Relay-Based iBGP Multicasting in Software Defined Networks

U. Bassey, A. Nayak
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引用次数: 1

Abstract

In the Internet today, learnt prefixes are forwarded within autonomous systems (ASs) over internal Border Gateway Protocol (iBGP) sessions. Existing schemes for iBGP routing include the full-mesh (FM) solution, route reflection (RR) solution and confederation. Optimal prefix routing and route diversity are the main strength of the FM solution. However, it is rarely employed in a large networks due to its poor scalability. The RR scheme solves the scalability challenge at the cost of FM optimality due to Route Reflector's partial view of the network. The concept of Software Defined Networking (SDN) entails decoupling of the control plane from the forwarding plane such that the control plane is logically centralized benefiting from an overall knowledge of the network for decision making. In this work, we propose a solution based on multicasting which employs relay nodes in the iBGP message dissemination. The relay nodes are elected and act as boundaries of multicast groups, relaying and filtering prefixes into other multicast groups. We evaluate the use of single and multiple relay nodes per multicast group. Our solution brings session management scalability and minimization of duplicate prefix announcement through elimination of peer sessions deemed unnecessary. SDN controller is employed to configure and coordinate the multicast tree.
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软件定义网络中基于中继的iBGP组播
在今天的互联网上,学习到的前缀通过内部边界网关协议(iBGP)会话在自治系统(as)内转发。现有的iBGP路由方案包括full-mesh (FM)方案、route reflection (RR)方案和confederation(联盟)方案。最优前缀路由和路由分集是调频方案的主要优点。然而,由于其可扩展性差,在大型网络中很少使用。RR方案解决了可扩展性的挑战,但代价是由于路由反射器对网络的部分视图而牺牲了FM最优性。软件定义网络(SDN)的概念需要将控制平面与转发平面解耦,从而使控制平面在逻辑上集中,从而受益于对网络的总体了解,从而进行决策。在本研究中,我们提出了一种基于组播的解决方案,该方案在iBGP消息传播中使用中继节点。中继节点作为组播组的边界,将前缀转发和过滤到其他组播组。我们评估了每个多播组使用单个和多个中继节点。我们的解决方案通过消除被认为不必要的对等会话,带来了会话管理的可伸缩性和重复前缀公告的最小化。通过SDN控制器对组播树进行配置和协调。
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