系统仿真学报 ›› 2021, Vol. 33 ›› Issue (3): 669-678.doi: 10.16182/j.issn1004731x.joss.19-0566

• 仿真支撑平台/系统技术 • 上一篇    下一篇

基于模块化架构的荷源日前有功控制仿真平台

胡阳1, 刘文颖1, 朱丽萍1, 李潇1, 王维洲2   

  1. 1.华北电力大学 新能源电力系统国家重点实验室,北京 102206;
    2.国网甘肃省电力公司,甘肃 兰州 730000
  • 收稿日期:2019-10-28 修回日期:2019-12-18 出版日期:2021-03-18 发布日期:2021-03-18
  • 作者简介:胡阳(1996-),男,硕士生,研究方向为新能源电力系统稳定与控制。E-mail:hyangsunshine@163.com
  • 基金资助:
    国家重点研发计划(2018YFE0208400),国家电网有限公司总部科技项目

Simulation Platform for Source-load Control of Active Power Based on Modular Architecture

Hu Yang1, Liu Wenying1, Zhu Liping1, Li Xiao1, Wang Weizhou2   

  1. 1. North China Electric Power University, State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, Beijing 102206, China;
    2. State Grid Gansu Electric Power Company, Lanzhou 730000, China
  • Received:2019-10-28 Revised:2019-12-18 Online:2021-03-18 Published:2021-03-18

摘要: 随着我国风电并网比例的逐年增加,采用荷源有功协调控制能有效提高风电消纳水平。为保证荷源有功协调控制策略的有效应用,建立基于模块化架构的荷源日前有功控制仿真平台,包括SQL Server数据库、数据交互时序控制模块、荷源控制策略计算模块、输出结果展示模块,解决了荷源控制仿真过程中数据交互时序的自动控制问题,并对荷源控制效果进行可视化展示,使仿真过程更接近实际控制场景。以甘肃河西电网实际运行数据对所研发的平台进行应用,验证了平台的实用性。

关键词: 高载能负荷, 荷源协调, 仿真平台, 风电消纳

Abstract: The integrated proportion of wind power is increasing year by year, and the source-load coordinated control of active power can effectively improve the level of wind power consumption. In order to ensure the effective application of the strategy, a simulation platform based on modular architecture is developed for source-load control of active power, including SQL Server database, timing control module of data interaction, calculation module of source-load control strategy, and output display module. The simulation platform solves the automatic control of data interaction timing in the process of source-load control, and visualizes the effect of the source-load control, so that the simulation process is more similar to the actual control scene. The actual operation data of Hexi Power Grid in Gansu Province are simulated, which verifies the practicability of the platform.

Key words: high-energy load, source-load coordination, simulation platform, wind power consumption

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