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An SRF-PLL-Based Sensorless Vector Control Using the Predictive Deadbeat Algorithm for the Direct-Driven Permanent Magnet Synchronous Generator

机译:基于SRF-PLL的直接驱动永磁同步发电机基于预测无差拍算法的无传感器矢量控制

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摘要

This paper proposes an enhanced sensorless vector control strategy using the predictive deadbeat algorithm for a direct-driven permanent magnet synchronous generator (PMSG). To derive favorable sensorless control performances, an enhanced predictive deadbeat algorithm is proposed. First, the estimated back electromotive force (EMF), corrected by a cascade compensator, was put into a deadbeat controller in order to improve the system stability, while realize the null-error tracking of the stator current at the same time. Subsequently, an advance prediction of the stator current based on the Luenberger algorithm was used to compensate the one-step-delay caused by digital control. Maintaining the system stability, parameters of the controller were optimized based on discrete models in order to improve the dynamic responses and robustness against changes in generator parameters. In such cases, the proposed methodology of synchronous rotating frame phase lock loop (SRF-PLL), which applies the estimated back EMF, can observe the rotor position angle and speed without encoders, realizing the flux orientation and speed feedback regulation. Finally, the simulation and experimental results, based on a 10-kW PMSG-based direct-driven power generation system, are both shown to verify the effectiveness and feasibility of the proposed sensorless vector control strategy.
机译:本文提出了一种基于预测无差拍算法的无传感器矢量控制策略,用于直接驱动永磁同步发电机(PMSG)。为了获得良好的无传感器控制性能,提出了一种增强的预测无差拍算法。首先,将经过级联补偿器校正的估计反电动势(EMF)放入无差拍控制器中,以提高系统稳定性,同时实现对定子电流的零误差跟踪。随后,使用基于Luenberger算法的定子电流超前预测来补偿数字控制引起的单步延迟。为保持系统稳定性,控制器的参数基于离散模型进行了优化,以改善动态响应和针对发电机参数变化的鲁棒性。在这种情况下,所提出的同步旋转框架锁相环(SRF-PLL)方法应用了估计的反电动势,无需编码器即可观察转子位置角和速度,从而实现磁通方向和速度反馈调节。最后,基于基于10 kW PMSG的直接驱动发电系统的仿真和实验结果均证明了所提出的无传感器矢量控制策略的有效性和可行性。

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