Special Session XIV: Low-Carbon Transition Oriented Source-Grid-Load-Storage Collaborative Flexible Regulation: Technologies, Markets, and Mechanisms 低碳转型下源网荷储协同灵活调节:技术、市场与机制
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Session Chair: Prof. Zhaoxi Liu, South China University of Technology, China |
Co-Chair: Assoc. Researcher Li Ma, Institute of Electrical Engineering |
Summary:
Driven by the global carbon neutrality goal, new power systems are accelerating their evolution towards high penetration of renewable energy and high power electronics penetration. The forms of source, grid, load, and storage have undergone profound changes: the installed capacity of new energy continues to rise, distributed resources and flexible loads are widely integrated, and the scale of energy storage is expanding rapidly. Against this backdrop, how to fully exploit the low-carbon regulation potential of each link through deep coordination and flexible interaction among source, grid, load, and storage has become a major scientific and engineering challenge that urgently needs to be addressed in the power system field. This special session aims to bring together cutting-edge research achievements from both academia and industry, and to systematically explore source-grid-load-storage collaborative flexible regulation under the low-carbon transition from three dimensions: advanced technologies, market mechanisms, and policy systems. The session will focus on core issues such as quantitative modeling and aggregated control of flexible resources, electricity-carbon coordinated low-carbon optimal dispatch, design of market trading mechanisms adapted to high-proportion renewable energy, and information, communication, and artificial intelligence technologies supporting efficient interaction among source, grid, load, and storage. The goal is to promote innovative development of the theoretical framework and engineering practices of source-grid-load-storage collaborative regulation, and to facilitate the low-carbon, economic, and reliable operation of new power systems.
在全球碳中和目标的驱动下,新型电力系统正加速向高比例可再生能源接入和高电力电子化方向演进。源、网、荷、储各环节的形态发生了深刻变革:新能源装机容量持续攀升,分布式资源与柔性负荷广泛接入,储能规模快速扩张。在此背景下,如何通过源网荷储的深度协同与灵活互动,充分挖掘系统各环节的低碳调节潜力,已成为电力系统领域亟待攻克的重大科学与工程问题。本专题旨在汇聚国内外学术界与工业界的前沿研究成果,围绕低碳转型目标下的源网荷储协同灵活调节,从先进技术、市场机制与政策体系等方面展开系统探讨。专题将重点关注灵活性资源的量化建模与聚合调控、电-碳协同的低碳优化调度、适应高比例新能源的市场交易机制设计,以及支撑源网荷储高效互动的信息通信与人工智能技术等核心议题,推动源网荷储协同调节理论体系与工程实践的创新发展,助力新型电力系统的低碳、经济和可靠运行。
Topics:
1. Quantitative Modeling and Response Characteristic Analysis of Flexible Resources for Multi-Actors in Source-Grid-Load-Storage(源网荷储多主体灵活性资源量化建模与响应特性分析)
2. Electricity-Carbon Coordinated Low-Carbon Optimal Dispatch of Source-Grid-Load-Storage(电‑碳协同的源网荷储低碳优化调度)
3. Collaborative Regulation and Control Technologies of Source-Grid-Load-Storage for High-Proportion Renewable Energy(面向高比例新能源的源网荷储协同调控技术)
4. Electricity Market Mechanisms and Trading Strategies Supporting Flexible Interaction(支撑灵活互动的电力市场机制与交易策略)
5. Artificial Intelligence and Information Communication Technologies for Source-Grid-Load-Storage Interaction Scenarios(面向源网荷储互动场景的人工智能与信息通信技术)
6. Other Flexible Resource Interaction Technologies and Methods Supporting Low-Carbon Transition(其他支撑低碳转型的灵活资源互动技术与方法)
Keywords:
Source‑Grid‑Load‑Storage Coordination(源网荷储协同)
Low‑Carbon Dispatch(低碳调度)
Flexible Regulation(灵活性调节)
Electricity Market(电力市场)
Virtual Power Plant(虚拟电厂)
Artificial Intelligence(人工智能)
Electricity‑Carbon Coordination(电‑碳协同)
Submission Deadline: September 30, 2026