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首页> 外文期刊>International journal of applied mathematics and computer science >An H Sliding Mode Observer for Takagi–Sugeno Nonlinear Systems with Simultaneous Actuator and Sensor Faults
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An H Sliding Mode Observer for Takagi–Sugeno Nonlinear Systems with Simultaneous Actuator and Sensor Faults

机译:具有同时执行器和传感器故障的Takagi–Sugeno非线性系统的H 滑模观测器

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This paper considers the problem of robust reconstruction of simultaneous actuator and sensor faults for a class of uncertain Takagi-Sugeno nonlinear systems with unmeasurable premise variables. The proposed fault reconstruction and estimation design method with H performance is used to reconstruct both actuator and sensor faults when the latter are transformed into pseudo-actuator faults by introducing a simple filter. The main contribution is to develop a sliding mode observer (SMO) with two discontinuous terms to solve the problem of simultaneous faults. Sufficient stability conditions in terms linear matrix inequalities are achieved to guarantee the stability of the state estimation error. The observer gains are obtained by solving a convex multiobjective optimization problem. Simulation examples are given to illustrate the performance of the proposed observer
机译:本文考虑了一类不确定的前提变量Takagi-Sugeno非线性系统同时执行器和传感器故障的鲁棒重构问题。提出的具有H 性能的故障重构和估计设计方法,通过引入一个简单的滤波器,将执行器和传感器故障转换为伪执行器故障,从而同时进行了重构。主要贡献是开发具有两个不连续项的滑模观测器(SMO),以解决同时发生的故障问题。就线性矩阵不等式而言,获得了足够的稳定性条件,以保证状态估计误差的稳定性。观察者增益是通过解决凸多目标优化问题获得的。给出了仿真例子来说明所提出的观测器的性能

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