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考虑电制氢辅助的配电网两阶段电压优化控制方法

李旭涛 保淑馨 周洋 常启诚 Alexis P.Zhao 顾文波 马鑫 李宏强 王伟杰 张亚健

中国电力2026,Vol.59Issue(2):81-89,9.
中国电力2026,Vol.59Issue(2):81-89,9.DOI:10.11930/j.issn.1004-9649.202601035

考虑电制氢辅助的配电网两阶段电压优化控制方法

Two-stage voltage optimization control method for hydrogen-production-assisted distribution networks

李旭涛 1保淑馨 2周洋 3常启诚 4Alexis P.Zhao 5顾文波 1马鑫 1李宏强 1王伟杰 6张亚健2

作者信息

  • 1. 国网宁夏电力有限公司电力科学研究院,宁夏 银川 750001
  • 2. 上海大学 机电工程与自动化学院,上海 200444
  • 3. 国网经济技术研究院有限公司,北京 102209
  • 4. 美国联邦住房贷款抵押公司,美国 弗吉尼亚州 22102
  • 5. 斯坦福大学 能源科学与工程系,美国,加利福尼亚州,94305
  • 6. 许继电气股份有限公司,河南 许昌 461000
  • 折叠

摘要

Abstract

The large-scale application of renewable energy in the distribution network poses a challenge to the voltage stability of the distribution network.This article proposes a two-stage voltage optimization control method considering the assistance of electric hydrogen production equipment.In the recent optimization phase,a global voltage regulation strategy was developed using an optimization model that includes dynamic constraints on hydrogen production equipment,with the goal of minimizing distribution network operating losses and hydrogen production costs.During the real-time control phase within the day,a bounded adaptive event triggered control method is adopted to dynamically adjust the triggering frequency of control instructions,in order to solve the voltage deviation problem caused by short-term power fluctuations with a lower response frequency of the hydrogen production equipment.Simulation examples show that the proposed method can reduce the voltage deviation amplitude of the distribution network by more than 10.24%,and the cost of voltage regulation can be reduced by more than 4.89%,demonstrating high voltage stability and good operational economy.

关键词

电制氢/配电网/事件触发控制/电压调节

Key words

hydrogen production/distribution network/event-triggered control/voltage regulation

引用本文复制引用

李旭涛,保淑馨,周洋,常启诚,Alexis P.Zhao,顾文波,马鑫,李宏强,王伟杰,张亚健..考虑电制氢辅助的配电网两阶段电压优化控制方法[J].中国电力,2026,59(2):81-89,9.

基金项目

国家自然科学基金资助项目(62103254). This work is supported by National Natural Science Foundation of China(No.62103254). (62103254)

中国电力

1004-9649

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