多域sdn中基于区块链路由的路径选择策略评估

Evrim Guler, Murat Karakus, S. Uludag
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引用次数: 1

摘要

软件定义网络(SDN)在过去十年中已经成为计算机通信领域最多产的发明之一。在众多被吹捧的好处中,由OpenFlow促进的SDN架构有潜力帮助网络管理员为网络之间的流提供端到端(E2E)服务质量(QoS)保证路径,同时提供更细粒度的流管理以及全局网络视图。在我们之前的工作中,我们引入了QoSChain,将区块链和SDN的优势结合起来,用于网络间QoS提供,以编排一个灵活的软件驱动的流量管理框架,以促进跨网络策略自动化、保证、端到端可见性、控制和验证。在本研究中,我们关注路径选择策略对QoSChain整体性能的影响。具体来说,我们利用三种简单但有效的路径选择策略,第一可行路径选择(FFPS),随机可行路径选择(RFPS)和最小跳路径选择(MHPS),来评估它们的性能,影响,以及流量设置时间,消息开销和网络资源消耗指标方面的开销。我们的初步模拟结果表明,路径选择在整体性能中起着重要作用,跳数最小化提供了优越的性能,抵消了初始较高的设置时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating Path Selection Strategies with Blockchain-based Routing in Multi-Domain SDNs
Software-Defined Networking (SDN) has emerged as one of the most prolific inventions in the general area of computer communications over the past decade. Among many of the touted benefits, SDN architecture facilitated by OpenFlow has the potential to help network administrators to provide End-to-End (E2E) Quality of Service (QoS)-guaranteed paths for flows among networks while providing finer-granular flow management along with global network view. In our previous work, we have introduced QoSChain to amalgamate the advantages of blockchain and SDN for inter-network QoS provisioning to orchestrate an agile and software-driven traffic management framework in order to facilitate cross-network policy automation, assurance, E2E visibility, control and validation. In this study, we focus on the impact of the path selection strategies on the performance of the overall QoSChain performance. Specifically, we exploit three simple but effective path selection strategies, First Feasible Path Selection (FFPS), Random Feasible Path Selection (RFPS), and Minimum Hop Path Selection (MHPS), to evaluate their performance, impact, and overhead in terms of the flow setup time, message overhead, and network resource consumption metrics. Our preliminary simulations results show that the path selection plays an important role in the overall performance with hop count minimization delivering a superior performance offset by an initial higher setup times.
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