Partial Discharge Characteristics of Cable Terminations with Stress Cone Misalignment Defects Under AC-Superimposed Switching Impulse Voltage

This study investigates the partial discharge (PD) behavior of a 10 kV XLPE cable termination with a controlled stress cone misalignment defect under AC-superimposed switching impulse voltage. A test platform was developed to apply positive- or negative-polarity switching impulses at specified AC phase angles. Repeated measurements showed that the impulse could initiate PD at the defect and that PD activity could persist for several AC cycles after the impulse decayed. The PD pulse count and maximum sensor-output amplitude during the subsequent AC stage depended strongly on the superposition phase angle. Under positive-polarity impulse superposition, both parameters showed an approximately sinusoidal phase dependence. Under negative-polarity impulse superposition, detectable post-impulse PD was strongest when the impulse was applied during the negative AC half-cycle and reached its maximum for 270° superposition. Overall, positive-polarity impulse superposition produced stronger PD signals than negative-polarity impulse superposition. These observations are consistent with the combined influence of the instantaneous local field during the impulse and the field associated with residual interfacial charge during subsequent AC cycles. The results provide experimental evidence for assessing cable-termination defects under switching-overvoltage conditions.

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Publication Details

Journal
Energies
Published
2026-09-29
DOI
https://doi.org/10.3390/en19194620
Primary Topic
High voltage insulation and dielectric phenomena
Type
article
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Partial Discharge Characteristics of Cable Terminations with Stress Cone Misalignment Defects Under AC-Superimposed Switching Impulse Voltage

Chengxiao Tong, Yunzhou Zhang, Yang Jin, Huifang Dong et al.
Energies
High voltage insulation and dielectric phenomena
article

Partial Discharge Characteristics of Cable Terminations with Stress Cone Misalignment Defects Under AC-Superimposed Switching Impulse Voltage

Chengxiao Tong, Yunzhou Zhang, Yang Jin, Huifang Dong, Fujie Wang, Xiaohui Li, Junjun Yang, Haodong Cai, Xuemei Han, Guibang Qin, Xutao Han, Jingzhi Yang
article en

Abstract

This study investigates the partial discharge (PD) behavior of a 10 kV XLPE cable termination with a controlled stress cone misalignment defect under AC-superimposed switching impulse voltage. A test platform was developed to apply positive- or negative-polarity switching impulses at specified AC phase angles. Repeated measurements showed that the impulse could initiate PD at the defect and that PD activity could persist for several AC cycles after the impulse decayed. The PD pulse count and maximum sensor-output amplitude during the subsequent AC stage depended strongly on the superposition phase angle. Under positive-polarity impulse superposition, both parameters showed an approximately sinusoidal phase dependence. Under negative-polarity impulse superposition, detectable post-impulse PD was strongest when the impulse was applied during the negative AC half-cycle and reached its maximum for 270° superposition. Overall, positive-polarity impulse superposition produced stronger PD signals than negative-polarity impulse superposition. These observations are consistent with the combined influence of the instantaneous local field during the impulse and the field associated with residual interfacial charge during subsequent AC cycles. The results provide experimental evidence for assessing cable-termination defects under switching-overvoltage conditions.

EnergiesVol. 19(19)
State Grid Corporation of China (China) (CN), State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University (CN)
Openalex Percentile: Top 26%
High voltage insulation and dielectric phenomena
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