基于ilp的可生存广播树设计

Minjing Mao, Bin Wu, K. Yeung
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引用次数: 0

摘要

研究了高速网络中单链路/节点故障下的存活广播。我们遵循蓝/红树[1]的经典方法来构造一对生成树(即蓝树和红树),以便在存在单个链路/节点故障的情况下(通过至少一棵树)确保根和任意节点之间的连通性。为了确保以一种经济有效的方式构建蓝树和红树,设计了启发式算法来最小化树构建所涉及的成本。在本文中,我们处理同样的问题,但诉诸整数线性规划(ILP)的最优解。设计了两种高效的ilp,一种用于防止单链路故障(MinCost-E),另一种用于防止节点故障(MinCost-V)。数值结果表明,我们的ILPs可以在相对较短的时间内生成最优解。与现有的启发式算法相比,我们观察到性能有显着提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ILP-based design of survivable broadcast trees
We study survivable broadcast in high-speed networks against a single link/node failure. We follow the classic approach of blue/red tree [1] to construct a pair of spanning trees (i.e. a blue tree and a red tree) such that the connectivity between the root and an arbitrary node is ensured (via at least one tree) in the presence of a single link/node failure. To ensure that the blue and red trees are constructed in a cost-efficient way, heuristic algorithms have been designed to minimize the cost involved in tree construction. In this paper, we tackle the same problem but resorting to Integer Linear Programming (ILP) for optimal solutions. Two efficient ILPs are formulated, one for protecting against single link failure (MinCost-E) and the other for node failure (MinCost-V). Numerical results show that our ILPs can generate optimal solutions in relatively short amount of time. As compared with the existing heuristic algorithms, we observe a significant improvement in performance.
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