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Comparative Analysis of Power Electronics Topologies to Interface dc Homes with the Electrical ac Power Grid

机译:电力电网与电气电网接口DC房屋电力电子拓扑的比较分析

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This paper presents a comparative analysis of power electronics topologies that can be used to interface dc homes with a 230 V, 50 Hz ac power grid. Dc homes represent an essential asset for smart grids, since energy storage systems and renewable energy sources, such as photovoltaic solar panels, operate in dc, as well as most of the electrical appliances used in domestic scenario. However, since the power grid operates in ac, it is necessary to convert voltage from ac to dc to properly supply a dc home. This conversion can be accomplished in several ways, with different power conversion stages. In this context, this paper analyzes three different possibilities that can be used to perform the interface between the ac power grid and a dc home: (1) ac-dc converter using a low frequency transformer; (2) ac-dc and dc-dc converters using a high frequency transformer; (3) ac-ac and ac-dc converters using a medium frequency transformer. These three possibilities are compared in terms of efficiency, total power factor and total harmonic distortion of the ac power grid. The results were obtained by means of a simulation model based on the internal parameters of the power semiconductors.
机译:本文介绍了电力电子拓扑的比较分析,可用于接口230 V,50 Hz交流电网的DC房屋。 DC HOMES代表智能电网的基本资产,因为能量存储系统和可再生能源,如光伏太阳能电池板,在DC中运行,以及国内场景中使用的大多数电器。但是,由于电网在AC中操作,因此必须将来自AC的电压转换为DC以适当地提供DC Home。该转换可以通过多种方式完成,具有不同的电源转换阶段。在这种情况下,本文分析了三种不同的可能性,可用于在AC电网和DC主页之间执行接口:(1)使用低频变压器的AC-DC转换器; (2)AC-DC和DC-DC转换器使用高频变压器; (3)AC-AC和AC-DC转换器使用中频变压器。在效率,总功率因数和交流电网的总谐波失真方面进行比较这三种可能性。通过基于功率半导体的内部参数的仿真模型获得的结果。

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