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Programmable architecture based on Software Defined Network for Internet of Things: Connected Dominated Sets approach

机译:基于软件定义网络的物联网可编程体系结构:连接支配集方法

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AbstractIn this paper, we propose a new programmable architecture based on Software Defined Network (SDN) paradigm for network control functionalities in Internet of Things (IoT) using the Connected Dominating Sets (CDS). In order to reduce the traffic load and to avoid a single point of failure at the controller node, we distribute the controllers role by introducing three levels of control: Principal Controller (PC), Secondary Controller (SC), the Local Controller (LC). The PC has a global view of the network infrastructure which is not the case of SC where it focuses only on one network technology. The LC acts locally by managing and relaying signaling messages from ordinary nodes to the SC. In order to select the LC nodes, we propose a Distributed Local Controller Connected Dominating Set algorithm (DLC-CDS). The DLC-CDS is a distributed algorithm with single phase and supports the dynamic network topology. The selection strategy of DLC-CDS is based on an important function named score, which is computed using the fuzzy logic and it depends on several parameters such as: the connectivity degree, the average link quality, and the rank. The performance of the proposed DLC-CDS are evaluated and compared with another solution named Distributed Single Phase-CDS (DSP-CDS) using many scenarios with different parameters: the node density and the radio range. The obtained results show that the DLC-CDS converges rapidly with a minimum CDS size compared to a DSP-CDS.
机译: 摘要 在本文中,我们提出了一种新的基于软件定义网络(SDN)范式的可编程体系结构,用于使用连接支配集的物联网(IoT)中的网络控制功能(CDS)。为了减少流量负载并避免在控制器节点上出现单点故障,我们通过引入三个控制级别来分配控制器角色:主控制器(PC),辅助控制器(SC),本地控制器(LC) 。 PC具有网络基础结构的全局视图,而SC仅专注于一种网络技术,而SC并非如此。 LC通过管理和中继从普通节点到SC的信令消息在本地进行操作。为了选择LC节点,我们提出了分布式本地控制器连接支配集算法(DLC-CDS)。 DLC-CDS是一种单相分布式算法,支持动态网络拓扑。 DLC-CDS的选择策略基于一个名为得分的重要函数,该函数使用模糊逻辑进行计算,并且取决于几个参数,例如:连接度,平均链路质量和等级。评估提出的DLC-CDS的性能,并将其与另一种名为Distributed Single Phase-CDS(DSP-CDS)的解决方案进行比较,该解决方案使用具有不同参数的许多方案:节点密度和无线电范围。获得的结果表明,与DSP-CDS相比,DLC-CDS以最小的CDS尺寸快速收敛。

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