模棱两可
斯塔克伯格竞赛
风力发电
计算机科学
可再生能源
能量(信号处理)
集合(抽象数据类型)
分解
系统动力学
数学优化
博弈论
讨价还价问题
电力系统
运筹学
控制工程
发电
碳排放税
能源系统
能源规划
工程类
情景分析
马尔可夫决策过程
能源管理
工业工程
灵活性(工程)
稳健优化
纳什均衡
温室气体
生产计划
高效能源利用
需求响应
碳捕获和储存(时间表)
能量流
作者
Xinglei Liu,Jun Liu,Lei Wu,Tao Ding,Weilun Wang,Xiangning He
标识
DOI:10.1109/tsg.2025.3635668
摘要
With the growing focus on carbon neutrality, integrated energy systems (IESs) have become vital for low-carbon transitions. However, conventional multi-IES planning remains energy-centric, overlooking inter- and intra-system interactions of carbon trading and carbon-based pricing. Therefore, this paper proposes a carbon-centric hybrid-game robust planning model for multi-IESs under higher-order uncertainties (HOUs). The proposed model integrates an inter-IES Nash bargaining game to enhance system-wide coordination with dynamic carbon trading, and an intra-IES Stackelberg game to improve supplier-user interaction via carbon-based energy pricing. A novel low-carbon flexible retrofitted CHP structure, alongside its extended carbon emission flow (ECEF) model, is developed to provide physical support for dynamic carbon attribution. Additionally, to address HOUs in renewable outputs, a confidence band-based ambiguity set is constructed, considering both parameter and distributional variations for system robust planning. A decomposition algorithm combining adaptive ADMM and parallel C&CG is implemented to ensure computational tractability. Finally, case studies on a real-world system in Southern China validate the effectiveness of the proposed model in improving emission reduction, operational flexibility, and planning robustness.
科研通智能强力驱动
Strongly Powered by AbleSci AI