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A virtual actuator and sensor approach for fault tolerant control of LPV systems

机译:用于LPV系统的容错控制的虚拟执行器和传感器方法

摘要

In this paper, a fault tolerant control (FTC) strategy using virtual actuators and sensors for linear parameter varying (LPV) systems is proposed. The main idea of this FTC method, initially developed for LTI systems, is to reconfigure the control loop such that the nominal controller could still be used without need of retuning it. The plant with the faulty actuator/sensor is modified adding the virtual actuator/sensor block that masks the actuator/sensor fault. The suggested technique is an active FTC strategy that reconfigures the virtual actuator/sensor on-line taking into account faults and operating point changes. The stability of the reconfigured control loop is guaranteed if the faulty plant is stabilizable/detectable. The LPV virtual actuator/sensor is designed using polytopic LPV techniques and linear matrix inequalities (LMIs). A two-tank system simulator is used to assess the performance of the proposed method. In particular, it is shown that the application of the proposed technique results in an improvement, in terms of performance, with respect to the LTI counterpart. © 2014 Elsevier Ltd.
机译:本文提出了一种使用虚拟执行器和传感器的线性参数变化(LPV)系统的容错控制(FTC)策略。最初为LTI系统开发的这种FTC方法的主要思想是重新配置控制回路,以便标称控制器仍然可以使用而无需对其进行重新调整。对执行器/传感器故障的工厂进行了修改,增加了虚拟的执行器/传感器模块,该模块可掩盖执行器/传感器的故障。所建议的技术是一种主动FTC策略,该策略可以在线重新配置虚拟执行器/传感器,同时考虑到故障和工作点变化。如果故障工厂是可稳定/可检测的,则可以保证重新配置的控制回路的稳定性。 LPV虚拟致动器/传感器是使用多主题LPV技术和线性矩阵不等式(LMI)设计的。使用两罐系统模拟器来评估所提出方法的性能。特别地,示出了所提出的技术的应用相对于LTI对应物在性能方面导致了改进。 ©2014爱思唯尔有限公司。

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