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Design of a Wind Turbines Synchronous Generator, with Longitudinal Excitation from Permanent Magnets

机译:带有纵向励磁的风力发电机同步发电机的设计

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The design of a brushless generator, with excitation from permanent magnets, is proposed in this paper. A distinctive feature is the passage of magnetic flux in the direction longitudinal to the axis of rotation of the rotor, which made it possible to change the design of the generator. A permanent magnet is used for the excitation. It is placed in the center of the rotor of the generator, and magnetized in the longitudinal direction. At the ends of the rotor, the poles made of the ferromagnetic material are installed, which serve to distribute the magnetic flux excitation along the teeth of the stator, and the stator itself can be made of plastic or other non-magnetic materials, such as ceramics. This is due to the change in the direction of the passage of the magnetic flux excitation from transverse to longitudinal, so the main frame of the stator can be made of non-magnetic material. The magnetic core is an array of rectangular pins located around the circumference, inside the stator, in the longitudinal direction. The coils of the output winding are installed in the middle of the pins, and cutouts in the area of the pins installation are provided in the non-magnetic stator. Thus, during the assembly of the generator stator, the pins of the charged ferromagnetic material are installed in the assembly with the output winding coils, and the corresponding cutouts from the inside of the stator are used for fastening. Cutouts improve heat dissipation from coils as they come in contact with the external environment. The listed design features of the generator provide a cost reduction, which is especially important for the small and medium power range applications. It is established that the proposed generator design is characterized by a double frequency of the output voltage.
机译:本文提出了一种由永磁体激励的无刷发电机的设计。一个显着的特征是磁通量沿垂直于转子旋转轴的方向通过,这使得可以更改发电机的设计。永磁体用于激励。它放置在发电机转子的中心,并在纵向方向上被磁化。在转子的端部,安装了由铁磁材料制成的磁极,这些磁极用于沿定子的齿分布磁通量激励,并且定子本身可以由塑料或其他非磁性材料制成,例如陶瓷。这是由于磁通量激发的通过方向从横向到纵向的变化,因此定子的主框架可以由非磁性材料制成。磁芯是矩形销的阵列,该矩形销在定子内部沿纵向位于圆周周围。输出绕组的线圈安装在插针的中部,插针安装区域的切口设置在非磁性定子中。因此,在发电机定子的组装期间,将带电的铁磁材料的销钉与输出绕组线圈一起安装在组件中,并且使用定子内部的相应切口进行固定。当线圈与外部环境接触时,切口可改善线圈的散热。发电机列出的设计特征可降低成本,这对于中小功率范围的应用尤为重要。已经确定,提出的发电机设计的特征在于输出电压的两倍频率。

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