首页> 外文期刊>IEEE transactions on systems, man, and cybernetics. Part A >Characterizing a confidence space for discrete event timings for fault monitoring using discrete sensing and actuation signals
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Characterizing a confidence space for discrete event timings for fault monitoring using discrete sensing and actuation signals

机译:使用离散的感应和驱动信号为离散事件时序确定置信空间,以进行故障监控

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Many manufacturing systems are controlled using discrete sensors and actuators. The changes in values of the corresponding control I/O signals are events. The timing and sequencing relationships of these events can be used to determine whether a system is operating as expected, or whether a fault may have occurred. We present a method of learning intervened timing relationships using observations from a correctly operating system. The sample statistics of the observation characteristic of correct system operation are used to create a confidence space of possible timing relationships of the underlying system. Any timing relationship used as a specification of correct observation for fault monitoring will result in some level of false alarms and missed detections among all the possible relationships in the confidence space; the timing relationships can be chosen to minimize the worst case total of the false alarm and missed detection costs over the confidence space. Simulations are used to evaluate the performance of the chosen timing relationship over a range of perturbed systems.
机译:许多制造系统是使用离散传感器和执行器控制的。相应控制I / O信号的值变化是事件。这些事件的时序和顺序关系可以用来确定系统是否按预期运行,或者是否可能发生故障。我们提出了一种使用来自正确操作系统的观察值来学习干预时间关系的方法。正确的系统操作的观察特征的样本统计信息用于创建基础系统可能的时序关系的置信空间。任何用作确定故障监视正确观察规范的时序关系都会在置信空间中所有可能的关系中导致一定程度的误报和漏检。可以选择时序关系以最小化在置信空间内最坏情况下的虚假警报和错过的检测成本。仿真用于评估一系列受扰系统上所选时序关系的性能。

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