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Predictive Current Control of an Open End Winding Induction Machine using a Dual two-level Inverter Drive

机译:使用双二电平逆变器驱动的开放式绕组感应电机的预测电流控制

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A dual two-level inverter utilizes an open-end winding induction motor (OEWIM) to synthesise three level output voltage. In this paper, a model predictive control (MPC) technique namely predictive current control (PCC) method is proposed for the OEWIM. MPC techniques are seen as an alternative to the use of traditional proportional-integral based controllers. The PCC strategy is primarily based on prediction of stator current in the α - β plane and the objective function is accordingly formulated. In addition, switching commutations in the dual two-level inverter drive, common mode voltage in the OEWIM, etc. are carefully incorporated as control variables in the objective function with the proposed PCC strategy. Weighting factors of these variables are carefully designed in order to accomplish - minimum switching commutations in the dual two-level inverter drive and complete elimination of CMV. The proposed PCC is simulated using MATLAB/Simulink and is verified experimentally using a TMS320F28377s digital controller under various test conditions like speed change, speed reversal and load disturbances.
机译:双二电平逆变器利用开放式绕组感应电动机(OEWIM)来合成三电平输出电压。本文针对OEWIM提出了一种模型预测控制(MPC)技术,即预测电流控制(PCC)方法。 MPC技术被视为是使用传统的基于比例积分的控制器的替代方法。 PCC策略主要基于α-β平面中定子电流的预测,并据此制定了目标函数。此外,在拟议的PCC策略中,将双二电平逆变器驱动中的开关换向,OEWIM中的共模电压等作为控制变量小心地并入目标函数中。这些变量的加权因子经过精心设计,以实现-双二电平逆变器驱动中的最小开关换向和完全消除CMV。提出的PCC使用MATLAB / Simulink进行了仿真,并使用TMS320F28377s数字控制器在各种测试条件下(例如速度变化,速度反转和负载干扰)进行了实验验证。

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