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Model based Evaluation of Policies for End-Node Driven Fault Recovery

机译:基于模型的终端节点驱动故障恢复策略评估

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In evolving ubiquitous networking environments some end-nodes will rely on highly critical end-user services in infrastructure and ad-hoc networks. As future networks will be dominated by mobility and unreliable wireless links, providing such critical end-user services is a challenge. In this work we target the problem of managing faults in such networking systems by fault management driven by the end-node. We introduce a system model to evaluate recovery decision policies based on fault diagnosis capabilities. The model method is applied in a scenario of hand-over between wireless access points. Evaluated policies are (1) no fail-over, (2) fail-over at fault diagnosis and (3) time restricted fail-over. Comparison to detailed simulations show that the developed Markov model is suitable to maximize end-user service reliability - in this case for the example of an SCTP file transfer. The numerical results from the model allow to determine the best strategy and its parameters depending on properties of the fault-diagnosis component.
机译:在不间断的网络环境中发展,某些端节点将依赖于基础架构和ad-hoc网络中的高度关键的最终用户服务。由于未来的网络将由移动性和不可靠的无线链路主导,提供如此关键的最终用户服务是一项挑战。在这项工作中,我们通过终端节点驱动的故障管理来瞄准这样的网络系统中管理故障的问题。我们介绍一个系统模型,以评估基于故障诊断功能的恢复决策策略。模型方法应用于无线接入点之间的切换的场景。评估的策略是(1)无故障转移,(2)故障诊断故障转移和(3)时间限制失败。与详细仿真的比较表明,开发的Markov模型适合最大化最终用户服务的可靠性 - 在这种情况下,用于SCTP文件传输的示例。根据故障诊断分量的属性,模型的数值结果允许确定最佳策略及其参数。

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