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一种采用分数频率半周期调制策略的新型五电平混合NPC-ANPC H桥单相逆变器

A Novel Five-Level Hybrid NPC-ANPC H-Bridge Single-Phase Inverter With Fractional Frequency Half-Cycle Modulation Strategy

语言:

中文摘要

本文提出了一种新型五电平混合中点钳位(NPC)-有源NPC(ANPC)H桥单相逆变器,通过结合使用硅(Si)器件的NPC臂与碳化硅(SiC)器件的ANPC臂,有效控制SiC器件成本。提出分数频率半周期(FFHC)空间矢量脉宽调制(SVPWM)策略,使NPC臂开关器件工作于基频,ANPC臂器件仅在半个周期内高频开关,从而提升效率、功率密度与热稳定性。详细阐述了逆变器的工作原理,并建立损耗与热模型以分析器件损耗分布、温度分布及最大结温。实验样机验证了该拓扑在效率、功率密度和热性能方面的优势。

English Abstract

This article proposes a novel five-level hybrid neutral point clamped (NPC)-active NPC (ANPC) H-bridge single-phase inverter. This inverter integrates an NPC arm equipped with silicon (Si) devices and an ANPC arm using silicon carbide (SiC) devices with the objective of controlling the cost of SiC devices. A fractional frequency half cycle (FFHC) space vector pulsewidth modulation (SVPWM) strategy is proposed as the means of enhancing efficiency, power density, and thermal stability. The FFHC-SVPWM strategy facilitates the switching devices of the NPC arm to operate at the fundamental frequency, whereas the switching devices of the ANPC arm switch at a high frequency for only half a cycle. This article explicates the operational principle of the proposed hybrid NPC-ANPC H-bridge inverter in detail. Subsequently, a loss model and thermal model are developed to analyze the loss distribution, temperature distribution, and the maximum junction temperature of the power devices. A prototype of the hybrid NPC-ANPC H-bridge inverter is constructed to validate the increase in efficiency, power density, and thermal stability.
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SunView 深度解读

该混合NPC-ANPC五电平拓扑及FFHC调制策略对阳光电源多条产品线具有重要应用价值。在车载OBC充电机领域,通过Si/SiC混合方案可有效控制成本,同时ANPC臂半周期高频开关策略显著降低开关损耗,提升功率密度,契合车载轻量化需求。在ST储能变流器单相模块设计中,该拓扑的基频开关特性可降低NPC臂热应力,延长Si器件寿命,而SiC器件仅在半周期工作进一步优化散热设计。对于充电桩AC-DC整流级,五电平输出可降低EMI滤波需求,提升系统集成度。建议将FFHC-SVPWM策略与阳光现有三电平控制技术融合,探索混合器件拓扑在高功率密度应用中的成本-性能最优解。