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Efficient Control of False Negative and False Positive Errors with Separate Adaptive Thresholds

机译:具有单独的自适应阈值的假阴性和假阳性错误的有效控制

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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 applications increases, manual threshold maintenance becomes a difficult task. Complexity arises from having a large number of application components and their operational metrics, dynamically changing workloads, and compound relationships between application 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 application that automatically and dynamically computes two separate component level thresholds: one for controlling Type I errors and another for controlling Type II errors. Our solution additionally facilitates metric selection thus minimizing management overheads. We present the theoretical foundation for this autonomic threshold management application, 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.
机译:组件级性能阈值被广泛用作性能管理的基本手段。随着托管应用程序的复杂性增加,手动阈值维护成为一项艰巨的任务。复杂性源于拥有大量应用程序组件及其操作指标,动态变化的工作负载以及应用程序组件之间的复合关系。为了缓解这个问题,我们主张应该自动,自主地计算,管理和优化组件级别阈值。为此,我们设计并实现了性能阈值管理应用程序,该应用程序可自动动态地计算两个单独的组件级别阈值:一个用于控制I型错误,另一个用于控制II型错误。我们的解决方案还有助于简化指标选择,从而最大程度地减少管理开销。我们为这种自主性阈值管理应用程序提供了理论基础,描述了一种特定的算法及其实现,并使用实际场景和生产数据集对其进行了评估。正如我们目前的研究表明,通过适当的参数调整,我们的在线动态解决方案能够进行几乎最佳的性能阈值计算。

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