DC-Link Current Optimal Control of Current Source PWM Converter

Chenghao Zhu, Han Wang, Jianwen Zhang, X. Cai, Miao Zhu, Wei Lv
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Abstract

The doubly-fed wind energy conversion system (WECS) based current-source converter has the advantages of robustness, inherent short-circuit protection and fault ride through capability. In addition, with the development of semiconductor technology and high switching frequency reverse resistance devices, the weakness of conventional current source converter (CSC) including low switching frequency, large passive components and slow dynamic performance can be improved by PWM current-source converter technology with high switching frequency. To apply this technique on doubly-fed induction generator, this paper analyzes the system configuration, operating principles and control strategies, then introduces an operation point calculation method for minimum DC bus current control of converters. The simulation results and prototype experiments verify the validity of system configuration, the optimization design of parameters and control strategies.
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电流源PWM变换器的直流链路电流最优控制
基于双馈风能转换系统(WECS)的电流源变换器具有鲁棒性、固有的短路保护和故障穿越能力等优点。此外,随着半导体技术和高开关频率反向电阻器件的发展,采用高开关频率PWM电流源变换器技术可以改善传统电流源变换器(CSC)开关频率低、无源元件大、动态性能慢的缺点。为了将该技术应用于双馈感应发电机,分析了系统结构、工作原理和控制策略,介绍了变流器直流母线最小电流控制的工作点计算方法。仿真结果和样机实验验证了系统配置、参数优化设计和控制策略的有效性。
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