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Fault estimation observer design for descriptor-LPV systems with unmeasurable gain scheduling functions

机译:具有不可测量的增益调度功能的描述符-LPV系统的故障估计观测器设计

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This paper addresses a design of a sensor Fault Estimation Observer (FEO) for Descriptor-Linear Parameter Varying (DLPV) systems. In contrast with conventional problem, the Gain Scheduling Functions (GSF) are considered to be unmeasurable. In order to decouple faults, an augmented system is constructed by considering faults as an auxiliary state vector. Then, a FEO is designed to estimate simultaneously the original system states and faults. The influence of the error provided by the unmeasurable GSF is minimized using the H∞ theory, and the stability is guaranteed based on a Lyapunov equation. Sufficient conditions for the existence of the FEO are set in terms of Linear Matrix Inequalities. The resulting formulation provides a FEO robust against the unmeasurable scheduling gains. The effectiveness of the FEO is illustrated by means of a numerical simulation example.
机译:本文介绍了一种用于描述符线性参数变化(DLPV)系统的传感器故障估计观测器(FEO)的设计。与常规问题相反,增益调度函数(GSF)被认为是无法测量的。为了使故障解耦,通过将故障作为辅助状态向量来构造增强系统。然后,设计FEO以同时估计原始系统状态和故障。使用H∞理论将无法测量的GSF提供的误差的影响最小化,并基于Lyapunov方程保证稳定性。根据线性矩阵不等式设置存在FEO的充分条件。所得的公式提供了针对不可测量的调度增益的鲁棒的FEO。通过数值模拟示例说明了FEO的有效性。

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