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Commutation of permanent-magnet synchronous AC motors for military and traction applications

机译:用于军事和牵引应用的永磁同步交流电机换向

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摘要

The permanent-magnet ac (PMAC) motor requires accurate position information to be supplied to the controller so that the applied currents can be modulated in synchronism with the rotor. In the flux-weakening region of operation, accurate rotor position information is critical to control the relative phase of the applied stator voltages. The design of controllers, which can operate without direct position feedback, have been the subject of intense development. The most commonly cited justifications for the elimination of the absolute position encoder are those of cost, and the reduction of the overall dimensions of the motor. However, certain military specifications apply stringent constraints to the use of both sensors and estimation techniques. Absolute encoders are frequently prohibited for applications such as tank turret drives due to their relatively fragile nature. Fully sensorless operation has been the focus of development for all classes of electric motors, but again is precluded not only in certain military applications, but also in traction applications for a number of manufacturers.
机译:永磁交流(PMAC)电动机需要将精确的位置信息提供给控制器,以便可以与转子同步地调制施加的电流。在弱磁通的操作区域中,准确的转子位置信息对于控制施加的定子电压的相对相位至关重要。可以在没有直接位置反馈的情况下运行的控制器的设计一直是开发的主题。消除绝对位置编码器的最常见理由是成本,以及减小电机的整体尺寸。但是,某些军事规范对传感器和估计技术的使用都施加了严格的限制。由于绝对编码器相对较脆弱,因此经常禁止在诸如坦克炮塔驱动器之类的应用中使用。完全无传感器操作一直是所有类型电动机的开发重点,但不仅在某些军事应用中,而且在许多制造商的牵引应用中,都被排除在外。

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