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Alleviation Technique for Thermal Concentration on Power Devices Driving a PMSM under Zero-Speed and High-Torque Condition

机译:在零速和高扭矩条件下驱动PMSM的功率器件热浓度的缓解技术

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This work is concerned with a technique to alleviate thermal concentration on specific switching devices that drive a permanent magnet synchronous motor (PMSM) under zero-speed and high-torque condition. In this condition, e. g., start or stop of an elevator or hill-start of an electric vehicle, a large DC current flows in the PMSM, and the heat generated in the specific switching devices is locally concentrated. The proposed technique uses a zero-sequence voltage in a three-level inverter, and the polarity of the zero-sequence voltage is switched according to the magnetic pole position of the PMSM. The proposed technique can change the current paths in the inverter, and the loss concentrations in specific devices can be alleviated. The simulation results show that the amplitude and the time ratio of the zero-sequence voltage that depend on the magnetic pole position of the PMSM affect the temperature rise of the power device with the maximum temperature. In the experiment, the effectiveness of the proposed technique is evaluated using a small power inverter. This three-level inverter consists of discrete power devices so that the surface temperature of each device can be observed with a thermal camera. The experimental results show that the temperature rise of the device with the maximum temperature is reduced by about 31%.
机译:这项工作涉及一种在零速度和高扭矩条件下驱动永磁同步电动机(PMSM)的特定开关装置上的热浓度的技术。在这种情况下,e。 G.,电梯或山坡的启动或停止电动车辆的开始,直流电流在PMSM中流动,并且在特定开关装置中产生的热量在局部集中。所提出的技术在三级逆变器中使用零序电压,并且根据PMSM的磁极位置切换零序电压的极性。所提出的技术可以改变逆变器中的电流路径,并且可以减轻特定设备中的损耗浓度。仿真结果表明,零序电压的幅度和时间比取决于PMSM的磁极位置影响功率器件具有最大温度的温度升高。在实验中,使用小功率逆变器评估所提出的技术的有效性。该三级逆变器由离散功率器件组成,使得可以用热敏摄像机观察每个装置的表面温度。实验结果表明,最大温度的装置的温度升高减少了约31%。

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