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首页> 外文期刊>Transactions of the Institute of Measurement and Control >Radial position control of a magnetically suspended rotor system in a direct-driven spindle using inverse system scheme
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Radial position control of a magnetically suspended rotor system in a direct-driven spindle using inverse system scheme

机译:使用逆系统方案的直接驱动主轴中的磁悬浮转子系统的径向位置控制

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摘要

Direct-driven spindles have no mechanical transmission trains and gears, and are the key actuators for computerized numerical control machine tools. These magnetically suspended rotor systems are required to provide fast response and high precision. However, these systems are non-linear and strongly coupled. The traditional proportional, integral, derivative (PID) control method has been widely used for such systems owing to its relative simple realization. However, the tracking, disturbance rejection and robustness properties of the controlled plant may not be satisfied. To solve these problems, this paper presents a decoupling control strategy based on an inverse system scheme and combines it with the internal model control method to guarantee system robustness to the parameter uncertainty and external disturbance. By introducing an inversion of the magnetically suspended rotor system into the original system, a new pseudolinear system is developed. It can be shown that this addition effectively eliminates the influence of the unmodelled dynamics, and improve the accuracy and robustness of the whole system. The simulation and experimental results show that when compared with the traditional control scheme, the proposed control scheme provides good decoupling and robustness performance for the magnetically suspended rotor system in different operating conditions.
机译:直接驱动的主轴没有机械传动系和齿轮,是计算机数控机床的关键执行器。这些磁悬浮转子系统需要提供快速响应和高精度。然而,这些系统是非线性的并且是强耦合的。传统的比例,积分,微分(PID)控制方法由于其相对简单的实现而已被广泛用于此类系统。但是,可能无法满足受控工厂的跟踪,干扰抑制和鲁棒性属性。为了解决这些问题,本文提出了一种基于逆系统方案的解耦控制策略,并将其与内部模型控制方法相结合,以保证系统对参数不确定性和外部干扰的鲁棒性。通过将磁悬浮转子系统的反转引入原始系统,开发了一种新的伪线性系统。可以证明,这种增加有效地消除了未建模动力学的影响,并提高了整个系统的准确性和鲁棒性。仿真和实验结果表明,与传统控制方案相比,该控制方案在不同工况下为磁悬浮转子系统提供了良好的解耦和鲁棒性。

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