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No-Load Loss Separation of High-Speed Electric Motors for Electrically-Assisted Turbochargers

机译:用于电气辅助涡轮增压器的高速电动机的无负载损耗分离

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This article presents a testing procedure for the no-load loss separation of high-speed electric machines designed for Electrically-Assisted Turbochargers. The main contribution of this paper is to introduce a loss separation method suitable for low power (several kW) high-speed electric motors. The paper begins by presenting the environmental context of the study, the overall system and motivations to develop such a method. Then, the experimental procedure using several back-to-back (B2B) configurations supported by an air bearing is proposed to identify the no-load losses including: no-load iron, air bearing and windage losses. Finally, the method is applied to three stator topologies to compare the no-load iron losses levels. The presented principle enables a no-load loss separation for very high-speed machines in the range of several kilowatts without the use of a torque meter. In addition, the identification of the air bearing losses makes possible the evaluation of the motor efficiency on the presented B2B test bench without any major modifications.
机译:本文介绍了为电动辅助涡轮增压器设计的高速电机的空载损耗分离的测试程序。本文的主要贡献是引入适用于低功耗(几千瓦)高速电动机的损耗分离方法。本文首先展示了研究的环境背景,整体系统和动机来发展这种方法。然后,提出了一种由空气轴承支撑的几个背对背(B2B)配置的实验过程,以识别空载损耗,包括:空载铁,空气轴承和风盘损失。最后,该方法应用于三个定子拓扑,以比较空载铁损失水平。本原理使得在不使用扭矩计的情况下,对于几千瓦的范围内的非常高速机器,可以为非常高速的机器进行空载损耗分离。此外,空气损耗的识别可以对所呈现的B2B测试台上的电机效率进行评估,而无需任何重大修改。

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