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Energy-based fault detection and isolation of a Brayton cycle-based HTGR power conversion unit - A comparative study

机译:基于能量的故障检测与布雷顿循环的HTGR功率转换单元 - 比较研究

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The amount of data associated with condition monitoring of large scale industrial plants has led to a "big data problem". Energy-based fault detection and isolation (FDI) has been proposed as a hybrid FDI method to reduce data requirements and improve FDI performance. In this paper, a comparative study is performed on three energy-based FDI techniques, namely: an enthalpy-entropy error-based technique, a residual-based technique and an eigendecomposition-based technique. A representative Brayton cycle -based power conversion unit (PCU) is considered as the case study and simulated under normal and fault conditions. From the simulation data, the PCU is represented in terms of energy, either as an enthalpy- entropy diagram or an attributed graph. The graph representation allows structural information to be captured which contributes towards fault isolation capability. For each FDI technique, operational energy signatures are compared to normal and fault reference energy signatures to detect and isolate fault con-ditions. This paper contributes by comparing the FDI techniques based on the attributes of quick detec-tion and isolation. The residual-based technique had the best performance in detecting and isolating faults. The results also indicate that a combination of techniques will result in an FDI technique with improved detection and isolation performance over the individual techniques. (c) 2021 Elsevier Ltd. All rights reserved.
机译:与大型工业设备的条件监测相关的数据量导致了“大数据问题”。已经提出了基于能量的故障检测和隔离(FDI)作为混合FDI方法,以降低数据要求并提高FDI性能。在本文中,对三种基于能量的FDI技术进行了比较研究,即:基于焓 - 基于纠错的技术,基于残余的技术和基于特征的技术。代表布雷顿循环基于电力转换单元(PCU)被认为是在正常和故障条件下的案例研究和模拟。从模拟数据中,PCU以能量表示为焓 - 熵图或归属图。图表表示允许捕获结构信息,这有助于朝着故障隔离能力。对于每个FDI技术,将操作能量签名与正常和故障参考能量签名进行比较,以检测和隔离故障Con-initions。本文通过基于快速撤销和隔离的属性进行比较FDI技术。基于残余的技术在检测和隔离故障方面具有最佳性能。结果还表明技术的组合将导致FDI技术,并通过各个技术改善检测和隔离性能。 (c)2021 elestvier有限公司保留所有权利。

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