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A high-frequency torque injection-based rotor thermal monitoring scheme for direct-torque-controlled interior permanent magnet synchronous machines

机译:基于直接转矩控制的内部永磁同步电机的基于高频转矩注入的转子热监测方案

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Interior permanent magnet synchronous machine drives are widely employed in electric traction systems and various industrial processes. However, prolonged exposure to high temperatures while operating can demagnetize the permanent magnets to the point of irreversible demagnetization. In addition, direct measurements with infrared sensors or contact-types sensors with wireless communication can be expensive and intrusive to the motor drive systems. This paper thus proposes a nonintrusive thermal monitoring scheme for the permanent magnets inside the direct-torque-controlled interior permanent magnet synchronous machines. By applying an external high-frequency torque signal to the hysteresis torque controller in the motor drive, the high-frequency currents can be injected into the stator windings. The permanent magnet temperature can thus be monitored based on the I induced high-frequency resistance. The nonintrusive nature of the method is indicated by the elimination of the extra sensors and no hardware change to the existing system. Finally, the effectiveness of the proposed method is validated with experimental results.
机译:内部永磁同步电机驱动器广泛用于电力牵引系统和各种工业过程。但是,在操作期间长时间暴露在高温下会使永磁体退磁至不可逆退磁点。此外,使用红外传感器或具有无线通信功能的接触式传感器进行直接测量可能会很昂贵,并且会干扰电机驱动系统。因此,本文针对直接转矩控制的内部永磁同步电机内部的永磁体提出了一种非侵入式热监测方案。通过将外部高频转矩信号施加到电动机驱动器中的磁滞转矩控制器,可以将高频电流注入到定子绕组中。因此,可以基于I感应的高频电阻来监视永磁体的温度。该方法的非侵入性表现为消除了额外的传感器,并且不对现有系统进行硬件更改。最后,实验结果验证了该方法的有效性。

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