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An improved nonlinear model predictive direct speed control of permanent magnet synchronous motors

机译:永磁同步电动机的改进非线性模型预测直接速度控制

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摘要

Field-oriented control (FOC) is one of the most effective techniques widely used in industry for speed control of permanent magnet synchronous motor. However, the main drawback of such linear controller with cascade structure is its limited bandwidth to avoid large overshoots and ringing. This problem significantly increases the switching frequency. To overcome this problem, this paper proposes a novel nonlinear model predictive control (NMPC) scheme for direct speed control of the permanent magnet synchronous motor to minimize the inverter switching frequency. The proposed NMPC suggests different sampling times in the prediction process to increase the prediction horizon. It also presents an incremental algorithm to reduce the computational time, rendering it suitable for real-time applications. The performance of the proposed NMPC method is compared with an optimum FOC scheme via simulations performed by MATLAB/Simulink software. The results show that the proposed method provides improved speed tracking performance as well as lower electromagnetic torque ripple. In addition, the inverter average switching frequency with the proposed control approach is almost 10 times lower than that with the FOC approach.
机译:磁场定向控制(FOC)是工业上广泛用于永磁同步电动机速度控制的最有效技术之一。然而,这种具有级联结构的线性控制器的主要缺点是其带宽有限,以避免大的过冲和振铃。这个问题大大增加了开关频率。为了克服这个问题,本文提出了一种新颖的非线性模型预测控制(NMPC)方案,用于永磁同步电动机的直接速度控制,以最小化逆变器的开关频率。提议的NMPC建议在预测过程中使用不同的采样时间以增加预测范围。它还提出了一种增量算法来减少计算时间,使其适合于实时应用。通过MATLAB / Simulink软件进行的仿真,将建议的NMPC方法的性能与最佳FOC方案进行了比较。结果表明,所提出的方法提供了改进的速度跟踪性能以及较低的电磁转矩脉动。另外,所提出的控制方法的逆变器平均开关频率几乎比FOC方法的平均开关频率低10倍。

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