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Robust H-/H-infinity fault detection observer design for descriptor-LPV systems with unmeasurable gain scheduling functions

机译:具有无法测量的增益调度功能的描述符LPV系统的鲁棒H / H无穷大故障检测观察器设计

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摘要

This paper addresses a design of a fault detection observer (FDO) for descriptor linear parameter varying (D-LPV) systems. In contrast with the conventional approach for D-LPV systems, the gain scheduling functions (GSF) are considered unmeasurable. The FDO is investigated in the H-/H infinity index framework in order to minimise the effects of the disturbance and maximise the effect of faults on the residuals, and minimise the error caused by the unmeasurable GSF. The stability is guaranteed based on a Lyapunov approach. Sufficient conditions for the existence of the FDO are established in terms of linear matrix inequalities. The effectiveness of the proposed method is illustrated by means of a simulation example.
机译:本文介绍了一种用于描述符线性参数变化(D-LPV)系统的故障检测观察器(FDO)的设计。与用于D-LPV系统的常规方法相反,增益调度功能(GSF)被认为是不可测量的。在H- / H无限索引框架中研究FDO,以最大程度地减少干扰的影响,并最大程度地提高故障对残差的影响,并最大程度地减少不可测GSF引起的误差。基于Lyapunov方法可以保证稳定性。根据线性矩阵不等式确定了存在FDO的充分条件。通过仿真实例说明了所提出方法的有效性。

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