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Decentralised fault compensation of time-delayed interactions and dead-zone actuators for a class of large-scale non-linear systems

机译:一类大型非线性系统时滞相互作用和死区执行器的分散式故障补偿

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摘要

An approximation-based decentralised adaptive fault compensation (FC) problem is addressed for large-scale non-linear time-delay systems with unknown faults in both time-delayed non-linear interconnections and non-symmetric dead-zone actuators. Error surfaces constrained by prescribed performance bounds, which characterise the convergence rate and maximum overshoot of control errors, are presented to provide predefined bounds of control errors. Then, we design a memoryless decentralised FC control system using the constrained-surfaces-based dynamic surface design methodology, without constructing a dead-zone inverse and requiring the information about dead-zone parameters and time-delayed interactions. For the compensator design, the function approximation technique using neural networks is applied to adaptively estimate unknown non-linear effects and changes in model dynamics because of time-delayed interaction and dead-zone actuator faults. It is shown from Lyapunov stability theorem that all the error surfaces are preserved within the prescribed performance bounds and finally converge to an adjustable neighbourhood of the origin. Therefore guaranteed transient performance is achieved at the moment the faults occur.
机译:针对在时滞非线性互连和非对称死区执行器中均具有未知故障的大规模非线性时滞系统,解决了基于近似的分散式自适应故障补偿(FC)问题。提出了由规定的性能边界约束的误差表面,这些边界表征了控制误差的收敛速度和最大过冲,以提供控制误差的预定义边界。然后,我们使用基于约束表面的动态表面设计方法设计了一种无记忆的分散式FC控制系统,而无需构造死区逆,并且不需要有关死区参数和时滞相互作用的信息。对于补偿器设计,由于时间延迟的相互作用和死区执行器故障,应用神经网络的函数逼近技术可自适应地估计未知的非线性效应和模型动力学的变化。从Lyapunov稳定性定理可以看出,所有误差面都保留在规定的性能范围内,并最终收敛到原点的可调整邻域中。因此,在出现故障的那一刻即可实现有保证的瞬态性能。

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  • 来源
    《Control Theory & Applications, IET》 |2015年第9期|1461-1471|共11页
  • 作者

    Sung Jin Yoo;

  • 作者单位

    Sch. of Electr. & Electron. Eng., Chung-Ang Univ., Seoul, South Korea;

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  • 正文语种 eng
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