FLIPPER:容错分布式网络管理和控制

Subhrendu Chattopadhyay, Niladri Sett, Sukumar Nandi, Sandip Chakraborty
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引用次数: 2

摘要

软件定义网络(SDN)范式的当前发展为网络控制和管理提供了一个灵活的架构,其代价是通过替换现有的路由基础设施来部署新的硬件。此外,SDN的集中式控制器架构使网络容易出现单点故障,造成性能瓶颈。为了避免这些问题并支持现有网络基础设施上的网络可管理性,我们在本文中开发了Flipper,它仅使用软件增强将现有的现成路由器转换为网络策略设计和实施点(PDEP)。针对网络设备从路由器到pdep的动态角色转换,开发了一种分布式自稳定架构,并使该架构具有容错性。从合成网络仿真和真实网络协议栈仿真两方面分析了Flipper的性能,我们观察到Flipper具有可扩展性,灵活性和故障安全性,可以显着提高现有网络基础设施的可管理性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FLIPPER: Fault-tolerant distributed network management and control
The current developments of software defined networking (SDN) paradigm provide a flexible architecture for network control and management, in the cost of deploying new hardwares by replacing the existing routing infrastructure. Further, the centralized controller architecture of SDN makes the network prone to single point failure and creates performance bottleneck. To avoid these issues and to support network manageability over the existing network infrastructure, we develop Flipper in this paper, that uses only software augmentation to convert existing off-the-shelf routers to network policy design and enforcement points (PDEP). We develop a distributed self-stabilized architecture for dynamic role change of network devices from routers to PDEPs, and make the architecture fault-tolerant. The performance of Flipper has been analyzed from both simulation over synthetic networks, and emulation over real network protocol stacks, and we observe that Flipper is scalable, flexible and fail-safe that can significantly boost up the manageability of existing network infrastructure.
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