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计及需求响应的电-氢-气综合能源系统分布式鲁棒规划

张文轩 苏珈 杜欣慧 张之硕 王千淳 姜海鹏

电力建设2025,Vol.46Issue(7):108-122,15.
电力建设2025,Vol.46Issue(7):108-122,15.DOI:10.12204/j.issn.1000-7229.2025.07.009

计及需求响应的电-氢-气综合能源系统分布式鲁棒规划

Research on Distributed Robust Planning of Electric-Hydrogen-Gas Integrated Energy System Considering Demand Response

张文轩 1苏珈 1杜欣慧 1张之硕 2王千淳 3姜海鹏1

作者信息

  • 1. 太原理工大学电气与动力工程学院,太原市 030024
  • 2. 太原理工大学电气与动力工程学院,太原市 030024||国网河北省电力有限公司沧州市渤海新区供电分公司,河北省 沧州市 061000
  • 3. 太原理工大学电气与动力工程学院,太原市 030024||国网山西省电力公司太原供电公司,太原市 030024
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摘要

Abstract

[Objective]To completely exploit the coupling flexibility of the electric-hydrogen-gas-storage-demand response,a data-driven two-stage distributed robust collaborative planning model for integrated energy systems is proposed.[Methods]To address the problems of model inaccuracy and low solving efficiency of existing equipment modeling methods,a refined modeling method for an integrated energy system was proposed,which considered a refined model of distributed power supply,energy coupling equipment,hybrid energy storage,and demand response mechanism.A demand response incentive mechanism considering baseline uncertainty was developed.[Results]The MATLAB simulation results showed that the baseline load prediction model based on Gaussian process regression can calculate the baseline load more accurately and rapidly while simultaneously considering the response uncertainty.In addition,the equipment refinement model proposed in this study effectively reduced the comprehensive planning cost of the system,in which the operation,planning,carbon trading,and demand response costs were reduced by 2.55%,10.78%,1.08%,and 2.55%,respectively.Simultaneously,through the collaborative optimization of carbon trading and demand response mechanisms,the system could reduce the power purchased by the upper power grid and use flexible loads and distributed power sources to achieve a low-carbon and stable operation of the integrated energy system.The example showed that compared with the SO and RO methods,the proposed DRO planning method had more advantages in terms of the balance of economy and robustness and verified its applicability in integrated energy system planning.[Conclusions]The integrated energy system planning model based on demand response can significantly reduce the annual comprehensive cost of the system,improve the utilization rate of renewable energy,and reduce carbon emissions,providing ideas for subsequent research on the planning of the electric-hydrogen-gas integrated energy systems.

关键词

需求响应/电-氢-气综合能源系统规划/精细化建模/分布式鲁棒

Key words

demand response/electric-hydrogen-gas integrated energy system planning/refined modeling/distributed robust

分类

信息技术与安全科学

引用本文复制引用

张文轩,苏珈,杜欣慧,张之硕,王千淳,姜海鹏..计及需求响应的电-氢-气综合能源系统分布式鲁棒规划[J].电力建设,2025,46(7):108-122,15.

基金项目

国家自然科学基金项目(52307130) (52307130)

山西省青年基金项目(202303021212058) This work is supported by the National Natural Science Foundation of China(No.52307130)and Youth Fund of Shanxi Province(No.202303021212058). (202303021212058)

电力建设

OA北大核心

1000-7229

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