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首页> 外文期刊>Journal of control science and engineering >Active Fault Tolerant Control Based on a Novel Tracking Differentiator for Elevating Stage Control System
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Active Fault Tolerant Control Based on a Novel Tracking Differentiator for Elevating Stage Control System

机译:基于新型跟踪微分器的升降级控制系统主动容错控制

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In view of the speed sensor faults in elevating stage control system, an active fault tolerant control approach based on a novel tracking differentiator is proposed in this paper. First, the analytical redundancy relationship between the velocity and displacement signals in a dual closed loop control system is used to detect a fault. When the deviation between the differential of normal displacement sensor signal and the fault speed sensor output exceeds a certain threshold value, a fault can be considered to occur. Secondly, after a fault is detected, the output of the fault sensor is replaced immediately with the differential signal of the output from a normal sensor to ensure the safety of the postfault system. In the process of signal differential, considering the drawbacks of the traditional method which uses inertial element to approximate differentiator and complex parameter tuning of Han’s Tracking Differentiator (TD), a novel tracking differentiator based on hyperbolic tangent function (Tanh-TD) is designed. Thirdly, in order to avoid the switching vibration and improve the reliability of FDD, a continuous smooth switching tactic based on exponential function is constructed. The simulation results show that the fault diagnosis method is simple and timely, the designed tracking differentiator is fast and effective, and the effect of the fault tolerant control based on smooth switching strategy is also satisfactory.
机译:针对升降级控制系统中速度传感器的故障,提出了一种基于新型跟踪微分器的主动容错控制方法。首先,在双闭环控制系统中,速度和位移信号之间的解析冗余关系用于检测故障。当法向位移传感器信号的差和故障速度传感器输出之间的偏差超过某个阈值时,可以认为发生了故障。其次,在检测到故障后,立即用正常传感器输出的差分信号替换故障传感器的输出,以确保故障后系统的安全。在信号微分过程中,考虑到传统的惯性元逼近微分法和Han跟踪微分器(TD)复杂参数调整的传统方法的缺点,设计了一种基于双曲正切函数(Tanh-TD)的新型跟踪微分器。第三,为避免切换振动并提高FDD的可靠性,构造了一种基于指数函数的连续平滑切换策略。仿真结果表明,故障诊断方法简便,及时,设计的跟踪微分器快速有效,基于平滑切换策略的容错控制效果也令人满意。

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