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用于提升高逆变器型电源渗透系统稳定性的协调规划
Coordinated Planning for Stability Enhancement in High IBR-Penetrated Systems
| 作者 | Zhongda Chu · Fei Teng |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2024年10月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 构网型GFM 跟网型GFL 弱电网并网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 未来电力系统 稳定性挑战 协调规划模型 系统强度 经济价值 |
语言:
中文摘要
高比例逆变器型电源(IBR)接入给未来电力系统的安全稳定带来严峻挑战,成为实现碳中和的主要障碍之一。跟网型IBR在弱电网下易受小扰动失稳,且暂态过程中因短路电流不足威胁系统保护与稳定性。为此,本文提出一种包含同步调相机与构网型IBR的输电系统协调规划模型,综合考虑小信号与暂态稳定性。通过分析同步机组与IBR的不同特性,推导系统强度与短路电流约束,并采用基于主动采样的数据驱动方法实现高效线性化。算例结果表明,该框架在系统投资与运行经济性方面具有显著价值。
English Abstract
Security and stability challenges in future power systems with high penetration Inverter-Based Resources (IBR) have been anticipated as one of the main barriers to decarbonization. Grid-following IBRs may become unstable under small disturbances in weak grids, while during transient processes, system stability and protection may be jeopardized due to the lack of sufficient Short-Circuit Current (SCC). To solve these challenges and achieve decarbonization, the future system has to be carefully planned. However, it remains unclear how both small-signal and transient stabilities can be considered during the system planning stage. In this context, this paper proposes a coordinated planning model of different resources in the transmission system, namely the synchronous condensers and GFM IBRs to enhance system stability. The system strength and SCC constraints are analytically derived by considering the different characteristics of synchronous units and IBRs, which are further effectively linearized through a novel data-driven approach, where an active sampling method is proposed to generate a representative data set. The significant economic value of the proposed coordinated planning framework in both system asset investment and system operation is demonstrated through detailed case studies.
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SunView 深度解读
该协调规划方法对阳光电源储能与光伏产品线具有重要应用价值。研究中的构网型IBR与跟网型IBR协调配置策略,可直接应用于ST系列储能变流器的GFM/GFL双模式切换优化,特别是在弱电网场景下通过PowerTitan储能系统提供短路电流支撑和惯量响应。文中提出的系统强度约束与小信号稳定性分析方法,可指导SG系列光伏逆变器在高渗透率场景下的并网参数整定。基于数据驱动的线性化规划框架,可集成至iSolarCloud平台,实现新能源场站GFM/GFL容量配比的智能决策,提升阳光电源在大型新能源基地项目中的系统级解决方案竞争力,支撑电网稳定性服务的商业化拓展。