Title :
Reliability analysis on operation of a kind, of All Fiber-Optic Current Transformer
Author :
Xiang Liu ; Xiaozhou Wang ; Hao Xiao ; Boyang Liu
Author_Institution :
China Electr. Power Res. Inst., Beijing, China
Abstract :
Compared with other kinds of electronic instrument transformers, the All Fiber-Optic Current Transformer (FOCT) have the advantages of high accuracy, wide dynamic range, strong ability to resist electromagnetic interference environment, simple and flexible of installation. But because of the short-time application, the operation reliability of FOCT can´t be assessed base on the operational log we have now. According to this situation, the study on the structure and work environment had been done, in order to find the main environment parameter which affect on the aging of FOCT. Then the accelerated aging tests had been done on the components of a FOCT such as photo detector, optical source and optical phase modulator Then the mean time between failures (MTBF) of these components had been estimated base on the results of aging tests. Finally we can assess the operation reliability of FOCT. The results indicated that the method of reliability analysis can be applied on any kinds of electronic instrument transformers. The current transformer which was studied on can work no less than 20 years in normal conditions. It can meet the requirement on electronic current transformer of users´.
Keywords :
ageing; current transformers; failure analysis; fibre optic sensors; instrument transformers; life testing; optical modulation; phase modulation; photodetectors; reliability; accelerated aging test; all-fiber optic current transformer; electronic instrument transformer; mean time between failure; operation reliability; optical phase modulator; optical source; photodetector; reliability analysis; Accelerated aging; Heating; Optical crosstalk; Optical sensors; Optical variables measurement; Reliability; All Fiber-Optic Current Transformer (FOCT); Optical Components; accelerated aging test; mean time between failures (MTBF); operation reliability;
Conference_Titel :
Electricity Distribution (CICED), 2014 China International Conference on
Conference_Location :
Shenzhen
DOI :
10.1109/CICED.2014.6991959