A high-frequency modeling of AC motor in a frequency range from 40 Hz to 110 MHz

H. Miloudi, M. Miloudi, A. Gourbi, M. H. Bermaki, A. Bendaoud, A. Zeghoudi
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引用次数: 3

Abstract

Introduction. Most electromagnetic compatibility models developed for the study of three-phase induction machines are generally valid for low and medium frequencies (<< 1 MHz). This frequency limit seems to be too restrictive for the overall study of conducted electromagnetic interference. In this paper, the model is using the proposed model and compared with experimental results in low and medium frequency. And then, the high-frequency modeling of induction motor is presented new method based on transfer function model. The proposed methodology is verified on an experimental and simulation, it’s suitable for prediction of the terminal overvoltage analysis and electromagnetic interference problems and common-mode and differential-mode currents. The novelty of the work consists to develop an improved high-frequency motor model based on transfer function to represent the motor high-frequency behavior for frequency-domain analyses in the frequency range from 40 Hz up to 110 MHz .The purpose of this work is to study the common-mode impedance and the differential-mode impedance of AC motor. The determination of these impedances is done for firstly both common and differential modes at low and medium frequency, and then common-mode and differential-mode characteristics at high frequency. Methods. For the study of the path of common-mode and differential-mode currents in typical AC motor (0.25 kW, 50 Hz) an identification method in high frequency for induction motor has been proposed based on the transfer function in differential-mode and common-mode configuration. The low and medium frequency model were presented in the first time based on equivalent circuit of electrical motor. Then, the common-mode and differential-mode impedances were defined in high frequency using asymptotic approach. This motor was studied by MATLAB Software for simulation and also experimental measurements. Results. All the simulations were performed using the mathematical model and the results obtained are validated by experimental measurements performed in the University of the Federal Armed Forces Hamburg in Germany. The obtained results of common-mode and differential-mode at low frequency, medium and high frequency are compared between simulation and experiment.
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交流电机的高频建模,频率范围从40赫兹到110兆赫
介绍。大多数为研究三相感应电机而开发的电磁兼容模型通常适用于低频和中频(<< 1mhz)。对于传导电磁干扰的整体研究来说,这个频率限制似乎太严格了。本文采用本文提出的模型,并在低、中频与实验结果进行了比较。在此基础上,提出了基于传递函数模型的异步电动机高频建模新方法。通过实验和仿真验证了所提方法的正确性,该方法适用于终端过电压分析、电磁干扰问题以及共模和差模电流的预测。本文的新颖之处在于建立了一种改进的基于传递函数的高频电机模型来表示40 Hz至110 MHz频率范围内的电机高频行为,用于频域分析,目的是研究交流电机的共模阻抗和差模阻抗。首先对低频和中频的共模和差模特性进行确定,然后对高频的共模和差模特性进行确定。方法。针对典型交流电机(0.25 kW, 50 Hz)共模和差模电流路径的研究,提出了一种基于差模和共模传递函数的感应电机高频识别方法。首次提出了基于电机等效电路的低、中频模型。然后,用渐近方法定义了高频共模和差模阻抗。利用MATLAB软件对该电机进行了仿真和实验测量。结果。利用数学模型进行了仿真,所得结果在德国汉堡联邦武装部队大学的实验测量中得到了验证。仿真与实验结果进行了低频、中频和高频共模和差模的比较。
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