风力发电准 Z 源逆变器控制策略比较

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Electrical Systems Pub Date : 2024-07-10 DOI:10.52783/jes.5251
Bhavesh D. Patel, Gautam V. Bhatt, Harsh K. Vaghela, Nitin H. Adroja, Roshani N Maheshwari
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引用次数: 0

摘要

本文比较了风力发电准 z 源逆变器的控制策略。传统风能转换系统中的发电机利用风的动能产生电能。由于风力波动,发电机的输出通过整流器和逆变器连接到负载,以保持负载端电压恒定。两级转换现象有其局限性,即成本高、效率低。Z 源逆变器提供了一种新颖的转换方法,可用于缓解上述限制。不过,它们也有一些缺点,如输入电流不均、浪涌电流大和电压应力高。准 Z 源逆变器 (QZSI) 是一种基于 Z 源逆变器拓扑结构的单级功率转换器,可以克服这些问题。它通过使用一个与源和逆变器耦合的阻抗网络,为风力发电系统提供升压。本文针对风力发电系统,对准 Z 源逆变器的不同控制策略进行了比较研究,以找出一种有效的策略。
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Comparison of Control Strategies of Quasi Z-Source Inverter for Wind Power Generation
This paper compares the control strategies of Quasi z source inverter for wind power generation. The generator in the conventional wind energy conversion system uses kinetic energy from the wind to produce electrical energy. Owing to wind fluctuations, the generator's output is connected to the load via a rectifier and inverter to keep the voltage at the load side constant. The 2-stage conversion phenomenon has its limitation of being expensive along with possessing lower efficiency. Z source inverters offer a novel conversion approach and can utilized to alleviate the limitations. However, they come with certain downsides as well, such as unequal input current, high inrush current, and high voltage stress. The quasi-Z source inverter (QZSI), a single-stage power converter based on the Z source inverter topology, can overcome it. It performs this by using an impedance network that couples with the source and the inverter to provide a voltage boost for the wind power generating system. In this paper, a comparative study of different control strategies of quasi-z source inverter is performed for a wind power system to find out one efficient strategy. 
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来源期刊
Journal of Electrical Systems
Journal of Electrical Systems ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
1.10
自引率
25.00%
发文量
0
审稿时长
10 weeks
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