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Current control and reactive power minimization of a direct matrix converter induction motor drive with Modulated Model Predictive Control

机译:具有调制模型预测控制的直接矩阵转换器感应电动机驱动的电流控制和无功最小化

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This paper investigates a novel model- predictive control strategy to control an induction motor fed by a matrix converter with multi-objective control capability. The proposed control method combines the features of the classical Model Predictive Control and the Space Vector Modulation technique into a Modulated Model Predictive Control. This new solution maintains all the characteristics of Model Predictive Control (such as fast transient response, multi-objective control using only one feedback loop, easy inclusion of nonlinearities and constraints of the system, the flexibility to include other system requirements in the controller) adding the advantages of working at fixed switching frequency and improving the quality of the controlled waveforms. Simulation results employing the control method to control the stator current and input reactive power of a direct matrix converter induction motor drive are presented.
机译:本文调查了一种新颖的模型预测控制策略,用于控制由矩阵转换器提供的具有多目标控制能力的感应电动机。所提出的控制方法将经典模型预测控制和空间向量调制技术的特征结合在调制模型预测控制中。这种新解决方案维护了模型预测控制的所有特性(例如快速瞬态响应,只使用一个反馈回路,易于包含系统的非线性和限制,在控制器中包含其他系统要求的灵活性)添加在固定开关频率下工作并提高受控波形质量的优点。采用控制方法控制定子电流和直接矩阵转换器感应电动机驱动的定子电流的仿真结果。

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