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Modeling and position-sensorless control of a dual-airgap axial flux permanent magnet machine for flywheel energy storage systems

机译:飞轮储能系统双气隙轴向磁通永磁电机的建模和无位置传感器控制

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摘要

This paper presents the modeling and position-sensorless vector control of a dual-airgap axial flux permanent magnet (AFPM) machine optimized for use in flywheel energy storage system (FESS) applications. The proposed AFPM machine has two sets of three-phase stator windings but requires only a single power converter to control both the electromagnetic torque and the axial levitation force. The proper controllability of the latter is crucial as it can be utilized to minimize the vertical bearing stress to improve the efficiency of the FESS. The method for controlling both the speed and axial displacement of the machine is discussed. An inherent speed sensorless observer is also proposed for speed estimation. The proposed observer eliminates the rotary encoder, which in turn reduces the overall weight and cost of the system while improving its reliability. The effectiveness of the proposed control scheme has been verified by simulations and experiments on a prototype machine.
机译:本文介绍了一种优化用于飞轮储能系统(FESS)应用的双气隙轴向磁通永磁体(AFPM)机器的建模和无位置传感器矢量控制。提出的AFPM电机具有两组三相定子绕组,但仅需一个功率转换器即可控制电磁转矩和轴向悬浮力。后者的适当可控性至关重要,因为可以利用它来减小垂直轴承应力,从而提高FESS的效率。讨论了控制机器速度和轴向位移的方法。还提出了固有的无速度传感器观测器用于速度估计。提出的观察者取消了旋转编码器,从而减少了系统的整体重量和成本,同时提高了其可靠性。所提出的控制方案的有效性已通过在原型机上的仿真和实验得到了验证。

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