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光伏发电技术 ★ 5.0

一种确定含分布式光伏的不平衡配电网可行运行区域的新方法

A New Approach to Determine Feasible Operating Region of Unbalanced Distribution Networks With Distributed Photovoltaics

作者 Manorath Prasad · Zakir Hussain Rather · Reza Razzaghi · Suryanarayana Doolla
期刊 IEEE Transactions on Power Delivery
出版日期 2025年3月
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 主动配电网 可行运行区域 分布式光伏 电压敏感负荷 功率协调
语言:

中文摘要

随着分布式发电在电网管理中作用的提升,本文提出一种更贴近实际的新方法,用于确定不平衡主动配电网的运行空间及其灵活性潜力。主动配电网的可行运行区域由其与主网间有功-无功功率交换范围构成,且不违反网络约束。研究探讨了高渗透率单相和三相分布式光伏及电压敏感负荷在不同运行点下对可行区域的影响。基于Volt-Var控制的光伏与电压敏感负荷的综合响应决定了主网-配电网接口处的功率流动,确保满足电压幅值与不平衡度约束。此外,可行区域与变电站变压器分接头位置的关联实现了对整个运行区域的遍历,支持主网与配电网间的功率协调。本文还提出基于节点灵敏度的可调Volt-Var控制策略,进一步扩展可行运行区域。所提方法在IEEE-9节点主网与改进的IEEE-13节点中压配电网及CIGRE低压系统集成测试平台上得到验证。

English Abstract

Amidst rising distributed generation and its potential role in grid management, this article presents a new realistic approach to determine the operational space and flexibility potential of an unbalanced active distribution network. The feasible operating region of an active distribution network is constituted by its range of active-reactive power exchanges with the bulk power system without breaching network constraints. This study explores the potential of highly penetrated single- and three-phase distributed photovoltaics and voltage-sensitive loads to determine the feasible operating region at different operating points. The cumulative response of Volt-Var controlled distributed photovoltaics and voltage-sensitive loads determines the power flow at the bulk power system-active distribution network interconnection, ensuring feasibility with respect to voltage magnitude and unbalance constraints. Further, the correspondence of feasible operating region with the tap-settings of substation transformer enables a novel feature to traverse throughout the available operating region and facilitate bulk power system-active distribution network power coordination. Additionally, a nodal sensitivity-based adjustable Volt-Var control scheme is proposed for distributed photovoltaics, improving the feasible operating region. The proposed strategy is validated on bulk power system-active distribution network integrated test system. Bulk power system: IEEE-9 bus system – Active distribution network: (highly unbalanced IEEE-13 bus distribution system (medium voltage) + modified CIGRE low voltage system).
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SunView 深度解读

该不平衡配电网可行运行区域确定方法对阳光电源SG系列光伏逆变器的Volt-Var控制策略优化具有重要价值。研究提出的基于节点灵敏度的可调Volt-Var控制可直接应用于SG逆变器的无功调节算法,通过动态调整Q(V)曲线参数扩展系统运行边界。对于PowerTitan储能系统,该方法可用于计算主网-配电网接口的功率交换裕度,优化储能系统的充放电策略。在iSolarCloud平台集成该算法,可实现对高渗透率光伏配电网的灵活性潜力评估与预测性调度,特别适用于单相光伏接入的低压场景。研究中考虑电压不平衡度约束的思路,可增强阳光电源逆变器在三相不平衡工况下的电能质量治理能力。