Impact of split factor value on the safe design of distribution substation earth grid
Split factor is a fundamental consideration when designing a distribution substation earth grid. Arbitrary choice of split factor in earth grid design process may lead to technical and economic implications resulting in underestimated or overestimated designs. In this paper, a distribution substatio...
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2023
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my.uniten.dspace-218272023-05-16T10:45:36Z Impact of split factor value on the safe design of distribution substation earth grid Buba S.D. Ahmad W.F.W. Ab. Kadir M.Z.A. Gomes C. Jasni J. Osman M. 55121228700 57215968575 25947297000 57201335285 25632671500 7201930315 Split factor is a fundamental consideration when designing a distribution substation earth grid. Arbitrary choice of split factor in earth grid design process may lead to technical and economic implications resulting in underestimated or overestimated designs. In this paper, a distribution substation earth grid was designed using SESCAD and executed in MALT module of CDEGS. The energization current was varied by 100%, 75%, 50% and 25% of the short circuit current available at the secondary terminals of the upstream transformer to determine the impact on safety criteria of the earth grid. Results indicated that, the EPR for 100% fault current was higher, whereas the step and touch voltages were lower. It was also revealed that, there was no difference in step and touch voltages when energization current was set at 75%, 50% and 25%. © 2014 IEEE. Final 2023-05-16T02:45:36Z 2023-05-16T02:45:36Z 2014 Conference Paper 10.1109/ICLP.2014.6973225 2-s2.0-84919808051 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84919808051&doi=10.1109%2fICLP.2014.6973225&partnerID=40&md5=0471dfecc445732b85658c42669b08b6 https://irepository.uniten.edu.my/handle/123456789/21827 6973225 762 767 All Open Access, Green Institute of Electrical and Electronics Engineers Inc. Scopus |
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Split factor is a fundamental consideration when designing a distribution substation earth grid. Arbitrary choice of split factor in earth grid design process may lead to technical and economic implications resulting in underestimated or overestimated designs. In this paper, a distribution substation earth grid was designed using SESCAD and executed in MALT module of CDEGS. The energization current was varied by 100%, 75%, 50% and 25% of the short circuit current available at the secondary terminals of the upstream transformer to determine the impact on safety criteria of the earth grid. Results indicated that, the EPR for 100% fault current was higher, whereas the step and touch voltages were lower. It was also revealed that, there was no difference in step and touch voltages when energization current was set at 75%, 50% and 25%. © 2014 IEEE. |
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55121228700 |
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55121228700 Buba S.D. Ahmad W.F.W. Ab. Kadir M.Z.A. Gomes C. Jasni J. Osman M. |
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Conference Paper |
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Buba S.D. Ahmad W.F.W. Ab. Kadir M.Z.A. Gomes C. Jasni J. Osman M. |
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Buba S.D. Ahmad W.F.W. Ab. Kadir M.Z.A. Gomes C. Jasni J. Osman M. Impact of split factor value on the safe design of distribution substation earth grid |
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Buba S.D. |
title |
Impact of split factor value on the safe design of distribution substation earth grid |
title_short |
Impact of split factor value on the safe design of distribution substation earth grid |
title_full |
Impact of split factor value on the safe design of distribution substation earth grid |
title_fullStr |
Impact of split factor value on the safe design of distribution substation earth grid |
title_full_unstemmed |
Impact of split factor value on the safe design of distribution substation earth grid |
title_sort |
impact of split factor value on the safe design of distribution substation earth grid |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2023 |
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1806425672310063104 |