Design of distribution substation earth grid in high resistivity soil using CDEGS

Design of distribution substation earthing grid can be very challenging in high resistivity soils especially in two layer soils where the top layer resistivity is lower than the bottom layer. This paper presents the design of a distribution substation earth grid using Current Distribution Electromag...

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Main Authors: Buba, Sani Dahiru, Wan Ahmad, Wan Fatinhamamah, Ab Kadir, Mohd Zainal Abidin, Gomes, Chandima, Jasni, Jasronita, Osman, Miszaina
Format: Conference or Workshop Item
Language:English
Published: IEEE 2014
Online Access:http://psasir.upm.edu.my/id/eprint/39756/1/Design%20of%20distribution%20substation%20earth%20grid%20in%20high%20resistivity%20soil%20using%20CDEGS.pdf
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author Buba, Sani Dahiru
Wan Ahmad, Wan Fatinhamamah
Ab Kadir, Mohd Zainal Abidin
Gomes, Chandima
Jasni, Jasronita
Osman, Miszaina
author_facet Buba, Sani Dahiru
Wan Ahmad, Wan Fatinhamamah
Ab Kadir, Mohd Zainal Abidin
Gomes, Chandima
Jasni, Jasronita
Osman, Miszaina
author_sort Buba, Sani Dahiru
collection UPM
description Design of distribution substation earthing grid can be very challenging in high resistivity soils especially in two layer soils where the top layer resistivity is lower than the bottom layer. This paper presents the design of a distribution substation earth grid using Current Distribution Electromagnetic Field Grounding Soil Structure Analysis Software (CDEGS). Soil resistivity measurement was carried out at the substation site using a 4-pole Megger earth tester based on Wenner method. The soil structure was determined using RESAP module, while the design was implemented using SESCAD and executed by MALT module. Results indicated a slight reduction of earth grid resistance, 0.6%, 5.8% and 6.5%, respectively as the grid burial depth was varied from 0.5m to 1.5m in steps of 0.5m. The touch and step voltages were found to be lower when surface layer material was not applied and higher when surface layer materials of 3000Q-m and 5000Q-m resistivity were interchangeably applied on the grid surface. It was also found that, the calculated earth grid resistance from IEEE Std. 80-2000 equation was lower than the grid resistance computed by MALT.
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spelling upm.eprints-397562019-11-20T02:19:57Z http://psasir.upm.edu.my/id/eprint/39756/ Design of distribution substation earth grid in high resistivity soil using CDEGS Buba, Sani Dahiru Wan Ahmad, Wan Fatinhamamah Ab Kadir, Mohd Zainal Abidin Gomes, Chandima Jasni, Jasronita Osman, Miszaina Design of distribution substation earthing grid can be very challenging in high resistivity soils especially in two layer soils where the top layer resistivity is lower than the bottom layer. This paper presents the design of a distribution substation earth grid using Current Distribution Electromagnetic Field Grounding Soil Structure Analysis Software (CDEGS). Soil resistivity measurement was carried out at the substation site using a 4-pole Megger earth tester based on Wenner method. The soil structure was determined using RESAP module, while the design was implemented using SESCAD and executed by MALT module. Results indicated a slight reduction of earth grid resistance, 0.6%, 5.8% and 6.5%, respectively as the grid burial depth was varied from 0.5m to 1.5m in steps of 0.5m. The touch and step voltages were found to be lower when surface layer material was not applied and higher when surface layer materials of 3000Q-m and 5000Q-m resistivity were interchangeably applied on the grid surface. It was also found that, the calculated earth grid resistance from IEEE Std. 80-2000 equation was lower than the grid resistance computed by MALT. IEEE 2014 Conference or Workshop Item PeerReviewed text en http://psasir.upm.edu.my/id/eprint/39756/1/Design%20of%20distribution%20substation%20earth%20grid%20in%20high%20resistivity%20soil%20using%20CDEGS.pdf Buba, Sani Dahiru and Wan Ahmad, Wan Fatinhamamah and Ab Kadir, Mohd Zainal Abidin and Gomes, Chandima and Jasni, Jasronita and Osman, Miszaina (2014) Design of distribution substation earth grid in high resistivity soil using CDEGS. In: 2014 IEEE 8th International Power Engineering and Optimization Conference (PEOCO2014), 24-25 Mar. 2014, Langkawi, Kedah, Malaysia. (pp. 508-513). 10.1109/PEOCO.2014.6814482
spellingShingle Buba, Sani Dahiru
Wan Ahmad, Wan Fatinhamamah
Ab Kadir, Mohd Zainal Abidin
Gomes, Chandima
Jasni, Jasronita
Osman, Miszaina
Design of distribution substation earth grid in high resistivity soil using CDEGS
title Design of distribution substation earth grid in high resistivity soil using CDEGS
title_full Design of distribution substation earth grid in high resistivity soil using CDEGS
title_fullStr Design of distribution substation earth grid in high resistivity soil using CDEGS
title_full_unstemmed Design of distribution substation earth grid in high resistivity soil using CDEGS
title_short Design of distribution substation earth grid in high resistivity soil using CDEGS
title_sort design of distribution substation earth grid in high resistivity soil using cdegs
url http://psasir.upm.edu.my/id/eprint/39756/1/Design%20of%20distribution%20substation%20earth%20grid%20in%20high%20resistivity%20soil%20using%20CDEGS.pdf
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