将基于身份的控制平面与喜马拉雅网络架构集成

P. Martinez-Julia, Ved P. Kafle, A. Gómez-Skarmeta
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引用次数: 3

摘要

软件定义网络(SDN)的提出为针对不同问题的网络架构提供了广泛的改进。它包括那些为克服大型网络(如Internet)中的移动性和多归属问题而设计的体系结构的案例,例如HIMALIS网络体系结构。在本文中,我们提出了一种方法,通过改变其处理控制操作的方式,使喜马拉雅从SDN技术中受益。我们建议通过遵循SDN原则设计的基于身份的控制平面来利用喜马拉雅架构的控制操作。因此,我们的方法建议将喜马拉雅的主要元素与控制器集成在一起,这为总体架构提供了巨大的好处,例如,在不改变终端节点实现的情况下,使用网络状态的全局知识和控制平面提供的功能的演变来执行控制操作的可能性。最后,为了证明这些好处,我们为喜马拉雅和我们的提案建立了架构模型,在不同的移动场景下运行不同的模拟,并提取了显示我们的提案明显改进的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating an identity-based control plane with the HIMALIS network architecture
The raise of Software Defined Networking (SDN) opens a wide spectrum of improvements for network architectures targeting different problems. It includes the case of those architectures designed to overcome mobility and multi-homing problems in big networks, such as the Internet, as is the case of the HIMALIS network architecture. In this paper we present an approach for HIMALIS to benefit from SDN technologies by changing the way it addresses its control operations. We propose to leverage control operations of the HIMALIS architecture through an identity-based control plane that has been designed following the principles of SDN. Thus, our approach proposes to integrate the main elements of HIMALIS with a controller, which provides enormous benefits to the architecture in general, such as the possibility to perform control operations with global knowledge of the network status and the evolution of the functions provided by the control plane without changing the implementation of the end nodes. Finally, in order to demonstrate those benefits, we have built architectonic models for both HIMALIS and our proposal, executed different simulations with them running on different mobility scenarios, and extracted the results that show clear improvement of our proposal.
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