带lc滤波器和虚拟多电平逆变器的永磁同步电机预测控制

Marcelo Pozo-Palma, M. Pacas
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引用次数: 6

摘要

本文提出了一种基于lc滤波器的永磁同步电机端面正弦电压预测控制方法。该方案采用虚拟多电平逆变器,并采用传统脉宽调制器(PWM)。利用Luenberger观测器增强的系统数学模型方程,根据测量的逆变器电流和轴的位置,计算了逆变器必须合成的电压空间相量的第一次估计。通过假设“虚拟”逆变器具有任意高电平来计算开关模式。通过定义与“虚拟”多电平逆变器的输出状态相对应的电压空间相量网格,可以最小化预测控制方案中的成本函数。这个网格的中心有有限个单元,对应于参考电压的第一个计算值。为了最小化,只考虑属于网格的点,然后用这种方法选择的电压空间相量用于计算常规空间相量调制器中的开关信号,并发送给实际的两电平逆变器。该方案实现简单,且具有良好的转矩动态特性。为了保证数字实现的收敛性,在每个集成步骤中都使用了龙格-库塔方法。
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Predictive control for a PMSM with LC-filter and a virtual multilevel inverter
In this paper a predictive control for a permanent magnet synchronous machine with LC-Filter aiming sinusoidal voltage at the machine terminals is presented. The proposed scheme assumes a virtual multilevel inverter and utilizes a conventional pulse width modulator (PWM). A first estimation of the voltage space phasor that has to be synthesized by the inverter is computed by using the equations of the mathematical model of the system enhanced by a Luenberger observer and based on measured inverter currents and the shaft position. The switching patterns are calculated by assuming that the "virtual" inverter has an arbitrary high number of levels. The cost function in a predictive control scheme is minimized by defining a mesh of voltage space phasors that corresponds to the output states of the “virtual” multilevel inverter. The center of this mesh with a finite number of elements corresponds to the first calculated value of the reference voltage. For the minimization only the points belonging to the mesh are considered and the voltage space phasor chosen in this way is then used for the calculation of the switching signals in a conventional space phasor modulator and sent to the real two-level inverter. The proposed scheme results in an easy implementation and delivers good dynamics in the torque behavior. To ensure the convergence on the digital implementation, the Runge-Kutta method is used in each integration step.
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