方波
激发
平方(代数)
激发态
谐波
变频调速
自动频率控制
谐波分析
同步电动机
物理
控制理论(社会学)
控制(管理)
声学
计算机科学
电气工程
电子工程
原子物理学
电压
工程类
数学
量子力学
几何学
人工智能
作者
Yuwei Zhao,Xiaogang Lin,Wei Xie
标识
DOI:10.23919/icems60997.2024.10921179
摘要
Electrically excited synchronous motors are widely used in industrial automation, wind turbine power generation, transportation and other fields due to their advantage of being free of rare earth materials. However, traditional harmonic excitation schemes choose low order harmonics of the fundamental wave for excitation, which makes it impossible to completely decouple the excitation current from the fundamental wave and results in significant torque ripple. This paper proposes a novel square wave injection type harmonic excitation control strategy. This strategy can change the induced voltage generated at the rotor side by changing the amplitude and frequency of the injected voltage square wave, and then adjust the excitation current on the excitation winding after passing through the rectifier system behind the harmonic winding. A multi-phase self-excited motor experimental platform based on the proposed strategy has been established. The experimental results verified that the strategy can flexibly adjust the excitation current and output stable torque.
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