首页> 外文期刊>International Journal on Smart Sensing and Intelligent Systems >IMPERIALIST COMPETITIVE ALGORITHM-BASED FUZZY PID CONTROL METHODOLOGY FOR SPEED TRACKING ENHANCEMENT OF STEPPER MOTOR
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IMPERIALIST COMPETITIVE ALGORITHM-BASED FUZZY PID CONTROL METHODOLOGY FOR SPEED TRACKING ENHANCEMENT OF STEPPER MOTOR

机译:基于不竞争竞争算法的步进电机速度跟踪增强的模糊PID控制方法

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Precise control of the stepper motor has always been a topic of interest and also a challenging issue among control engineering researchers due to the nonlinear nature of the motor dynamic. Abrupt influences of the uncertainties on the model's dynamic and control performance, on the other hand, must be taken into account for providing a control methodology including the characteristics of adaption and flexibility. Lack of these items in most of the classic control approaches results in degradation of the control action. The main purpose of this paper is to provide an intelligent approach for improving the functionality of conventional PID controller in the problem of trajectory tracking in permanent magnet stepper motor (PMSM). Combination of a meta-heuristic algorithm called imperialist competitive algorithm (ICA) and fuzzy logic is employed for online tuning of PID controller. This, consequently, establishes an intelligent structure, fuzzy-PID controller (FPID), which is more flexible and accurate both in certain and uncertain situations. Using a systematic approach in designing the optimal fuzzy structure based on the ICA is our contribution here which leads to better performance of PMSM. Comparing the results of simulations, done in Matlab Simulink, between the suggested control strategy and performance of the PID, expresses the remarkable capability of FPID in overcoming the complexity of control of the nonlinear and uncertain systems.
机译:步进电机的精确控制一直是人们关注的话题,并且由于电机动态特性的非线性,在控制工程研究人员中也是一个具有挑战性的问题。另一方面,在提供包括适应性和灵活性特征的控制方法时,必须考虑不确定性对模型动态和控制性能的突然影响。大多数经典控制方法中缺少这些项目会导致控制动作降低。本文的主要目的是提供一种智能方法,以解决永磁步进电机(PMSM)的轨迹跟踪问题,从而改善常规PID控制器的功能。 PID控制器的在线调节采用称为帝国主义竞争算法(ICA)和模糊逻辑的元启发式算法的组合。因此,这将建立一个智能结构,模糊PID控制器(FPID),在某些和不确定的情况下,它都更加灵活和准确。我们在这里使用系统的方法来设计基于ICA的最佳模糊结构是我们的贡献,这将导致PMSM的更好性能。在Matlab Simulink中比较了建议的控制策略和PID性能之间的仿真结果,表明FPID在克服非线性和不确定系统的控制复杂性方面具有非凡的功能。

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