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计及碳交易机制和耦合需求响应的综合能源系统优化调度

赵飞 王媛

现代电子技术2025,Vol.48Issue(18):91-98,8.
现代电子技术2025,Vol.48Issue(18):91-98,8.DOI:10.16652/j.issn.1004-373x.2025.18.015

计及碳交易机制和耦合需求响应的综合能源系统优化调度

IES optimal scheduling with carbon trading mechanism and coupled demand response

赵飞 1王媛1

作者信息

  • 1. 华北电力大学 电气与电子工程学院,河北 保定 071003
  • 折叠

摘要

Abstract

In order to further improve the energy utilization efficiency,low carbon and user demand response of the integrated energy system(IES),an IES optimal scheduling model of the integrated energy system taking into account the stepped carbon trading mechanism and coupled demand response is established.The architecture of the electricity-gas-heat-cooling IES is constructed to improve the energy utilization efficiency.The stepped carbon trading mechanism is introduced into the system,and the coupling characteristics of the loads on both supply and demand sides are analyzed by combining the impacts of time-of-day energy price and new energy output,so as to obtain the loads of electricity,gas,heat,and cold after the coupling of the demand response.With the goal of minimizing the total system cost,the IES optimal scheduling model that takes into account the stepped carbon trading mechanism and coupling of demand response is constructed based on constraint conditions.This model can not only enhance the system's emission reduction capability but also effectively promote comprehensive response of the system's electricity,gas,heat,and cooling loads.The multi-scenario example is carried out for validation.The results show that this model can effectively reduce carbon emissions by about 18%,improve the demand response of users by about 20%,and reduce the total system operation cost by about 3%.

关键词

综合能源系统/耦合需求响应/阶梯型碳交易机制/优化调度/用户需求响应/低碳经济运行

Key words

integrated energy system/coupled demand response/stepped carbon trading mechanism/optimal scheduling/user demand response/low-carbon economic operation

分类

信息技术与安全科学

引用本文复制引用

赵飞,王媛..计及碳交易机制和耦合需求响应的综合能源系统优化调度[J].现代电子技术,2025,48(18):91-98,8.

基金项目

国家自然科学基金面上项目:复杂地形下考虑源-网双变激励的风电机组载荷特性及传递机理研究(52076081) (52076081)

现代电子技术

OA北大核心

1004-373X

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