用于光伏系统的7级对称逆变器

Vande Shamiksha, Khare Aaditya
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引用次数: 0

摘要

本研究提出了一种用于光伏系统的七电平对称逆变器的设计、实现和评估。该逆变器基于具有不同直流资产的级联h桥拓扑结构,能够以低总谐波失真(THD)有效地将光伏系统的直流电源转换为交流电源。该系统由太阳能电池板、充电控制器、蓄电池组和多级逆变电路组成。逆变器采用脉宽调制(PWM)技术控制输出电压和频率,确保其适用于交流负载。利用快速傅里叶变换(FFT)对逆变器的性能进行了分析,以确定THD,并将结果与其他多电平逆变器拓扑(如二极管箝位(中性箝位)和飞行电容器)的结果进行了比较。在不同负载条件下评估了七电平对称逆变器的效率,并与其他多电平逆变器进行了比较,以确定潜在的节能和性能改进。该分析提供了光伏系统七电平对称逆变器的优势和局限性,强调了不同直流资产在实现高效率和低THD方面的重要性。本研究结果可用于设计和实现高性能和低成本的光伏系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
7 level symmetrical inverter for photovoltaic system
This research presents the design, implementation, and evaluation of a seven-level symmetrical inverter for photovoltaic systems. The inverter is based on a cascaded H-bridges topology with distinct DC assets and is capable of efficiently converting DC power from a photovoltaic system to AC power with low Total Harmonic Distortion (THD). The system consists of a solar panel, charge controller, battery bank, and a multilevel inverter circuit. The inverter employs Pulse Width Modulation (PWM) techniques to control the output voltage and frequency, ensuring that it is suitable for the AC load. The performance of the inverter is analyzed using Fast Fourier Transform (FFT) to determine the THD, and the results are compared with those of other multilevel inverter topologies such as diode clamped (neutral clamped) and flying capacitors. The efficiency of the seven-level symmetrical inverter is evaluated under different load conditions and compared with other multilevel inverters to determine potential energy savings and performance improvements. The analysis provides insights into the advantages and limitations of the seven-level symmetrical inverter for photovoltaic systems, highlighting the importance of distinct DC assets in achieving high efficiency and low THD. The results of this research can be useful for designing and implementing high-performance and cost-effective photovoltaic systems.
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