STATCOM and DFIG Reactive Power Management Strategy for LVRT Capability Enhancement Under Asymmetrical Grid Faults

IF 4.3 3区 工程技术 Q2 ENERGY & FUELS
Kamel Sayahi, Belgacem Bouallegue, Mansour Baazouzi, Faouzi Bacha
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Abstract

In the trajectory of carbon dioxide (CO2) neutrality, wind and solar energies will be the key for the energy transition in the electricity sector; however, a massive integration of solar and wind farms into the electricity grid by 2050 will be carried out. For this end, powers control and powers management of these two renewable energies have taken the attention of several researchers since the last decades. This article presents a reactive energy management strategy for a power grid linked to a wind farm utilizing doubly fed induction generators (DFIG) and enhanced by a static reactive power compensator (STATCOM). This management strategy improves an electrical grid capability in the event of a low-voltage ride through (LVRT) and aims to optimize the sizing of the STATCOM to be installed alongside the wind farm. The proposed oriented voltage control strategy (VOC) for the grid-side converter and STATCOM facilitates effective reactive current injection into the grid during symmetrical faults with significant voltage sags. A maximum power point tracking (MPPT) approach combined with stator flux-oriented control (FOC) applied to the rotor side converter enables effective control of the DFIG during an asymmetrical fault. Breaking down currents and voltages into positive and negative sequences expressed in the synchronous frame enhances DFIG and STATCOM control during grid voltage asymmetrical faults. The control algorithms are validated by simulation results using MATLAB-SIMULINK.

Abstract Image

非对称电网故障下LVRT能力增强的STATCOM和DFIG无功管理策略
在二氧化碳中和的轨道上,风能和太阳能将是电力部门能源转型的关键;然而,到2050年,太阳能和风力发电场将大规模整合到电网中。为此,近几十年来,这两种可再生能源的功率控制和功率管理已经引起了许多研究者的关注。本文提出了一种利用双馈感应发电机(DFIG)和静态无功补偿器(STATCOM)增强的风电场电网无功管理策略。这种管理策略提高了电网在低压穿越(LVRT)情况下的能力,旨在优化与风电场一起安装的STATCOM的尺寸。提出的电网侧变流器和STATCOM定向电压控制策略(VOC)有助于在电压显著下降的对称故障时有效地向电网注入无功电流。将最大功率点跟踪(MPPT)与定子磁通定向控制(FOC)相结合的方法应用于转子侧变换器,可以在不对称故障时有效地控制DFIG。将电流和电压分解为同步帧表示的正、负序列,增强了电网电压不对称故障时DFIG和STATCOM的控制能力。利用MATLAB-SIMULINK仿真软件对控制算法进行了验证。
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
International Journal of Energy Research
International Journal of Energy Research 工程技术-核科学技术
CiteScore
9.80
自引率
8.70%
发文量
1170
审稿时长
3.1 months
期刊介绍: The International Journal of Energy Research (IJER) is dedicated to providing a multidisciplinary, unique platform for researchers, scientists, engineers, technology developers, planners, and policy makers to present their research results and findings in a compelling manner on novel energy systems and applications. IJER covers the entire spectrum of energy from production to conversion, conservation, management, systems, technologies, etc. We encourage papers submissions aiming at better efficiency, cost improvements, more effective resource use, improved design and analysis, reduced environmental impact, and hence leading to better sustainability. IJER is concerned with the development and exploitation of both advanced traditional and new energy sources, systems, technologies and applications. Interdisciplinary subjects in the area of novel energy systems and applications are also encouraged. High-quality research papers are solicited in, but are not limited to, the following areas with innovative and novel contents: -Biofuels and alternatives -Carbon capturing and storage technologies -Clean coal technologies -Energy conversion, conservation and management -Energy storage -Energy systems -Hybrid/combined/integrated energy systems for multi-generation -Hydrogen energy and fuel cells -Hydrogen production technologies -Micro- and nano-energy systems and technologies -Nuclear energy -Renewable energies (e.g. geothermal, solar, wind, hydro, tidal, wave, biomass) -Smart energy system
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