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Quality-of-service and quality-of-protection issues in preplanned recovery schemes using redundant trees

机译:使用冗余树的预定恢复方案中的服务质量和保护质量问题

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We study quality-of-service (QoS) and quality-of-protection (QoP) issues in redundant tree based preplanned recovery schemes for a single-link failure in two-edge connected graphs and for a single-node failure in two-connected graphs. We present schemes (to be called G-MFBG schemes) that generalize the schemes (to be called MFBG schemes) developed by Me´dard et al. (1997) to construct a pair of redundant trees, called red and blue trees, which guarantees fast recovery from any single-link/node failure, as long as the failed node is not the root node. Using the G-MFBG schemes, we study QoS issues relating to red/blue trees. We present effective heuristics for computing a pair of redundant trees with low average delay or small total cost. We develop an optimal algorithm for computing a pair of red/blue trees with maximum bandwidth. Furthermore, a pair of red/blue trees guarantees fast recovery from simultaneous multiple failures if it satisfies certain properties. This leads us to define the concept of QoP of a pair of red/blue trees. We present an effective heuristic to construct a pair of red/blue trees with high QoP. The paper concludes with a discussion of computational results that demonstrate the effectiveness of the different algorithms presented.
机译:我们研究基于冗余树的预定恢复方案中的服务质量(QoS)和保护质量(QoP)问题,用于两边连接图中的单链路故障和两连接图中的单节点故障图。我们提出的方案(称为G-MFBG方案)概括了Me´dard等人开发的方案(称为MFBG方案)。 (1997年)构造一对冗余树,称为红色树和蓝色树,只要发生故障的节点不是根节点,就可以保证从任何单链路/节点故障中快速恢复。使用G-MFBG方案,我们研究了与红色/蓝色树相关的QoS问题。我们提出了有效的启发式方法,用于计算平均延迟低或总成本小的一对冗余树。我们开发了一种用于计算一对具有最大带宽的红色/蓝色树的最佳算法。此外,如果满足某些属性,一对红色/蓝色树可确保从同时发生的多个故障中快速恢复。这使我们定义了一对红色/蓝色树的QoP的概念。我们提出一种有效的启发式方法来构建一对具有较高QoP的红色/蓝色树。本文以计算结果的讨论作为结束,这些计算结果证明了所提出的不同算法的有效性。

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