可控作动器电磁接触器能量回收新策略

Jierong Zhuang, Zhihong Xu, Yang Wang
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引用次数: 0

摘要

传统的电磁接触器在开启时存在可控性不足的问题。本文设计了一种具有分离磁路结构的新型接触器,该接触器产生反方向电磁力。提出了一种具有能量回收和电源管理功能的快速开启控制模块。根据仿真结果设计了补偿网络,验证了电压电流环在储能阶段和能量释放阶段是稳定的。采用Multisim软件对电路进行仿真,LabVIEW软件对新型受控接触器模型进行仿真,并进行联合仿真,分析了开环过程闭环控制的能量回收策略。通过实验验证了模块设计和回收策略的准确性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel strategy of energy reclaiming for electromagnetic contactor with controlled actuator
Traditional electromagnetic contactor suffers from a lack of controllability when opening. In this paper, the new contactor with the controlled actuator having structure of segregated magnetic path is designed, which generates electromagnetic force in opposite directions. A new control module featuring energy reclaiming and power management for fast opening is proposed. The compensation network is designed by simulated results to confirm that the voltage and current loop is stable during energy storage stage and energy release stage. Cosimulation, in which Multisim software simulates the circuitry and LabVIEW software executes the model of the new controlled contactor, is carried out to analyze energy reclaiming strategy for the closed loop control of opening process. The experiment is reported to validate the accuracy and effectiveness of the module design and the reclaiming strategy.
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