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含氢储能的独立微电网IGDT鲁棒规划

肖白 韩康琦 张晓华

电力建设2024,Vol.45Issue(4):77-88,12.
电力建设2024,Vol.45Issue(4):77-88,12.DOI:10.12204/j.issn.1000-7229.2024.04.008

含氢储能的独立微电网IGDT鲁棒规划

Robust IGDT Planning for Stand-Alone Microgrid with Hydrogen Energy Storage

肖白 1韩康琦 1张晓华2

作者信息

  • 1. 东北电力大学电气工程学院,吉林省吉林市 132012
  • 2. 国网吉林省电力有限公司延边供电公司,吉林省延吉市 133000
  • 折叠

摘要

Abstract

When planning stand-alone microgrids with a high proportion of renewable energy penetration,the uncertainty of wind and solar outputs poses difficulties in achieving the goal of lean planning.To this end,a stand-alone microgrid optimization planning method based on the information gap decision theory(IGDT)is proposed for hydrogen-containing energy storage.First,the basic structure of a stand-alone microgrid containing a hydrogen energy storage system is constructed.Based on the developed structure,we explain the basic working principle of the hydrogen energy storage system is explained and a simplified mathematical model is derived.Second,an uncertain scene set is established based on the robust optimization idea of IGDT,and a two-level robust optimization planning model for a stand-alone microgrid considering the incentive DR is established.The outer model aims to minimize the annual comprehensive cost of the microgrid,while the inner model aims to minimize the annual operating cost of the microgrid.A genetic algorithm with an elite retention strategy is employed to solve the bi-level robust optimization programming model.The results validate the rationality and effectiveness of the established model and provide a reference for the optimization planning of stand-alone microgrid containing hydrogen energy storage.

关键词

独立微电网/信息间隙决策理论(IGDT)/需求响应(DR)/氢储能/双层优化

Key words

stand-alone microgrid/information gap decision theory(IGDT)/demand response(DR)/hydrogen energy storage/two-layer optimization

分类

信息技术与安全科学

引用本文复制引用

肖白,韩康琦,张晓华..含氢储能的独立微电网IGDT鲁棒规划[J].电力建设,2024,45(4):77-88,12.

基金项目

This work is supported by the National Key Research and Development Program of China(No.2017YFB0902205)and Jilin Province Industrial Innovation Special Fund Project(No.2019C058-7).国家重点研发计划项目(2017YFB0902205) (No.2017YFB0902205)

吉林省产业创新专项基金项目(2019C058-7) (2019C058-7)

电力建设

OA北大核心CSTPCD

1000-7229

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