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Actuator fault estimation using direct reconstruction approach for linear multivariable systems

机译:基于直接重构方法的线性多变量系统执行器故障估计

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摘要

This study considers the application of a continuous non-linear fault estimation system to reconstruct the state vector and actuator faults for multivariable linear systems, in which the effects of faults are modelled as additive unknown inputs. To estimate the state, a continuous function is introduced to compensate the effects of fault and disturbance. It is shown that if the state reconstruction error converges to zero asymptotically, then the continuous function can be used as a reconstruction of fault and disturbance. The feasibility of the design scheme can be checked by solving a linear matrix inequality. Also, the design scheme does not rely on any particular canonical form of the model, so coordinate transformation is not necessary. Using the similar approach, a disturbance decoupled fault reconstruction scheme is also proposed. Finally, a design example is given and the reconstruction of both multiplicative fault and additive disturbance are simulated.
机译:本研究考虑了连续非线性故障估计系统在重构多变量线性系统的状态向量和执行器故障中的应用,其中故障的影响被建模为附加未知输入。为了估计状态,引入了连续函数来补偿故障和干扰的影响。结果表明,如果状态重构误差渐近收敛到零,则连续函数可以用作故障和扰动的重构。通过解决线性矩阵不等式,可以检验设计方案的可行性。同样,设计方案不依赖于模型的任何特定规范形式,因此不需要坐标转换。利用相似的方法,提出了一种干扰解耦故障重构方案。最后给出了一个设计实例,并仿真了倍增故障和加性扰动的重构。

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  • 来源
    《Control Theory & Applications, IET》 |2012年第1期|p.141-148|共8页
  • 作者

    H.-Y. Liu; Z.-S. Duan;

  • 作者单位

    State Key Lab for Turbulence and Complex Systems, Department of Mechanics and Aerospace Engineering, College of Engineering, Peking University, Beijing 100871, People's Republic of China;

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  • 正文语种 eng
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