相量
控制理论(社会学)
电流(流体)
直线电机
控制工程
计算机科学
控制(管理)
工程类
物理
电气工程
功率(物理)
电力系统
量子力学
人工智能
作者
Wei Xu,Yifan Gong,Jian Ge,Kaiju Liao,Guangyu Liao,Maoxin Zhang,Ion G. Boldea
标识
DOI:10.1109/tpel.2024.3412739
摘要
As the key power part of the linear compressor, the linear oscillatory motor (LOM) has been paid more attention by both academia and industry recently for its compact size, high efficiency, low vibration, etc. In practice, the efficiency of LOM is significantly impacted by the changes in load parameters, of which the best working point can be tracked by the resonant frequency tracking control (RFTC). However, the traditional RFTC with the idea of stroke-current phase suffers some problems, such as slow tracking speed, low accuracy, fluctuate amplitude of piston, and so on. In this article, a novel fast efficiency optimization control algorithm based on the orthogonal current phasor model is proposed for LOM. This new model can achieve the decoupling of current components that act on piston stroke and system efficiency, respectively. Moreover, the driving frequency can be adjusted by current decoupling control with a designed phase-locked loop. Based on the aforementioned, the decoupling control of the LOM drive system can be achieved, which can simultaneously improve the system response speed and the output efficiency. Comprehensive simulation and experimental results have fully demonstrated the advantages of the proposed method.
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