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Permanent Magnet Motor with Reversible Salient Poles and Variable Magnetic Force

机译:具有可逆凸极和可变磁力的永磁电动机

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To operate motors at a higher efficiency over a wider range of speeds, we have developed a technique that quickly reverses the salient poles in permanent magnet (PM) motors. With this technique, PM motors can change negative salient poles into positive salient poles by applying the magnetization of the PM. Furthermore, we discuss the combination of reversible salient poles with variable magnetic force to increase the efficiency of the motor under partial load. This paper proposes a novel PM motor that uses our proposed technique to reverse saliency and describes the principle of reversible pole saliency as well as the resulting motor characteristics. When the proposed motor operates with a negative salient pole, a higher torque is produced at low speeds; when the motor reverses to a positive salient pole, higher power and efficiency are produced at high speeds. These results confirm that the proposed motor can reverse the saliency direction of the pole and that this reversibility allows the motor to achieve high torque at low speeds and high power at high speeds. Consequently, the motor can operate over a wide range of speeds.
机译:为了在更大的速度范围内以更高的效率运行电动机,我们开发了一种技术,该技术可以快速反转永磁(PM)电动机中的凸极。通过这种技术,永磁电机可以通过施加PM的磁化强度将负凸极变为正凸极。此外,我们讨论了可逆的凸极与可变磁力的组合,以提高部分负载下电动机的效率。本文提出了一种新颖的永磁电动机,该电动机使用我们提出的技术来反转凸极,并描述了可逆磁极凸极的原理以及由此产生的电动机特性。当所建议的电动机在负凸极下运行时,在低速时会产生更高的转矩。当电动机反转到正凸极时,高速产生更高的功率和效率。这些结果证实,提出的电动机可以使磁极的显着性方向反转,并且这种可逆性允许电动机在低速下实现高转矩,在高速下实现高功率。因此,电动机可以在很宽的速度范围内运行。

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