• 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
考虑风电和负荷特性的交直流混联系统电压稳定风险评估分析
Voltage Stability Risk Assessment Analysis of AC/DC Hybrid System Considering Wind Power and Load Characteristics
Received:August 29, 2019  Revised:October 27, 2019
DOI:10.19753/j.issn1001-1390.2021.08.015
中文关键词: 风电  电压稳定  交直流系统  风险评估
英文关键词: wind  power, voltage  stability, AC/DC  system, risk  assessment
基金项目:中央高校基本科研业务费专项资金资助项目(2014MS87)
Author NameAffiliationE-mail
ZHENG Huankun North China Electric Power University zhenghuankun@126.com 
ZHAO Liying* North China Electric Power University 1031895440@qq.com 
ZENG Fanfei North China Electric Power University 673252622@qq.com 
HAN Chaochao North China Electric Power University 1146199589@qq.com 
Hits: 991
Download times: 467
中文摘要:
      风电给VSC-HVDC系统的稳定带来了严重影响。本文将概率事件结合风险评估应用到电压稳定性的分析中提出了电压风险指标,基于改进的蒙特卡洛方法的拉丁超立方抽样(Latin hypercube sampling,LHS)建立了交直流电压稳定的风险评估流程,准确地确立系统的薄弱区域,研究不同风电接入场景及不同VSC控制方式和控制参数下系统电压稳定的风险情况。通过改进的10节点和39节点系统验证所提评估方法的可行性。
英文摘要:
      The access of large-scale wind power has a serious impact on the voltage stability of AC/DC power systems. In this paper, probabilistic events combined with risk assessment are applied to the analysis of voltage stability and voltage stability risk indicators are proposed. Based on the improved Monte Carlo method, the Latin hypercube sampling establishes a risk assessment process for AC/DC voltage stability. The weak areas of the system are accurately identified, and different wind power access scenarios and VSC control mode and control parameters are studied. The feasibility of the proposed evaluation method was verified by an improved 10-node and 39-node system.
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