三相NPC并网变流器的综合损耗和热分析

Wei Wu, Liangliang Han, Zhiqing Yang, Shuang Zhao, Helong Li, L. Ding, Jian Tang, Bo Zhao
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引用次数: 0

摘要

在电力电子系统中,损耗和结温是影响功率半导体器件安全运行的关键参数。然而,在现场使用中,很难准确预测器件的热应力。因此,工程师倾向于使用更高的额定器件来维持过高的利润,从而导致更高的成本。本文研究了三相中性点箝位(NPC)变换器在不同工作条件下的损耗和热特性。首先,研究了三相变换器在不同调制方式下的损耗和热特性,以及正负功率因数对损耗的影响。其次,根据电网的需要,考虑了变流器产生电感和容性无功功率的损耗特性。最后,评估了低电压穿越(LVRT)过程中的损耗变化。这些评估有助于在转换器设计的早期阶段使半导体选择和设计合理化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive Loss and Thermal Analysis for Three-phase NPC Grid-tied Converters
Loss and junction temperature are key parameters for the safe operation of power semiconductor devices in power electronic systems. However, it is difficult to forecast the exact thermal stress of the device in field use. Consequently, engineers tend to use higher rated devices to maintain excessive margin, resulting in a higher cost. In this article, the loss and thermal characteristics of a three-phase neutral point clamped (NPC) converter are investigated under different operating conditions. Firstly, the loss and thermal characteristics of a three-phase converter under different modulation methods are explored, as well as the effect of positive and negative power factors on the losses. Secondly, along with the needs of the grid, the converter's loss characteristics for producing inductive and capacitive reactive power are taken into account. Finally, the loss changes during low-voltage ride-through (LVRT) are evaluated. These evaluations contribute in the rationalization of semiconductors selection and design during the early stages of converter design.
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