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A numerical-based fuzzy PID controller applied to a DC drive

机译:基于数值的模糊PID控制器应用于直流变频器

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摘要

The employment of PID controllers for automated processes has been widely accepted in industry. The main problems associated with classical PID controllers are tuning and robustness in case of changes in system conditions. In this paper, a novel and more robust controller is proposed, viz a numerical-based fuzzy PID controller or extremities PID controller, which combines classical PID concepts with fuzzy arithmetics. For the purpose of investigating the basic performance of the newly developed controller, two laboratory-scale plants are used, viz a simple series RLC network and a microcomputer-based dual-converter DC drive. Experimental results, including comparisons with a classical PID controller, are also presented.
机译:在自动化过程中使用PID控制器已在行业中被广泛接受。与经典PID控制器相关的主要问题是在系统条件变化的情况下进行调整和增强鲁棒性。在本文中,提出了一种新颖且更鲁棒的控制器,即将经典PID概念与模糊算术相结合的基于数值的模糊PID控制器或四肢PID控制器。为了研究新开发的控制器的基本性能,使用了两个实验室规模的工厂,即简单的串联RLC网络和基于微型计算机的双转换器DC驱动器。还介绍了实验结果,包括与经典PID控制器的比较。

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