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作 者:杨文荣[1,2] 栾君玲 刘畅[1] 屈建帅 乔艺伟 YANG Wenrong;LUAN Junling;LIU Chang;QU Jianshuai;QIAO Yiwei(State Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology,Tianjin 300130,China;Hebei Key Laboratory of Electromagnetic Field and Electrical Apparatus Reliability,Hebei University of Technology,Tianjin 300130,China)
机构地区:[1]河北工业大学省部共建电工装备可靠性与智能化国家重点实验室,天津300130 [2]河北工业大学河北省电磁场与电器可靠性重点实验室,天津300130
出 处:《实验技术与管理》2021年第9期143-148,155,共7页Experimental Technology and Management
基 金:国家自然科学基金项目(51877066)。
摘 要:该文针对车载充电机、DC-DC和高压配电盒组成的电动汽车充电系统三合一总成模块,在高压工作时电磁干扰超标问题进行分析及抑制研究。分析车载充电机前级电路和DC-DC电路的结构、控制方法,建立了稳压、抗干扰的仿真模型,进行传导干扰、辐射干扰实验;分析三合一总成模块传导干扰源,采取超级电容滤波、设备外壳接地及线束屏蔽的措施抑制三合一总成传导干扰。将仿真结果与实验结果对比,两者变化趋势一致,对比抑制前后三合一总成传导干扰波形,幅值降低符合标准。验证了仿真模型的正确性及整改方案的可行性,为电动汽车集成化模块电磁干扰研究提供了理论基础。This paper analyzes and studiess the electromagnetic interference and suppression of the three-in-one assembly module of electric vehicle charging system, which is composed of on-board charger, DC-DC and highvoltage distribution box. This paper analyzes the structure and control method of the pre-circuit and DC-DC circuit of the vehicle charger, establishes the simulation model of voltage stabilization and anti-interference, carries out the conducted interference and radiation interference experiment;and analyzes the conduction interference source of the three-in-one assembly module, and take the measures of super capacitor filtering, equipment shell grounding and wire harness shielding to suppress the conducted interference of the three-in-one assembly. Comparing the simulation results with the experimental results, the change trend of the two is consistent. Comparing the conducted interference waveform of the three-in-one assembly before and after suppression, the amplitude reduction meets the standard. The correctness of the simulation model and the feasibility of the rectification plan are verified, which provides a theoretical basis for the electromagnetic interference research of the electric vehicles integrated module.
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