This paper aims to address the problem of equipment fault prevention by preventive diagnosis of its insulation. Preventive diagnosis, as the name implies, means the accurate judgment made in advance on when power equipment can be replaced from on-site service before its breakdown. The experimentation, via voltage-stress aging tests and partial-discharge (PD) measurements, investigates the degree to which the insulation for cast-resin current transformers deteriorates. Five cast-resin current transformers of various insulation statuses are used for measurement in the laboratory. The measured discharge amounts are rearranged into parameters such as the average discharge amount and the discharge zone, and the relationships between the development trends of these two parameters' and the speed at which the insulation deterioration evolutional tracks are discussed in this study. This paper, aimed at equipment fault prevention by pre-diagnosis of the insulation used, applies high-voltage aging tests and PD measurements to investigate the speed of insulation deterioration evolutional track for cast-resin current transformers. This investigation discovers that the way in which the insulation deterioration evolutional tracks can be divided into three stages. With the wavelet transformation, we can clearly demonstrate the speed of insulation deterioration evolutional track via an insulation-aging characteristic diagram, which comprises the average discharge amounts and the discharge zones, to find out the reference criteria for imminent faults or failures. Finally, the "lscr " shape is proposed which is very helpful for the pre-diagnosis of cast-resin current transformers.
No takes yet. Share an insight, caveat, or question.
Lin et al. (2008) studied this question.
Synapse has enriched 4 closely related papers on similar clinical questions. Consider them for comparative context: