您当前的位置:
首页 >
文章列表页 >
Electric-thermal coordinated scheduling method considering variable flow heat exchange characteristic of ground source heat pump
OPTIMAL DISPATCH TECHNOLOGIES FOR NEW\-TYPE POWER SYSTEMS | 更新时间:2026-03-30
    • Electric-thermal coordinated scheduling method considering variable flow heat exchange characteristic of ground source heat pump

    • Electric Power Automation Equipment   Vol. 46, Issue 4, Pages: 67-76(2026)
    • DOI:10.16081/j.epae.202602010    

      CLC: TM73
    • Received:22 September 2025

      Revised:2026-01-30

      Online First:03 February 2026

      Published:10 April 2026

    移动端阅览

  • YANG Yue,WU Pinghui,CHEN Lei,et al.Electric-thermal coordinated scheduling method considering variable flow heat exchange characteristic of ground source heat pump[J].Electric Power Automation Equipment,2026,46(04):67-76. DOI: 10.16081/j.epae.202602010.

  •  
  •  

0

Views

0

下载量

0

CSCD

Alert me when the article has been cited
提交
Tools
Download
Export Citation
Share
Add to favorites
Add to my album

Related Articles

Seasonal low-carbon economic optimization scheduling of integrated energy system considering carbon-energy pricing mechanism
Optimal operation method of gas-electricity-hydrogen integrated energy system considering refined P2H modeling and multi-point hydrogen blending
Distributionally robust low-carbon economic dispatch of integrated energy system considering dynamic energy hub
Two-stage robust optimization of low-carbon scheduling for integrated energy system based on data-driven and supply-demand flexibility
Nash-dueling deep Q network based electricity-heat-carbon joint dispatch strategy of integrated energy microgrid

Related Author

HU Guoxiang
SHI Linjun
LI Yang
WU Feng
YANG Tianyu
HE Chuan
LIU Tianqi
NAN Lu

Related Institution

School of Electrical and Power Engineering,Hohai University
College of Electrical Engineering,Sichuan University
College of Electrical and Information Engineering,Hunan University
Engineering Research Center of the Ministry of Education for Renewable Energy Power Generation and Grid Connection Control,Xinjiang University
School of Information Science and Technology,Beijing University of Technology
0