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面向需求响应的园区虚拟电厂优化调度策略

魏春晖 单林森 胡大栋 高乾恒 张新松 薛晓岑

中国电力2025,Vol.58Issue(6):112-121,10.
中国电力2025,Vol.58Issue(6):112-121,10.DOI:10.11930/j.issn.1004-9649.202410059

面向需求响应的园区虚拟电厂优化调度策略

Optimal Scheduling Strategy of Park-level Virtual Power Plant for Demand Response

魏春晖 1单林森 1胡大栋 1高乾恒 1张新松 2薛晓岑2

作者信息

  • 1. 国网浙江省电力有限公司绍兴供电公司,浙江 绍兴 312000
  • 2. 南通大学电气与自动化学院,江苏 南通 226019
  • 折叠

摘要

Abstract

The park-level virtual power plant(PVPP)can aggregate diversified and flexible resources with the industrial parks to fully explore demand response potential,thus improving the profits of the PVPP.In order to optimize the demand response strategy of the PVPP in the electricity carbon joint market,a two-stage optimal scheduling model of the PVPP is developed here,in which,carbon emission costs are included in the optimization objects.The developed model includes two stages,i.e.,a day-ahead stage and a real-time stage,and can be solved by the GAMS software.In the day-ahead stage,photovoltaic(PV)generation power is predicted by the improved radial basis function neural network,and the demand response bidding capacities are determined aiming to maximize the net benefits of the PVPP resulted from the demand response.In the real-time stage,the day-ahead schedules are revised according to real PV generation power,thus minimizing the negative effects of the PV power generation forecasting errors on the net benefits of the PVPP resulted from the demand response.Finally,the simulation analysis based on a PVPP is carried out.The results demonstrate that the strategy developed in this paper can maximize the net benefits of the PVPP resulted from the demand response in the context of considering the carbon emission costs.

关键词

园区虚拟电厂/灵活资源/需求响应/优化调度/碳排放

Key words

park-level virtual power plant/flexible resources/demand response/optimal schedule/carbon emission

引用本文复制引用

魏春晖,单林森,胡大栋,高乾恒,张新松,薛晓岑..面向需求响应的园区虚拟电厂优化调度策略[J].中国电力,2025,58(6):112-121,10.

基金项目

国家自然科学基金资助项目(52377104) (52377104)

国网绍兴供电公司科技项目(SGZJSX00FZJS2311395). This work is supported by National Natural Science Foundation of China(No.52377104)&Technology Project of State Grid Shaoxing Power Supply Company(No.SGZJSX00FZJS2311395). (SGZJSX00FZJS2311395)

中国电力

OA北大核心

1004-9649

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