到一个可以支持这种发展的灵活网络,而不是我们的传统网络。但是WSN存在一个主要问题,即节点的最高能耗会缩短网络寿命。因此,我们建议使用软件定义网络(SDN)作为此问题的解决方案,因为SDN的主要功能包括在数据平面和控制平面之间进行分隔。这通常将数据平面传感器节点从转发节点转换为虚拟设备,从而降低了能耗并因此延长了网络寿命。 SDN通常可以在不同的体系结构中实现。我们研究了基于SDN的不同WSN管理结构,并在WSN环境中容纳了逻辑集中的物理分布式控制器。我们使用Mininet-WIFI模拟器进行的模拟测试表明,与其他架构相比,逻辑上集中的物理分布式控制器在IoT环境中具有更高的吞吐量和更少的延迟。

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