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考虑混合虚拟储能的园区综合能源系统低碳运行优化研究

赵振宇 任旭

热力发电2025,Vol.54Issue(2):42-56,15.
热力发电2025,Vol.54Issue(2):42-56,15.DOI:10.19666/j.rlfd.202407155

考虑混合虚拟储能的园区综合能源系统低碳运行优化研究

Research on low carbon operation optimization of park integrated energy system considering hybrid virtual energy storage

赵振宇 1任旭1

作者信息

  • 1. 华北电力大学经济与管理学院,北京 102206
  • 折叠

摘要

Abstract

Conventional energy storage systems have high investment costs,long payback periods,and cannot be applied on a large scale in park level systems.In response to this issue,an integrated energy system in the park is established firstly,which includes hybrid virtual energy storage such as electric vehicles,air conditioning,and heating network pipelines.Moreover,the operating mechanism of the system is also analyzed.Relevant models for system and virtual energy storage are constructed.Secondly,based on correction indicators such as peak valley difference and external grid interaction scale,a hybrid virtual energy storage incentive mechanism considering dynamic time of use prices is proposed.Then,under the carbon cycle mechanism of waste incineration cogeneration flue-gas treatment-P2G,a low-carbon operation optimization model for the integrated energy system in the park is constructed with the goal of maximizing profits.Finally,a case study is performed on an integrated energy system in a certain region,and the results show that,operation optimization considering hybrid virtual energy storage can reduce external grid interaction costs.A hybrid virtual energy storage incentive mechanism considering dynamic time-sharing prices can improve the enthusiasm of virtual energy storage entities to respond to system scheduling.Considering the carbon cycle mechanism of waste incineration cogeneration flue-gas treatment-P2G can increase net revenue.

关键词

虚拟储能/综合能源系统/激励机制/低碳/运行优化

Key words

virtual energy storage/integrated energy system/excitation mechanism/low carbon/operation optimization

引用本文复制引用

赵振宇,任旭..考虑混合虚拟储能的园区综合能源系统低碳运行优化研究[J].热力发电,2025,54(2):42-56,15.

基金项目

北京市自然科学基金资助项目(8232013) Beijing Municipal Natural Science Foundation(8232013) (8232013)

热力发电

OA北大核心

1002-3364

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