Guo Shugao, Liu Yunpeng, Li Huan, Sun Lu, Liu Hongliang, Rao Qun, Fan Xiaozhou
State Grid Hebei Electric Power Research Institute, Shijiazhuang 050021, China.
State Key Laboratory of Alternate Electrical power system with Renewable Energy Sources, North China Electric Power University, Baoding 071003, China.
Sensors (Basel). 2020 Apr 7;20(7):2062. doi: 10.3390/s20072062.
In order to realize distributed measurement of transformer winding temperature and deformation, a transformer winding modification scheme with a built-in distributed optical fiber was designed. By laying a single-mode fiber and a multi-mode fiber on the transformer winding, the Brillouin optical time domain reflection technique (BOTDR) and the Raman optical time domain reflection technique (ROTDR) are used to measure the strain and temperature of the winding to complete the more accurate winding deformation detection. The accuracy of strain and temperature sensing of this scheme was verified by simulation. Then, according to the scheme, a winding model was actually wound, and the deformation and temperature rise tests were carried out. The test results show that this scheme can not only realize the deformation detection and positioning of the winding, but can also realize the measurement of the winding temperature; the temperature measurement accuracy reached ±0.5 °C, the strain measurement accuracy was 200 με, and spatial resolution was up to 5 m. In this experiment, the deformation location with the precision of 2 turns was realized on the experimental winding.
为实现变压器绕组温度和变形的分布式测量,设计了一种内置分布式光纤的变压器绕组改造方案。通过在变压器绕组上铺设单模光纤和多模光纤,利用布里渊光时域反射技术(BOTDR)和拉曼光时域反射技术(ROTDR)测量绕组的应变和温度,以完成更精确的绕组变形检测。通过仿真验证了该方案应变和温度传感的精度。然后,根据该方案实际绕制了绕组模型,并进行了变形和温升试验。试验结果表明,该方案不仅能实现绕组的变形检测和定位,还能实现绕组温度的测量;温度测量精度达到±0.5℃,应变测量精度为200με,空间分辨率高达5m。在本实验中,在实验绕组上实现了精度为2匝的变形定位。