A critical and comprehensive handbook for game theory applications on new power systems: structure, methodology, and challenges
|更新时间:2026-04-23
|
A critical and comprehensive handbook for game theory applications on new power systems: structure, methodology, and challenges
Protection and Control of Modern Power SystemsVol. 10, Issue 5, Pages: 1-27(2025)
作者机构:
1. Faculty of Electric Power Engineering, Kunming University of Science and Technology,Kunming,China
2. College of Electrical Engineering, Zhejiang University,Hangzhou,China
3. Electric Power Research Institute, Yunnan Power Grid Company Ltd.,Kunming,China
4. Faculty of Science, Kunming University of Science and Technology,Kunming,China
5. State Key Laboratory of Advanced Electromagnetic Engineering and Technology, School of Electrical and Electronic Engineering, Huazhong University of Science and Technology,Wuhan,China
6. Shanghai KeLiang Information Technology Company Ltd.,Shanghai,China
7. Department of Electrical Engineering & Electronics, University of Liverpool,Liverpool,UK
Bo Yang, Yimin Zhou, Yunfeng Yan, et al. A critical and comprehensive handbook for game theory applications on new power systems: structure, methodology, and challenges[J]. Protection and Control of Modern Power Systems, 2025, 10(5): 1-27.
DOI:
Bo Yang, Yimin Zhou, Yunfeng Yan, et al. A critical and comprehensive handbook for game theory applications on new power systems: structure, methodology, and challenges[J]. Protection and Control of Modern Power Systems, 2025, 10(5): 1-27. DOI: 10.23919/PCMP.2024.000297.
A critical and comprehensive handbook for game theory applications on new power systems: structure, methodology, and challenges
摘要
Abstract
To effectively promote renewable energy development and reduce carbon dioxide emissions
the new power system integrating renewable energy sources (RES)
energy storage (ES) technology
and electric vehicles (EVs) is proposed. However
the generation variability and uncertainty of RES
the unpredictable charging schedule of EVs
and access to energy storage systems (ESS) pose significant challenges to the planning
operation
and scheduling of new power systems. Game theory
as a valuable tool for addressing complex subject and multi-objective problems
has been widely applied to tackle these challenges. This work undertakes a comprehensive review of the application of game theory in the planning
operation
and scheduling of new power systems. Through an analysis of 143 research works
the applications of game theory are categorized into three key areas: RES
ESS
and EV charging infrastructure. Moreover
the game theory approaches
payoff/objective functions
players
and strategies used in each study are thoroughly summarized. In addition
the potential for game theory based on artificial intelligence is explored. Lastly
this review discusses existing challenges and offers valuable insights and suggestions for the future research directions.