Simulation to Implementation as Good Practices for Teaching Power Electronics to Undergraduate Students: Fuzzy Sliding Mode Control for DC Motors

P. Cepeda, P. Ponce, A. Molina
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引用次数: 8

Abstract

How can students be given experience in the confused realities of engineering processes? How can undergraduate students be convinced that processes can be analyzed and improved? Computer simulations properly designed and applied could answer these challenges revolutionizing education in Power Electronics. In recent years, computer simulation has been commonly used in education to motivate students in their learning and help teachers to improve their teaching level. The present paper focuses on developing a speed controller for DC motors starting from theoretical aspects, passing through simulations, and finally reaching a control prototype. The control theory is based on a nonlinear technique known as Sliding Mode Control (SMC) involving artificial intelligence for optimization such as Fuzzy Logic (FL), Adaptive Neurofuzzy Inference Systems (ANFIS), and Genetic Algorithms (GAs).
从仿真到实作作为电力电子学本科教学的良好实践:直流电机的模糊滑模控制
如何让学生在工程过程的混乱现实中获得经验?如何让本科生相信过程是可以分析和改进的?正确设计和应用计算机模拟可以解决这些挑战,革新电力电子教育。近年来,计算机仿真已广泛应用于教育中,以激励学生学习,帮助教师提高教学水平。本文主要从理论入手,通过仿真,最后得出直流电机的调速样机。控制理论是基于一种被称为滑模控制(SMC)的非线性技术,涉及人工智能优化,如模糊逻辑(FL),自适应神经模糊推理系统(ANFIS)和遗传算法(GAs)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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