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An Improved Model Predictive Control Method for Induction Motor Drives Fed by Indirect Matrix Converter

机译:间接矩阵变换器馈电的感应电动机驱动的模型预测控制的改进方法

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In the model predictive control (MPC) method for the indirect matrix converter (IMC), due to the limited switching state and the fixed control frequency, the output voltage of converter is limited. As a result, if the valid output voltages and the reference value are mismatched, there will be rich harmonics in the output and input currents. In order to solve this problem, an improved model predictive control method is proposed for the induction motor drives fed by an indirect matrix converter, in which the grid current and the motor flux vector are used as the control objectives. A zero vector switching state of the inverter circuit is inserted in each sampling period, and the optimal duty cycle and the corresponding switching states are obtained by using the monotonicity of the cost function with the time constraint of the switching state. The simulation and experimental results show that good grid current quality and dynamic/steady state performances for the induction motor are achieved by using the proposed method, and the zero current commutation for bi-directional switches is realized. Compared with the conventional MPC, the harmonics of the input and output currents for IMC are both reduced, especially under the middle and low speed conditions.
机译:在用于间接矩阵转换器(IMC)的模型预测控制(MPC)方法中,由于受限的开关状态和固定的控制频率,转换器的输出电压受到限制。结果,如果有效输出电压和参考值不匹配,则在输出和输入电流中将存在大量谐波。为了解决这个问题,提出了一种改进的模型预测控制方法,用于由间接矩阵变换器馈送的感应电动机驱动器,其中以电网电流和电动机磁通矢量为控制目标。在每个采样周期中插入逆变器电路的零矢量开关状态,并通过使用成本函数的单调性和开关状态的时间约束来获得最佳占空比和相应的开关状态。仿真和实验结果表明,所提出的方法能够获得良好的感应电流和动态/稳态性能,并且实现了双向开关的零电流换向。与传统的MPC相比,IMC的输入和输出电流的谐波都减少了,特别是在中速和低速条件下。

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