Performance management via adaptive thresholds with separate control of false positive and false negative errors

Integrated Network Management(2009)

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摘要
Component level performance thresholds are widely used as a basic means for performance management. As the complexity of managed systems increases, manual threshold maintenance becomes a difficult task. This may result from a) a large number of system components and their operational metrics, b) dynamically changing workloads, and c) complex dependencies between system components. To alleviate this problem, we advocate that component level thresholds should be computed, managed and optimized automatically and autonomously. To this end, we have designed and implemented a performance threshold management sub-system that automatically and dynamically computes two separate component level thresholds: one for controlling Type I errors and another for controlling Type II errors. We present the theoretical foundation for this autonomic threshold management system, describe a specific algorithm and its implementation, and evaluate it using real-life scenarios and production data sets. As our present study shows, with proper parameter tuning, our on-line dynamic solution is capable of nearly optimal performance thresholds calculation.
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关键词
separate component level threshold,optimal performance thresholds calculation,adaptive threshold,false negative error,system component,performance threshold management sub-system,separate control,component level threshold,autonomic threshold management system,performance management,component level performance threshold,type i error,manual threshold maintenance,adaptive control,software maintenance,throughput,type ii error,measurement,adaptive thresholding,history,logistics,false positive,mathematical model,production systems,data mining,automatic control,error correction,management system
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