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ARIES: a rearrangeable inexpensive edge-based on-line Steiner algorithm

机译:白羊座:一种可重新的廉价的基于边线施泰纳算法

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In this paper, we propose and evaluate ARIES, a heuristic for updating multicast trees dynamically in large point-to-point networks. The algorithm is based on monitoring the accumulated damage to the multicast tree within local regions of the tree as nodes are added and deleted, and triggering a rearrangement when the number of changes within a connected subtree crosses a set threshold. We derive an analytical upper-bound on the competitiveness of the algorithm. We also present simulation results to compare the average-case performance of the algorithm with two other known algorithms for the dynamic multicast problem, GREEDY and EBA (edge-bounded algorithm). Our results show that ARIES provides the best balance among competitiveness, computational effort, and changes in the multicast tree after each update.
机译:在本文中,我们提出并评估了白羊座,这是一种在大点对点网络中动态更新多播树的启发式。该算法基于监视树内的本地区域内的多播树的累积损坏,因为在连接的子树内的变化的数量交叉于设定阈值时触发重新排列。我们派生了算法竞争力的分析上限。我们还提出了模拟结果,以比较算法的算法与其他其他已知的动态组播问题,贪婪和EBA(边缘界限算法)的算法。我们的结果表明,白羊座在每次更新后都提供了竞争力,计算工作和组播树中的变化的最佳平衡。

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