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Towards Distributed and Adaptive Detection and Localisation of Network Faults

机译:面向网络故障的分布式自适应检测与定位

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摘要

We present a statistical probing-approach to distributed fault-detection in networked systems, based on autonomous configuration of algorithm parameters. Statistical modelling is used for detection and localisation of network faults. A detected fault is isolated to a node or link by collaborative fault-localisation. From local measurements obtained through probing between nodes, probe response delay and packet drop are modelled via parameter estimation for each link. Estimated model parameters are used for autonomous configuration of algorithm parameters, related to probe intervals and detection mechanisms. Expected fault-detection performance is formulated as a cost instead of specific parameter values, significantly reducing configuration efforts in a distributed system. The benefit offered by using our algorithm is fault-detection with increased certainty based on local measurements, compared to other methods not taking observed network conditions into account. We investigate the algorithm performance for varying user parameters and failure conditions. The simulation results indicate that more than 95 % of the generated faults can be detected with few false alarms. At least 80 % of the link faults and 65 % of the node faults are correctly localised. The performance can be improved by parameter adjustments and by using alternative paths for communication of algorithm control messages.
机译:我们基于算法参数的自主配置,提出了一种用于网络系统中分布式故障检测的统计探测方法。统计建模用于检测和定位网络故障。通过协作式故障定位将检测到的故障隔离到节点或链路。从通过节点之间的探测获得的局部测量结果中,可以通过每个链路的参数估计对探测响应延迟和数据包丢失进行建模。估计的模型参数用于与探测间隔和检测机制有关的算法参数的自主配置。预期的故障检测性能用成本代替特定的参数值来表示,从而大大减少了分布式系统中的配置工作。与不考虑观察到的网络状况的其他方法相比,使用我们的算法提供的好处是基于本地测量的故障检测具有更高的确定性。我们研究了各种用户参数和故障条件下算法的性能。仿真结果表明,几乎没有错误警报,就可以检测出95%以上的已生成故障。正确定位了至少80%的链路故障和65%的节点故障。可通过参数调整和使用用于算法控制消息通信的替代路径来提高性能。

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