倒立摆半物理仿真虚拟实验系统设计与开发

Design and Development of the Virtual Experiment System for Semid-Physical Simulation of Inverted Pendulum

  • 摘要: 针对控制原理控制器设计内容抽象,学生缺乏对实际控制案例的直观认识,同时传统实验教学资源由于受场地、时间、经济成本等条件的限制,难以满足教学需求的问题,提出一种基于半物理仿真的一阶倒立摆虚拟实验系统设计方案,详细介绍了该虚拟实验系统实现的关键技术,包括一阶倒立摆物理模型建立、自定义目标软硬件实现、虚拟倒立摆与嵌入式目标之间的通信方法等。通过该虚拟实验系统,可以进行开放性自动控制类、嵌入式系统类实验教学,达到寓教于乐,消除控制原理学习的枯燥感,激发学生学习热情的目的。

     

    Abstract: In view of the abstract design content of the control principle controller, the lack of students’ intuitive understanding of the actual control case, and the difficulty of traditional experimental teaching resources to meet the teaching needs due to the constraints of site, time, economic cost and other conditions, a design scheme of the first-order inverted pendulum virtual experiment system based on semi-physical simulation is proposed, and the key technologies of the virtual experiment system are introduced in detail, including the establishment of the physical model of the first-order inverted pendulum, the implementation of customized software and hardware, communication methods between virtual inverted pendulums and embedded targets, etc. Through the virtual experiment system, open automatic control and embedded system experimental teaching can be carried out, so as to achieve the purpose of entertaining, eliminating the boredom of learning control principles, and stimulating students’ enthusiasm for learning.

     

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