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Design and Control of an Axial-Flux Machine for a Wide Flux-Weakening Operation Region

机译:宽磁通弱化区域的轴流焊机的设计与控制

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This paper describes the strategy to design and control an axial-flux (AxF) surface-mounted permanent-magnet machine for achieving a wide flux-weakening (FW) operating region. By using a slotted stator with fractional-slot windings and additional cores enclosing end windings, the AxF machine satisfies the specification of a wide constant-power speed range. The design procedure is presented for increasing FW capability while obtaining low-harmonic back electromotive force and low cogging torque. This technique is applied to design an 8-Nldrm AxF prototype machine that exhibits about 3 : 1 FW range. To the aim of exploiting full capability of the machine, an FW controller is designed and implemented. This controller utilizes the voltage difference between the current regulator and the output voltage, limited by a voltage source inverter. With this method, the output torque in the FW region is higher than that achieved using the conventional FW method based on the voltage-magnitude feedback. The goodness of both design and control algorithm is proved by experimental tests on a prototype.
机译:本文介绍了设计和控制轴向磁通(AxF)表面安装永磁电机的策略,以实现较弱的磁通(FW)操作区域。通过使用带分数槽绕组的开槽定子和附加端部绕组的附加铁心,AxF电机可以满足宽功率恒定转速范围的要求。提出了设计程序,以提高FW能力,同时获得低谐波反电动势和低齿槽转矩。这项技术被用于设计展示约3:1 FW范围的8-Nldrm AxF原型机。为了充分利用机器的功能,设计并实现了FW控制器。该控制器利用受电压源逆变器限制的电流调节器和输出电压之间的电压差。使用这种方法,在FW区域中的输出扭矩要高于使用传统的基于电压-幅度反馈的FW方法获得的扭矩。通过对原型的实验测试证明了设计和控制算法的优越性。

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