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光伏发电技术 储能系统 ★ 5.0

通过反馈驱动的配电网络每日拓扑重构提升光伏限电中的公平性

Improving fairness in photovoltaic curtailment via feedback-driven daily topology reconfiguration in power distribution networks

作者 Rahul K.Gupt · Daniel K.Molzahn
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 400 卷
技术分类 光伏发电技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A method to achieve fairness in the curtailment of photovoltaic generation through topology reconfiguration.
语言:

中文摘要

摘要 在光伏发电丰富的配电系统中,通常通过削减光伏电站的过剩发电量并结合无功功率控制来缓解过电压问题。然而,位于馈线末端的光伏电站往往更频繁地被削减出力,从而引发公平性问题。现有的考虑公平性的方案通常将公平性目标纳入成本函数中加以处理,但这通常会导致总削减量整体增加,使解决方案次优。本文提出一种基于每日拓扑重构的解决方法,通过使不同光伏电站每天面临不同的电网运行条件,从而经历不同程度的出力削减,以此提升系统整体的公平性。我们表明,实施该方法可在不显著增加总体削减量的前提下有效提升公平性。所提出的优化问题包含两个阶段:日前阶段和实时阶段。日前阶段利用光伏出力与负荷的日前预测,优化网络拓扑结构,以最小化净削减量,并根据前几日的削减情况引入公平性考量;实时阶段则基于更精确的短期预测,对光伏电站的有功和无功功率进行实时控制。在建模电网约束时,日前阶段和实时阶段分别采用线性化DistFlow方程以及交流潮流方程的一阶泰勒近似。所提方案在标准的三相平衡与不平衡配电系统上进行了数值验证,并使用Jain公平性指数对不同公平性与拓扑重构场景下的结果进行了比较分析。

English Abstract

Abstract In PV-rich power distribution systems, over-voltage issues are often mitigated by curtailing excess generation from PV plants, alongside reactive power control. However, PV plants located at the feeders’ end are often curtailed more frequently, raising fairness concerns. Current fairness-aware schemes address this issue by incorporating fairness objectives into the cost function. However, this often results in an overall increase in total curtailment, making the solution sub-optimal. This paper proposes a solution through daily topology reconfiguration, ensuring that different PV plants face varying grid conditions each day, leading to different curtailment levels and hence enhancing fairness. We illustrate that implementing this approach enhances overall fairness without significantly increasing overall curtailments. The optimization problem involves two stages: day-ahead and real-time. The day-ahead stage optimizes the network topology using day-ahead forecasts of PV generation and demand, minimizing net curtailment and accounting for fairness based on previous days’ curtailments. The real-time stage controls the active and reactive power for the PV plants with refined short-term forecasts. We use linearized DistFlow equations and first-order Taylor approximation of the AC power flow equations for modeling the grid constraints in day-ahead and real-time stages. The proposed scheme is numerically validated on standard balanced and unbalanced distribution systems. The results are compared using the Jain Fairness Index, considering fairness and reconfiguration scenarios.
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SunView 深度解读

该拓扑重构技术为阳光电源SG系列光伏逆变器和iSolarCloud平台提供重要启示。通过日前拓扑优化与实时功率控制的两阶段策略,可增强逆变器的有功无功协调控制算法,结合MPPT优化技术实现公平削减。建议将公平性指标集成到iSolarCloud智能运维平台,通过历史削减数据反馈驱动配网拓扑调整决策,在保障电网安全的同时提升多光伏电站接入场景下的削减公平性,减少末端电站损失,提升整体发电效益和用户满意度。