• HOME
  • About Journal
    • Historical evolution
    • Journal Honors
  • Editorial Board
    • Members of Committee
    • Director of the Committee
    • President and Editor in chief
  • Submission Guide
    • Instructions for Authors
    • Manuscript Processing Flow
    • Model Text
    • Procedures for Submission
  • Academic Influence
  • Open Access
  • Ethics&Policies
    • Publication Ethics Statement
    • Peer Review Process
    • Academic Misconduct Identification and Treatment
    • Advertising and Marketing
    • Correction and Retraction
    • Conflict of Interest
    • Authorship & Copyright
  • Contact Us
  • Chinese
Site search        
文章摘要
三相电流型整流器及其控制策略的研究
Study on three-phase current rectifier and its control strategy
Received:July 15, 2017  Revised:July 20, 2017
DOI:
中文关键词: 电流型整流器  SVPWM  蓄电池  纹波  谐振  有源阻尼
英文关键词: current source rectifier(CSR), SVPWM, battery charge, ripple, resonance, active damping
基金项目:西华大学研究生创新基金(ycjj2017056);攀枝花市太阳能光伏离/并网智能化控制逆变一体集成应用(2014CY-S-1-2);攀枝花学院分布式光伏多逆变器并网控制研究(2014YB11);攀枝花市科技计划项目-光伏发电系统关键技术研制2015 CY-C-5;四川省高校重点实验室-太阳能技术集成及应用推广(2013TYNZ-02/TYN2015-09);四川省电力电子节能技术与装备重点实验室(新型高效无桥高功率因数变换器的研究-szjj2015-066);流体及动力机械教育部重点实验室研究基金(西华大学)。
Author NameAffiliationE-mail
Lin Yuting* School of Electric Information,Xihua University m18380426164@163.com 
Chen Yufeng school of Electric Information,Xihua University 76932158@qq.com 
Cao Taiqiang School of Electric Information,Xihua University ctq815@126.com 
Zhu Xiumin School of Electric Information,Xihua University 253924193@qq.com 
Hits: 1471
Download times: 654
中文摘要:
      分析了用于蓄电池充电的电流型整流器(current source rectifier,CSR)主电路拓扑结构,采用了三值逻辑空间矢量调制,建立了dq坐标系下三相 CSR多环路直接电流控制的线性大信号数学模型。针对模型中d、q轴的耦合影响问题,采用了一种前馈解耦控制方法,消除了系统的非线性、耦合特性,从而简化了控制环路的设计。其次,针对LC滤波器的谐振问题,引入了一种基于电容电压反馈的有源阻尼控制策略,Bode图分析结果验证了控制策略的有效性。研究结果表明,三相CSR直流侧输出电流、交流侧输入电流均能保证快速动态响响应,网侧电压电流实现了单位功率因数,同时电流内环引入的前馈有源阻尼控制有效抑制了LC滤波器的谐振,使网侧电流的THD值由4.55%降到了2.17%。
英文摘要:
      Aiming at three-phase current source PWM rectifier which is used for battery, a tri-logic PWM technology and double closed-loop control method were used. The low ripple and fast response testing current in a wide adjustable range is achieved, and high power factor is obtained. In view of the resonance of LC filter, the passive damping is designed, which is based on the series resistance of capacitor. Finally, simulation and experimental results demonstrate that the proposed control strategy and parameter design not only output low ripple and fast response testing current in a wide adjustable range, but also can achieve unity input displacement power factor and can reduce the input-current distortion.
View Full Text   View/Add Comment  Download reader
Close
  • Home
  • About Journal
    • Historical evolution
    • Journal Honors
  • Editorial Board
    • Members of Committee
    • Director of the Committee
    • President and Editor in chief
  • Submission Guide
    • Instructions for Authors
    • Manuscript Processing Flow
    • Model Text
    • Procedures for Submission
  • Academic Influence
  • Open Access
  • Ethics&Policies
    • Publication Ethics Statement
    • Peer Review Process
    • Academic Misconduct Identification and Treatment
    • Advertising and Marketing
    • Correction and Retraction
    • Conflict of Interest
    • Authorship & Copyright
  • Contact Us
  • 中文页面
Address: No.2000, Chuangxin Road, Songbei District, Harbin, China    Zip code: 150028
E-mail: dcyb@vip.163.com    Telephone: 0451-86611021
© 2012 Electrical Measurement & Instrumentation
黑ICP备11006624号-1
Support:Beijing Qinyun Technology Development Co., Ltd