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Synchronous interval observer design for switched LPV systems using multiple quadratic ISS-Lyapunov functions

机译:使用多个二次ISS-Lyapunov函数的LPV交换系统的同步间隔观测器设计

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This paper deals with the problem of robust state estimation for switched LPV continuous-time systems with measurable and unmeasurable scheduling parameters. The switching law is assumed to be uncontrollable but online available, while the unmeasurable varying parameters are assumed to be bounded with a priori known bounds. The proposed approach is based on switched interval observers which provide guaranteed lower and upper bounds allowing to evaluate the set of admissible values of the real state vector. The stability and positivity conditions of the switched interval error are expressed in terms of linear matrix inequalities (LMIs), which have been established using multiple quadratic ISS-Lyapunov functions (MQLF) and average dwell-time concept. In order to enhance estimation accuracy and robustness an explicit bound of the interval error is guaranteed. The proposed approach is applied to robust estimation of vehicle lateral dynamics. Tests are conducted on experimental data in order to prove the effectiveness of the proposed switched interval observer.
机译:本文研究了具有可测量和不可测量的调度参数的切换LPV连续时间系统的鲁棒状态估计问题。假定开关定律是不可控制的,但是在线可用,而假定不可测量的变化参数被定为先验已知界限。所提出的方法基于切换间隔观测器,其提供了保证的上下限,从而可以评估真实状态向量的允许值集。转换间隔误差的稳定性和正性条件用线性矩阵不等式(LMI)表示,该线性不等式已使用多个二次ISS-Lyapunov函数(MQLF)和平均停留时间概念建立。为了提高估计的准确性和鲁棒性,保证了区间误差的明确界限。所提出的方法被应用于车辆横向动力学的鲁棒估计。对实验数据进行测试,以证明所建议的切换间隔观察器的有效性。

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