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Trade-offs on fault estimation via proportional multiple-integral and multiple-resonant observers for discrete-time systems

机译:用于离散时间系统的比例多积分和多谐振观察者对故障估计进行权衡

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The authors develop a fault estimation strategy which is based on a novel proportional multiple-integral (PMI) and multiple-resonant observer. This observer is an extension of the well-known PMI observer and it is able to estimate from low to high-frequency fault signals. The proposed estimation strategy is applied to discrete-time systems which are affected by faults and stochastic noises. We present a multi-objective design strategy of the observer that fixes the trade-offs between practical engineering parameters regarding the noise attenuation and the ability to track each kind of fault dynamics considered by the augmented observer. They study the influence of the order of the observer on the steady-state and transient performance of the estimation of different types of faults. Finally, a numerical example is given to illustrate the effectiveness of the proposed observer, design and characterisation.
机译:作者开发了一种基于新型比例多积分(PMI)和多谐振观测器的故障估计策略。该观察者是众所周知的PMI观察者的扩展,它能够从低到高频故障信号估计。该估计策略适用于由故障和随机噪声影响的离散时间系统。我们展示了观察者的多目标设计策略,该策略在实际工程参数之间修复了关于噪声衰减的实际工程参数之间的权衡以及跟踪增强观察者考虑的每种故障动态的能力。他们研究了观察者秩序对不同类型故障估计的稳态和瞬态性能的影响。最后,给出了一个数值示例来说明所提出的观察者,设计和表征的有效性。

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