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基于最优动态下垂系数的分布式光伏快速有功功率调节
Rapid Active Power Regulation of Distributed Photovoltaics Based on Optimal Dynamic Droop Coefficients
| 作者 | Ting Yan · Chunxia Dou · Dong Yue · Ziwei He · Houjun Li |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2025年7月 |
| 卷/期 | 第 17 卷 第 1 期 |
| 技术分类 | 控制与算法 |
| 技术标签 | 下垂控制 调峰调频 机器学习 深度学习 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 |
语言:
中文摘要
针对海量分布式光伏(DPV)的快速有功功率响应需求,提出一种融合聚类与优化的双层架构:底层采用U-k-means算法按可调容量和响应时间聚类;上层构建计及频率偏差、调节性能与网损的下垂系数优化模型,并利用图注意力网络(GAT)预计算不同频率波动下的下垂系数策略。
English Abstract
To realize the active response for rapid active power regulation of massive distributed photovoltaics (DPVs), a bi-level architecture integrating clustering and optimization is proposed for the coordinated design of dynamic droop coefficients of DPVs in this paper. At the lower level, the adjustable capacity and response time are selected as clustering features according to the rapid active power regulation requirements, and the U-k-means algorithm is applied to implement the clustering of DPVs. At the upper level, a frequency deviation-optimal droop coefficient model incorporating the regulation performance and network losses is developed in a perspective that considers power flow impacts. The droop coefficient regulation strategy under various frequency fluctuations is pre-calculated by a graph attention network (GAT). Simulations are performed on a modified IEEE 33-bus test system, and the results verify the outperformance of the proposed GAT model over the existing neural network models, as well as the effectiveness and superiority of the proposed optimal droop coefficient regulation strategy.
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SunView 深度解读
该研究高度契合阳光电源组串式逆变器(如SG系列)及ST系列储能变流器在构网型/跟网型协同调频中的动态下垂控制升级需求。其GAT驱动的自适应下垂系数策略可直接嵌入iSolarCloud智能平台,提升光储系统在弱电网下的快速调频响应能力;建议在PowerTitan和PowerStack系统中集成该算法模块,强化其在新型电力系统中作为虚拟同步机(VSG)或调峰调频资源的核心控制性能。