Wavelet transform with fuzzy tuning based indirect field oriented speed control of three-phase induction motor drive

P. Sanjeevikumar, J. Daya, P. Wheeler, F. Blaabjerg, V. Fedák, Joseph Olorunfemi Ojo
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引用次数: 12

Abstract

This manuscript presents the details about the novel controller using wavelet transform and fuzzy logic tuning for speed control of an induction motor drive. The conventional proportional-integral (PI) speed controller in an indirect vector control of induction motor drive has been replaced by the proposed controller for an improved transient and steady state performances. The discrete wavelet transform has been used to decompose the error speed into different frequency components and the fuzzy logic is used to generate the scaling gains of the wavelet controller. The complete model of the proposed controller along with an induction motor drive incorporating the proposed controller has been developed in numerical simulation software using Matlab/Simulink environment and a set of results are provided within this paper in comparison to the conventional controller scheme.
基于小波变换模糊整定的三相感应电动机定向转速间接控制
本文介绍了一种基于小波变换和模糊逻辑整定的异步电机调速控制器。在异步电动机驱动的间接矢量控制中,传统的比例积分(PI)速度控制器已被该控制器所取代,以改善其瞬态和稳态性能。采用离散小波变换将误差速度分解为不同的频率分量,并利用模糊逻辑生成小波控制器的尺度增益。采用Matlab/Simulink环境在数值仿真软件中开发了所建议控制器的完整模型以及包含所建议控制器的感应电机驱动器,并在本文中提供了一组与传统控制器方案进行比较的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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