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首页> 外文期刊>IEEE systems journal >Opti-PUM: An Optimal Policy Update Mechanism for Link Failure Prevention in Mobile SDWM-IoT Networks
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Opti-PUM: An Optimal Policy Update Mechanism for Link Failure Prevention in Mobile SDWM-IoT Networks

机译:Opti-Pum:移动SDWM-IOT网络中链路故障预防的最佳策略更新机制

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摘要

Due to the limited resources and several implementation challenges, frequent link failure is a serious concern in mobile wireless mesh-based Internet of Things (WM-IoT) networks. The unique features of software defined networking (SDN), such as global visibility, network programmability, etc., help to improve the fault tolerance and network management in IoT networks. The integration of SDN and WM-IoT networks leads to a new domain, called software defined WM-IoT (SDWM-IoT) networks. This article discusses the problems caused by the frequent link failures in mobile SDWM-IoT networks. Most of the existing works focus on link failure prevention by precomputing backup paths, link monitoring-based failure detection, etc. However, limited efforts have been devoted for adaptive multiconstrained link failure prevention. This article proposes a proactive optimal policy update mechanism, named Opti-PUM. It is formulated in a promising algebraic modeling language (AMPL), and is solved using a well-known algebraic solver (CPLEX). Opti-PUM is tested under various network scenarios. Additionally, the proposed approach is also implemented in Mininet-WiFi and the obtained results are compared with some well-known existing algorithms. The comparison shows that Opti-PUM helps to achieve the packet delivery ratio (PDR) and packet loss ratio (PLR) improvement of 12.18% and 11.68%, respectively. Similarly, an average delay and jitter improvement of 35.93% and 31.72% have also been achieved.
机译:由于资源资源有限和多种实施挑战,频繁的链路故障是基于移动无线网格的事物(WM-IOT)网络的严重关注。软件定义网络(SDN)的独特功能,例如全局可见性,网络可编程性等,有助于提高IOT网络中的容错和网络管理。 SDN和WM-IOT网络的集成导致新域,称为软件定义的WM-IOT(SDWM-IOT)网络。本文讨论了移动SDWM-IOT网络中频繁链接故障引起的问题。大多数现有工作都侧重于通过预先计算备份路径,链接监控的故障检测等链路故障预防,但是,已经专门用于自适应多数系链路故障预防的有限努力。本文提出了一个名为Opti-Pum的主动最佳政策更新机制。它以有前途的代数建模语言(壮大)配制,并使用众所周知的代数求解器(CPLEX)解决。在各种网络场景下测试了Opti-Pum。另外,所提出的方法也在Mininet-WiFi中实现,并将获得的结果与一些众所周知的现有算法进行比较。该比较表明,Opti-Pum有助于实现分组输送比(PDR)和分组损失比(PLR)分别提高12.18%和11.68%。同样,也实现了平均延迟和抖动提高35.93%和31.72%。

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