|
|
Development of a Novel 0~10kV Continuous Adjustable Portable Combination Wave Generator |
Qu Qianwei, Sun Wei, Chen Jian, Fu Zhengcai |
Key Laboratory of Control of Power Transmission and Conversion, Ministry of Education, Department of Electrical Engineering, Shanghai Jiao Tong University, Shanghai 200030 |
|
|
Abstract In order to test the operating characteristics of the Surge Protection Device (SPD) under surges of different voltage on the scene, we designed a novel set of portable combination wave generator which can adjust the voltage from 0 to 10kV continuously. This device adopted the design idea of combining the frequency conversion and the voltage doubling, and included some technologies such as direct current chopping, series-resonant, optimizing of the voltage doubling and so on. The device has advantages of light weight, small volume and low cost, and can test the performance of the SPD on the scene conveniently and effectively to ensure safe and reliable operation of the SPD.
|
Published: 20 July 2015
|
|
|
|
Cite this article: |
Qu Qianwei,Sun Wei,Chen Jian等. Development of a Novel 0~10kV Continuous Adjustable Portable Combination Wave Generator[J]. Electrical Engineering, 2015, 16(07): 1-5.
|
|
|
|
URL: |
http://dqjs.cesmedia.cn/EN/Y2015/V16/I07/1
|
[1] IEC 61643-1: 2005. Low-voltage surge protective devices-Part 1: Surge protective devices connected to low-voltage power distribution systems-Requirements and tests[S]. IEC/SC 37A, 2005. [2] GB 18802.1—2011. 低压电涌保护器(SPD)第一部分: 低压配电系统的电涌保护器 性能要求和试验方法[S]. [3] 梁晓兵, 周文俊, 胡巨, 等. 便携式SPD测试仪组合波发生器的仿真与试验[J]. 电测与仪表, 2011, 48(3): 84-88. [4] 龙超, 龙照明, 劳斯佳, 等. 便携式电涌保护器现场检测装置的研究[J]. 陕西电力, 2010, 38(6): 55-58. [5] 施围, 邱毓昌, 张乔根. 高电压工程基础[M]. 北京: 机械工业出版社, 2006. [6] 林志琦, 郎永辉, 王岩, 等. 倍压整流电路电容参数的优化设计[J]. 长春工业大学学报(自然科学版), 2009, 30(5): 551-555. [7] 王兆安. 电力电子技术[M]. 北京: 机械工业出版社, 2000. [8] 尚雷, 王相綦, 裴元吉, 等. 新型软开关高压脉冲电容恒流充电技术分析[J]. 强激光与粒子束, 2001, 13(2): 241-244. [9] Biebach J, Ehrhart P, Muller A, et al. Compact modular power supplies for superconducting inductive storage and for capacitor charging[J]. IEEE Transactions on Magnetics, 2001, 37(11): 353-357. [10] Souda M, Endo F, Yamazaki C, et al. Development of high power capacitor charging power supply for pulsed power applications[C]//Pulsed Power Conference, 1999. Digest of Technical Papers. 12th IEEE International. IEEE, 1999, 2: 1414-1416. [11] 汪维玉. 基于串联谐振和多模块叠加技术的大功率直流电源控制系统的研制[D]. 马鞍山: 安徽工业大学, 2011. [12] 富士IGBT. 模块应用手册[Z]. 富士电机电子设备技术株式会社, 2004. [13] 杨仲江, 徐乐, 李祥超, 等. 1.2/50μs、8/20μs组合波发生器的研制[J]. 电瓷避雷器, 2013(5): 58-65. [14] 姚学玲, 陈景亮, 孙伟. 浪涌保护器带电试验用组合波发生器的设计[J]. 高电压技术, 2004, 30(5): 42-44. [15] 孙伟, 姚学玲, 陈景亮, 等. 用于防雷器带电试验组合波发生器电路参数的理论计算[J]. 高压电器, 2006, 42(5): 343-345, 351. [16] 姚学玲, 陈景亮, 孙伟. 非线性被试品冲击电流发生回路的研究[J]. 高压电器, 2005, 41(6): 412-415, 419. |
|
|
|