基于MRAS的电动汽车感应电机驱动模型预测转矩控制

Aydın Boyar, E. Kabalci, Y. Kabalci
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引用次数: 5

摘要

世界上化石燃料汽车的数量日益增加。由于化石燃料汽车对环境造成污染,对零排放电动汽车的研究越来越多。根据电机的类型,在电动汽车的结构中使用变换器和逆变器拓扑结构。需要一个逆变电路将从电池获得的直流电压转换为交流电压。逆变器影响电动汽车电机的性能。三相三电平有源中性点箝位(ANPC)逆变器拓扑是本研究中首选的多电平逆变器拓扑之一,因为它具有较高的电能质量。感应电机结构简单,维护成本低,在电动汽车中得到了广泛的应用。在本研究中,对电动汽车的无速度传感器感应电机驱动进行了建模。利用所开发的模型预测控制器(MPC)对异步电动机转矩进行控制,得到ANPC逆变器所需的开关脉冲。采用模型参考自适应系统(MRAS)方法获得了MPC所需的感应电机转速值。对电动汽车的感应电机驱动进行了变速和变转矩工况分析。
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MRAS Based Model Predictive Torque Control of Induction Motor Drive for Electric Vehicles
The number of fossil fuel vehicles is increasing day by day in the world. Studies on the EVs having zero emissions enhance, since fossil fuel vehicles cause environmental pollution. The converter and inverter topologies are used in the structure of EVs according to motor types. An inverter circuit is needed to convert the dc voltage obtained from the batteries to ac voltage. The inverter affects performance of the electric motor used in EVs. Three phase three level active neutral point clamping (ANPC) inverter topology is one of the multilevel inverter topologies is preferred in this study since it has high power quality. The induction motor, which has simple structure and low cost maintenance, is widely used in the EVs. In this study, speed sensorless induction motor drive has been modelled for EVs. The required switching pulses for ANPC inverter are obtained by the developed model predictive controller (MPC) for torque control of induction motor. The speed value of induction motor required for MPC has been obtained by the model reference adaptive system (MRAS) method. The proposed induction motor drive for EVs has been analyzed under variable speed and torque values.
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