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电动汽车驱动 IGBT ★ 5.0

中压变换器中IGBT功率器件故障后退化分析

Postfault Degradation Analysis of IGBT Power Devices in Medium Voltage Converters

作者 Guilherme Salvador Ferreira · Victor Hugo Soares Lopes · Anderson V. Rocha · Andriamaharavo Mamianja Rakotozafy · Braz de Jesus Cardoso Filho
期刊 IEEE Transactions on Industry Applications
出版日期 2025年1月
技术分类 电动汽车驱动
技术标签 IGBT
相关度评分 ★★★★★ 5.0 / 5.0
关键词 模块化设计 中压变换器 功率半导体 故障分析 可靠性
语言:

中文摘要

模块化设计在中压变流器中得到了广泛应用,它为故障发生后更换一组受损设备提供了一种简便方法,使系统能够快速恢复运行。例如,将功率半导体器件布置成变流器相模块,可使系统仅在更换有缺陷的相模块时停止运行,而有缺陷的相模块可送回供应商处进行维修。然而,相模块内故障功率半导体器件的指示通常仅由门极驱动器给出,并且在停机期间借助万用表进行简单的在线测试。本文证明,任何一相中的一个扁平封装绝缘栅双极型晶体管(IGBT)功率半导体器件发生故障都可能导致后果升级,而且基本测试可能不足以发现其他相模块中性能下降的器件。这是通过对一个三电平中压变流器实际应用中的两次连续故障进行建模、仿真和分析得出的。此外,对在实际故障中看似未损坏的扁平封装 IGBT 样品进行了故障后离线测试。结果显示相关参数发生了偏移,这对模块化设计的益处提出了质疑。性能变差的功率器件可能不会立即失效,但它们的预期寿命会缩短,这会影响整体可靠性,进而可能导致后续更严重的故障 [G. 萨尔瓦多·费雷拉等人,2023 年],[G. 萨尔瓦多·费雷拉等人,2024 年]。

English Abstract

Modular design is largely applied to Medium Voltage Converters and provides a simple way to replace a set of damaged devices after failure events, allowing a fast return to operation. Arranging the power semiconductors into converter phase modules for instance, allow the system to be taken out of operation only for the defective phase module replacement, which can be sent to the supplier for repair. However, the indication of the failed power semiconductors inside the phase module is usually only given by the gate driver and simple in-circuit tests performed with the aid of a multimeter during the downtime. In this paper, it is demonstrated that a failure occurring in one flat-pack IGBT power semiconductor of any phase can cause escalated consequences and basic tests may not be enough to spot degraded devices in other phase modules. This is performed by the modeling, simulation, and analysis of two consecutive faults in a real case application of a three-level medium voltage converter. Furthermore, post-fault offline tests are performed in flat-pack IGBT samples that apparently survived the real case fault. The results reveal a relevant parameter shift that support questioning the benefits of the modular design. The deteriorated power devices might not fail immediately, but they will have a shorter lifetime expectancy impacting the overall reliability leading to a subsequent fault of likely larger significance [G. Salvador Ferreira et al. 2023], [G. Salvador Ferreira et al. 2024].
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SunView 深度解读

该IGBT故障后退化分析技术对阳光电源中压储能系统(PowerTitan)和SG系列大功率光伏逆变器具有重要应用价值。针对模块化多电平拓扑(如ST系列储能变流器采用的三电平结构),研究揭示的邻近器件潜在退化机理可优化故障后维护策略:不仅更换损坏模块,还需评估相邻IGBT的健康状态。电热耦合仿真方法可集成到iSolarCloud智能运维平台,实现故障应力量化评估和预测性维护。对于1500V高压光伏系统和大型储能电站,该技术能显著降低二次故障风险,延长功率模块寿命,提升系统长期可靠性,减少运维成本。