@inproceedings{100900ae3f0447cfa79c8b7d0874fb70,
title = "Safety Consideration and Design of High Voltage Cable for Electric Vehicle",
abstract = "Electrical Vehicle (EV) is a prominent solution of fuel crises and environmental pollution for global transportation sector. But EVs are also facing several challenges; one of them is pertaining to the insulation coordination of high voltage cable. Currently, the voltages of the power supply and the battery in heavy electric vehicle are far higher than the level that people can endure. Further, due to battery heating and heat produced by other electrical components in EV, temperature of the overall electrical system in EV increases and it causes serious concerns for safety issues mainly for the insulation property of the cable. Therefore appropriate consideration of temperature effect in the insulation design of EV cable is paramount. Conductivity (σ) of cable insulation is known to be a very strong and highly nonlinear function of electric field and the temperature.",
keywords = "cable insulation, electric vehicle, finite difference method, high voltage cable, temperature distribution",
author = "Mahipal Bukya and Rajesh Kumar",
note = "Publisher Copyright: {\textcopyright} 2020 IEEE.; 2020 International Conference on Power Electronics and IoT Applications in Renewable Energy and its Control, PARC 2020 ; Conference date: 28-02-2020 Through 29-02-2020",
year = "2020",
month = feb,
doi = "10.1109/PARC49193.2020.236661",
language = "English",
series = "2020 International Conference on Power Electronics and IoT Applications in Renewable Energy and its Control, PARC 2020",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "485--490",
booktitle = "2020 International Conference on Power Electronics and IoT Applications in Renewable Energy and its Control, PARC 2020",
address = "United States",
}