光电工程, 2013, 40 (4): 144, 网络出版: 2013-05-24   

光纤 Bragg光栅传感器在变压器铁芯测温中的应用

Application Research of FBG Sensor in Temperature Measurement of Transformer Core
作者单位
昆明理工大学信息工程与自动化学院, 昆明 650500
摘要
影响变压器绝缘老化的主要因素之一是运行时铁芯的温度。铁芯温度越高, 绝缘老化越快, 变压器寿命也就越短。研制了一种利用光纤 Bragg光栅测量变压器铁芯温度的传感器, 将套有陶瓷套管的光纤 Bragg光栅温度传感器安装在变压器铁芯中柱上轭表面。当铁芯的温度发生改变时, 与其接触的光纤 Bragg光栅的温度也随之改变, 导致光纤 Bragg光栅中心波长移位, 从而实现对变压器铁芯温度的测量。运行电压为 75 V和 100 V的恒定负载实验表明, 恒定电压下, 环境温度为 15℃时, 0~105 min内光纤 Bragg光栅中心波长分别稳定在 1 552.289 nm和 1 552.299 nm, 变压器铁芯的温升值分别为 17℃和 18℃。
Abstract
One of the main factors that affect transformer insulation aging is the core temperature. The higher the core's temperature is, the faster the insulation degrades and the shorter the transformer's life is. a design of sensor using optical Fiber Bragg Grating (FBG) was introduced to measure the transformer core temperature, which takes advantage of the slot on the core of the transformer to install the optical fiber Bragg ceramic casing grating temperature sensor on the core in column yoke surface of the transformer. When the temperature of core changes, the temperature of the optical fiber Bragg grating will vary with the core changes, which make the central wavelength of optical fiber Bragg grating shift, so the temperature of the core can be measured. When the running voltage is 75 V and 100 V respectively, the constant load experiments show that, under the constant voltage, when the ambient temperature is 15℃, in 0 ~ 105 minutes, the center wavelength of optical fiber Bragg grating stabilizes at 1 552.289 nm and 1 552.299 nm respectively, and the temperature rise are 17℃ and 18℃ respectively.
参考文献

[1] GB/T 1094.7-2008 电力变压器第七部分: 油浸式电力变压器负载导则 [S]. 2008.

    GB/T 1094.7-2008 Power transformer-part7: loading guide for oil immersed power transformers [S]. 2008.

[2] 张文广, 王必平, 刘建刚, 等. HYDRAN-201i变压器早期故障监测装置的故障处理 [J].电工技术, 2007(7): 2-3.

    ZHANG Wenguang, WANG Biping, LIU Jiangang, et al. Early HYDRAN-201i transformer fault monitoring device Troubleshooting [J]. Electric Engineering, 2007(7): 2-3.

[3] 郝建, 廖瑞金, 杨丽君, 等. 变压器油纸绝缘热老化酸类及铜类产物生成规律分析 [J].高电压技术, 2010, 36(9): 2160-2166.

    HAO Jian, LIAO Ruijin, YANG Lijun, et al. Analysis on the Generation Rules of Both Acids and Copper Products of Transformer oil paper Insulation Under Thermal Aging [J]. High Voltage Engineering, 2010, 36(9): 2160-2166.

[4] 郭洁, 陈祥献, 黄海. 交叉递归图在变压器铁芯压紧力变化检测中的应用 [J].高电压技术, 2010, 36(11): 2731-2738.

    GUO Jie, CHEN Xiangxian, HUANG Hai. Application of CRP to Detection of Transformer Core Clamping Force Drop [J]. High Voltage Engineering, 2010, 36(11): 2731-2738.

[5] 陈敏, 邱明, 肖立业, 等. 铁芯材料在低温下的磁性能研究 [J].电工电能新技术, 2003, 22(1): 35-38.

    CHEN Min, QIU Ming, XIAO Liye, et al. Study on magnetic characteristics of the ferromagnetic materials at 77K [J]. Advanced Technology of Electrical Engineering and Energy, 2003, 22(1): 25-38.

[6] 马宏忠, 李峥. 电力变压器过热故障及其综合诊断 [J].高电压技术, 2005, 31(4): 9-11.

    MA Hongzhong, LI Zheng. Transformer overh-eating fault and synthesis diagnosis [J]. High Voltage Engineering, 2005, 31(4): 9-11.

[7] LIU Jun, CHEN Weigen, ZHAO Jianbao, et al. Measuring technology of transformer internal temperature based on FBG sensors [J]. High Voltage Engineering, 2009, 35(3): 539-543.

[8] 陈卫中, 李清波, 刘沛. 大型变压器铁芯接地在线监测技术的研究 [J].广东输电与变电技术, 2007(2): 28-32.

    CHEN Weizhong, LI Qingbo, LIU Pei. Study on Online Monitoring Technology to Core Earthing of Large Transformer [J]. Guang Dong Power Transmission Technology, 2007(2): 28-32.

[9] Okan Ozgonenel, Erdal Kilic. Modeling and real time fault identification in Transformers [J]. Journal of the Franklin Institute(S0016-0036), 2008, 3: 205-225.

[10] Wikiund P, Levin M, Pahlavanpour B. Copper dissolution and metal passivators in insulating oil [J]. IEEE Electrical Insulation Magazine(S0883-7554), 2007, 23(4): 6-14.

[11] Alessandra F P, Manuel L B, Paul C R. Bragg system for temperature monitoring in dist-ribution transformer [J]. Electric Power Systems Research(S0378-7796), 2010, 80(1): 77-83.

[12] 赵凯, 党志敏. 四针状氧化锌晶须 /聚四氟乙烯复合材料的电气性能研究 [J].绝缘材料, 2011, 44(3): 49-52.

    ZHAO Kai, DANG Zhimin. Electrical Properties of TZnOw/PTFE Composites [J]. Insulating Materials, 2011, 44(3): 49-52.

[13] 宋海峰, 张翼, 韩乃红, 等. 石英陶瓷的应用 [J].现代技术陶瓷, 2003, 24(3): 37-39.

    SONG Haifeng, ZHANG Yi, HAN Naihong, et al. Applications of Fused Silica Ceramics [J]. Advanced Ceramics, 2003, 24(3): 37-39.

[14] 李川, 张以谟, 赵永贵, 等. 光纤光栅: 原理、技术与传感应用 [M].北京: 科学出版社, 2005.

    LI Chuan, ZHANG Yimo, ZHAO Yonggui, et al. Fiber Grating: Principle, Technology and Sensor Application [M]. Beijing: Science Press, 2005.

[15] 焦明星, 赵恩国. 光纤 Bragg光栅应变、温度交叉敏感问题解决方案 [J].应用光学, 2003, 24(2): 20-23.

    JIAO Mingxing, ZHAO Enguo. Solutions of cross sensitivity of strin and temperature of figer Bragg grating [J]. Applied Optics, 2003, 24(2): 20-23.

李英娜, 刘江, 庄君刚, 闫思安, 陈富云, 李国民, 李川. 光纤 Bragg光栅传感器在变压器铁芯测温中的应用[J]. 光电工程, 2013, 40(4): 144. LI Yingna, LIU Jiang, ZHUANG Jungang, YAN Sian, CHEN Fuyun, LI Guoming, LI Chuan. Application Research of FBG Sensor in Temperature Measurement of Transformer Core[J]. Opto-Electronic Engineering, 2013, 40(4): 144.

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