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National instrument-based experimental validation of a nonlinear real-time induction motor model in an EV simulation system

机译:EV仿真系统中基于国家仪器的非线性实时感应电动机模型的实验验证

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Real-time simulation of an electrical vehicle (EV) with hardware-in-the-loop is a cost-effective approach in evaluating the behavior of electrical vehicles and its controllers before applying them in a real system. This paper demonstrates a nonlinear approach of a real-time induction motor model implemented in a National Instrument real-time platform. Many studies have been conducted concerning on the real-time modelling of induction motors, but lots of the models are limited to linear ones. This paper presents the modeling, real-time implementation and experimental validation of a nonlinear induction motor model mounted on an electrical vehicle. The experimental validation system consists of two parts, the motor controller and the model motor. The model motor is a real-time simulation model based on the nonlinear stator flux model. The consistency of electrical characteristics between the model motor and the real motor is guaranteed by adding the external electrical interface circuit. The system can be used to deliver the testing and researching of motor control systems instead of the real ones. The experimental results show that the model motor can effectively simulate the characteristics of true induction motors. Thus, it can be applied in studies of electrical vehicle systems.
机译:具有硬件在环系统的电动汽车(EV)的实时仿真是一种经济有效的方法,可以在将电动汽车及其控制器应用到实际系统中之前对其行为进行评估。本文演示了在National Instruments实时平台中实现的实时感应电动机模型的非线性方法。关于感应电动机的实时建模已经进行了许多研究,但是许多模型仅限于线性模型。本文介绍了安装在电动汽车上的非线性感应电动机模型的建模,实时实现和实验验证。实验验证系统由两部分组成,即电动机控制器和模型电动机。模型电动机是基于非线性定子磁链模型的实时仿真模型。通过添加外部电气接口电路,可以保证模型电动机与实际电动机之间电气特性的一致性。该系统可用于进行电动机控制系统的测试和研究,而不是实际的系统。实验结果表明,模型电动机可以有效地模拟真实感应电动机的特性。因此,它可以应用于电动汽车系统的研究。

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