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电动汽车驱动 ★ 5.0

电力转换器功率器件的通用短路与开路故障保护及检测

Universal Short-Circuit and Open-Circuit Fault Protection and Detection for a Power Converter's Power Device

作者 Buck F. Brown · Zheyu Zhang · Johan H. Enslin · Cheng Wan
期刊 IEEE Transactions on Industry Applications
出版日期 2024年9月
技术分类 电动汽车驱动
相关度评分 ★★★★★ 5.0 / 5.0
关键词 功率器件 开路故障 短路故障 保护与检测系统 逆变器
语言:

中文摘要

摘要:如果变换器功率器件的短路和开路故障不能在亚微秒时间内被检测到并采取相应措施,往往会导致整个系统发生灾难性故障,对于新兴的宽禁带(WBG)功率半导体而言更是如此。虽然在短路故障的快速准确保护与检测方面已经开展了大量研究,但在开路故障方面的研究成果相对较少。常见的问题包括保护和检测方法过于特定于应用场景、耗时超过几微秒且成本效益不高。本文提出了一种新的开路故障保护与检测系统,该系统与现有的名为去饱和保护的短路系统相结合。首先,进行文献综述以确认新的保护与检测方案的必要性。其次,讨论新提出的保护与检测电路的工作原理和设计考虑因素。第三,设计并进行仿真和实验,并将两者进行对比,以展示该新方案在实际逆变器中的成功应用、有效性和适应性。对所提出系统的测试结果证明了新的故障保护与检测方案的成功性和可靠性。

English Abstract

Short-circuit and open-circuit faults of a converter's power device often lead to catastrophic failure of the entire system if not detected and acted upon within a sub-microsecond time frame, particularly for emerging wide bandgap (WBG) power semiconductors. While much research has been done on the fast and accurate protection and detection of short-circuit faults, there has been less success corresponding to open-circuit faults. Common downfalls include protection and detection that are too application-specific, take longer than a couple of microseconds, and are not cost-efficient. This paper proposes a new open-circuit fault protection and detection system integrated with a pre-existing short-circuit system called desaturation protection. First, a literature review is conducted to confirm the necessity of the new protection and detection scheme. Second, the operation principle and design considerations of the newly proposed protection and detection circuitry are discussed. Third, a simulation and experiment are designed, conducted, and compared to showcase the new scheme's success, effectiveness, and adaptability in an actual inverter. The results of testing the proposed system illustrate the success and reliability of the new fault protection and detection scheme.
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SunView 深度解读

该通用型功率器件故障保护技术对阳光电源多条产品线具有重要应用价值。在ST系列储能变流器和PowerTitan大型储能系统中,可实现IGBT/SiC模块的亚毫秒级短路开路故障检测,提升系统安全性并降低灾难性失效风险。在SG系列光伏逆变器的1500V高压系统中,无需额外传感器即可基于现有电流电压信号实现快速故障判据,降低硬件成本。在电动汽车OBC充电机和充电桩产品中,该技术可增强功率器件保护能力,防止故障蔓延导致的系统停机。结合iSolarCloud智能运维平台,可实现故障预测性诊断,提升阳光电源全系产品的可靠性与智能化水平。