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Model Requirements for Simulation of Low-Voltage MOSFET in Automotive Applications

机译:汽车应用中低压MOSFET仿真的模型要求

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This paper focuses on the modeling of low-voltage automotive power electronic circuits to obtain accurate system simulation, including estimation of losses. The aim is to compare several metal-oxide semiconductor field-effect transistor (MOSFET) models to find out which can be used for low-voltage, high-current automotive converter simulations. As these models are intended for system simulation, only analytical models are addressed as they may be implemented into any circuit simulator. The different modes of operation of the switches are described (commutation, synchronous rectification, avalanche...), and several models of the power MOSFET transistor, allowing for simulation in these modes, are presented. Special care is given to the parameter extraction methods and to the interconnection model of the commutation cell. The four test circuits used to identify the low-voltage power MOSFET model parameters are presented. Comparison between simulations and measurements obtained with a calorimeter are then detailed. This measurement method is accurate and offers a simple way to prove the quality of simulation results. It is shown that the parameter identification is of major concern to achieve high accuracy, as classical Spice models can give good results, providing the model parameters are correctly set.
机译:本文着重于对低压汽车电力电子电路进行建模,以获得包括损耗估计在内的精确系统仿真。目的是比较几种金属氧化物半导体场效应晶体管(MOSFET)模型,以找出可用于低电压,大电流汽车转换器仿真的模型。由于这些模型旨在用于系统仿真,因此仅解决了解析模型,因为它们可以在任何电路仿真器中实现。描述了开关的不同工作模式(换向,同步整流,雪崩...),并介绍了允许在这些模式下进行仿真的功率MOSFET晶体管的几种模型。要特别注意换向单元的参数提取方法和互连模型。介绍了用于识别低压功率MOSFET模型参数的四个测试电路。然后详细介绍了模拟量热仪和测量仪之间的比较。这种测量方法是准确的,并提供了一种简单的方法来证明仿真结果的质量。结果表明,参数识别是实现高精度的主要考虑因素,因为只要正确设置模型参数,经典的Spice模型就能给出良好的结果。

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