Methodology for teaching model-oriented design of mechatronic systems

R. S. Gavrylov, Yu. N. Mystafaev
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引用次数: 1

Abstract

The paper discusses the issues of model-oriented design of embedded control systems for various purposes by means of Matlab-Simulink for DSP-controllers TMS and STM32. The examples of laboratory testing facilities intended for students (bachelors/undergraduates) studying the basics of drive control systems designing, familiarizing themselves with the material and technical means for mechatronic systems implementing, developing control system algorithms in a Matlab-Simulink environment, generating executable code, loading it into the controller and the results verification are presented in the article. A modern approach of teaching students the basics of automatic control should go along with the methods of mechatronic systems model-oriented design, which is one of the most promising design methods nowadays. The developer has almost unlimited possibilities in the field of constructing object control algorithms of any complexity with the loadable library modules and compilers for executable code generation in the Matlab-Simulink environment for TMS and STM32 DSP-controllers and a number of others. The proposed teaching methodology covers a wide aspect of competencies in related fields such as: electrical machines, automatic control theory, circuit engineering and microelectronics and modeling.The paper discusses the issues of model-oriented design of embedded control systems for various purposes by means of Matlab-Simulink for DSP-controllers TMS and STM32. The examples of laboratory testing facilities intended for students (bachelors/undergraduates) studying the basics of drive control systems designing, familiarizing themselves with the material and technical means for mechatronic systems implementing, developing control system algorithms in a Matlab-Simulink environment, generating executable code, loading it into the controller and the results verification are presented in the article. A modern approach of teaching students the basics of automatic control should go along with the methods of mechatronic systems model-oriented design, which is one of the most promising design methods nowadays. The developer has almost unlimited possibilities in the field of constructing object control algorithms of any complexity with the loadable library modules and compilers for executable code generation ...
机电系统面向模型设计的教学方法
本文讨论了利用Matlab-Simulink对dsp控制器TMS和STM32进行各种用途嵌入式控制系统的面向模型设计问题。本文给出了实验室测试设备的实例,供学习驱动控制系统设计的基础知识,熟悉机电系统实现的材料和技术手段,在Matlab-Simulink环境中开发控制系统算法,生成可执行代码,将其加载到控制器中,并验证结果的学生(本科生)使用。面向模型的设计方法是当今最有前途的设计方法之一,因此,现代的自动控制基础教学方法应该与面向模型的设计方法相结合。在Matlab-Simulink环境中,为TMS和STM32 dsp控制器以及许多其他控制器使用可加载库模块和编译器生成可执行代码,开发人员在构建任何复杂性的对象控制算法领域具有几乎无限的可能性。建议的教学方法涵盖了相关领域的广泛能力,如:电机、自动控制理论、电路工程、微电子和建模。本文讨论了利用Matlab-Simulink对dsp控制器TMS和STM32进行各种用途嵌入式控制系统的面向模型设计问题。本文给出了实验室测试设备的实例,供学习驱动控制系统设计的基础知识,熟悉机电系统实现的材料和技术手段,在Matlab-Simulink环境中开发控制系统算法,生成可执行代码,将其加载到控制器中,并验证结果的学生(本科生)使用。面向模型的设计方法是当今最有前途的设计方法之一,因此,现代的自动控制基础教学方法应该与面向模型的设计方法相结合。开发人员在使用可加载库模块和编译器生成可执行代码的任何复杂性的对象控制算法领域几乎有无限的可能性……
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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