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Minimum copper loss flux-weakening control of surface mounted permanent magnet synchronous motors

机译:表面安装永磁同步电动机的最小铜损磁通减弱控制

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This study presents a novel current loop design method capable of automatic flux-weakening control with minimum copper loss for surface mounted permanent magnet synchronous motors (SPMSM). The proposed current controller can automatically re-compute the d-axis current command to defer output voltage saturation. Consequently, the motor operations in the flux-weakening region are also contained in the stable operating region. Analysis results indicate that since the output voltage vector in the flux-weakening region produced by this controller is consistently on the boundary of the maximum output voltage vector allowed by the inverter, the corresponding flux-weakening current is the optimal value in the sense of minimum copper loss. This minimum copper loss design differs from the maximum output torque design and the constant power design of the flux-weakening control methods found in the literature. Experimental results further demonstrate the feasibility of the proposed current controller and its ability to maximize the speed range of the motor drive for a given inverter capacity.
机译:这项研究提出了一种新颖的电流环路设计方法,该方法能够对表面安装式永磁同步电动机(SPMSM)进行自动磁通弱化控制,并且铜损最小。提出的电流控制器可以自动重新计算d轴电流命令,以延迟输出电压饱和。因此,在弱磁通区域中的电动机运行也包含在稳定运行区域中。分析结果表明,由于此控制器产生的磁通弱化区域中的输出电压矢量始终位于逆变器允许的最大输出电压矢量的边界上,因此从最小意义上讲,相应的磁通弱化电流是最佳值铜损。这种最小的铜损设计不同于最大输出转矩设计和文献中发现的磁通弱化控制方法的恒定功率设计。实验结果进一步证明了所提出的电流控制器的可行性,以及对于给定的逆变器容量,其能够最大化电动机驱动器的速度范围的能力。

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