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A probabilistic approach to alarm processing in power systems using a refined genetic algorithm

机译:一种使用精制遗传算法的电力系统报警处理的概率方法

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In this paper, a probabilistic approach Is proposed for alarming processing in power systems based on a genetic algorithm (GA). Although alarm processing and fault diagnosis have different explanations in the power system community, from the viewpoint of the artificial intelligence community, the alarm processing problem is a typical multiple fault diagnosis (MFD) problem. Thus, at first we attribute the alarm processing problem to an MFD problem and discuss the MFD problem in general with special emphasis on the evaluation criteria. Then, a probabilistic criterion is introduced to describe the alarm processing problem, which is deemed more reasonable than the currently used criteria. Thirdly, a novel method is developed to solve the alarm processing problem using a refined genetic algorithm. Finally, a sample example is used to demonstrate the feasibility and efficiency of the developed method. The key features of this proposed method are that it has solid mathematical foundation and can find multiple global optimal solutions directly and efficiently in a single run. This is very suitable for complex alarm processing problems especially for the situations with missing or false alarms, because different combinations of events can produce the same set of alarms under these circumstances. The test results, although preliminary, suggest that the developed GA-based probabilistic method to the alarm processing problem is promising.
机译:本文,提出了一种基于遗传算法(GA)的电力系统中的概率方法。虽然报警处理和故障诊断在电力系统社区中有不同的解释,但从人工智能界的角度来看,报警处理问题是典型的多故障诊断(MFD)问题。因此,首先,我们将警报处理问题归因于MFD问题,并且通常讨论MFD问题,特别强调评估标准。然后,引入了概率标准来描述警报处理问题,其被认为比当前使用的标准更合理。第三,开发了一种新的方法来使用精细的遗传算法解决报警处理问题。最后,使用示例示例来证明开发方法的可行性和效率。这种提出的方​​法的关键特征是它具有稳固的数学基础,可以直接和有效地在一次运行中找到多个全局最佳解决方案。这非常适合复杂的报警处理问题,特别是对于缺失或误报的情况,因为事件的不同组合可以在这些情况下产生相同的警报。测试结果虽然初步表明,对报警处理问题的基于GA的概率方法是有前途的。

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