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首页> 外文期刊>Systems, Man, and Cybernetics, Part C: Applications and Reviews, IEEE Transactions on >Disturbance Attenuation in Fault Detection of Gas Turbine Engines: A Discrete Robust Observer Design
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Disturbance Attenuation in Fault Detection of Gas Turbine Engines: A Discrete Robust Observer Design

机译:燃气涡轮发动机故障检测中的扰动衰减:离散鲁棒观测器设计

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摘要

This study is motivated by the onboard fault detection of gas turbine engines (GTEs), where the computation resources are limited and the disturbance is assumed to be band-limited. A fast Fourier transformation (FFT)-based disturbance frequency estimation approach is proposed and performance indexes are improved by integrating such frequency information. Furthermore, in the left eigenvector assignment, both eigenvalues and free parameters are optimized. As illustrated in the application to the actuator fault detection of a GTE, significant improvements are achieved compared to the existing methods. By combining the frequency estimation and eigenvalue optimization, the main contribution of the paper is the reduction of the computation complexity and the avoidance of the local optimal solution due to fixed eigenvalues.
机译:这项研究是由燃气轮机(GTE)的机载故障检测推动的,在该机中,计算资源是有限的,并且干扰是受频带限制的。提出了一种基于快速傅里叶变换(FFT)的干扰频率估计方法,并通过集成这种频率信息来提高性能指标。此外,在左特征向量分配中,特征值和自由参数均被优化。如在GTE的执行器故障检测中的应用所示,与现有方法相比,实现了重大改进。通过将频率估计和特征值优化相结合,本文的主要贡献在于降低了计算复杂度并避免了由于固定特征值而导致的局部最优解。

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