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Switching PI speed control of a nonlinear laboratory dc micro-motor using low-cost embedded control hardware and software

机译:使用低成本嵌入式控制硬件和软件切换非线性实验室DC微电机的PI速度控制

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The design of simple linear control laws via linear mathematical models is a standard part of every control systems laboratory in a standard undergraduate curriculum. A typical example is the design of PI control laws for the speed control problem of DC motors. Embedded control is taught nowadays using cheap take-home equipment based on low-cost microprocessors like Arduino and dc micro-motors. Although offering ease for the demonstration of simple PI control laws, these motors exhibit nonlinear characteristics, which can be dealt with the application of more advanced control laws. The paper's purpose is twofold: first, to explore the possibilities offered by low-cost equipment, as a test bed for the "proof of concept" of more sophisticated switching control laws; and secondly to unfold the possibilities offered by this new environment for teaching, demonstration, project work, as well as research purposes, in the current laboratory practice.
机译:通过线性数学模型的简单线性控制定律设计是标准本科课程中每个控制系统实验室的标准部分。典型的例子是DC电机速度控制问题PI控制规律的设计。现在使用基于Arduino和DC微电机等低成本微​​处理器的便宜房屋设备立即教授嵌入式控制。虽然提供简单PI控制法的演示,但这些电机表现出非线性特性,可以涉及应用更先进的控制法。本文的目的是双重:第一,探索低成本设备提供的可能性,作为更复杂的切换控制法的“概念证明”的试验台;其次,在目前的实验室实践中展开了这一新环境的这种新环境,以及研究目的所提供的可能性。

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