Optimising the thermal environment and the ampacity of underground power cables using the gravitational search algorithm
Author:
Affiliation:
1. Faculty of Technical SciencesUniversity of Priština in Kosovska MitrovicaKneza Miloša 738220Kosovska MitrovicaSerbia
2. Faculty of Electronic EngineeringUniversity of NišAleksandra Medvedeva 1418000NišSerbia
Publisher
Institution of Engineering and Technology (IET)
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology,Control and Systems Engineering
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1049/iet-gtd.2017.0954
Reference33 articles.
1. IEC 60287‐1‐1:2006+AMD1:2014 CSV: ‘Electric cables – calculation of the current rating – part 1‐1: current rating equations (100% load factor) and calculation of losses – general’ International Electrotechnical Commission Switzerland 2014
2. Malmedal K. Bates C. Cain D.: ‘Measurement of soil thermal stability thermal resistivity and underground cable ampacity’.2014 IEEE Rural Electric Power Conf. (REPC) Fort Worth TX USA 18–21 May2014 pp.C5‐1–C5‐12
3. Optimization of power cable and thermal backfill configurations;El‐Kady M.A.;IEEE Trans. Power Appar. Syst.,1982
4. Effects of backfilling on cable ampacity analyzed with the finite element method;León F.;IEEE Trans. Power Deliv.,2008
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