Reconfiguration of spanning trees in networks in the presence of node failures

K. Ravindran, Gurdip Singh, Pankaj Gupta
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引用次数: 4

Abstract

Connectivity among a set of user entities in a network can be provided by a network level abstraction of an acyclic graph (or spanning tree). The authors discuss the reconfiguration of a graph in the presence of failures of network nodes. A reconfiguration manifests itself as a graph fragmentation problem, whereby two or more disjoint subgraphs attempt to connect with one another to form a composite graph. Fragment interconnection requires contention resolution between fragments to avoid cycles. Two classes of contention resolution algorithms applicable for environments with a potentially large number of fragments are presented. They are based on preestablished ranking among fragments and random arbitration among fragments. The algorithms have been evaluated by simulation and compared. The algorithms are useful in supporting data multicasting across workstations and distributed computations involving data on different machines.<>
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网络中节点故障时生成树的重构
网络中一组用户实体之间的连通性可以通过无环图(或生成树)的网络级抽象来提供。讨论了网络节点出现故障时图的重构问题。重构表现为一个图碎片问题,即两个或多个不相交的子图试图相互连接以形成一个复合图。片段互连需要解决片段之间的争用,以避免循环。提出了两类适用于具有潜在大量片段的环境的争用解决算法。它们基于预先确定的片段之间的排序和片段之间的随机仲裁。通过仿真和比较对算法进行了评价。这些算法在支持跨工作站的数据多播和涉及不同机器上数据的分布式计算方面非常有用
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