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Role-based intelligent application state computing for OpenFlow distributed controllers in software-defined networking

机译:基于角色的智能应用程序状态计算软件定义网络中的OpenFlow分布式控制器

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摘要

Software-defined networking, in which a network is programmable and controlled with soft computing techniques, is widely used in various network testbeds. To satisfy the demands of large networks, control planes are constructed with distributed controllers, which are a routine aspect of OpenFlow research. Distributed controllers are scalable and fault tolerant; thus, they can replace centralized controllers in large-scale networks. In the foreseeable future, there will emerge more applications based on soft computing techniques. Because there is scant research on application management, a distributed controller with a role-based mechanism for properly managing applications and their states based on their properties has yet to be developed. Thus, in this study, we propose a systematic approach for classifying applications according to their roles to dynamically deploy applications and their states. Both applications and their states are managed based on their properties, including CPU, memory and network bandwidth. This intelligent mechanism, which computes the overhead of applications, provides a compromise between storage and bandwidth usage in OpenFlow distributed controllers. We propose a hierarchical system to differentiate applications and design a controller module for dynamically determining the status of an application.
机译:软件定义的网络,其中网络是可编程和使用软计算技术控制的,广泛用于各种网络测试平台。为了满足大型网络的需求,控制面由分布式控制器构建,这是OpenFlow研究的例行方面。分布式控制器是可扩展的和容错的;因此,它们可以将集中式控制器替换为大规模网络。在可预见的未来,将基于软计算技术出现更多应用。由于对应用程序管理有很大的研究,因此,具有基于角色的机制的分布式控制器,用于基于其属性正确管理应用程序及其状态。因此,在本研究中,我们提出了一种系统的方法,可以根据其角色对应用程序进行分类,以动态部署应用程序及其状态。应用程序及其状态都基于其属性来管理,包括CPU,内存和网络带宽。这种计算应用程序的开销的这种智能机制在OpenFlow分布式控制器中存储和带宽使用之间提供了折衷。我们提出了一个分层系统来区分应用程序并设计一个控制器模块,用于动态确定应用程序的状态。

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