协调智能逆变器支持的分布式能源资源,以优化现代配电网络中的光伏-BESS 集成和电压稳定性:系统综述和文献计量分析

Olufunke Abolaji Balogun, Yanxia Sun, Peter Anuoluwapo Gbadega
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引用次数: 0

摘要

在现代配电网络中整合光伏(PV)和电池储能系统(BESS)既是机遇也是挑战,尤其是在保持电压稳定和优化能源资源方面。本系统综述和文献计量分析研究了智能逆变器支持的分布式能源资源(DER)的协调问题,以加强光伏与电池储能系统(BESS)的整合,确保电压稳定。该研究综合了智能逆变器技术的最新进展,这些技术可提供电压/电压升压控制等电网支持功能,以及它们在 DER 协调中的应用。研究对文献进行了全面回顾,以确定该领域的流行趋势、研究空白和新兴技术。采用文献计量分析法对研究状况进行量化,突出关键出版物、引文、每个国家的出版物以及合作网络。研究结果表明,智能逆变器在缓解配电网中的电压违规和提高光伏系统的承载能力方面发挥着至关重要的作用。此外,最佳逆变器设置、光伏-BESS 的战略布局以及先进的控制算法被认为是有效整合 DER 的关键因素。研究最后提出了未来的研究方向,包括探索智能逆变器与传统电网管理系统的互动,以及开发用于动态和自适应 DER 协调的强大算法。本综述是研究人员和从业人员的宝贵资源,旨在通过先进的 DER 管理策略提高配电网络的稳定性和效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordination of smart inverter-enabled distributed energy resources for optimal PV-BESS integration and voltage stability in modern power distribution networks: A systematic review and bibliometric analysis
Integrating photovoltaic (PV) and battery energy storage systems (BESS) in modern power distribution networks presents opportunities and challenges, particularly in maintaining voltage stability and optimizing energy resources. This systematic review and bibliometric analysis investigates the coordination of smart inverter-enabled distributed energy resources (DERs) for enhancing PV-BESS integration and ensuring voltage stability. The study synthesizes recent advancements in smart inverter technologies, which provide grid support functions such as Volt/VAr control, and their applications in DER coordination. A comprehensive review of the literature is conducted to identify prevailing trends, research gaps, and emerging techniques in the field. Bibliometric analysis is employed to quantify the research landscape, highlighting key publications, citations, publications per country, and collaborative networks. The findings reveal that smart inverters play a crucial role in mitigating voltage violations and improving the hosting capacity of PV systems in distribution networks. Furthermore, optimal inverter settings, strategic placement of PV-BESS, and advanced control algorithms are identified as critical factors for effective DER integration. The study concludes by proposing future research directions, including the exploration of smart inverter interactions with legacy grid management systems and the development of robust algorithms for dynamic and adaptive DER coordination. This review serves as a valuable resource for researchers and practitioners aiming to enhance the stability and efficiency of power distribution networks through advanced DER management strategies.
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