用于光伏应用的双极直流输出馈电接地DC- ac变换器

R. Sindhuja, S. Padma
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引用次数: 0

摘要

介绍。近年来,随着电力需求和负荷的增加,用电量急剧增加。因此,研究人员将重点放在可再生能源发电上,以促进可持续的绿色环境。由于成本更低、可靠性更高,减少设备使用的高效率系统成为光伏单相并网系统的突出问题。该变换器的新颖之处在于降低了总功率损耗,分析了变换器在各种调制指标下的性能,并对t型和f型逆变器使用正弦脉宽调制技术来减少谐波。将输出电压相同的两个DC-DC变换器合并在一起,以减少变压器的功率利用率。这为将CUK和SEPIC变换器的公共输入节点合并成新的DC-DC变换器网络提供了途径。目的。这两个变换器的结构相似,可以很容易地将和的输入级组合起来,得到双极输出。方法。在这里,我们可以得到双极输出,而不使用变压器,这使所提出的系统的总体尺寸最小化。本文提出了一种基于CUK-SEPIC的光伏无变压器并网逆变器。结果。利用MATLAB对所提出的变换器进行了仿真,并对仿真结果进行了讨论。此外,电路扩展了一个1千瓦的f型逆变器,以演示变换器的电网连接。实用价值。该转换器可用于光伏应用,从直流电源获得双极直流输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bipolar DC output fed grounded DC-AC converter for photovoltaic application
Introduction. In recent years the usage of electricity has increased tremendously as the electrical needs and loads got increased. Hence the researchers focused on the electricity generation from renewable sources in order to promote sustainable green environment. Owing to the lesser cost and more reliable high efficiency system with reduced use of equipments became prominent for the grid connected photovoltaic single phase systems. The novelty of this proposed converters are to reduce total power loss and to analyze the performance of the converter under various modulation index and to have lesser harmonics using sinusoidal pulse width modulation technique for both T-type and F-type inverter. Interest of the work is to merge two DC-DC converters which have same output voltage in order to have transformer less utilization of power. This has given pathway to develop a new DC-DC converter network by merging the common input nodes of CUK and SEPIC converter. Purpose. This similar structure of both converters made it easy to combine the input stages of and to get bipolar output. Methods. Here we can get bipolar output without the utilization of transformer which minimizes the overall size of the proposed system. In this paper, a combined CUK-SEPIC based grid connected transformerless inverter for photovoltaic application is suggested. Results. The suggested converter is simulated using MATLAB and the results were discussed. Further the circuit is extended with a 1 kW F-type inverter to demonstrate grid connection of the converter. Practical value. This converter can be implemented for photovoltaic applications for obtaining the bipolar DC output from the DC source.
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