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储能系统技术 储能系统 ★ 5.0

基于测量-策略映射矩阵的主动配电网逆变型分布式电源自适应电压控制

Adaptive Voltage Control of Inverter-Based DG in Active Distribution Networks With Measurement-Strategy Mapping Matrix

作者 Ziqi Zhang · Peng Li · Haoran Ji · Hao Yu · Jinli Zhao · Wei Xi
期刊 IEEE Transactions on Sustainable Energy
出版日期 2024年12月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 分布式电源 主动配电网 灵敏度 自适应电压控制策略 电压问题
语言:

中文摘要

高渗透率分布式电源(DG)加剧了主动配电网(ADN)中的电压越限问题。灵敏度反映了节点功率注入与状态变化之间的关系,可用于制定DG控制策略。然而,由于系统非线性,灵敏度的精确描述与高效应用成为关键挑战。本文提出一种基于ADN灵敏度的DG自适应电压控制策略。首先,构建测量-策略映射矩阵,利用Koopman算子生成节点电压与无功功率灵敏度的离散矩阵元素,以刻画复杂的时变灵敏度特性;进而建立基于该矩阵的自适应电压控制模型,引入提升型线性决策规则(LLDR)将离散元素转化为连续约束,实现数据驱动下的高效DG策略建模。最后,在IEEE 33节点、实际53节点及IEEE 123节点系统上验证了所提方法的有效性,结果表明该策略能有效缓解电压问题,并增强对实际运行工况变化的适应能力。

English Abstract

The high penetration of distributed generators (DGs) has exacerbated voltage violations in active distribution networks (ADNs). The sensitivity, as the law between nodal power injection and state variation, can be used to develop DG strategies. However, due to the nonlinearity, the accurate description and efficient application of sensitivity have become an important challenge in the establishment of DG control strategy. In this paper, an adaptive voltage control strategy for DGs is developed based on ADN sensitivity. First, the measurement-strategy mapping matrix is established to describe the complex time-varying sensitivity. The sensitivity between nodal voltage and reactive power is described as discrete matrix elements, which are generated based on the Koopman operator. Then, an adaptive voltage control model is built based on the measurement-strategy mapping matrix, in which the lifted linear decision rule (LLDR) is introduced to continue the discrete matrix elements as a couple of constraints. Efficient formulation of DG strategies is realized in a data-driven manner based on ADN sensitivity. Finally, the effectiveness of the proposed strategy is validated using the IEEE 33-node system, practical 53-node system, and IEEE 123-node system. The proposed strategy can effectively cope with voltage problems while enhancing the adaptability to variations in practical operation.
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SunView 深度解读

该自适应电压控制技术对阳光电源ST系列储能变流器和SG系列光伏逆变器的协同控制具有重要应用价值。基于Koopman算子的测量-策略映射矩阵可精准刻画高渗透率场景下的时变灵敏度特性,直接应用于PowerTitan大型储能系统的无功电压控制策略优化。该数据驱动方法可集成到iSolarCloud平台,实现分布式光储系统的自适应电压调节,解决大规模新能源接入导致的电压越限问题。特别是提升型线性决策规则(LLDR)可增强逆变器在复杂配电网工况下的实时响应能力,提升系统稳定性和电能质量,为构网型GFM控制策略提供理论支撑。