ScholarMate
客服热线:400-1616-289

Partial Discharge Ultrasonic Detection Based on Sagnac Optical Interference Technique

Jiang, Jun*; He, Yaqian; Song, Yu; Wang, Ruizhi; Li, Xiaohan; Ma, Guoming; Wu, Qiang; Liu, Jun
Science Citation Index Expanded
南昌航空大学; 南京航空航天大学; test; 1; TEST

摘要

Partial discharge (PD) ultrasonic detection based on optical interference technique shows practical advantages such as anti-electromagnetic interference, intrinsic safety, and implantability of power equipment, but sensitivity improvement is still a necessity. In this article, the sensitivity is improved by polarization state control and interference structure parameter adjustment. For the disorder of polarization state in the interference system, the detection sensitivity within 20-300 kHz can be improved by 6.48 dB with the help of polarization control. In order to meet the PD detection requirements for various power apparatus, an optical PD detection method based on Sagnac interference structure is proposed. The frequency response can be dynamically adjusted according to the type of PD signals. For the typical PD model in the air, the frequency response of the sensor can be controlled at 20-100 kHz by using a 2000 m delay fiber, and the detection amplitude of the sensor is 5.85 times than that of the conventional piezoelectric transducer (PZT) sensor. For the detection of PD signals in insulating oil, the frequency response can be moved to 20-160 kHz by using a delay fiber with length of 500 m, and the detection amplitude of the sensor is 12.68 times than that of PZT sensor. Therefore, the proposed PD sensor based on the Sagnac interference shows the advantages of adjustable frequency response, multiscenario application, and high detection sensitivity.

关键词

Interference optical fiber sensor (OFS) partial discharge (PD) polarization state sensitivity