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Fault diagnosis of a simulated industrial gas turbine via identification approach

机译:基于识别方法的模拟工业燃气轮机故障诊断

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摘要

In this paper, a model-based procedure exploiting the analytical redundancy principle for the detection and isolation of faults on a simulated process is presented. The main point of the work consists of using an identification scheme in connection with dynamic observer and Kalman filter designs for diagnostic purpose. The errors-in-variables identification technique and output estimation approach for residual generation are in particular advantageous in terms of solution complexity and performance achievement. The proposed tools are analysed and tested on a single-shaft industrial gas turbine MATLAB/SIMULINK~® rnsimulator in the presence of disturbances, i.e. measurement errors and modelling mismatch. Selected performance criteria are used together with Monte-Carlo simulations for robustness and performance evaluation. The suggested technique can constitute the design methodology realising a reliable approach for real application of industrial process FDI.
机译:在本文中,提出了一种基于模型的过程,该过程利用分析冗余原理对模拟过程中的故障进行检测和隔离。这项工作的重点在于结合动态观察器和卡尔曼滤波器设计使用一种识别方案进行诊断。就残差生成而言,变量错误识别技术和输出估计方法在解决方案复杂性和性能实现方面特别有利。在存在干扰(即测量误差和建模不匹配)的情况下,在单轴工业燃气轮机MATLAB / SIMULINK〜®模拟器上对提出的工具进行了分析和测试。选定的性能标准与Monte-Carlo仿真一起使用,以进行鲁棒性和性能评估。所建议的技术可以构成实现实际应用工业过程FDI的可靠方法的设计方法。

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