Online Junction Temperature Cycle Recording of an IGBT Power Module in a Hybrid Car

Marco A. Denk, M. Bakran
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引用次数: 12

Abstract

The accuracy of the lifetime calculation approach of IGBT power modules used in hybrid-electric powertrains suffers greatly from the inaccurate knowledge of application typical load-profiles. To verify the theoretical load-profiles with data from the field this paper presents a concept to record all junction temperature cycles of an IGBT power module during its operation in a test vehicle. For this purpose the IGBT junction temperature is measured with a modified gate driver that determines the temperature sensitive IGBT internal gate resistor by superimposing the negative gate voltage with a high-frequency identification signal. An integrated control unit manages the measurement during the regular switching operation, the exchange of data with the system controller, and the automatic calibration of the sensor system. To calculate and store temperature cycles on a microcontroller an online Rainflow counting algorithm was developed. The special feature of this algorithm is a very accurate extraction of lifetime relevant information with a significantly reduced calculation and storage effort. Until now the recording concept could be realized and tested within a laboratory voltage source inverter. Currently the IGBT driver with integrated junction temperature measurement and the online cycle recording algorithm is integrated in the voltage source inverter of first test vehicles. Such research will provide representative load-profiles to verify and optimize the theoretical load-profiles used in today’s lifetime calculation.
混合动力汽车IGBT电源模块结温循环在线记录
混合动力系统中使用的IGBT功率模块寿命计算方法的准确性很大程度上受到应用典型负载曲线知识不准确的影响。为了用现场数据验证理论负载分布,本文提出了一种记录IGBT电源模块在测试车辆中运行过程中所有结温循环的概念。为此,IGBT结温是用一个改进的栅极驱动器测量的,该驱动器通过叠加负栅极电压和高频识别信号来确定温度敏感的IGBT内部栅极电阻。集成控制单元管理常规开关操作期间的测量,与系统控制器交换数据,以及传感器系统的自动校准。为了在单片机上计算和存储温度循环,开发了一种在线雨流计数算法。该算法的特点是能够非常准确地提取生命周期相关信息,大大减少了计算和存储工作量。到目前为止,记录概念可以在实验室电压源逆变器中实现和测试。目前首次试验车辆的电压源逆变器中集成了集成结温测量和在线周期记录算法的IGBT驱动器。这样的研究将提供具有代表性的荷载剖面,以验证和优化目前寿命计算中使用的理论荷载剖面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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