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首页> 外文期刊>International Journal of Control >Fault detection for linear distributed-parameter systems using finite-dimensional functional observers
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Fault detection for linear distributed-parameter systems using finite-dimensional functional observers

机译:线性分布参数系统的有限维功能观测器故障检测

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摘要

In this article, finite-dimensional residual generators are directly designed for Riesz-spectral systems with bounded input and output operators to detect faults. This is achieved by using finite-dimensional observers, that can estimate linear functionals of the state without spillover. These observers allow for a decoupling of the unknown disturbances from the estimation error dynamics under mild assumptions. Then, a finite-dimensional residual generator is obtained by approximately decoupling the state from the residual, that is generated by the observer states and the outputs. It is shown that the resulting approximation error can be made small by increasing the observer order. Then, fault detection with the finite-dimensional residual generator can be assured by introducing a time-varying threshold. A faulty Euler-Bernoulli beam with structural damping illustrates the proposed finite-dimensional fault detection approach.
机译:在本文中,直接为Riesz谱系统设计有限维残差生成器,并使用有限的输入和输出算符来检测故障。这是通过使用有限维度的观察器实现的,该观察器可以估计状态的线性函数而不会发生溢出。这些观察者允许在温和的假设下将未知干扰与估计误差动态解耦。然后,通过将状态与残差近似解耦来获得有限维残差生成器,该残差由观察者状态和输出生成。结果表明,通过增加观察者的阶数,可以使所得的近似误差变小。然后,可以通过引入随时间变化的阈值来确保使用有限维残差生成器进行故障检测。带有结构阻尼的故障Euler-Bernoulli梁说明了所提出的有限维故障检测方法。

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