TY - GEN
T1 - Analysis of Ultrasonic Signal Propagation of Partial Discharge in Gas Insulated Switchgear
AU - Xu, Zhuofan
AU - Yan, Jing
AU - Wu, Yanze
AU - Lu, Xianglin
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - Partial discharge (PD) is a significant element contributing to insulation degradation in gas-insulated switchgear (GIS). The ultrasonic detection method is a non-destructive approach commonly employed for PD detection in power equipment, as it is immune to electromagnetic interference. Hence, the paper simulates and analyses the propagation of ultrasonic signals in the interior by building a simplified model of GIS three-dimensional finite element simulation. To analyze the propagation pattern and amplitude change of the partial discharge ultrasonic signal sound pressure in space, the propagation path of the ultrasonic wave and the attenuation of the sound wave in the case of a single PD source. Simulation results show that ultrasonic waves propagate in the form of spherical waves through transient analysis, and ultrasonic waves propagate in the GIS gas chamber with multipath effect and non-line-of-sight effect, the ultrasonic signals attenuate significantly with distance and medium, and the central conductor seriously impedes the propagation of ultrasonic waves. The results of the study have positive significance for the optimal arrangement of ultrasonic sensors, and provide a basis for ultrasonic PD positioning.
AB - Partial discharge (PD) is a significant element contributing to insulation degradation in gas-insulated switchgear (GIS). The ultrasonic detection method is a non-destructive approach commonly employed for PD detection in power equipment, as it is immune to electromagnetic interference. Hence, the paper simulates and analyses the propagation of ultrasonic signals in the interior by building a simplified model of GIS three-dimensional finite element simulation. To analyze the propagation pattern and amplitude change of the partial discharge ultrasonic signal sound pressure in space, the propagation path of the ultrasonic wave and the attenuation of the sound wave in the case of a single PD source. Simulation results show that ultrasonic waves propagate in the form of spherical waves through transient analysis, and ultrasonic waves propagate in the GIS gas chamber with multipath effect and non-line-of-sight effect, the ultrasonic signals attenuate significantly with distance and medium, and the central conductor seriously impedes the propagation of ultrasonic waves. The results of the study have positive significance for the optimal arrangement of ultrasonic sensors, and provide a basis for ultrasonic PD positioning.
KW - finite element method
KW - gas insulated switchgear
KW - partial discharge
KW - ultrasonic
UR - https://www.scopus.com/pages/publications/85215132805
U2 - 10.1109/ICEPE-ST61894.2024.10792566
DO - 10.1109/ICEPE-ST61894.2024.10792566
M3 - 会议稿件
AN - SCOPUS:85215132805
T3 - ICEPE-ST 2024 - 7th International Conference on Electric Power Equipment - Switching Technology
SP - 26
EP - 29
BT - ICEPE-ST 2024 - 7th International Conference on Electric Power Equipment - Switching Technology
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 7th International Conference on Electric Power Equipment - Switching Technology, ICEPE-ST 2024
Y2 - 10 November 2024 through 13 November 2024
ER -