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Research on electro magnetic compatibility test technology of on-line monitoring device for line surge arrester |
Hu Shen1, Shi Na1, Song Hao1, Li Fan2, Hu Ang3 |
1. Gansu Electrical Appliance Research Institute, Tianshui, Gansu 741018; 2. National High and Low Voltage Electrical Quality Supervision and Inspection Center, Tianshui, Gansu 741018; 3. Nanyang High-tech Zone Tiancheng Electrical Equipment Co., Ltd, Nanyang, He'nan 473000 |
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Abstract By analyzing the electromagnetic environment of on-line monitoring device, the importance and necessity of studying electro magnetic compatibility (EMC) test are obtained. Combined with the specific prototype products, through the analysis of the composition and interference mechanism of the prototype, the specific test items and test requirements are obtained. Combined with the construction of the test circuit, the specific test is completed. Aiming at the problem of electric fast pulse group interference in the test, a rectification method is proposed: signal cable adopts shielding cable, signal port to increase TVS tube, common-mode inductance and common-mode capacitance. The experimental results show that this method can effectively improve the anti-jamming ability of the fast electric pulse group.
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Received: 17 September 2019
Published: 20 March 2020
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Cite this article: |
Hu Shen,Shi Na,Song Hao等. Research on electro magnetic compatibility test technology of on-line monitoring device for line surge arrester[J]. Electrical Engineering, 2020, 21(3): 97-102.
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URL: |
http://dqjs.cesmedia.cn/EN/Y2020/V21/I3/97
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[1] 宋东波, 黄洁, 程登峰, 等. 1000kV金属氧化物避雷器现场直流高压试验方法分析[J]. 电气技术, 2016, 17(5): 122-124, 130. [2] 黄灵资, 刘昊. 基于带电检测技术的一起35kV金属氧化物避雷器缺陷分析[J]. 电气技术, 2019, 20(1): 112-115. [3] 郑军奇. EMC电磁兼容设计与测试案例分析[M]. 北京: 电子工业出社, 2009. [4] 曾智强, 郑心城, 陈为. 一种兼顾效率和电磁兼容的反激变压器设计[J]. 电气技术, 2015, 16(10): 8-12, 44. [5] 姜楠, 刘易勇, 赵昱. 智能隔离断路器的电磁兼容性试验技术研究[J]. 高压电器, 2015, 321(12): 96-102. [6] GB/T 17626.2—2018. 电磁兼容试验和测量技术静电放电抗扰度试验[S]. [7] GB/T 17626.3—2016. 电磁兼容试验和测量技术射频电磁场辐射抗扰度试验[S]. [8] GB/T 17626.4—2018. 电磁兼容试验和测量技术电快速瞬变脉冲群抗扰度试验[S]. [9] GB/T 17626.5—2008. 电磁兼容试验和测量技术浪涌(冲击)抗扰度试验[S]. [10] GB/T 17626.8—2006. 电磁兼容试验和测量技术工频磁场抗扰度试验[S]. [11] GB/T 17626.9—2011. 电磁兼容试验和测量技术脉冲磁场抗扰度试验[S]. [12] GB/T 17626.10—2017. 电磁兼容试验和测量技术阻尼振荡磁场抗扰度试验[S]. [13] GB/T 17626.18—2016. 电磁兼容试验和测量技术阻尼振荡波抗扰度试验[S]. [14] 徐丽青, 丁泉, 史志伟, 等. 合并单元的电快速瞬变脉冲群抗扰度分析[J]. 电力系统自动化, 2014, 38(21): 108-113. [15] 王世山, 谢少军, 金艳. 计及寄生参数效应的铁氧体共模扼流圈二端口网络的建立[J]. 电工技术学报, 2010, 25(5): 1-8. [16] 何卫. TVS器件钝化技术与可靠性研究[D]. 武汉: 华中科技大学, 2007: 59. [17] Williams T.EMC for Product Designers[M]. Newnes, 2015. |
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