TRMS中传感器和执行器故障的可靠H∞观测器-控制器设计

V. S. Rao, V. I. George, Surekha Kamath, C. Shreesha
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引用次数: 6

摘要

安全关键控制系统用于由于传感器故障或执行器故障而导致控制系统故障将导致生命,财产损失或造成环境危害的情况。直升机系统确实需要一个安全关键或可靠的控制系统,该系统需要面对大量湍流条件,并且在传感器或/和执行器故障的情况下表现良好,保持稳定。此外,由于非线性和交叉耦合,直升机系统的数学建模也很困难。双旋翼MIMO系统(TRMS)在纵向和横向轴之间具有显著交叉耦合的行为类似于直升机系统。本文旨在设计双转子MIMO系统的H∞观测器和H∞控制器,使其在传感器或作动器失效的情况下,以及在传感器和作动器失效的情况下都能保持可靠。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliable H infinity observer-controller design for sensor and actuator failure in TRMS
Safety critical control systems are used in situations where the failure of a control system due to sensor failure or actuator failure will lead to a loss of life, property or cause environmental harm. A helicopter system really needs a safety critical or reliable control system which faces a lot of turbulent conditions and is expected to perform well, being stable in the case of sensor or/and actuator failures. Also the helicopter system is difficult to model mathematically due to non- linearity and cross coupling. The Twin Rotor MIMO System (TRMS) resembles the helicopter system in behaviour with significant cross coupling between the longitudinal and lateral axes. In this paper an H infinity observer and H infinity controller for a Twin Rotor MIMO System is aimed to be designed which will be reliable in the case of sensor failure or actuator failure also in case of sensor failure and actuator failure.
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