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Improved Predictive Current Control of IM Drives Based on a Sliding Mode Observer

机译:基于滑动模式观察器改进了IM驱动器的预测电流控制

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In the conventional finite control set-model predictive current control (FCS-MPCC) method, both stator current and flux-linkage vector need to be computed for delay compensation and coordinate transformation. And, the conventional PCC is sensitive to rotor parameter mismatches. Additionally, the performance of FCS-MPCC degrades during speed variation when low-pass filter is applied to attenuate noise in speed measurement. In this paper, a reduced-order sliding-mode current observer (RSCO) is designed, which can predict stator current at the next sampling instant while simultaneously estimating the back electromotive force. With the help of RSCO, current prediction and coordinate transformation can be achieved without calculation of flux-linkage vector, which features simplicity in practical application. Additionally, robustness against parameter mismatch is significantly improved due to the feedback of current estimation error. Simulation and experimental results are presented to validate effectiveness of the proposed method.
机译:在传统的有限控制装置模型预测电流控制(FCS-MPCC)方法中,需要计算定子电流和磁通连杆矢量,以延迟补偿和坐标变换。并且,传统的PCC对转子参数不匹配敏感。另外,在施加低通滤波器时速度变化期间FCS-MPCC降低的性能以衰减速度测量的噪声。在本文中,设计了一种减小的滑动模式电流观察者(RSCO),其可以在同时估计后电动势的同时预测下一个采样瞬间的定子电流。在RSCO的帮助下,可以在不计算磁通连杆向量的情况下实现电流预测和坐标变换,其在实际应用中具有简单性。另外,由于电流估计误差的反馈,对参数错配的鲁棒性显着提高。提出了仿真和实验结果,以验证提出的方法的有效性。

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