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A New Scheduling Quantitative Feedback Theory-Based Controller Integrated with Fault Detection for Effective Vibration Control

机译:一种新的调度定量反馈理论基于基于反馈的控制器,其集成了有效振动控制的故障检测

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In this work, a new integrated fault detection and control (IFDC) method is presented for single-input/single-output systems (SISOs). The idea is centered on comparing the closed-loop output between the faulty system and fault-free one to schedule/switch the feedback control once the fault occurs. The problem addressed in this work is the output disturbance rejection. The set of feedback controllers are designed using quantitative feedback theory (QFT) for fault-free and faulty systems. In the context of QFT-based IFDC, the proposed active approach is novel, simple, and easy to implement from an engineering point of view. The efficiency of the proposed method is assessed on a flexible smart structure system featuring a piezoelectric actuator. The actuator and sensor faults considered are the multiplicative type with both fixed and time-varying magnitudes. In the fixed magnitude fault case, the actuator/sensor output delivering capability is reduced by 50% (multiplying a factor of 0.5 to its actual output), while in the time-varying magnitude case, it becomes 60% to 50% for a particular time interval. In both cases, the proposed control method identifies the fault and activates the required controller to satisfy the specification with less control effort as opposed to the passive QFT design featured by faulty system design alone.
机译:在这项工作中,为单输入/单输出系统(SisoS)提供了一种新的集成故障检测和控制(IFDC)方法。该想法以比较故障系统与无故障的闭环输出来安排/切换反馈控制一旦发生故障。在这项工作中解决的问题是输出干扰抑制。该组反馈控制器是使用定量反馈理论(QFT)设计的,用于无故障和故障系统。在基于QFT的IFDC的背景下,从工程角度来看,所提出的主动方法是新颖的,简单,易于实现的。在具有压电致动器的柔性智能结构系统上评估所提出的方法的效率。所考虑的执行器和传感器故障是具有固定和时变幅度的乘法类型。在固定幅度故障情况下,执行器/传感器输出输出能力减少了50%(乘以0.5倍,其实际输出),而在时变幅度外壳中,特定的情况变为60%至50%时间间隔。在这两种情况下,所提出的控制方法识别故障并激活所需的控制器,以满足具有较少控制工作的规范,而不是单独的故障系统设计的无源QFT设计。

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