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燃料电池汽车DC/DC变换器电磁兼容研究
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Study on Electromagnetic Compatibility of Fuel Cell Vehicles’ DC/DC Converter
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    针对燃料电池汽车DC/DC变换器电磁兼容特性问题,参照GB/T 18655—2018在电波暗室内针对实际的燃料电池汽车DC/DC变换器搭建了实验系统,对其进行传导发射以及辐射发射实验,获得燃料电池汽车DC/DC变换器正常工作时各线缆端口的干扰电流和参考点位置的电场强度.然后,通过测量获取实验系统中各部件的几何参数,建立燃料电池汽车DC/DC变换器的电磁仿真模型,将传导发射实验获取的干扰电流作为电磁仿真模型的激励信号.将该仿真所获得的参考点位置的电场强度与辐射发射实验所获取的参考点位置的电场强度进行对比,结果显示:仿真结果与实验结果的整体变化趋势一致,且高频段时的平均误差在5 dB左右,仅在低频段精确度相对较差,该燃料电池汽车DC/DC变换器电磁仿真模型较为可靠.最后,利用该电磁仿真模型对燃料电池汽车DC/DC变换器的辐射抗扰特性进行了分析,结果表明,在电场强度为30~100 V/m的平面波干扰情况下,燃料电池汽车DC/DC变换器的正常工作不会受到影响,满足电磁兼容性要求.

    Abstract:

    Based on GB/T 18655—2018 standard, an experimental system was built for fuel cell vehicles’ DC/DC converter in an anechoic chamber. Conduction emission and radiation emission experiments were carried out. The interference current of each cable port and electric field intensity of the reference point was obtained during the normal operating state of fuel cell vehicles’ DC/DC converter. Then, an electromagnetic simulation model of fuel cell vehicles’ DC/DC converter was established based on the measured geometric parameters of each component in the experimental system. The obtained interference current from the conduction emission experiment was used as the excitation signal of the electromagnetic simulation model. The electric field intensity of the reference point position obtained by simulations was compared with the experimental results. The comparisons show that the overall change trend of simulation results is consistent with the overall change trend of the experimental results. The average error is about 5 dB in the high-frequency band, while the accuracy is relatively poor in the low-frequency band. Overall, the electromagnetic simulation model of the fuel cell vehicles’ DC/DC converter is reliable. Finally, the electromagnetic simulation model was used to analyze the radiation immunity characteristics of fuel cell vehicles’ DC/DC converters. The results show that the normal operating state of DC/DC converters will not be affected in the case of plane wave interference with the electric field strength of 30~100 V/m. Thus, the radiation immunity characteristics of fuel cell vehicles’ DC/DC converters meet the electromagnetic compatibility requirements.

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罗宝军? ,杨加瑶 ,梁薛霖.燃料电池汽车DC/DC变换器电磁兼容研究[J].湖南大学学报:自然科学版,2023,(4):48~54

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  • 在线发布日期: 2023-05-04
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