基于有限时间观测器的非线性时滞切换网络系统故障检测与非脆弱控制设计

Dhanya Velmurugan, Arunkumar Arumugam, Karthick Arumugam
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引用次数: 0

摘要

摘要研究了一类具有时变时滞的不确定切换非线性网络控制系统(NNCSs)的有限时间范围内基于观测器的非脆弱控制和故障检测策略,这些时滞由传感器到控制器和控制器到执行器的网络推断。此外,本研究还设计了基于观测器的nncs故障检测控制。利用故障检测控制作为残差发生器,将传递的故障检测问题转化为衰减问题。通过采用多重Lyapunov函数和平均停留时间(ADT)方法,以线性矩阵不等式(lmi)表示的充分条件保证了所得到的开关nncs具有给定干扰衰减的有限时间有界性(FTB)准则。随后,优选lmi约束实现控制器和观测器增益。最后,给出了两个数值算例,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Finite‐time observer‐based fault detection with nonfragile control design for switched nonlinear networked systems with time‐delays
Abstract The strategy of observer‐based nonfragile control and fault‐detection over finite‐time horizon has been examined for a class of uncertain switched nonlinear networked control systems (NNCSs) contingent with time varying delays inferred by the networks from sensor to controller and controller to actuator. Also, in this study, an observer‐based fault detection control has been designed for the NNCSs. By making use of fault detection control as residual generator, the conveyed fault detection problem is then transformed into attenuation problem. By employing multiple Lyapunov function and average dwell time (ADT) approach, sufficient conditions in terms of linear matrix inequalities (LMIs) ensures the finite‐time boundedness (FTB) criterion of the resulting switched NNCSs with a prescribed disturbance attenuation. Subsequently, the preferred LMIs constraints realizes the controller and observer gains. Finally, two numerical examples are proffered to showcase the efficacity of the proposed technique.
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