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Robust state and fault estimation observer for discrete-time D-LPV systems with unmeasurable gain scheduling functions - Application to a binary distillation column

机译:具有不可衡量增益调度功能的离散时间D-LPV系统的鲁棒状态和故障估计观察者 - 应用于二进制蒸馏塔

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摘要

This paper deals with the problem of robust jointly state and fault estimation (actuator and sensor) observer design for discrete-time Descriptor-Linear Parameter Varying (D-LPV) with unmeasurable gain scheduling. The proposed approach is based on the H_∞ synthesis applied to the state estimation error. Sufficient conditions are given by a set of Linear Matrix Inequalities (LMIs), which ensures robustness to disturbances/noise and the error given by the unmeasurable gain scheduling functions. Thus, the main contribution is to develop a conceptually simple integrated procedure to estimate states, sensor or actuator faults. In order to illustrate the methodology, simulations based on a realistic model of binary distillation column are considered.
机译:本文涉及具有不可衡量增益调度的离散时间描述符 - 线性参数变化(D-LPV)的稳健联合状态和故障估计(执行器和传感器)观测器设计的问题。所提出的方法是基于应用于状态估计误差的H_∞合成。通过一组线性矩阵不等式(LMI)给出了足够的条件,其确保了对扰动/噪声的鲁棒性以及由不可衡量的增益调度功能给出的误差。因此,主要贡献是开发概念上简单的集成程序来估计状态,传感器或执行器故障。为了说明方法,考虑了基于二元蒸馏塔的现实模型的模拟。

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