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Predictive Model for Conducting Electromagnetic Interference by Bidirectional Excitation Controller

机译:双向励磁控制器进行电磁干扰的预测模型

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Bidirectional excitation controller is used in the excitation system of brushed DC motor. There are many monitoring sensors and weak current switches nearby. Therefore, it is necessary to study the conduction interference of the excitation controller. Firstly, based on the working principle of bidirectional excitation controller, the propagation path model and corresponding equivalent circuit of bidirectional excitation controller are established. Then, the parasitic capacitance parameters between the switch tube and the heat sink were extracted by ANSYS Q3D software, and the dynamic model of IGBT was established by using ANSYS Simplorer software. Based on ANSYS software, the prediction model of the equipment conducted electromagnetic interference was obtained. Finally an excitation controller conducting interference test platform was built, and the predicted results were compared with the measured interference results of the experimental platform to verify the accuracy of the prediction model.
机译:双向励磁控制器用于刷式直流电动机的激励系统。附近有许多监控传感器和弱电流开关。因此,有必要研究激励控制器的导通干扰。首先,基于双向激励控制器的工作原理,建立了传播路径模型和双向激励控制器的相应等效电路。然后,通过ANSYS Q3D软件提取开关管和散热器之间的寄生电容参数,并且通过使用ANSYS Sportorer软件建立IGBT的动态模型。基于ANSYS软件,获得了电磁干扰的设备的预测模型。最后建立了导电干扰测试平台的励磁控制器,并将预测结果与实验平台的测量干扰结果进行了比较,以验证预测模型的准确性。

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