Hierarchical Broadcast Ring Architecture for High-Speed Ethernet Networks

Ho-deok Jang, Hyong S. Kim
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引用次数: 5

Abstract

Recently, Ethernet technology has received a lot of attention for large area networks as well as local area networks (LANs) due to its economical advantage. However, the Ethernet technology has scalability issues when it is applied to large area networks. In this paper, we present hierarchical broadcast ring architecture that provides scalability to high-speed Ethernet networks. The proposed Ethernet switch-based network architecture adopts mechanisms of IP router-based networks. The logical ring topology of the architecture provides the broadcast service without a broadcast storm problem. A shortest path link-state routing is used for data forwarding for high link utilization. Furthermore, the hierarchical proxy ARP (Address Resolution Protocol) scheme and an aggregation scheme of IP addresses are proposed to reduce the number of broadcast frames and the forwarding table size. As a result, the hierarchical broadcast ring architecture can support millions of hosts with a high-speed Ethernet network. The proposed architecture maintains the simple and efficient management and operation of the Ethernet network for large area networks.
高速以太网的分层广播环结构
近年来,以太网技术由于其经济的优势,在局域网和广域网中受到了广泛的关注。然而,以太网技术在应用于大面积网络时存在可扩展性问题。在本文中,我们提出了分层广播环架构,提供高速以太网网络的可扩展性。提出的基于以太网交换机的网络架构采用了基于IP路由器的网络机制。该体系结构的逻辑环拓扑提供了没有广播风暴问题的广播服务。为了提高链路利用率,数据转发采用最短路径链路状态路由。在此基础上,提出了分层代理ARP(地址解析协议)方案和IP地址聚合方案,以减少广播帧数和转发表大小。因此,分层广播环体系结构可以通过高速以太网支持数百万台主机。该架构保证了大型局域网中以太网的简单、高效的管理和运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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