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SACFIR: SDN-Based Application-Aware Centralized Adaptive Flow Iterative Reconfiguring Routing Protocol for WSNs

机译:SACFIR:用于WSN的基于SDN的基于应用程序的集中式自适应流迭代重新配置路由协议

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摘要

Smart reconfiguration of a dynamic networking environment is offered by the central control of Software-Defined Networking (SDN). Centralized SDN-based management architectures are capable of retrieving global topology intelligence and decoupling the forwarding plane from the control plane. Routing protocols developed for conventional Wireless Sensor Networks (WSNs) utilize limited iterative reconfiguration methods to optimize environmental reporting. However, the challenging networking scenarios of WSNs involve a performance overhead due to constant periodic iterative reconfigurations. In this paper, we propose the SDN-based Application-aware Centralized adaptive Flow Iterative Reconfiguring (SACFIR) routing protocol with the centralized SDN iterative solver controller to maintain the load-balancing between flow reconfigurations and flow allocation cost. The proposed SACFIR’s routing protocol offers a unique iterative path-selection algorithm, which initially computes suitable clustering based on residual resources at the control layer and then implements application-aware threshold-based multi-hop report transmissions on the forwarding plane. The operation of the SACFIR algorithm is centrally supervised by the SDN controller residing at the Base Station (BS). This paper extends SACFIR to SDN-based Application-aware Main-value Centralized adaptive Flow Iterative Reconfiguring (SAMCFIR) to establish both proactive and reactive reporting. The SAMCFIR transmission phase enables sensor nodes to trigger direct transmissions for main-value reports, while in the case of SACFIR, all reports follow computed routes. Our SDN-enabled proposed models adjust the reconfiguration period according to the traffic burden on sensor nodes, which results in heterogeneity awareness, load-balancing and application-specific reconfigurations of WSNs. Extensive experimental simulation-based results show that SACFIR and SAMCFIR yield the maximum scalability, network lifetime and stability period when compared to existing routing protocols.
机译:通过软件定义网络(SDN)的中央控制,可以对动态网络环境进行智能重新配置。基于集中式SDN的管理体系结构能够检索全局拓扑智能,并将转发平面与控制平面分离。为常规无线传感器网络(WSN)开发的路由协议利用有限的迭代重新配置方法来优化环境报告。但是,由于不断的周期性迭代重新配置,WSN的具有挑战性的联网方案涉及性能开销。在本文中,我们提出了基于SDN的,具有集中式SDN迭代求解器控制器的基于应用的集中式自适应流迭代重新配置(SACFIR)路由协议,以维持流重新配置和流分配成本之间的负载平衡。拟议中的SACFIR的路由协议提供了一种独特的迭代路径选择算法,该算法首先基于控制层上的剩余资源来计算合适的聚类,然后在转发平面上实现基于应用程序感知的基于阈值的多跳报告传输。 SACFIR算法的操作由位于基站(BS)的SDN控制器进行集中监督。本文将SACFIR扩展到基于SDN的应用感知主值集中式自适应流迭代重配置(SAMCFIR),以建立主动和被动报告。 SAMCFIR传输阶段使传感器节点能够触发主值报告的直接传输,而对于SACFIR,所有报告都遵循计算出的路线。我们的SDN支持的建议模型根据传感器节点上的流量负担来调整重新配置周期,从而导致WSN的异质性感知,负载平衡和特定于应用程序的重新配置。基于大量实验仿真的结果表明,与现有路由协议相比,SACFIR和SAMCFIR具有最大的可扩展性,网络生存期和稳定期。

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