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Multi Input DC-DC Converters for Rooftop PV Power Systems

机译:用于屋顶光伏发电系统的多输入DC-DC转换器

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The rate of using solar power as electrical energy source is increasing dramatically nowadays and with the development of semiconductor technologies it is expected that a significant proportion of electrical energy production will depend on this field of study. Therefore, there are many researches in order to have efficient usage of solar power. In this paper, a power electronics system that is employed for transforming the electrical energy of PV panel to a suitable form, is presented. The system consists of four separate PV panel and for each panel four DC-DC push-pull converters whose outputs are parallel connected at the end. On the other hand, control of the system includes incremental conductance methods for maximum power point tracking (MPPT) and interleaving technique where the control of whole system is achieved with a single DSP. In order to predict system operation, detailed simulation has been created in MATLAB/Simulink environment. According to result, at least 94% efficiency across the push-pull converters and 99% of MPPT efficiency are achieved. Additionally, it is observed that sustainability and efficiency are increased by paralleling four separate PV system and using interleaving technique which results in reduction of output filter size.
机译:如今,将太阳能用作电能的比率正在急剧增加,并且随着半导体技术的发展,预计很大一部分电能生产将取决于这一研究领域。因此,为了有效利用太阳能,有许多研究。在本文中,提出了一种用于将PV面板的电能转换为合适形式的电力电子系统。该系统由四个独立的PV面板组成,每个面板包含四个DC-DC推挽式转换器,其输出端并联连接。另一方面,系统的控制包括用于最大功率点跟踪(MPPT)的增量电导方法和交织技术,其中整个系统的控制可通过单个DSP实现。为了预测系统运行,已在MATLAB / Simulink环境中创建了详细的仿真。根据结果​​,整个推挽转换器的效率至少达到94%,MPPT效率达到99%。此外,可以观察到,通过并联四个独立的光伏系统并使用交错技术可以提高输出滤波器的尺寸,从而提高了可持续性和效率。

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