具有可调负载平衡的鲁棒几何森林路由

Rein Houthooft, Sahel Sahhaf, W. Tavernier, F. Turck, D. Colle, M. Pickavet
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引用次数: 11

摘要

尽管几何路由被提出作为传统的基于查找的路由和转发算法的内存效率替代方案,但它仍然缺乏:(i)足够的机制来交易负载平衡的拉伸,以及(ii)应对网络拓扑变化的鲁棒性。本文的主要贡献是提出了一组路由方案,称为森林路由。这些都是基于几何路由的原则,增加了负载平衡特性的灵活性。这是通过使用贪婪嵌入的聚合以及可配置的距离函数来实现的。在转发层中合并链路负载信息可以实现负载平衡行为,同时仍然可以获得低路径拉伸。此外,所提出的方案对网络故障的恢复能力进行了验证。
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Robust geometric forest routing with tunable load balancing
Although geometric routing is proposed as a memory-efficient alternative to traditional lookup-based routing and forwarding algorithms, it still lacks: (i) adequate mechanisms to trade stretch against load balancing, and (ii) robustness to cope with network topology change. The main contribution of this paper involves the proposal of a family of routing schemes, called Forest Routing. These are based on the principles of geometric routing, adding flexibility in its load balancing characteristics. This is achieved by using an aggregation of greedy embeddings along with a configurable distance function. Incorporating link load information in the forwarding layer enables load balancing behavior while still attaining low path stretch. In addition, the proposed schemes are validated regarding their resilience towards network failures.
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