• 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
新型UPFC拓扑结构的功率传输增强方案
Power transfer enhancement scheme of novel UPFC topology
Received:February 19, 2019  Revised:March 11, 2019
DOI:10.19753/j.issn1001-1390.2020.12.016
中文关键词: 统一潮流控制器  拓扑结构  输电能力  有功支持  电池储能  
英文关键词: 
基金项目:四川省科技厅重点研发项目(2017FZ0103)
Author NameAffiliationE-mail
Zhao Changshu School of Electric Engineering,Sichuan University 986505009@qq.com 
Qiu Xiaoyan* School of Electric Engineering,Sichuan University scuqxy@scu.edu.cn 
ZhaoYoulin School of Electric Engineering,Sichuan University 986505009@qq.com 
Zhang Kai School of Electric Engineering,Sichuan University 986505009@qq.com 
Liu Mengyi School of Electric Engineering,Sichuan University 986505009@qq.com 
Hits: 1566
Download times: 465
中文摘要:
      根据实际工程需求,将统一潮流控制器(unified power flow controller, UPFC)的拓扑结构进行变换。将UPFC系统的串联换流器和并联换流器接在不同的线路中,为了提高串联侧的输电能力,提出一种可再生能源给UPFC系统提供有功功率支持的方案。由于可再生能源的不确定性,为了系统的安全和稳定,可再生能源提供的功率先由电池储能进行存储,再做接入。对含新型UPFC拓扑结构的输电系统进行数学建模,以传输功率最大化为目标函数,通过遗传算法进行求解。最后通过算例仿真验证所提方案的正确性和有效性。
英文摘要:
      
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