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A Gas Path Fault Contribution Matrix for Marine Gas Turbine Diagnosis Based on a Multiple Model Fault Detection and Isolation Approach

机译:一种基于多模型故障检测和隔离方法的海洋燃气轮机诊断的煤气路径故障矩阵

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摘要

To ensure reliable and efficient operation of gas turbines, multiple model (MM) approaches have been extensively studied for online fault detection and isolation (FDI). However, current MM-FDI approaches are difficult to directly apply to gas path FDI, which is one of the common faults in gas turbines and is understood to mainly be due to the high complexity and computation in updating hypothetical gas path faults for online applications. In this paper, a fault contribution matrix (FCM) based MM-FDI approach is proposed to implement gas path FDI over a wide operating range. As the FCM is realized via an additive term of the healthy model set, the hypothetical models for various gas path faults can be easily established and updated online. In addition, a gap metric analysis method for operating points selection is also proposed, which yields the healthy model set from the equal intervals linearized models to approximate the nonlinearity of the gas turbine over a wide range of operating conditions with specified accuracy and computational efficiency. Simulation case studies conducted on a two-shaft marine gas turbine demonstrated the proposed approach is capable of adaptively updating hypothetical model sets to accurately differentiate both single and multiple faults of various gas path faults.
机译:为了确保燃气轮机的可靠和有效的操作,已经广泛研究了多种型号(MM)方法以进行在线故障检测和隔离(FDI)。然而,当前MM-FDI方法很难直接适用于天然气路径FDI,这是燃气轮机中的常见故障之一,并且应理解为主要是由于更新在线应用程序的假设气体路径故障的高复杂性和计算。本文提出了基于故障贡献矩阵(FCM)的MM-FDI方法,以在宽工作范围内实现气体路径FDI。由于FCM通过健康模型集的添加项实现,因此可以在线建立和更新各种气体路径故障的假设模型。另外,还提出了一种用于操作点选择的间隙度量分析方法,其产生从线性化模型的相同间隔内设置的健康模型,以在具有特定精度和计算效率的各种操作条件下近似燃气轮机的非线性。在双轴海洋燃气轮机上进行的模拟案例研究证明了所提出的方法能够自适应地更新假设模型集,以准确地区分各种气体路径故障的单一和多个故障。

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