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Backlash vibration suppression in torsional system based on the fractional order Q-filter of disturbance observer

机译:基于扰动观测器分数阶Q滤波器的扭转系统反冲振动抑制

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摘要

In this paper, a fractional order Q-filter 1/(Ts+1)/sup /spl alpha// is introduced to substitute the integer order Q-filter 1/(/spl tau/s+1)/sup n/ used in conventional disturbance observer for speed control of torsional system. The theoretical analysis and experimental results show that changing the Q-filter's order fractionally can give a more effective way to adjust control system's frequency and time responses than just tuning it among integer orders. The tradeoff between stability margin loss and the strength of vibration suppression is a common problem in torsional system control. By introducing fractional order control (FOC) approach, control system can be designed more straightforwardly since control system's frequency responses can be altered between integer order control (IOC) system's continuously, while less control parameters are needed to be decided. Design process and experimental results demonstrate that an "EASY & STRAIGHTFORWARD DESIGN" can be achieved by introducing FOC control design concept. For implementation of the fractional order Q-filter, broken-line approximation method is applied. Even the realization issues for fractional order controllers are somewhat problematic. Experiment results show that the controllers can actually be realized quite acceptably.
机译:在本文中,引入了分数阶Q滤波器1 /(Ts + 1)/ sup / spl alpha //来代替整数阶Q滤波器1 /(/ spl tau / s + 1)/ sup n /在传统的扰动观测器中用于扭转系统的速度控制。理论分析和实验结果表明,与仅在整数阶中进行调整相比,部分地改变Q滤波器的阶数可以提供一种更有效的方法来调节控制系统的频率和时间响应。稳定性裕量损失与减振强度之间的折衷是扭转系统控制中的常见问题。通过引入分数阶控制(FOC)方法,可以在整数阶控制(IOC)系统之间连续更改控制系统的频率响应,同时需要确定较少的控制参数,因此可以更直接地设计控制系统。设计过程和实验结果表明,通过引入FOC控制设计概念可以实现“简便和直截了当的设计”。为了实现分数阶Q滤波器,应用了折线逼近法。甚至分数阶控制器的实现问题也有些问题。实验结果表明,该控制器实际上可以完全令人满意地实现。

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