光伏应用中用于电池充电的高降压转换器

Zvonimir Malović, Nikola Vuger, V. Šunde, Ž. Ban
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引用次数: 0

摘要

本文介绍了用于连接光伏组件和自行车充电站蓄电池的非隔离高降压变换器。由于输入输出电压差大,传统的非隔离DC-DC降压变换器可能会出现一些问题。探讨了高降压变换器备选拓扑的特点。在PLECS仿真软件包中建立理想的变换器模型,在此基础上确定半导体开关的电压和电流应力。根据测量的电压和电流关系,选择商用开关。根据目录数据,建立了开关的电热模型。对基于导通损耗和开关损耗的变换器进行了比较分析。根据元件的数量和控制的复杂程度对变流器进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High Step-down Converters for Battery Charging in Photovoltaic Applications
This paper describes non-isolated high step-down converters used to connect photovoltaic modules to the battery storage of a bicycle charging station. Due to the high voltage difference between input and output, some problems may occur with conventional non-isolated DC-DC buck converters. The characteristics of alternative topologies of high step-down converters have been explored. Ideal converter models were created in the PLECS simulation software package based on which the voltage and current stress of the semiconductor switches were determined. Based on measured voltage and current relations, commercial switches were selected. Based on catalogue data, electro-thermal models of the switches were created. A comparative analysis of converters based on conduction and switching losses was performed. Converters were also compared based on the number of components and complexity of control.
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