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Influence of Vector Control Strategies on Magnetic Saturation and its Effects on Torque Ripple of a PMSM

机译:矢量控制策略对磁饱和的影响及其对永磁同步电动机转矩脉动的影响

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This work investigates the influence of the main vector control strategies for torque control and their assessed phase current on electromagnetic saturation and their effects on torque, torque ripple, on-load back-emf, on-load cogging torque, reluctance torque, self and mutual inductance of a Permanent Magnet Synchronous Machines. The Vector Control Strategies for torque control under investigation are the torque free ripple strategy based on Alpha-Beta, DQ axis control strategy and Extended DQ (also known as DQx) axis control strategy. All the simulations are carried out with the aid of FEM and Frozen Permeability Method in order to properly segregate each machine's parameter. Next, an analysis of each parameter is made accounting for their contribution in the electromagnetic torque. An impressive result is noticed as the direct and quadrature axis change whereas the electric load increases and the existence of reluctance torque even if d axis current is zero.
机译:这项工作研究了用于转矩控制的主要矢量控制策略及其所评估的相电流对电磁饱和的影响,以及它们对转矩,转矩脉动,负载反电动势,负载齿槽转矩,磁阻转矩,自磁和互磁的影响永磁同步电机的电感。正在研究的转矩控制的矢量控制策略是基于Alpha-Beta的无转矩脉动策略,DQ轴控制策略和Extended DQ(也称为DQx)轴控制策略。所有模拟均借助FEM和冻结渗透率方法进行,以正确隔离每台机器的参数。接下来,考虑到它们在电磁转矩中的贡献,对每个参数进行分析。值得注意的是,随着直轴和正交轴的变化,即使d轴电流为零,电负载也会增加,并且存在磁阻转矩。

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