ICPEA 2026 | Hefei, China
English: The large-scale grid integration of wind power, photovoltaics, and multiple types of energy storage is a core pillar in building the new power system. The grid connection of massive clusters of renewable-energy and energy-storage converters gives rise to a series of new technical challenges, including complex grid-integration characteristics of equipment, poor coordination of multi-unit responses, frequent broadband oscillations of the system, and insufficient adaptability of grid-related parameters. Centered on the core pain points of renewable-energy and storage grid integration, this forum focuses on key technologies such as converter design optimization and control, multi-unit cluster cooperative control, grid-forming operation control, optimization and setting of grid-related parameters, and broadband oscillation monitoring and suppression, while also covering frontier research directions including energy-storage engineering demonstration applications, aggregated regulation of distributed renewable energy and storage, and system modeling and simulation. It aims to bring together domestic and international experts from industry, academia and research to exchange the latest theoretical achievements and engineering technologies in the field, break through the technical bottlenecks of large-scale renewable-energy and storage grid integration, and comprehensively enhance the security, stability, and efficient operation of power systems with a high share of renewable energy.
中文: 风电、光伏及多类型储能的规模化并网应用,是新型电力系统构建的核心支撑。海量新能源与储能变流器集群并网,引发设备并网特性复杂、多机响应协同性差、系统宽频振荡频发、涉网参数适配性不足等一系列新型技术难题。本分论坛围绕新能源储能并网核心痛点,聚焦变流器设计优化与控制、多机多机协同控制、构网运行控制、涉网参数优化整定、宽频振荡监测抑制等核心技术,同时涵盖储能工程示范应用、分布式新能源储能聚合调控、系统建模仿真等前沿研究方向。旨在汇聚国内外产学研专家,交流领域最新理论成果与工程技术,突破规模化新能源储能并网技术瓶颈,全面提升高比例新能源电力系统的安全稳定性与高效运行能力。