Partial Discharge Characteristics of Tip Defects in Cable Terminations Under AC-Superimposed Switching Impulse Voltage
Fujie Wang, Junjun Yang, Xiaohui Li, Yang Jin, Haodong Cai, Chengxiao Tong, Guibang Qin, Huifang Dong, Yuanyue Zhang, Xuemei Han, Xutao Han, Junhao LiThis study investigates the partial discharge (PD) characteristics of tip defects in cable terminations under switching impulse voltage superimposed on alternating current (AC) voltage. An AC-superimposed switching impulse voltage test platform was established, and the switching-impulse polarity and superposition phase were varied to systematically examine the time-domain characteristics and evolution of the PD. The results show that PD is initiated during switching-impulse superposition when the superimposed voltage reaches the inception condition. During the subsequent AC stage, discharges are mainly concentrated near the zero-crossing point of the first power-frequency cycle, and are primarily governed by the combined effect of residual space charge and the background electric field. Under a positive-polarity switching impulse, the PD intensity exhibits an approximately sinusoidal phase distribution, reaching its maximum at approximately 90° and its minimum at 270°. Under a negative-polarity switching impulse, an inverse sinusoidal distribution is observed. Compared with negative-polarity switching impulses, positive-polarity switching impulses are more conducive to streamer propagation and space-charge accumulation, resulting in more intense discharge activity.