LI JIE

Professor   Supervisor of Doctorate Candidates   Supervisor of Master's Candidates

Gender:Male

Alma Mater:大连理工大学

Degree:Doctoral Degree

School/Department:电气工程学院

Discipline:Environmental Engineering. Theory and New Technology of Electrical Engineering. High Voltage and Insulation Technology

Business Address:大连理工大学电气工程学院静电所


Paper Publications

Study on influencing factors of ion current density measurement in corona discharge of HVDC transmission lines

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Indexed by:期刊论文

Date of Publication:2021-01-10

Journal:PLASMA SCIENCE & TECHNOLOGY

Volume:22

Issue:4

ISSN No.:1009-0630

Key Words:HVDC; corona discharge; reduced scale device; Wilson plate; ion current density

Abstract:The ground level ion current density produced by corona discharge in high voltage direct current (HVDC) transmission lines can reflect the operation status of the lines, but the distorted electric field at the edge of the Wilson plate seriously affects the measurement results of ion current density. In order to measure the ground level ion current density accurately and directly, a new reduced scale wire-plate experimental device in which the Wilson plate is flush with the grounding plate is designed. The influence of protective annulus width and the height of the Wilson plate from the grounding plate on ground level ion current density are studied. In addition, the differences between the micro-current galvanometer method and the sampling resistance method in the measurement of ion current density are compared. Finally, the ground level ion current density distributions of unipolar and bipolar HVDC transmission lines are measured. The results show that the edge effect of the Wilson plate can be neglected when the width of protective annulus is less than 2 mm, and the ion current density is nonlinear with the height of the Wilson plate from the grounding plate. Moreover, the internal resistance of the digital voltmeter seriously affects the measurement results and it is necessary to correct the results. Finally, at the same applied voltage, the ground level ion current density in the negative conductor region is higher than that in the positive conductor region.

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