基于改进模糊控制算法的步进电机 PID 控制方法研究步骤

Zichi Zhang, Xiangding Meng, Yilei Kou
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引用次数: 0

摘要

PID 控制在步进电机管理系统中的重要性不言而喻;但值得注意的是,步进电机容易受到低功率、阶跃损耗和振动等问题的影响。传统的比例-积分-微分 (PID) 控制方法不足以应对步进电机管理系统特有的控制挑战。因此,本研究工作提出了一种增强型模糊控制方法,将模糊控制理论的原理与传统的 PID 控制理论相结合。将模糊控制与 PID 控制相结合,创造出一种能满足步进电机控制需求的模糊控制器。此外,还根据模糊控制器的规格进行了指数划分,以减少 PID 控制的干扰因素。然后,使用模糊控制规则来实现对步进电机的控制,从而开发出一种增强型方案,并对该方案进行了严格验证。本研究采用 MATLAB 仿真来比较增强型模糊控制算法与 P-ID 控制方法的性能。结果表明,改进的模糊控制算法显著提高了步进电机的稳定性和动态性能。优于传统的比例-积分-微分(PID)控制。
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Research step of PID control method of stepper motor based on improved fuzzy control algorithm
The significance of PID control within the management system of stepper motors is noteworthy; nonetheless, it is worth noting that stepper motors are susceptible to issues such as low power, step loss, and vibration. The conventional Proportional-Integral-Derivative (PID) control method is insufficient in addressing the control challenge specific to stepper motor management systems. Hence, this research work presents an enhanced fuzzy control method that integrates the principles of fuzzy control theory with traditional PID control theory. The integration of fuzzy control into the P ID control is undertaken to create a fuzzy controller that satisfies the demands of stepper motor control. Additionally, the division of indices is conducted in accordance with the specifications of the fuzzy controller in order to mitigate the disruptive elements of PID control. then, the use of fuzzy control rules is employed to achieve control over the stepper motor, resulting in the development of an enhanced scheme that is then subjected to rigorous validation. The present study employs a MATLAB simulation to compare the performance of the enhanced fuzzy control algorithm with that of the P-ID control method. The results demonstrate that the improved fuzzy control algorithm significantly enhances the stability and dynamic performance of the stepper motor. Superior to traditional Proportional-Integral-Derivative (PID) control.
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