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- W4381798818 abstract "During the operation of electromagnetic voltage transformers, which are widely used in electric power systems, ferroresonance phenomena may occur. In addition, this equipment is explosive and fire hazardous in nature, features poor energy efficiency, and has large dimensions and weight. Resistive voltage dividers in solid insulation are free from these drawbacks. A topical issue in regard of these devices is to develop a methodology for calculating them for different voltage classes, as well as ways to reduce the influence of external electrostatic fields on conversion accuracy. The article describes a method for calculating a resistive voltage divider for use in insulated neutral networks. The divider mathematical and simulation models necessary for correctly calculating the primary converter design are presented. The results obtained from studies of a resistive voltage divider experimental sample show that by using the developed methodology and simulation models, the primary converter in question can be calculated with accuracy acceptable for engineering applications. Methods for shielding resistive voltage dividers are proposed, the effectiveness of which has been confirmed on verified simulation models of resistive dividers for the 6(10) kV voltage class with simulating their significant pollution. The proposed shielding methods can be used for resistive dividers of higher voltage classes, for which the problem of the influence of external electromagnetic fields is the most acute." @default.
- W4381798818 created "2023-06-24" @default.
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- W4381798818 date "2023-06-23" @default.
- W4381798818 modified "2023-09-25" @default.
- W4381798818 title "Calculating a Resistive Voltage Divider for Insulated Neutral Networks" @default.
- W4381798818 doi "https://doi.org/10.24160/0013-5380-2023-6-67-76" @default.
- W4381798818 hasPublicationYear "2023" @default.
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