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A Switching Control Strategy based on Output Regulation Subspaces for the Control of Induction Motors using a Three-level Inverter

机译:一种基于输出调节子空间的交换控制策略,采用三电平逆变器控制感应电动机

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In this work we present the design of a new switching control strategy for a three-level converter aimed to improve the performance of a Direct Torque Control (DTC) for induction machines, special attention is given to the reduction of torque ripple. As in classical DTC, the proposed technique is aimed to directly regulate the outputs: torque and flux amplitude. We show that, classical DTC can be considered as a particular case of the proposed control strategy. The proposed criterion to design the switching control sequence is based on a quadratic criterion of the output errors plus a prediction in one-step ahead, and an interesting partition of the input state space generated by the output regulation subspaces (ORS) to facilitate the selection of the control vector for reducing the computational load. As a result a control vector is selected without the requirement of an auxiliary space vector or any other modulation technique. Simulations results using the proposed control technique confirm the validity of this approach.
机译:在这项工作中,我们展示了一个新的开关控制策略的设计,用于三级转换器,旨在提高直接扭矩控制(DTC)的感应机器的性能,特别注意转矩纹波的减少。如在经典DTC中,所提出的技术旨在直接调节输出:扭矩和磁通幅度。我们表明,古典DTC可以被认为是所提出的控制策略的特定情况。设计切换控制序列的建议标准基于输出错误的二次标准加上前一步的预测,以及由输出调节子空间(ORS)产生的输入状态空间的有趣分区以便于选择用于降低计算负荷的控制向量。结果,选择控制向量,而不需要辅助空间矢量或任何其他调制技术。使用所提出的控制技术的模拟结果证实了这种方法的有效性。

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