基于大脑情感学习的考虑模型不确定性的混合式步进电机智能速度控制

IF 1.7 Q2 Engineering
A. Yazdani, A. Mahmoudi, M. A. Movahed, P. Ghanooni, S. Mahmoudzadeh, S. Buyamin
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引用次数: 16

摘要

本文提出了一种基于大脑情感学习的智能控制器(BELBIC),用于混合式步进电机(HSM)的精确速度跟踪。这种配置适用于高分辨率和精度至关重要的情况,特别是在不确定的条件下。所提出的控制器是一个与系统中发生的模型动力学和变化无关的无模型控制器。它能够自动学习以处理不可预见的干扰。为了评估BELBIC控制器在实际条件下的性能,考虑了机械参数变化和负载转矩扰动导致的系统的不确定性。为了验证BELBIC具有良好的动态性能和可行性,在MATLAB Simulink中对系统进行了仿真,并将仿真结果与优化的比例积分(PI)控制器进行了比较。仿真结果证实了BELBIC在快速、精确的速度响应方面的优越性能,以及与PI控制器相比在处理非线性和不确定性方面的潜力。所提出的控制器用于实际应用,如可调谐激光系统和机器人辅助手术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intelligent Speed Control of Hybrid Stepper Motor Considering Model Uncertainty Using Brain Emotional Learning
This paper presents an implementation of the brain emotional learning-based intelligent controller (BELBIC) for precise speed tracking of the hybrid stepper motor (HSM). Such a configuration is applicable where high resolution and accuracy is essential particularly in uncertain conditions. The proposed controller is a model-free controller independent of the model dynamics and variations that occur in a system. It is capable of autolearning to handle unforeseen disturbances. To evaluate the performance of the BELBIC controller in realistic conditions, the uncertainty of the system as a result of mechanical parameter variation and load torque disturbance is considered. To verify an excellent dynamic performance and the feasibility of the BELBIC, the system is simulated in MATLAB Simulink, and the results of the simulation are compared with an optimized proportional integral (PI) controller. The simulation results confirm the superior performance of the BELBIC for fast and precise speed response as well as its potential in dealing with nonlinearity and uncertainty handling as compared with that of the PI controller. The proposed controller is used in realistic applications, such as tunable-laser system and robot-assisted surgery.
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来源期刊
自引率
0.00%
发文量
27
期刊介绍: The Canadian Journal of Electrical and Computer Engineering (ISSN-0840-8688), issued quarterly, has been publishing high-quality refereed scientific papers in all areas of electrical and computer engineering since 1976
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