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基于应用感知的软件定义网络的物联网迭代可重构路由协议

Application-Aware SDN-Based Iterative Reconfigurable Routing Protocol for Internet of Things (IoT).

作者信息

Shafique Ayesha, Cao Guo, Aslam Muhammad, Asad Muhammad, Ye Dengpan

机构信息

School of Computer Science and Technology, Nanjing University of Science and Technology, Nanjing 210094, China.

School of Cyber Science and Engineering, Wuhan University, Wuhan 430070, China.

出版信息

Sensors (Basel). 2020 Jun 22;20(12):3521. doi: 10.3390/s20123521.

Abstract

The central intelligence offered by Software Defined Networking (SDN) promise the smart and reliable reconfiguration which enables the scalability of dynamic enterprise networks. The decoupled forwarding plane and control plane of SDN infrastructure is a key feature that supports the SDN controller to extract the physical network topology information at runtime to formulate network reconfigurations. This SDN-based network reconfiguration enables application-aware routing capability for Internet of Thing (IoT). However, these IoT enabled SDN-based routing protocols face some performance limitations in iterative reconfiguration process due to complete centralized path selection mechanism To this end, in this paper, we propose SDN-Based Application-aware Distributed adaptive Flow Iterative Reconfiguring (SADFIR) routing protocol. The proposed routing protocol enables the distributed SDN iterative solver controller to maintain the load-balancing between flow reconfiguration and flow allocation cost. In particular, the proposed routing protocol of SADFIR implements multiple SDN controllers that collaborate with network devices at forwarding plane to develop appropriate clustering strategy for routing the sensed information. This distributed SDN controllers are assisted to clustering topology that successfully map the residual network resources and also enable unique multi-hop application-aware data transmission. In addition, the proposed SADFIR monitor the iterative reconfiguration settings according to the network traffic of heterogeneity-aware network devices. The simulation experiments are conducted in comparison with the state-of-the-art routing protocols which demonstrates that SADFIR is heterogeneity-aware which is able to adopt the different scales of network with maximum network lifetime.

摘要

软件定义网络(SDN)提供的核心智能保证了智能且可靠的重新配置,从而实现动态企业网络的可扩展性。SDN基础设施中解耦的转发平面和控制平面是一项关键特性,它支持SDN控制器在运行时提取物理网络拓扑信息,以制定网络重新配置。这种基于SDN的网络重新配置为物联网(IoT)实现了应用感知路由能力。然而,由于完全集中式的路径选择机制,这些基于物联网的SDN路由协议在迭代重新配置过程中面临一些性能限制。为此,在本文中,我们提出了基于SDN的应用感知分布式自适应流迭代重新配置(SADFIR)路由协议。所提出的路由协议使分布式SDN迭代求解器控制器能够在流重新配置和流分配成本之间保持负载平衡。特别是,所提出的SADFIR路由协议实现了多个SDN控制器,这些控制器在转发平面与网络设备协作,以开发适用于路由感知信息的聚类策略。这种分布式SDN控制器有助于聚类拓扑,成功映射剩余网络资源,并实现独特的多跳应用感知数据传输。此外,所提出的SADFIR根据异构感知网络设备的网络流量监控迭代重新配置设置。与现有先进路由协议相比进行了仿真实验,结果表明SADFIR具有异构感知能力,能够采用不同规模的网络,并具有最长的网络寿命。

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