Evaluation of integrated inverter topologies for low power PV systems

L. G. Junior, M. D. de Brito, L. P. Sampaio, C. Canesin
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引用次数: 8

Abstract

This work presents the stage integration in power electronics converters as a suitable solution for solar photovoltaic inverters. The rated voltages available in Photovoltaic (PV) modules have usually low values for applications such as regulated output voltages in stand-alone or grid-connected configurations. In these cases, a boost stage or a transformer will be necessary. Transformers have low efficiencies, heavy weights and have been used only when galvanic isolation is mandatory. Furthermore, high-frequency transformers increase the converter complexity. Therefore, the most usual topologies use a boost stage and one inverter stage cascaded. However, the complexity, size, weight, cost and lifetime might be improved considering the integration of both stages. These are the expected features to turn attractive this kind of integrated structures. Therefore, some integrated converters are analyzed and compared in this paper in order to support future evaluations and trends for low power single-phase inverters for PV systems.
小功率光伏系统集成逆变器拓扑的评估
本工作提出了电力电子变换器的级集成作为太阳能光伏逆变器的合适解决方案。光伏(PV)模块中可用的额定电压通常具有较低的值,用于诸如独立或并网配置中的调节输出电压。在这些情况下,升压级或变压器将是必要的。变压器效率低,重量重,只有在强制进行电隔离时才使用。此外,高频变压器增加了变换器的复杂性。因此,最常见的拓扑使用一个升压级和一个逆变级级级联。然而,考虑到这两个阶段的集成,复杂性、尺寸、重量、成本和使用寿命都可能得到改善。这些都是使这种集成结构具有吸引力的预期特征。因此,本文对一些集成变流器进行了分析和比较,以支持未来对光伏系统低功率单相逆变器的评估和趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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