Grid-Forming Voltage-Source Inverter for Hybrid Wind-Solar Systems Interfacing Weak Grids

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Amr Radwan;Mahmoud A. Elshenawy;Yasser Abdel-Rady I. Mohamed;Ehab Fahmy El-Saadany
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引用次数: 0

Abstract

This paper presents a grid-forming (GFM) voltage-source inverter (VSI) with direct current regulation for a hybrid wind-solar generator, enabling stable operation at very weak grid conditions and under faults. The GFM-VSI interfaces a hybrid wind-solar generator without an intermediate dc-dc conversion to increase the system efficiency. The wind generator comprises a wind turbine with a permanent magnet synchronous generator (PMSG) interfaced by a voltage-source rectifier (VSR). The PMSG-VSR and a solar photovoltaic (PV) array are connected to the GFM-VSI's dc-side. The VSR is responsible for extracting wind power with a power reserve option. The GFM-VSI is implemented to extract solar power with a power reserve capability and support the grid voltage or reactive power. The stable operation of the proposed system is validated under very weak grid conditions, and it is shown that a similar hybrid wind-solar system with grid-following control is unstable under the same weak grid conditions. A complete small-signal state-space model of the proposed hybrid system is developed and analyzed. Nonlinear time-domain simulations and real-time simulation tests verify the model's accuracy and show the proposed system's effective performance under challenging operating scenarios, such as grid uncertainties and faults.
用于弱电网风光互补系统的并网型电压源逆变器
本文介绍了一种并网(GFM)电压源逆变器(VSI),该逆变器具有直流调节功能,适用于风能和太阳能混合发电机,可在电网非常薄弱的条件下和故障情况下稳定运行。GFM-VSI 与风能-太阳能混合发电机连接,无需中间的直流-直流转换,以提高系统效率。风力发电机由风力涡轮机和永磁同步发电机(PMSG)以及电压源整流器(VSR)组成。PMSG-VSR 和太阳能光伏 (PV) 阵列连接到 GFM-VSI 的直流侧。VSR 负责提取具有功率储备选项的风能。GFM-VSI 用于提取具有功率储备能力的太阳能电力,并支持电网电压或无功功率。在电网非常薄弱的条件下,验证了所提系统的稳定运行,并表明在同样薄弱的电网条件下,采用电网跟踪控制的类似风光互补系统是不稳定的。建立并分析了拟议混合系统的完整小信号状态空间模型。非线性时域仿真和实时仿真测试验证了模型的准确性,并显示了拟议系统在电网不确定性和故障等具有挑战性的运行情况下的有效性能。
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
8.60
自引率
0.00%
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0
审稿时长
8 weeks
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