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Mathematical model construction of DC Motor by closed-loop system Identification technique Using Matlab/Simulink

机译:使用MATLAB / Simulink对DC电动机的数学模型施工闭环系统识别技术

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Process Identification and PID Control enables students and engineers to understand the essential concepts of feedback control, process identification, auto-tuning, and design of real feedback controllers, especially PID controllers. And related to research, in this paper, the DC-Motor has a speed of 3000 rpm. This paper shows how to design speed 800-1000 rpm. by collect input-output signal information to be analyzed for mathematical equations (Plant-DC Motor) in a system identification toolbox MATLAB/SIMULINK to aid the reader in solving real problems. Readers will be able to design their own controllers, implement them, and confirm performance in real-time using real-time virtual processes. The system of interest is a closed-loop control system with a feedback controller and displays the results with a mathematical model. (Mathematical model identification) of a system that can be designed and implemented.
机译:过程识别和PID控制使学生和工程师能够了解反馈控制,过程识别,自动调整和实际反馈控制器,尤其是PID控制器的基本概念。 在本文中,与研究有关,直流电动机的速度为3000rpm。 本文展示了如何设计800-1000 rpm的速度。 通过收集系统识别工具箱Matlab / Simulink中的数学方程(工厂-DC电机)进行分析的输入 - 输出信号信息,以帮助读者解决真正的问题。 读者将能够设计自己的控制器,实现它们,并使用实时虚拟进程实时确认性能。 感兴趣系统是具有反馈控制器的闭环控制系统,并通过数学模型显示结果。 (可以设计和实现的系统的数学模型识别)。

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