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HURP/HURBA: Zero-configuration hierarchical Up/Down routing and bridging architecture for Ethernet backbones and campus networks

机译:HURP / HURBA:以太网骨干网和园区网的零配置分层上/下路由和桥接架构

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摘要

Ethernet switched networks do not scale appropriately due to limitations inherent to the spanning tree protocol. Ethernet architectures based on routing over a virtual topology in which turns are prohibited offer improved performance over spanning tree, although in some cases suffer from excessive computational complexity. Up/Down routing is a turn prohibition algorithm with low computational complexity. In this paper we propose HURBA, a new layer-two architecture that improves Up/Down routing performance due to an optimization based on the use of hierarchical addressing, while preserving the computational complexity of Up/Down. The resulting architecture requires zero-configuration, uses the same frame format as Ethernet, allows upgrades by software update, and is compatible with 802.1D bridges by means of encapsulation. HURP protocol builds automatically a core with the interconnected HURP routing bridges and the standard bridges get connected to the edges in standard spanning trees. Simulations show that the performance of HURP, evaluated over various combinations of network topology and size, is close to the one of shortest path, is consistently better than that of Up/Down, and is equal or better than Turn Prohibition, with the advantage of having a lower complexity.
机译:由于生成树协议固有的限制,以太网交换网络无法适当扩展。尽管在某些情况下会遭受过度的计算复杂性,但基于在禁止转弯的虚拟拓扑上进行路由的以太网体系结构可提供更高的性能。上/下路由是一种具有低计算复杂度的转弯禁止算法。在本文中,我们提出了HURBA,这是一种新的第二层体系结构,它通过基于分层寻址的优化而提高了Up / Down路由性能,同时保留了Up / Down的计算复杂性。最终的架构需要零配置,使用与以太网相同的帧格式,可以通过软件更新进行升级,并且通过封装与802.1D桥接器兼容。 HURP协议自动构建具有互连的HURP路由桥的核心,并且标准桥连接到标准生成树的边缘。仿真表明,通过网络拓扑和大小的各种组合评估的HURP性能接近最短路径之一,始终优于Up / Down,并且等于或优于Turn Turnhibition,具有以下优点:具有较低的复杂性。

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