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基于陶瓷电容的高压电源电磁干扰滤波器

A high voltage power EMI filter based on the ceramic capacitor
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摘要 射电天文观测对电磁干扰(electromagnetic inference,EMI)的影响极为敏感,望远镜自身电气设备的电磁干扰更需严格屏蔽。500m口径球面射电望远镜(fivehundred-meter aperture spherical radio telescope,FAST)供配电系统包含6座10kV变电站,其屏蔽效能需要达到90dB以上。为满足FAST变电站外壳的电磁屏蔽需求,基于高压玻璃陶瓷电容研制出一种可用于10kV高压线,电流为100A以上,插入损耗大于90dB的电源滤波器。高压滤波器的主要部件为穿心陶瓷电容及有多组磁环构成的电感,外壳由直径约为12cm的不锈钢管制成,具有性能稳定、结构简单、安全可靠以及重量小等优点。经严格测试后,将高压滤波器安装到FAST变电站外壳上,整体屏蔽效能可达100dB,满足FAST电磁环境保护标准要求。 Radio astronomical observations are very sensitive to electromagnetic interference(EMI),so the EMI from the radio telescope's own electrical equipment must be strictly shielded.The five-hundred-meter aperture spherical radio telescope(FAST)power supply system containing 6power stations of 10kV whose shielding effectiveness need to be 90dB at least.A high voltage,high current EMI filter was built to protect the FAST equipment from the equipment EMI.The EMI filter uses a high voltage ceramic capacitor that can work at 10kV and 100Awith an insertion loss of more than 90dB.The core components of the EMI filter are the feed-through ceramic capacitors and an inductor having agroup of magnetic rings.Its enclosure is made of 12-cm diameter stainless steel tube that has advantages such as stable performance,simple structure,safe and secure and light weight.Passing the strictly test,the EMI filter was installed on the power station to provide the required shielding effectiveness of 100dB that meet the FAST electromagnetic environment protection criterion.
作者 甘恒谦 孙京海 姜鹏 斯可克 GAN Hengqian;SUN Jinghai;JIANG Peng;SI Keke(National Astronomical Observatories,Chinese Academy of Sciences,Beijing 100101,China;Automation Research and Design Institute of Metallurgical Industry,Beijing 100070,China)
出处 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2022年第11期1789-1795,共7页 Journal of Tsinghua University(Science and Technology)
基金 国家重点研发计划项目(2018YFE0202900,2019YFB1312704) 中国科学院西部青年学者项目。
关键词 电磁干扰 电源滤波器 高压陶瓷电容 屏蔽效能 electromagnetic inference power filter high voltage ceramic capacitor shielding effectiveness
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