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HeatShield: a Low-Cost Didactic Device for Control Education Simulating 3D Printer Heater Blocks

机译:HeatShield:一种低成本的教学设备,用于模拟3D打印机加热块的控制培训

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This paper proposes a novel open-source didactic device for control systems engineering education that implements the thermal control of a 3D printer heating block as the underlying dynamic process. The teaching aid is built on a printed circuit board copying the physical outline and the standardized electrical connections of the Arduino Uno microcontroller prototyping board. The educational tool described here can be manufactured for a diminutive cost, thus is accessible to students as a take-home experiment. Moreover, it conforms to the design philosophy of the so-called Arduino Shields, thus, it extends the inherent capabilities of the baseboard and may be combined with other available shields. The proposed hardware is augmented by an application programming interface available in C/C++, MATLAB and Simulink. The paper describes the use of this interface and suggests a sample exercise for the grey-box identification of the differential equation representing the system dynamics which was derived by a first-principles approach. The article also acquaints the reader with sample exercises implementing PID control using the various available programming interfaces.
机译:本文提出了一种用于控制系统工程教学的新型开源教学设备,该设备将3D打印机加热块的热控制实现为基本的动态过程。该教具建立在印刷电路板上,该电路板复制了Arduino Uno微控制器原型板的物理外形和标准化的电气连接。此处描述的教育工具可以以很小的成本制造,因此学生可以作为实地实验来使用。此外,它符合所谓的Arduino Shields的设计理念,因此,它扩展了基板的固有功能,并且可以与其他可用的Shields组合使用。所建议的硬件通过C / C ++,MATLAB和Simulink中可用的应用程序编程接口进行了扩充。本文介绍了该接口的用法,并提出了一个示例练习,用于通过第一原理方法派生出一个用于表示系统动力学的微分方程的灰盒识别的示例。本文还向读者介绍了使用各种可用编程接口实现PID控制的示例练习。

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