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Outer Stator Magnetically-Geared Motors for Electrified Urban Air Mobility Vehicles

机译:用于电气化城市空气移动性车辆的外定子磁齿轮电动机

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Electrified urban air mobility vehicles require advances in the specific power, efficiency, and reliability of electric motor drivetrains. Gearing an electrified aircraft's drivetrain generally leads to a lighter weight and/or more efficient drivetrain overall. Mechanical gears, however, due to their use of mechanical contact to transmit torque between gear bodies, have numerous wear and failure modes that lead to significant reliability and maintenance penalties. Magnetic gears, on the other hand, use magnetic fields instead of mechanical contact to transmit torque between gear bodies, and therefore have the potential to achieve the benefits of a geared drive system without reliability and maintenance penalties. Magnetic gears cannot match the specific torque of mechanical gears. Therefore simply trading a mechanical gear for a magnetic gear in a drive train will add mass. To make a magnetically-geared drive competitive with a mechanically geared drive in terms of mass, the magnetic gear and the electric motor in the drive train have to be integrated to share magnetic and mechanical components. One way of integrating a magnetic gear and a motor is called an outer stator magnetically-geared motor. In this paper, the outer stator magnetically-geared motor is assessed for its potential in urban air mobility vehicles. A design tool for outer stator magnetically-geared motors is developed. The tool is used to create a preliminary design of a 100 kW outer stator magnetically-geared motor. High fidelity analysis of that design is used to finalize it and update the design tool. Additional design tool results are produced to estimate the potential of the outer stator magnetically-geared motor for a 100 kW urban air mobility drive.
机译:电气化的城市空气移动性车辆需要采用电动机驱动器的特定功率,效率和可靠性的进步。导致电气化的飞机的动力传动系统通常会导致更轻的重量和/或更高效的动力传动系统。然而,由于它们使用机械接触以在齿轮体之间传递扭矩的原因,具有许多磨损和失效模式,这导致了显着的可靠性和维护处罚。另一方面,磁齿轮使用磁场而不是机械接触以在齿轮体之间传递扭矩,因此有可能实现齿轮驱动系统的益处,而无需可靠性和维护处罚。磁齿轮不能匹配机械齿轮的特定扭矩。因此,简单地在传动系中交易机械齿轮,将增加磁性齿轮。为了使磁齿轮驱动器在质量方面具有机械齿轮驱动,磁齿轮和传动系中的电动机必须集成以共用磁性和机械部件。整合磁齿轮和电动机的一种方式称为外定子磁力齿轮电动机。在本文中,对城市空间移动车辆的潜力评估外定子磁齿轮电动机。开发了外定子磁齿轮电动机的设计工具。该工具用于创造100 kW外定子磁齿轮电动机的初步设计。该设计的高保真分析用于完成它并更新设计工具。为100千瓦城市空间移动性驱动产生另外的设计工具,以估计外定子磁齿轮电动机的电位。

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