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Flux-weakening Control of Novel Hybrid-excited Permanent Magnet Machines

机译:新型混合型永磁机的助焊剂控制

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For hybrid-excited permanent magnet machines, both the field excitation current and the d-axis current can be utilized to adjust the flux-linkage, which offers more flexible control parameters for flux-weakening operation. In this paper, three flux-weakening control methods, i.e. utilizing field excitation current alone (Method-I), utilizing armature current alone (Method-II), and optimal method (Method-III), are proposed and compared. All three methods can achieve the same torque in the constant-torque region by the same enhanced field excitation current. In the flux-weakening region, Method-I exhibits low torque and limited operating speed range. The operating speed range can be further extended by Method-II and Method-III. In addition, Method-III can provide a higher efficiency in flux-weakening region than Method-II since the copper loss of field winding can be decreased in proportion to the reduction of field excitation current. Those flux-weakening control methods are verified by experimental results.
机译:对于混合激发的永磁机,可以利用现场激励电流和D轴电流来调节磁通连杆,这提供了更灵活的控制参数,用于磁通量弱化操作。在本文中,提出了三种助熔剂控制方法,即仅利用单独的电磁电流(方法-I)(方法-i)和最佳方法(方法-III),并进行比较。通过相同的增强的场励磁电流,所有三种方法都可以在恒定扭矩区域中获得相同的扭矩。在助焊区弱化区域中,方法-I表现出低扭矩和有限的操作速度范围。通过方法-II和方法-III可以进一步扩展工作速度范围。另外,方法-III可以在磁通弱区域中提供比方法-II的效率更高,因为现场绕组的铜损失与场励磁电流的降低成比例地降低。通过实验结果验证了这些助熔剂控制方法。

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