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计及需求响应的含电-氨-电环节综合能源系统多时间尺度电-热联合调度

彭宏香 陈曦

现代电子技术2025,Vol.48Issue(10):109-117,9.
现代电子技术2025,Vol.48Issue(10):109-117,9.DOI:10.16652/j.issn.1004-373x.2025.10.018

计及需求响应的含电-氨-电环节综合能源系统多时间尺度电-热联合调度

Electricity-ammonia-electricity link IES multi-time-scale electricity-heat joint scheduling considering DR

彭宏香 1陈曦1

作者信息

  • 1. 三峡大学 电气与新能源学院,湖北 宜昌 443002
  • 折叠

摘要

Abstract

The penetration rate of renewable energy such as solar energy and wind energy in power system is improved generally.In order to promote the consumption of renewable energy generation,reduce the carbon emission of the integrated energy system(IES),and improve the economy of the system operation,a dispatching model of the electricity-ammonia-electricity linkIES considering the demand response(DR)is proposed.The power-to-ammonia(P2A)module and ammonia solid oxide fuel cell(ASOFC)are used to improve the wind power consumption level of IES and participate in the combined heat and power supply of the system.On this basis,a day-ahead and intra-day operation model of low-carbon economic is established according to the formation mechanism of DR resources on the load side.The internal energy coupling relationship of IES with electricity-ammonia-electricity links is analyzed,and a fast and slow time-scale electricity-heat joint scheduling method based on source-charge coordination is proposed.The example analysis and comparison results based on the CPLEX solver show that the proposed IES scheduling model with electricity-ammonia-electricity link,and its scheduling method can effectively alleviate the wind curtailment phenomenon,ensure the economic operation of the system,and reduce the system carbon emissions.

关键词

可再生能源/电转氨/固态氧化物氨燃料电池/电-热-氨耦合关系模型/热电联供/电力调度

Key words

renewable energy/power-to-ammonia/ammonia solid oxide fuel cell/electricity-heat-ammonia coupling relationship model/combined heat and power/power dispatching

分类

信息技术与安全科学

引用本文复制引用

彭宏香,陈曦..计及需求响应的含电-氨-电环节综合能源系统多时间尺度电-热联合调度[J].现代电子技术,2025,48(10):109-117,9.

基金项目

湖北省自然科学基金项目(2020CFB248) (2020CFB248)

宜昌市自然科学研究项目(A20-3-014) (A20-3-014)

现代电子技术

OA北大核心

1004-373X

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