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A routing protocol for anycast messages

机译:选播消息的路由协议

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摘要

An anycast packet is one that should be delivered to one member in a group of designated recipients. Using anycast services may considerably simplify some applications. Little work has been done on routing anycast packets. In this paper, we propose and analyze a routing protocol for anycast message. It is composed of two subprotocols: the routing table establishment subprotocol and the packet forwarding subprotocol. In the routing table establishment subprotocol, we propose four methods (SSP, MIN-D, SET, and GET) for enforcing an order among routers for the purpose of loop prevention. These methods differ from each other on information used to maintain orders, the impact on QoS, and the compatibility to the existing routing protocols. In the packet forwarding subprotocol, we propose a Weighted-Random Selection (WRS) approach for multiple path selection in order to balance network traffic. In particular, the fixed and adaptive methods are proposed to determine the weights. Both of them explicitly take into account the characteristics of distribution of anycast recipient group while the adaptive method uses the dynamic information of the anycast traffic as well. Correctness property of the protocol is formally proven. Extensive simulation is performed to evaluate our newly designed protocol. Performance data shows that the loop-prevention methods and the WRS approaches have great impact on the performance in terms of average end-to-end packet delay. In particular, the protocol using the SET or CBT loop-prevention methods and the adaptive WRS approach performs very close to a dynamic optimal routing protocol in most cases.
机译:任播数据包是应传递给一组指定收件人中的一个成员的数据包。使用任播服务可能会大大简化某些应用程序。路由任播数据包的工作很少。在本文中,我们提出并分析了任播消息的路由协议。它由两个子协议组成:路由表建立子协议和数据包转发子协议。在路由表建立子协议中,出于防止环路的目的,我们提出了四种方法(SSP,MIN-D,SET和GET)来强制路由器之间的顺序。这些方法在用于维护订单的信息,对QoS的影响以及与现有路由协议的兼容性方面彼此不同。在分组转发子协议中,我们提出了一种用于多路径选择的加权随机选择(WRS)方法,以平衡网络流量。特别地,提出了固定和自适应方法来确定权重。两者都明确考虑了任播接收者组的分布特征,而自适应方法也使用了任播流量的动态信息。协议的正确性已得到正式证明。进行了广泛的仿真,以评估我们新设计的协议。性能数据表明,就平均端到端分组延迟而言,环路保护方法和WRS方法对性能有很大影响。特别是,在大多数情况下,使用SET或CBT环路预防方法以及自适应WRS方法的协议执行起来非常接近动态最佳路由协议。

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