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Achieving near-optimal traffic engineering solutions for current OSPF/IS-IS networks

机译:为当前的OSPF / IS-IS网络实现接近最佳的流量工程解决方案

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摘要

Traffic engineering aims to distribute traffic so as to "optimize" some performance criterion. This optimal distribution of traffic depends on both the routing protocol and the forwarding mechanisms in use in the network. In IP networks running the OSPF or IS-IS protocols, routing is over shortest paths, and forwarding mechanisms distribute traffic "uniformly" over equal cost shortest paths. These constraints often make achieving an optimal distribution of traffic impossible. In this paper, we propose and evaluate an approach that can realize near optimal traffic distribution without changes to routing protocols and forwarding mechanisms. In addition, we explore the tradeoff that exists between performance and the configuration overhead that our solution requires. The paper's contributions are in formulating and evaluating an approach to traffic engineering in IP networks that achieves near-optimal performance while preserving the existing infrastructure.
机译:流量工程旨在分配流量,以“优化”某些性能标准。流量的最佳分配取决于网络中使用的路由协议和转发机制。在运行OSPF或IS-IS协议的IP网络中,路由是通过最短路径进行的,而转发机制是在等价的最短路径上“均匀地”分配流量。这些限制通常使得无法实现流量的最佳分配。在本文中,我们提出并评估了一种无需更改路由协议和转发机制即可实现接近最佳流量分配的方法。此外,我们探索了性能与解决方案所需的配置开销之间的折衷。本文的贡献在于制定和评估IP网络中流量工程的方法,该方法可在保持现有基础结构的同时实现近乎最佳的性能。

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