Journal
IEEE TRANSACTIONS ON DIELECTRICS AND ELECTRICAL INSULATION
Volume 30, Issue 1, Pages 403-412Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TDEI.2022.3210888
Keywords
Corona; Electrodes; Discharges (electric); Voltage measurement; Threshold voltage; Atmospheric modeling; Space charge; AC/DC combined voltage; corona discharge; corona inception phase; rod-plane electrodes
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This article explores the effects of DC polarity, DC proportion, rod radius, and rod-plane distance on corona inception phase under combined AC/DC voltage. The results show that the normalized amplitude under equivalent positive corona conforms to normal distribution. Furthermore, with the increase of DC proportion, the dispersion of the corona inception phase under equivalent positive corona becomes more obvious than that under equivalent negative corona.
Under AC/DC combined voltage, the corona inception phase corresponding to AC voltage is not a fixed value and will change within a certain range. In this article, the effects of DC polarity, DC proportion, rod radius, and rod-plane distance on corona inception phase were explored. The results showed that the normalized amplitude under equivalent positive corona conformed to normal distribution. In addition, with the increase of DC proportion, the distribution of corona inception phase under equivalent positive corona was more dispersed, and the dispersion changed more obviously than that under equivalent negative corona. When the DC proportion was increased from 25% to 75%, the interval width of phase under equivalent positive corona and equivalent negative corona increased by at most 50 degrees and 15 degrees, respectively. A fluidmodel was built to explain the change of phase dispersion from the perspective of space charge. The existenceof corona inception phase resulted in the difference between AC instantaneous voltage and AC peak voltage at corona inception time, which was of great significance to the study of corona inception.
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