张仲旗,连鸿松.通过检测SO2发现SF6电气设备故障[J].中国电力,2001,34(1):77-80.Zhang Zhongqi,Lian Hongsong.Using SO2 detection for failure checking of SF6electricity equipment[J].Electric Power,2001,34(1):77-80.
[2]
潘志方,唐志列,夏云飞.光声光谱技术在现代医学领域的应用[J].实验科学与技术,2009,7(3):33-34.Pan Zhifang,Tang Zhilie,Xia Yunfei.Application of photoacoustic spectroscopy technology in the field of modern medicine[J].Experiment Science&Technology,2009,7(3):33-34.
[3]
张川,王辅.光声光谱技术在变压器油气分析中的应用[J].高电压技术,2005,31(2):84-86.Zhang Chuan,Wang Fu.Application of photo-acoustic spectroscopy technology to dissolved gas analysis in oil of oil-Immersed power transformer[J].High Voltage Engineering,2005,31(2):84-86.
[4]
陈伟根,刘冰洁,周恒逸,等.变压器油中溶解气体光声光谱检测的温度特性[J].电工技术学报,2010,25(11):15-20.Chen Weigen,Liu Bingjie,Zhou Hengyi,et al.The temperature characteristics of photoacoustic spectroscopy detection for dissolved gases in transformer oil[J].Transactions of China Electrotechnical Society,2010,25(11):15-20.
[5]
Suehiro J,Zhou G B,Hara M.Detection of partial discharge in SF6 gas using a carbon nanotube-based gas sensor[J].Sensors and Actuators B-Chemical,2005,105(2):164-169.
[6]
Hodgkinson J,Smith R,Ho W O,Saffell J R,Tatam R P.Non-dispersive infra-red(NDIR)measurement of carbon dioxide at 4.2μm in a compact and optically efficient sensor[J].Sensors and Actuators B:Chemical,2013,186:580-588.
[7]
Xu S,Chen M.Design and modeling of non-linear infrared transducer for measuring methane using cross-correlation method[J].Measurement,2012,45(3):325-332.
[8]
云玉新,赵笑笑,陈伟根,等.采用激光共振光声光谱技术检测乙炔气体[J].高电压技术,2009,35(9):2156-2162.Yun Yuxin,Zhao Xiaoxiao,Chen Weigen,et al.Acetylene detection by laser resonant photoacoustic spectrometry[J].High Voltage Engineering,2009,35(9):2156-2162.
[9]
Zhang X,Zhang J,Jia Y,Xiao P,Tang J.TiO2nanotube array sensor for detecting the SF6 decomposition product SO2[J].Sensors,2012,12(3):3302-3313.
[10]
唐炬,范敏,裘吟君,等.SF6局部放电分解组份光声光谱检测的温度特性[J].高电压技术,2012,38(11):2919-2925.Tang Ju,Fan Min,Qiu Yingjun,et al.Temperature property of photoacoustic spectroscopy detection for SF6decomposition components under partial discharge[J].High Voltage Engineering,2012,38(11):2919-2925.
[11]
唐炬,陈长杰,张晓星,等.微氧对SF6局部放电分解特征组份的影响[J].高电压技术,2011,37(1):8-14.Tang Ju,Chen Changjie,Zhang Xiaoxing,et al.Influnece of trace-level O2on SF6 decomposition characteristics under partial discharge[J].High Voltage Engineering,2011,37(1):8-14.
[12]
唐炬,李涛,胡忠,等.两种常见局部放电缺陷模型SF6气体分解组分对比分析[J].高电压技术,2009,35(3):487-492.Tang Ju,Li Tao,Hu Zhong,et al.Analysis of SF6gaseous decomposition components under two kinds of PD defects[J].High Voltage Engineering,2009,35(3):487-492.
[13]
Piemontesi M,Niemeyer L.Sorption of SF6and SF6decomposition products by activated alumina and molecular sieve 13X[C]//IEEE International Symposium on Electrical Insulation.Montreal,Quebec,Canada:IEEE,1996:828-838.
[14]
张晓星,姚尧,唐炬,等.SF6放电分解气体组份分析的现状和发展[J].高电压技术,2008,34(4):664-669.Zhang Xiaoxing,Yao Yao,Tang Ju,et al.Actuality and perspective of proximate analysis of SF6decomposed products under partial discharge[J].High Voltage Engineering,2008,34(4):664-669.
[15]
王建业,纪新明,吴飞蝶,等.光声光谱法探测微量气体[J].传感器技术学报,2006,19(4):1206-1211.Wang Jianye,Ji Xinmin,Wu Feidie,et al.Photoacoustic spectroscopy method for trace gas detecting[J].Chinese Journal of Sensors and Actuators,2006,19(4):1206-1211.