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A Robust Predictive Current Controller for PMSM Drives

机译:用于PMSM驱动器的鲁棒预测电流控制器

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High-performance current control is required to obtain a smooth output torque in permanent-magnet synchronous motor (PMSM) drives. In this manner, a new discrete-time robust predictive current controller is presented for PMSM drives. Controller and current prediction schemes are designed based on the dead-beat structure. The dead-beat control has good transient response, but it suffers from parametric uncertainties and unmodeled dynamics. In order to provide robustness, a discrete-time integral term is added to the dead-beat current prediction. The stability analysis is carried out considering the prediction error dynamics, nonlinear uncertain model of PMSM, and the integral action as the states of the overall system. The designed robust predictive controller is tested through numerical simulations and experiments. The proposed controller is easy to implement and suitable for high-performance PMSM applications.
机译:为了在永磁同步电动机(PMSM)驱动器中获得平稳的输出转矩,需要高性能的电流控制。以这种方式,提出了一种用于PMSM驱动器的新型离散时间鲁棒预测电流控制器。基于无差拍结构设计了控制器和电流预测方案。无差拍控制具有良好的瞬态响应,但存在参数不确定性和未建模的动力学问题。为了提供鲁棒性,将离散时间积分项添加到无差拍电流预测中。考虑预测误差动态,PMSM的非线性不确定性模型以及积分作用作为整个系统的状态,进行稳定性分析。通过数值模拟和实验对设计的鲁棒预测控制器进行了测试。所提出的控制器易于实现,适合于高性能PMSM应用。

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