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光伏发电技术 ★ 5.0

考虑无功功率能力的光伏双层规划-运行模型

Bi-level planning-operation model of PV considering reactive power capability

作者 Ying Wang · Ying Chen · Xianyong Xiao · Yunzhu Chen · Qilin Li
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 378 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A planning-operation model is proposed to develop reactive power capability of PV.
语言:

中文摘要

摘要 电压越限是配电网中的一个突出问题,影响电网和用户的正常运行。基于逆变器的光伏发电(PV)具备无功功率调度能力,可能成为解决该问题的有效手段,尤其是在高比例光伏渗透的电网中。然而,利用光伏改善电压质量面临三大挑战,即光伏的规划、运行以及无功功率定价问题。为此,本文提出了一种考虑无功功率能力的光伏双层规划-运行模型。本研究的主要贡献如下:首先,建立了一个上层规划模型,旨在获得最优的规划方案,以有效提升光伏投资者的经济效益和配电系统运营商的技术性能;其次,构建了一个下层运行模型,用于在多种场景下缓解电压越限问题并降低网络损耗成本;最后,设计了一个无功功率定价模型,并将其集成到上层规划模型中,以最大化各参与方的整体收益。基于改进的IEEE 33节点测试系统的仿真结果表明,所提方法的应用可保证所有节点电压均处于合格范围内,并且与传统方法相比,各参与方的经济收益均提升了7%以上。该结果凸显了所提方法的优越性能及其对促进可再生能源可持续发展的贡献。

English Abstract

Abstract The voltage violation is a significant issue in distribution networks , which impacts the operation of networks and users. The inverter-based photovoltaic (PV), which can be used for reactive power dispatch, may be a possible solution to address the issue, especially in the network with high PV penetration. However, there are three challenges for utilizing PV to improve voltage quality, including the planning, operation, and reactive power pricing of PV. Therefore, a bi-level planning-operation model of PV is proposed considering its reactive power capability. This study provides the following contributions. First, an upper planning level model is established, aiming to obtain the optimal planning scheme to effectively improve the economic benefits for PV investor and technical performances for distribution system operator. Second, a lower operation level model is developed to mitigate voltage violations and reduce network loss cost in multi-scenarios. Finally, a reactive power pricing model is designed, which is integrated into the upper planning level, to maximum the profit of all the participants. The simulation results on the modified IEEE 33-bus test system show that, the application of the proposed method guarantees the voltage for all the buses are within the qualified range, and increases the economic benefits for each participant by more than 7 % compared to conventional methods. This finding highlights the superior performances of the proposed method and its contribution to promote the sustainable development of renewable energy.
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SunView 深度解读

该双层规划-运行模型对阳光电源SG系列光伏逆变器的无功调控功能具有重要应用价值。研究验证了逆变器无功调度在高渗透率配电网中解决电压越限问题的有效性,可直接应用于SG系列逆变器的智能无功管理策略优化。其提出的无功定价机制为iSolarCloud平台开发光储协同调度功能提供理论依据,结合ST系列储能变流器可构建更灵活的电压支撑方案。双层优化框架可集成到智能运维系统,实现规划与运行的协同决策,提升投资收益超7%,助力分布式能源可持续发展。