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FAULT ISOLATION FOR AN INDUSTRIAL GAS TURBINE WITH A MODEL-BASED DIAGNOSIS APPROACH

机译:基于模型的诊断方法对工业燃气轮机进行故障隔离

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Model based diagnosis and supervision of industrial gas turbines are studied. Monitoring of an industrial gas turbine is important as it gives valuable information for the customer about service performance and process health. The overall objective of the paper is to develop a systematic procedure for modelling and design of a model based diagnosis system, where each step in the process can be automated and implemented using available software tools. A new Modelica gas media library is developed, resulting in a significant model size reduction compared to if standard Modelica components are used. A systematic method is developed that, based on the diagnosis model, extracts relevant parts of the model and transforms it into a form suitable for standard observer design techniques. This method involves techniques from simulation of DAE models and a model reduction step. The size of the final diagnosis model is 20% of the original model size-Combining the modeling results with fault isolation techniques, simultaneous isolation of sensor faults and fault tolerant health parameter estimation is achieved.
机译:研究了基于模型的工业燃气轮机的诊断和监督。监测工业燃气轮机是重要的,因为它为客户提供了有关服务性能和流程健康的宝贵信息。本文的整体目标是开发一种系统的制造和设计基于模型的诊断系统,其中过程中的每个步骤都可以使用可用的软件工具自动化和实现。开发了一种新的ModelICA气体介质库,导致与使用标准模型组件相比,导致显着的模型尺寸减小。开发了一种系统方法,基于诊断模型,提取模型的相关部分,并将其转换为适合标准观察者设计技术的形式。该方法涉及模拟DAE模型的技术和模型还原步骤。最终诊断模型的大小是原始模型的20%,与故障隔离技术相结合的建模结果,实现了传感器故障的同时隔离和容错的健康参数估计。

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