Steady-state response of shortest-path routing algorithms

W. Zaumen, J. J. Garcia-Luna-Aceves
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引用次数: 7

Abstract

The steady-state response of link-state and loop-free distance-vector routing algorithms to multiple changes in the costs of links is investigated. A quantitative comparison of an ideal link-state algorithm similar to the one used in the open shortest path first (OSPF) and in the OSI intradomain routing protocol, and a new loop-free distance-vector algorithm, is made for several computer network topologies. A variety of quantities, including the length of messages and the average number of paths affected by routing loops, are computed as a function of time after a link or node change. Probabilities of various conditions, including the existence of loops, are also obtained as a function of time. The results show that in steady state, a loop-free distance-vector algorithm operates with essentially the same communication overhead as the ideal link state algorithm, and requires substantially fewer CPU cycles. The results also suggest that it may be possible to correlate the performance of the routing algorithms with various parameters that can be used to characterize networks.<>
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最短路径路由算法的稳态响应
研究了链路状态和无环距离矢量路由算法对链路开销变化的稳态响应。针对几种计算机网络拓扑结构,对一种理想的链路状态算法(类似于开放最短路径优先协议(OSPF)和OSI域内路由协议中使用的算法)和一种新的无环路距离矢量算法进行了定量比较。各种数量,包括消息长度和受路由环路影响的平均路径数,在链路或节点改变后作为时间的函数计算。各种条件的概率,包括循环的存在,也作为时间的函数得到。结果表明,在稳态下,无环路距离矢量算法与理想链路状态算法的通信开销基本相同,并且需要的CPU周期大大减少。结果还表明,可以将路由算法的性能与可用于表征网络的各种参数相关联
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