改进可再生能源转换和智能电网集成的三电平升压变换器运行分析

Deepak E. Soman, Kasthuri Vikram, R. Krishna, M. Gabrysch, S. K. Kottayil, M. Leijon
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引用次数: 6

摘要

可再生能源的智能电网集成要求高功率处理和广泛的可控性,以实现电力转换技术。传统的能量转换技术不足以有效地处理波浪、太阳能、潮汐和风能等可再生能源的高度变化性质。本文研究了使用三电平降压升压DC-DC变换器来辅助基于中性点箝位的三电平逆变器的电网集成的优点。使用此转换器有两个主要原因。它可以在更高的功率水平上提供传统的升压能力,以吸收和调节可再生能源的输出。此外,它还可以作为电压平衡装置,满足三电平中性点箝位逆变器的输入要求。这项工作包括对变换器的降压作用和电压平衡效应进行完整的工作范围分析,以了解其在各种应用中的适用性。还详细介绍了变换器的开关工作方式,并给出了基本的示例波形。结果表明,该变流器具有良好的可控带宽,是可再生能源智能电网集成的理想解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of three-level buck-boost converter operation for improved renewable energy conversion and smart grid integration
The increased smart grid integration of renewable energy sources demands high power handling and wide controllability for the enabling power conversion technologies. The conventional energy conversion techniques are inadequate to efficiently handle the highly varying nature of renewable energy sources like wave, solar, tidal and wind. The present work examines the advantages of using a three-level buck-boost DC-DC converter to aid three-level neutral-point-clamped inverter based grid integration. There are two main reasons for using this converter. It can provide the conventional buck-boost capability at higher power levels for absorbing and conditioning the renewable source output. Besides, it can be used as a voltage balancing device to satisfy the input requirement for the three-level neutral-point-clamped inverter. The work includes complete operating range analysis of the converter for the combined buck-boost action and voltage balancing effects to understand its suitability for various applications. The converter switching modes of operation are also presented in detail along with essential example waveforms. The final results show good controllability bandwidth for the converter which makes it an attractive solution for smart grid integration of renewable energy sources.
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