Decentralised Voltage Regulation through Optimal Reactive Power Flow in Distribution Networks with Dispersed Generation

Edoardo Daccò, D. Falabretti, V. Ilea, Marco Merlo, Riccardo Nebuloni, Matteo Spiller
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引用次数: 0

Abstract

The global capacity for renewable electricity generation has surged, with distributed photovoltaic generation being the primary driver. The increasing penetration of non-programmable renewable Distributed Energy Resources (DERs) presents challenges for properly managing distribution networks, requiring advanced voltage regulation techniques. This paper proposes an innovative decentralised voltage strategy that considers DERs, particularly inverter-based ones, as autonomous regulators in compliance with the state-of-the-art European technical standards and grid codes. The proposed method uses an optimal reactive power flow that minimises voltage deviations along all the medium voltage nodes; to check the algorithm’s performance, it has been applied to a small-scale test network and on a real Italian medium-voltage distribution network, and compared with a fully centralised ORPF. The results show that the proposed decentralised autonomous strategy effectively improves voltage profiles in both case studies, reducing voltage deviation by a few percentage points; these results are further confirmed through an analysis conducted over several days to observe how seasons affect the results.
通过优化分散发电配电网络中的无功功率流实现分散电压调节
全球可再生能源发电能力激增,其中分布式光伏发电是主要驱动力。不可编程的可再生分布式能源资源(DER)的渗透率越来越高,这给配电网络的适当管理带来了挑战,需要先进的电压调节技术。本文提出了一种创新的分散式电压策略,将 DER(尤其是基于逆变器的 DER)视为自主调节器,符合最先进的欧洲技术标准和电网规范。为了检验该算法的性能,我们将其应用于一个小型测试网络和一个真实的意大利中压配电网络,并与完全集中式 ORPF 进行了比较。结果表明,在这两个案例研究中,所提出的分散式自主策略都有效地改善了电压曲线,将电压偏差降低了几个百分点;通过对几天的分析,观察季节对结果的影响,进一步证实了这些结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.80
自引率
0.00%
发文量
1584
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