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首页> 外文期刊>Journal of power electronics >Permanent Magnet Synchronous Motor Control Algorithm Based on Stability Margin and Lyapunov Stability Analysis
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Permanent Magnet Synchronous Motor Control Algorithm Based on Stability Margin and Lyapunov Stability Analysis

机译:基于稳定性边缘和Lyapunov稳定性分析的永磁同步电机控制算法

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摘要

The permanent magnet synchronous motor (PMSM) is widely used in various fields and the proportional-integral (PI) controller is popular in PMSM control systems. However, the motor parameters are usually unknown, which can lead to a complicated PI controller design and poor performance. In order to design a PI controller with good performance when the motor parameters are unknown, a control algorithm based on stability margin is proposed in this paper. First of all, based on the mathematical model of the PMSM and the least squares (LS) method, motor parameters are estimated offline. Then based on the estimation values of the motor parameters, natural angular frequency and phase margin, a PI controller is designed. Performance indices including the natural angular frequency and the phase margin are used directly to design the PI controller in this paper. Scalar functions of the d-loop and the q-loop are selected. It can be seen that the designed controller parameters satisfy Lyapunov large scale asymptotic stability theory if the natural angular frequencies of the d-loop and the q-loop are large than 0. Experimental results show that the parameter estimation method has good accuracy and the designed PI controller proposed in this paper has good static and dynamic performances.
机译:永磁同步电动机(PMSM)广泛用于各个领域,比例整体(PI)控制器在PMSM控制系统中流行。但是,电机参数通常是未知的,这可能导致复杂的PI控制器设计和性能差。为了在电动机参数未知时设计具有良好性能的PI控制器,本文提出了一种基于稳定性边缘的控制算法。首先,基于PMSM和最小二乘法(LS)方法的数学模型,估计电机参数离线。然后基于电动机参数的估计值,设计了PI控制器的自然角频率和相位余量。在本文中直接使用包括自然角频率和相位裕度的性能指标。选择了D循环和Q循环的标量函数。可以看出,设计的控制器参数满足Lyapunov大规模渐近稳定性理论,如果D圈的自然角频率大于0,则实验结果表明,参数估计方法具有良好的精度和设计本文提出的PI控制器具有良好的静态和动态性能。

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