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一种基于集成高频传感器的电压源逆变器快速鲁棒开路故障检测方法
A Fast and Robust Open-Circuit Fault Detection Method for Voltage-Source-Inverter With Integrated High-Frequency Sensor
| 作者 | Junhao Zhang · Hao Li · Dawei Xiang · Xing Lei |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年9月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 SiC器件 IGBT 可靠性分析 故障诊断 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电压源逆变器 开路故障 检测方法 高频电流传感器 实验验证 |
语言:
中文摘要
高效的故障检测对电压源逆变器(VSI)的安全与可靠性至关重要,尤其在动态工况下实现开路故障(OCF)的快速鲁棒检测。本文提出一种新颖的OCF检测方法,通过在传统霍尔电流传感器中嵌入高频(HF)传感单元,捕获功率器件开关动作引发的高频振荡电流。分析了开关动作与高频振荡事件之间的因果关系,设计了集成化高频电流传感器,无需门极信号即可通过开关振荡信号完整性实现故障检测。在IGBT与碳化硅(SiC)MOSFET平台上的实验验证表明,该方法可在1–2个开关周期内完成OCF的检测与定位,且在动态工况下具备强鲁棒性与非侵入式安全性。
English Abstract
Efficient fault detection is essential for the safety and reliability of voltage source inverters (VSIs), particularly the rapid and robust detection of open-circuit faults (OCFs) under dynamic conditions. This study proposes a novel OCF detection method for VSI, employing a high-frequency (HF) sensor embedded in a traditional Hall current sensor to detect HF switching oscillations. First, the causal relationship between switching actions of power devices and HF current oscillation events was analyzed. Subsequently, an integrated HF current sensor is designed to capture HF oscillation currents, enabling OCF detection through signal integrity analysis of switching oscillation events with no need of gate signals. Finally, experimental validations on both insulated-gate bipolar transistor (IGBT) and silicon carbide (SiC) MOSFET platforms have confirmed the method’s efficacy. Detection and localization of OCFs in VSI systems can be achieved within 1–2 switching periods. Moreover, the method demonstrates robust performance under dynamic operating conditions and ensures nonintrusive safety.
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SunView 深度解读
该集成高频传感器的OCF快速检测技术对阳光电源ST系列储能变流器和SG系列光伏逆变器具有重要应用价值。当前阳光电源大量采用SiC MOSFET和IGBT功率器件,该方法通过嵌入式高频传感单元在1-2个开关周期内实现故障检测与定位,相比传统门极信号监测方案具有非侵入性优势,可直接集成到现有霍尔电流传感器中。该技术特别适用于PowerTitan大型储能系统的预测性维护需求,能在动态工况下保持高鲁棒性,可与iSolarCloud云平台结合实现智能诊断。对于1500V高压系统和三电平拓扑产品,该方法的快速响应特性可显著提升系统安全性与可靠性,降低因功率器件开路故障导致的系统停机风险。