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Design of variable flux permanent magnet machine for reduced inverter rating

机译:降低变频器额定值的可变磁通永磁电机的设计

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The paper presents a design procedure for tangentially magnetized variable flux machines that aims to reduce the machine inverter rating. The proposed design can achieve high torque density at low speeds, and high efficiency at an extended speed range, as armature d-axis current pulses are applied at high speeds to reduce the magnet flux, thus avoiding the flux weakening current in conventional permanent magnet synchronous (PMSMs) machines. In order to regain the full torque capability when the motor slows down, a magnetizing current pulse has to be applied. The amplitude of the magnetizing current is usually larger than the machine rated current. Therefore, the machine might need an oversized inverter in order to be able to re-magnetize the magnets. The impact of different machine design parameters on the magnetization current requirement is investigated in order to reduce the inverter cost.
机译:本文提出了切向磁化可变磁通电机的设计程序,旨在降低电机变频器的额定值。由于高速施加电枢d轴电流脉冲以减小磁通量,因此所提出的设计可以在低速下实现高转矩密度,并在扩展的速度范围内实现高效率,从而避免了传统永磁同步电机中的磁通减弱电流(PMSM)机器。为了在电动机减速时重新获得全部转矩能力,必须施加励磁电流脉冲。励磁电流的幅度通常大于机器的额定电流。因此,机器可能需要超大型的逆变器才能重新磁化磁铁。为了降低逆变器成本,研究了不同机器设计参数对磁化电流需求的影响。

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