Estimation and Analysis of NPC and Hybrid NPC Power Converters Reliability

A. B. Ben Abdelghani
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Abstract

This paper proposes a methodology to estimate the reliability of multilevel power converters and applies this methodology to two interesting structures: The first is the conventional three-level NPC (Neutral Clamped Converter) one. The second is a hybridization of the FC (Flying Capacitors) topology and the NPC one. This versatile FC-NPC topology was proposed mainly to improve the fault tolerance capabilities of the NPC power converter. During normal mode operation, the added fourth FC-based leg contributes to the actively balance the NPC neutral point voltage. When one of power switches of the three NPC legs undergoes a short circuit or an open circuit fault, the FC-based leg guarantees the converter operation under theses fault conditions through a reconfiguration of the power structure and the dedicated converter control. In this paper, an analysis of the influence of the added FC-based leg on the reliability of the hybrid converter is carried out. Thus, the reliability of the hybrid fault tolerant converter is modeled using standard reliability tools [1], FIDES guide [2] and the MIL-HDBK-217-F standard [3]. The precise mathematical modeling and estimation of the two converters reliabilities and failure rates show the effectiveness of the hybrid converter towards reliability increase.
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NPC及混合NPC电源变换器可靠性评估与分析
本文提出了一种估计多电平变换器可靠性的方法,并将该方法应用于两种有趣的结构:第一种是传统的三电平NPC(中性箝位变换器)结构。第二种是FC(飞行电容器)拓扑和NPC拓扑的杂交。提出这种通用FC-NPC拓扑结构主要是为了提高NPC功率变换器的容错能力。在正常模式运行期间,增加的第四个基于fc的分支有助于主动平衡NPC中性点电压。当三个NPC支路中的一个电源开关发生短路或开路故障时,基于fc的支路通过重新配置电源结构和专用的变换器控制来保证变换器在这些故障条件下的运行。本文分析了增加基于fc的支腿对混合变换器可靠性的影响。因此,使用标准可靠性工具[1]、FIDES指南[2]和MIL-HDBK-217-F标准[3]对混合容错转换器的可靠性进行建模。对两种变换器的可靠性和故障率进行了精确的数学建模和估计,表明了混合变换器在提高可靠性方面的有效性。
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