用于光伏发电的七电平双降压型逆变器

IF 2.6 4区 工程技术 Q3 ENERGY & FUELS
Jinn-Chang Wu, Hurng-Liahng Jou, Fu-Zen Chen, Han-Xin Huang
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引用次数: 0

摘要

本文提出了一种采用七电平双降压逆变器(SLDBI)的光伏发电系统功率处理系统(PPS)。PPS 由升压功率转换器和 SLDBI 组成。升压功率转换器将光伏阵列的电压与 SLDBI 的电压相匹配,并充当光伏阵列的最大功率点跟踪器。SLDBI 由双降压桥式转换器 (DBBC) 和三电平直流转换器 (TLDC) 组成。DBBC 可有效降低 PPS 中的漏电流,防止电流流经功率开关的并联体二极管,从而允许使用 MOSFET 作为功率电子开关,以提高功率效率。TLDC 采用半控全桥系统结构,可产生三电平直流电压。此外,DBBC 和 TLDC 还能产生七级交流电压,并向市电驱动正弦电流。SLDBI 既减小了滤波电感器的尺寸,又降低了功率开关的开关损耗。由于只有六个电源开关,它简化了电源电路。为了对所提出的 PPS 进行实验验证,我们制作了一个硬件原型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Seven-level dual-buck inverter for photovoltaic power generation

Seven-level dual-buck inverter for photovoltaic power generation

A power processing system (PPS) with a seven-level dual-buck inverter (SLDBI) for a photovoltaic (PV) power generation system is proposed. The PPS is comprised of a boost power converter and an SLDBI. The boost power converter matches the voltage of the PV array with that of the SLDBI and functions as the maximum power point tracker for the PV array. The SLDBI consists of a dual-buck bridge converter (DBBC) and a three-level DC converter (TLDC). The DBBC effectively reduces leakage current in the PPS and prevents current from flowing through the parallel body diode of the power switches, allowing the use of MOSFETs as power electronic switches to enhance power efficiency. The TLDC is structured as a semi-controlled full-bridge system to generate a three-level DC voltage. Besides, the DBBC and TLDC produce a seven-level AC voltage and drive a sinusoidal current to the utility. The SLDBI reduces both the filter inductor size and the switching loss of power switches. With only six power switches, it simplifies the power circuit. A hardware prototype has been built to experimentally verify the proposed PPS.

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来源期刊
IET Renewable Power Generation
IET Renewable Power Generation 工程技术-工程:电子与电气
CiteScore
6.80
自引率
11.50%
发文量
268
审稿时长
6.6 months
期刊介绍: IET Renewable Power Generation (RPG) brings together the topics of renewable energy technology, power generation and systems integration, with techno-economic issues. All renewable energy generation technologies are within the scope of the journal. Specific technology areas covered by the journal include: Wind power technology and systems Photovoltaics Solar thermal power generation Geothermal energy Fuel cells Wave power Marine current energy Biomass conversion and power generation What differentiates RPG from technology specific journals is a concern with power generation and how the characteristics of the different renewable sources affect electrical power conversion, including power electronic design, integration in to power systems, and techno-economic issues. Other technologies that have a direct role in sustainable power generation such as fuel cells and energy storage are also covered, as are system control approaches such as demand side management, which facilitate the integration of renewable sources into power systems, both large and small. The journal provides a forum for the presentation of new research, development and applications of renewable power generation. Demonstrations and experimentally based research are particularly valued, and modelling studies should as far as possible be validated so as to give confidence that the models are representative of real-world behavior. Research that explores issues where the characteristics of the renewable energy source and their control impact on the power conversion is welcome. Papers covering the wider areas of power system control and operation, including scheduling and protection that are central to the challenge of renewable power integration are particularly encouraged. The journal is technology focused covering design, demonstration, modelling and analysis, but papers covering techno-economic issues are also of interest. Papers presenting new modelling and theory are welcome but this must be relevant to real power systems and power generation. Most papers are expected to include significant novelty of approach or application that has general applicability, and where appropriate include experimental results. Critical reviews of relevant topics are also invited and these would be expected to be comprehensive and fully referenced. Current Special Issue. Call for papers: Power Quality and Protection in Renewable Energy Systems and Microgrids - https://digital-library.theiet.org/files/IET_RPG_CFP_PQPRESM.pdf Energy and Rail/Road Transportation Integrated Development - https://digital-library.theiet.org/files/IET_RPG_CFP_ERTID.pdf
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