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Predictive current control of outer-rotor five-phase BLDC generators applicable for off-shore wind power plants

机译:适用于海上风力发电厂的外转子五相BLDC发电机的预测电流控制

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摘要

Model predictive control algorithms have recently gained more importance in the field of wind power generators. One of the important categories of model predictive control methods is improved deadbeat control in which the reverse model of generator is used to calculate the appropriate inputs for the next iteration of controlling process. In this paper, a new improved deadbeat algorithm is proposed to control the stator currents of an outer-rotor five-phase BLDC generator. Extended Kalman filter is used in the estimation step of proposed method, and generator equations are used to calculate the appropriate voltages for the next modulation period. Two aspects of proposed controlling method are evaluated including its sensitivity to generator parameter variations and its speed in following the reference values of required torque during transient states. Wind power generators are kept in mind, and proposed controlling method is both simulated and experimentally evaluated on an outer-rotor five-phase BLDC generator.
机译:模型预测控制算法最近在风力发电机领域变得越来越重要。模型预测控制方法的重要类别之一是改进的无差拍控制,其中发电机的逆模型用于为控制过程的下一次迭代计算适当的输入。本文提出了一种新的改进的无差拍算法来控制外转子五相BLDC发电机的定子电流。所提出方法的估计步骤中使用扩展卡尔曼滤波器,并且使用发电机方程式来计算下一个调制周期的适当电压。评估了所提出的控制方法的两个方面,包括其对发电机参数变化的敏感性以及在瞬态期间遵循所需转矩的参考值的速度。牢记风力发电机,并在外转子五相BLDC发电机上对所提出的控制方法进行了仿真和实验评估。

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