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Modelling and Design of Active Thermal Controls for Power Electronics of Motor Drive Applications

机译:电机驱动应用电力电子有源热控制的建模与设计

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One of the major factors that affects the overall efficiency and reliability of power electronics systems is the dynamical variation of the thermal stress which occurs in the power semiconductor devices. Therefore, the main objective of this paper consists of designing and implementing a series of active thermal control methods for the power devices of a motor drive application. The motor drive system together with the thermal cycling of the power devices have been modelled, and adverse temperature swings could be noticed during the start-up and deceleration periods of the motor. Based on the electrical response of the system, the junction temperature of the semiconductor devices is estimated, and consequently three active thermal control methods are proposed and practically designed with respect to the following parameters: switching frequency, deceleration slope and modulation technique. Finally, experimental results are provided in order to validate the effectiveness of the proposed control methods.
机译:影响电力电子系统的整体效率和可靠性的主要因素之一是在功率半导体器件中发生的热应力的动态变化。因此,本文的主要目的包括为电动机驱动应用的电源器件设计和实施一系列有源热控制方法。电动机驱动系统与功率器件的热循环一起进行了建模,并且可以在电动机的启动和减速时段期间注意到不利的温度摇摆。基于系统的电气响应,估计半导体器件的结温,因此提出了三种有源热控制方法,并且实际地设计了相对于以下参数:开关频率,减速斜率和调制技术。最后,提供了实验结果,以验证所提出的控制方法的有效性。

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