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基于升维映射线性化的有源配电网SOP局部电压自优化控制
Self-Optimizing Local Voltage Control of SOP in Active Distribution Networks Based on Lift-Dimension Mapping Linearization
| 作者 | Jingrong Su · Haoran Ji · Peng Li · Hao Yu · Jiancheng Yu · Jinli Zhao |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2025年7月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 分布式电源 有源配电网 软开关 局部电压控制 自优化 |
语言:
中文摘要
分布式电源的高渗透率加剧了有源配电网的电压越限问题。软开点(SOP)凭借灵活调节能力,可通过本地功率调控有效抑制电压越限。本文提出一种数据驱动的SOP局部电压自优化控制方法,适用于标签数据稀缺场景。首先,基于升维映射线性化(LDML)构建SOP局部控制模型,刻画配网状态与控制策略间的非线性关系;进而建立自优化引导机制,生成大量带标签的训练样本。在含四端SOP的实际配电网中验证了方法的有效性,结果表明该方法仅依赖本地量测即可实现快速响应与强适应性。
English Abstract
The high penetration of distributed generators (DGs) deteriorates the voltage violations in active distribution networks (ADNs). Owing to the flexible adjustment capacity, the local power regulation provided by soft open point (SOP) presents a promising solution for eliminating voltage violations in ADNs. A data-driven local control method can fully excavate the potential logic from operational data without requiring precious network parameters. However, the training data may be insufficient in practical applications. In this paper, a self-optimizing local voltage control method for SOP is proposed to achieve adaptive control in label-poor conditions. First, a SOP local control model is constructed based on lift-dimension mapping linearization (LDML), which portrays the complex relationship between ADN states and SOP control strategies. Subsequently, a self-optimizing guidance mechanism is established to obtain the label data of SOP control strategy, which provides a large number of training samples for the local control model. Finally, the effectiveness of the proposed method is validated using a practical distribution network with a four-terminal SOP. Results demonstrate that efficient control strategies can be determined based on local state measurements. A rapid response to DG fluctuations can be achieved while enhancing the adaptability to variations in practical operations.
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SunView 深度解读
该SOP局部电压自优化控制技术对阳光电源ST系列储能变流器及PowerTitan储能系统具有重要应用价值。升维映射线性化方法可直接应用于储能PCS的本地电压控制策略,通过数据驱动实现快速响应,无需依赖集中式通信,提升系统可靠性。该自优化机制可集成至iSolarCloud平台的边缘控制层,结合阳光电源现有的GFM构网型控制技术,增强多台储能变流器并联场景下的电压调节能力。特别适用于高比例光伏接入的工商业储能项目,通过本地量测实现毫秒级电压越限抑制,提升SG逆变器与ST储能系统协同控制性能,降低对SCADA系统的依赖,为分布式能源集群控制提供新思路。