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Increasing fault tolerance of data plane on the internet of things using the software-defined networks

机译:使用软件定义的网络提高数据平面上数据平面的容错

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摘要

Considering the Internet of Things (IoT) impact in today’s world, uninterrupted service is essential, and recovery has received more attention than ever before. Fault-tolerance (FT) is an essential aspect of network resilience. Fault-tolerance mechanisms are required to ensure high availability and high reliability in systems. The advent of software-defined networking (SDN) in the IoT plays a significant role in providing a reliable communication platform. This paper proposes a data plane fault-tolerant architecture using the concepts of software-defined networks for IoT environments. In this work, a mathematical model called Shared Risk Link Group (SRLG) calculates redundant paths as the primary and backup non-overlapping paths between network equipment. In addition to the fault tolerance, service quality was considered in the proposed schemes. Putting the percentage of link bandwidth usage and the rate of link delay in calculating link costs makes it possible to calculate two completely non-overlapping paths with the best condition. We compare our two proposed dynamic schemes with the hybrid disjoint paths (Hybrid_DP) method and our previous work. IoT developments, wireless and wired equipment are now used in many industrial and commercial applications, so the proposed hybrid dynamic method supports both wired and wireless devices; furthermore multiple link failures will be supported in the two proposed dynamic schemes. Simulation results indicate that, while reducing the error recovery time, the two proposed dynamic designs lead to improved service quality parameters such as packet loss and delay compared to the Hybrid_DP method. The results show that in case of a link failure in the network, the proposed hybrid dynamic scheme’s recovery time is approximately 12 ms. Furthermore, in the proposed hybrid dynamic scheme, on average, the recovery time, the packet loss, and the delay improved by 22.39%, 8.2%, 5.66%, compared to the Hybrid_DP method, respectively.
机译:考虑到当今世界的事情(物联网)的影响,不间断的服务是必不可少的,并且恢复比以往任何时候都受到更多的关注。容错(FT)是网络弹性的重要方面。需要容错机制以确保系统的高可用性和高可靠性。 IOT中的软件定义网络(SDN)的出现在提供可靠的通信平台方面发挥着重要作用。本文使用用于IOT环境的软件定义网络的概念提出了数据平面容错架构。在这项工作中,称为共享风险链路组(SRLG)的数学模型计算冗余路径作为网络设备之间的主要和备份非重叠路径。除了容错性之外,在提议的方案中考虑了服务质量。填充链路带宽使用的百分比和计算链路成本中的链路延迟速率使得可以计算具有最佳条件的两个完全非重叠的路径。我们将两种提出的动态方案与混合分离路径(Hybrid_dp)方法和我们以前的工作进行比较。 IOT开发,无线和有线设备现在用于许多工业和商业应用,因此所提出的混合动态方法支持有线和无线设备;此外,两个提出的动态方案将支持多个链路故障。仿真结果表明,在减少错误恢复时间的同时,两个提出的动态设计导致与Hybrid_DP方法相比的数据包丢失和延迟等待改进的服务质量参数。结果表明,在网络中的链路故障的情况下,所提出的混合动态方案的恢复时间约为12毫秒。此外,在拟议的混合动态方案中,平均而言,恢复时间,延迟分别与Hybrid_DP方法相比,延迟提高了22.39%,8.2%,5.66%。

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