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Predictive control for a permanent magnet synchronous motor using automatic tuning Smith-predictor with optimal parameter mismatch

机译:永磁同步电动机的预测控制使用自动调谐史密斯预测器具有最佳参数不匹配

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摘要

In this paper, a new predictive speed controller using automatic tuning Smith-predictor (SP) for a permanent magnet synchronous motor (PMSM) is presented. In a full digital speed control system for a PMSM, there are inevitable delays in calculating the speed and the currents and applying the inverter output voltages to the motor terminals. The SP is famous for its delay-free characteristic and suitable for regulating systems with a time delay. It is however sensitive to plant parameter variations. According to our investigation, it can be improved by introducing intentional parametric mismatch and the corresponding optimal tunings are determined parameter. The experimental results are shown to prove the feasibility and effectiveness of the proposed predictive current controller using a 1 KW PMSM servo drive system.
机译:本文介绍了一种新的预测速度控制器,采用了一种用于永磁同步电动机(PMSM)的自动调谐史密斯预测器(SP)。在用于PMSM的全数字速度控制系统中,在计算速度和电流并将逆变器输出电压施加到电动机端子时存在不可避免的延迟。 SP以其延迟的特性而闻名,适用于调节时间延迟的系统。然而,它对工厂参数变化敏感。根据我们的研究,通过引入故意参数失配,可以改善它是确定参数的相应最佳调整。实验结果显示了使用1 kW PMSM伺服驱动系统来证明所提出的预测电流控制器的可行性和有效性。

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