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Design of Disturbance Observer for Non-minimum Phase Systems Using PID Controllers

机译:使用PID控制器设计非最小相位系统的干扰观测器

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Since the application of disturbance observer (DOB) approach has been limited to minimum phase systems (or systems having no zero dynamics), a new DOB structure has been proposed by the authors. The proposed DOB structure is a simple modification of the original DOB by adding a new filter in parallel with the plant. The filter, which is called as V-filter, is designed so that the parallel connection with the plant becomes of minimum phase. Thus, with the help of V-filter, the original DOB idea can be applied to such parallel connection. For the disturbance rejection performance of the proposed control algorithm, a gain condition of the V-filter has been proposed in low-frequency range. In this paper, it is shown that if a given non-minimum phase system can be stabilized by a PID controller, we can easily construct the additional filter by inverting the controller's transfer function. The proposed scheme is applied to a simple non-minimum phase system, and simulation results show that substantial improvement in the performance has been achieved compared with the control system without DOB.
机译:由于扰动观察者(DOB)方法的应用仅限于最小相位系统(或没有零动态的系统),因此作者提出了一种新的DOB结构。所提出的DOB结构是通过与工厂并联的新滤波器添加新滤器来简单地修改原始DOB。设计为V滤波器的过滤器被设计成使得与工厂的并联连接成为最小相位。因此,在V滤波器的帮助下,原始DOB思想可以应用于这种并行连接。对于所提出的控制算法的扰动抑制性能,已经提出了在低频范围内提出了V滤波器的增益条件。在本文中,显示,如果可以通过PID控制器稳定给定的非最小相位系统,我们可以通过反转控制器的传输功能来容易地构造附加滤波器。所提出的方案应用于简单的非最小相系统,仿真结果表明,与没有DOB的控制系统相比,已经实现了性能的显着提高。

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