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Direct Flux Field-Oriented Control of IPM Drives With Variable DC Link in the Field-Weakening Region

机译:弱磁场区域中具有可变直流母线的IPM驱动器的直接磁通磁场定向控制

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摘要

This paper presents the direct flux control of an interior permanent-magnet (IPM) motor drive in the field-weakening region. The output torque is regulated by the coordinated control of the stator flux amplitude and the current component in quadrature with the flux, and it is implemented in the stator flux reference frame. The control system guarantees maximum torque production taking into account voltage and current limits, in particular in case of large dc-link variations. The field-oriented control does not necessarily require an accurate magnetic model of the IPM motor, and it is able to exploit the full inverter voltage at different dc-link levels with no additional voltage control loop. The feasibility of the proposed control method is investigated in discrete-time simulation, then tested on a laboratory rig, and finally implemented on board of an electric scooter prototype. The motor under test is an IPM permanent-magnet-assisted synchronous reluctance machine, with high-saliency and limited permanent-magnet flux.
机译:本文提出了弱磁场区域内永磁(IPM)电机驱动器的直接磁通控制。输出转矩通过定子磁通振幅和与磁通正交的电流分量的协调控制来调节,并在定子磁通参考系中实现。该控制系统可在考虑电压和电流限制的情况下确保产生最大扭矩,特别是在直流母线变化较大的情况下。磁场定向控制不一定需要IPM电机的精确磁模型,并且能够利用不同dc链路电平下的全部逆变器电压,而无需额外的电压控制回路。在离散时间仿真中研究了提出的控制方法的可行性,然后在实验室装备上进行了测试,最后在电动踏板车原型上实现了该方法。被测电机是IPM永磁辅助同步磁阻电机,具有高凸度和有限的永磁通量。

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