← 返回
光伏发电技术 光伏逆变器 储能系统 ★ 5.0

基于数据驱动均值修正递归估计的最优分布式能源调度用于配电网电压控制

Data-Driven Mean-Corrected Recursive Estimation-Based Optimal DER Dispatch for Distribution System Voltage Control

作者 Haoyi Wang · Yiyun Yao · Junbo Zhao · Fei Ding
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年5月
技术分类 光伏发电技术
技术标签 光伏逆变器 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 分布式光伏 电压调节 分布式能源资源管理系统 灵敏度估计 线性规划
语言:

中文摘要

智能逆变器的最新进展为缓解配电系统中高渗透率分布式光伏(PV)引发的电压越限问题提供了可能。本文提出一种基于测量驱动、以最优潮流(OPF)为核心的分布式能源管理系统(DERMS)电压调控方法,通过递归灵敏度估计实现对分布式光伏逆变器的协调控制。该方法利用可观测的电网与可控分布式能源数据,无需依赖系统模型,具备适应性和鲁棒性。提出均值修正递归岭回归(MCRRR)算法,通过闭式解持续更新负荷灵敏度因子(LSF),有效应对功率注入变化和拓扑重构等动态运行条件。所提方法建模为线性规划(LP)问题,可扩展至大规模系统,并在美国南加州某实际高光伏渗透馈线上验证了其有效性与高效性。

English Abstract

Recent advances in smart inverters offer opportunities to mitigate adverse grid impacts caused by high penetrations of distributed photovoltaics (PV) in distribution grids, such as voltage violations. This paper proposes a novel measurement-driven optimal power flow (OPF)-based distributed energy resource management system (DERMS) voltage regulation via recursive sensitivity estimation informed coordinated control of distributed PV inverters. The proposed approach leverages available grid and controllable DER measurements, eliminating reliance on system model information while being adaptive and robust to volatile operating conditions. A mean-corrected recursive ridge regression (MCRRR) algorithm is proposed for sensitivity estimation, continuously refining the sensitivity model through a closed-form solution. It effectively manages varying grid operating conditions, such as changes in power injections and topology reconfiguration, to facilitate a time-varying update of the Load Sensitivity Factors (LSF). The proposed approach is formulated as a linear programming (LP) problem and is thus scalable to larger-scale distribution systems. Its effectiveness and efficiency are demonstrated on a realistic distribution feeder with high PV penetrations in Southern California, USA
S

SunView 深度解读

该数据驱动电压控制技术对阳光电源SG系列光伏逆变器和ST储能系统具有重要应用价值。其无模型递归灵敏度估计方法可直接集成至iSolarCloud平台,实现大规模分布式光伏电站的协调电压控制。MCRRR算法的闭式解特性适合嵌入逆变器DSP控制器,提升SG逆变器在高渗透率场景下的自适应无功调节能力。线性规划建模方式可扩展至PowerTitan储能系统的多机协调控制,通过实时LSF更新应对拓扑重构,增强系统鲁棒性。该技术为阳光电源DERMS解决方案提供了轻量化、可落地的电压越限治理算法,特别适用于缺乏精确配网模型的海外分布式项目。