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R2T-DSDN: reliable real-time distributed controller-based SDN

机译:R2T-DSDN:基于实时分布式控制器的可靠实时分布式控制器

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Software-defined network (SDN) is an emerging network architecture in which the network control task is separated from packet forwarding. This architecture can be considered as a suitable infrastructure for fifth-generation mobile network (5G) and Internet of things due to its flexibility and dynamism. In real-time networks, time-sensitive packets that miss their deadlines are considered useless or less worthy. As with traditional networks, SDN is expected to support real-time communications and handle a variety of failures (including local controller, switch, and link failures) simultaneously. This study focuses on real-time communication of time-sensitive applications that operate on distributed SDN. We propose an efficient and customized scheduling algorithm to send packets, taking into account some types of fault occurrence, as a part of our proposed solution called R2T-DSDN. Two types of statistical and probabilistic performance models are developed for the determination of the critical and non-critical states of the network. R2T-DSDN allocates priority and adaptive budget to each scheduling scheme in both modes and delivers packets according to their relative deadlines. In the proposed architecture, a leader controller distributes network traffic dynamically across local controllers. The architecture is finally evaluated by the Mininet tool in terms of real-time characteristics and other quality criteria to test how robust it is in case of failures. The emulation results show that for different types of failures, the average deadline hit ratio is 97.9%, which is quite acceptable for multimedia and firm or soft real-time applications in the network.
机译:软件定义的网络(SDN)是一种新兴网络架构,其中网络控制任务与分组转发分离。由于其灵活性和动态,这种架构可以被认为是第五代移动网络(5G)和物联网的合适基础设施。在实时网络中,错过截止日期的时间敏感数据包被认为是无用的或更不值得的。与传统网络一样,SDN预计将支持实时通信,并同时处理各种故障(包括本地控制器,开关和链路故障)。本研究侧重于在分布式SDN上运行的时间敏感应用的实时通信。我们提出了一种高效和定制的调度算法来发送数据包,考虑某些类型的故障发生,作为我们所提出的解决方案的一部分,称为R2T-DSDN。开发了两种类型的统计和概率性能模型,用于确定网络的临界和非关键状态。 R2T-DSDN将优先级和自适应预算分配给两个模式中的每个调度方案,并根据其相对截止日期提供数据包。在拟议的架构中,领导者控制器在本地控制器上动态分发网络流量。该架构最终通过MinInet工具在实时特征和其他质量标准方面进行评估,以测试在故障情况下的稳健程度。仿真结果表明,对于不同类型的故障,平均截止日期命令比率为97.9%,对于网络中的多媒体和公司或软实时应用是非常可接受的。

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