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Cluster analysis of wind turbine alarms for characterising and classifying stoppages

机译:风力涡轮机警报的聚类分析,用于表征和分类停机

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Turbine alarm systems can give useful information to remote technicians on the cause of a fault or stoppage. However, alarms are generally generated at much too high a rate to gain meaningful insight from on their own, so generally require extensive domain knowledge to interpret. By grouping together commonly occurring alarm sequences, the burden of analysis can be reduced. Instead of analysing many individual alarms that occur during a stoppage, the stoppage can be linked to a commonly occurring sequence of alarms. Hence, maintenance technicians can be given information about the shared characteristics or root causes of stoppages where that particular alarm sequence appeared in the past. This research presents a methodology to identify relevant alarms from specific turbine assemblies and group together similar alarm sequences as they appear during stoppages. Batches of sequences associated with 456 different stoppages are created, and features are extracted from these batches representing the order the alarms appeared in. The batches are grouped together using clustering techniques, and evaluated using silhouette analysis and manual inspection. Results show that almost half of all stoppages can be attributed to one of 15 different clusters of alarm sequences.
机译:涡轮报警系统可以将有关故障或停机原因的有用信息提供给远程技术人员。但是,警报通常以太高的速率生成,以至于无法单独获得有意义的洞察力,因此通常需要广泛的领域知识来解释。通过将常见的警报序列分组在一起,可以减轻分析负担。代替分析停止期间发生的许多单个警报,可以将停止链接到常见的警报序列。因此,可以向维护技术人员提供有关共享特征或停工根本原因的信息,而这些特定警报序列过去曾出现过。这项研究提出了一种方法,可以从特定的涡轮机组件中识别出相关的警报,并将在停机期间出现的类似警报序列组合在一起。创建了与456个不同的停工关联的序列批次,并从这些批次中提取了表示警报出现顺序的特征。这些批次使用聚类技术分组在一起,并使用轮廓分析和手动检查进行评估。结果表明,几乎所有中断中的一半都可归因于15个不同的警报序列簇之一。

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