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Thermal Performance of Motor and Inverter in an Integrated Starter Generator System for a Hybrid Electric Vehicle

机译:混合动力汽车集成起动发电机系统中电动机和变频器的热性能

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摘要

If the integrated starter generator (ISG) motor and inverter operate under continuously high loading conditions, the system’s performance and durability will decrease and the heat dissipation requirements will increase. Therefore, in this study, we developed two cooling designs for the ISG motor and inverter, and then carried out both a model analysis and an experiment on the fluid flow and thermal characteristics of the system under various operating conditions. As the outdoor temperature increased from 25 °C to 95 °C, the coil temperature of the air-cooled motor increased by about 82 °C. Under the harsh-air condition of 95 °C, the coil of the air-cooled motor increased to a maximum temperature of about 158.5 °C. We also determined that the temperature of the metal-oxide-semiconductor field-effect transistor (MOSFET) chip in the liquid-cooled inverter increased to a maximum temperature of about 96.8 °C under a coolant flow rate of 4 L/min and a coolant temperature of 65 °C. The observed thermal performance of the ISG motor and inverter using the proposed cooling structures was found to be sufficient for heat loads under various real driving conditions for a hybrid electric vehicle (HEV).
机译:如果集成的起动发电机(ISG)电动机和逆变器在持续的高负载条件下运行,则系统的性能和耐用性将会降低,并且散热要求也会提高。因此,在这项研究中,我们为ISG电动机和逆变器开发了两种冷却设计,然后在各种工况下对系统的流体流动和热特性进行了模型分析和实验。随着室外温度从25°C升高到95°C,风冷电机的线圈温度增加了约82°C。在95°C的恶劣空气条件下,风冷电机的线圈升高到约158.5°C的最高温度。我们还确定,在4 L / min的冷却剂流量和冷却剂流速下,液冷逆变器中的金属氧化物半导体场效应晶体管(MOSFET)芯片的温度升高到最高温度约96.8°C。温度65°C。发现使用建议的冷却结构观察到的ISG电动机和逆变器的热性能足以满足混合动力电动汽车(HEV)在各种实际驾驶条件下的热负荷。

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