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Study on Breakdown Characteristics of On-Train High-Voltage Combined Electrical Apparatus Under Lightning Transient Conditions
by
Zhang, Kun
, Liu, Yide
, Tan, Jiuding
, Yang, Sile
, Sun, Jixing
in
Analysis
/ breakdown characteristics
/ Breakdowns
/ combined electrical apparatus
/ electric field
/ Electric fields
/ Electric properties
/ Electrodes
/ EMU
/ High speed rail
/ High speed trains
/ high-voltage box
/ Home appliances
/ overvoltage
/ Railroad accidents & safety
2025
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Study on Breakdown Characteristics of On-Train High-Voltage Combined Electrical Apparatus Under Lightning Transient Conditions
by
Zhang, Kun
, Liu, Yide
, Tan, Jiuding
, Yang, Sile
, Sun, Jixing
in
Analysis
/ breakdown characteristics
/ Breakdowns
/ combined electrical apparatus
/ electric field
/ Electric fields
/ Electric properties
/ Electrodes
/ EMU
/ High speed rail
/ High speed trains
/ high-voltage box
/ Home appliances
/ overvoltage
/ Railroad accidents & safety
2025
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Study on Breakdown Characteristics of On-Train High-Voltage Combined Electrical Apparatus Under Lightning Transient Conditions
by
Zhang, Kun
, Liu, Yide
, Tan, Jiuding
, Yang, Sile
, Sun, Jixing
in
Analysis
/ breakdown characteristics
/ Breakdowns
/ combined electrical apparatus
/ electric field
/ Electric fields
/ Electric properties
/ Electrodes
/ EMU
/ High speed rail
/ High speed trains
/ high-voltage box
/ Home appliances
/ overvoltage
/ Railroad accidents & safety
2025
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Study on Breakdown Characteristics of On-Train High-Voltage Combined Electrical Apparatus Under Lightning Transient Conditions
Journal Article
Study on Breakdown Characteristics of On-Train High-Voltage Combined Electrical Apparatus Under Lightning Transient Conditions
2025
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Overview
The high-voltage system of high-speed trains is now in the form of combined electrical apparatus, which has a high probability of insulation breakdown due to frequent overvoltage during operation. To solve this issue, an electric field simulation model of the high-voltage combined electrical system was established, the electric field distribution of the high-voltage box electrode under overvoltage operating conditions was analyzed, and the air breakdown characteristics under field action were studied. The study shows that under overvoltage conditions, the electric field intensity near the small electrodes of the combined electrical unit is higher than the air breakdown field intensity, and the statistical time delay is approximately 5.94 μs when 150 kV voltage is applied. When the size of the connected electrode is doubled and 150 kV voltage is applied, the statistical delay is about 7.20 μs and the probability of discharge is reduced. Further installation of an insulating partition between the circuit breaker and the ground switch completely solved the problem of low electrical gap insulation capacity. Combined with impulse withstand tests, the effectiveness of the electrode size design was verified, and the research results provided theoretical support for the miniaturization and high-reliability design of vehicle-mounted high-voltage electrical appliances.
Publisher
MDPI AG
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