Sensorless Junction Temperature Estimation of Onboard SiC MOSFETs Using Dual-Gate-Bias-Triggered Third-Quadrant Characteristics

逆变器 MOSFET JFET公司 结温 晶体管 碳化硅 二极管 电子工程 数据表 计算机科学 材料科学 电压 电气工程 控制理论(社会学) 热的 场效应晶体管 工程类 光电子学 物理 控制(管理) 人工智能 冶金 气象学
作者
Yansong Lu,Yuting Ding,Jia Li,Hao Yin,Xinlian Li,Chong Zhu,Xi Zhang
出处
期刊:Sensors [MDPI AG]
卷期号:25 (2): 571-571 被引量:2
标识
DOI:10.3390/s25020571
摘要

Silicon carbide (SiC) metal oxide semiconductor field-effect transistors (MOSFETs) are a future trend in traction inverters in electric vehicles (EVs), and their thermal safety is crucial. Temperature-sensitive electrical parameters’ (TSEPs) indirect detection normally requires additional circuits, which can interfere with the system and increase costs, thereby limiting applications. Therefore, there is still a lack of cost-effective and sensorless thermal monitoring techniques. This paper proposes a high-efficiency datasheet-driven method for sensorless estimation utilizing the third-quadrant characteristics of MOSFETs. Without changing the existing hardware, the closure degree of MOS channels is controlled through a dual-gate bias (DGB) strategy to achieve reverse conduction in different patterns with body diodes. This method introduces a MOSFET operating current that TSEPs are equally sensitive to into the two-argument function, improving the complexity and accuracy. A two-stage current pulse is used to decouple the motor effect in various conduction modes, and the TSEP-combined temperature function is built dynamically by substituting the currents. Then, the junction temperature is estimated by the measured bus voltage and current. Its effectiveness was verified through spice model simulation and a test bench with a three-phase inverter. The average relative estimation error of the proposed method is below 7.2% in centigrade.

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