基于三相逆变器的工业应用中THD降低的太阳能光伏单开关Buck-Boost变换器的设计与分析

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Maheshwari L., P. T. R.
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引用次数: 0

摘要

经济、可持续、环保的可再生能源电力电子转换器在汽车、家用和工业应用等各个领域的发展越来越有吸引力,也迫切需要根据要求进行降压和升压。因此,这项工作提出了一种太阳能光伏供电的单开关降压-升压转换器,该转换器降低了实施成本,使电容器和二极管之间的电压和电流应力最小,开关功率损失更小。工作结构包括基于MPPT的改进P和O算法的太阳能光伏源、单开关降压-升压dc-dc转换器、存储多余能量的备用电池、用于谐波控制的正弦PWM三相逆变器和3Φ感应电机负载。这里,THD的减小被应用于逆变器的线对线电压。利用MATLAB/SIMULINK平台对所提出的电路进行了性能分析。对dc-dc变换器的拓扑结构进行了详细的稳态分析,以提高系统的稳定性。所提出的单开关降压-升压转换器设计用于从520V,35A光伏阵列提供363V,45.5A DC的输出电压和电流。然后将所设计的变换器用于440V、15A交流电的三相全桥逆变器。仿真结果表明,采用MPPT的太阳能单开关降压升压稳定、高效、损耗最小、THD较小、输出质量较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and analysis of three phase inverter based Solar PV powered single switch Buck-Boost converter with reduced THD for industrial applications
The development of economical and sustainable eco-friendly renewable source powered power electronic converters have become more attractive in various areas such as automotive, household and industrial applications etc., Bucking and boosting of voltage according to the requirement is also much needed. So, this work proposes a solar PV powered single switch buck-boost converter which reduces implementation cost, minimal voltage and current stress across the capacitors and diodes and less switching power losses. The work structure comprises of solar PV source with modified P and O algorithm based MPPT, single switch buck-boost dc-dc converter, battery backup to store excess energy, three phase inverter with sinusoidal PWM to find optimal switching angles for harmonic control and 3Φ induction motor load. Here reduction of THD is applied to the line to line voltage of the inverter. Performance analysis of the proposed circuit is done using MATLAB/SIMULINK platform. A detailed steady state analysis of the dc-dc converter topology is also analyzed to system stability. The proposed single switch buck-boost converter is designed to provide an output voltage and current of 363V, 45.5A DC from 520V, 35A PV array. The designed converter is then employed to run a three phase full bridge inverter with 440V, 15A AC. From the simulation results, it is found that the solar powered single switch buck-boost with MPPT is stable, efficient with minimal losses and less THD with better quality output.
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来源期刊
CiteScore
1.20
自引率
11.80%
发文量
69
期刊介绍: The International Journal of Electrical and Computer Engineering Systems publishes original research in the form of full papers, case studies, reviews and surveys. It covers theory and application of electrical and computer engineering, synergy of computer systems and computational methods with electrical and electronic systems, as well as interdisciplinary research. Power systems Renewable electricity production Power electronics Electrical drives Industrial electronics Communication systems Advanced modulation techniques RFID devices and systems Signal and data processing Image processing Multimedia systems Microelectronics Instrumentation and measurement Control systems Robotics Modeling and simulation Modern computer architectures Computer networks Embedded systems High-performance computing Engineering education Parallel and distributed computer systems Human-computer systems Intelligent systems Multi-agent and holonic systems Real-time systems Software engineering Internet and web applications and systems Applications of computer systems in engineering and related disciplines Mathematical models of engineering systems Engineering management.
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