Computation of magnetic field from quadruple tower transmission lines in Malaysia
Public concern related to the adverse health effects of magnetic fields emanating from overhead power transmission lines resulted in a growing need to develop methods aimed at reducing such hazards. This paper presents the results of magnetic field simulation studies conducted on the quadruple tower...
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my.uniten.dspace-309792024-04-18T11:01:17Z Computation of magnetic field from quadruple tower transmission lines in Malaysia Said I. Hussain H.B. 56186718000 35607922800 Electric lines Health hazards Light transmission Magnetic fields Magnetic materials Towers Transmission line theory Adverse health effects Magnetic field reduction Magnetic field simulation Malaysia Phase arrangement Power transmission lines Public concern Simulation studies Transmission line Electromagnetic field effects Public concern related to the adverse health effects of magnetic fields emanating from overhead power transmission lines resulted in a growing need to develop methods aimed at reducing such hazards. This paper presents the results of magnetic field simulation studies conducted on the quadruple tower transmission lines currently used in Malaysia. The results of the simulation studies were categorized to indicate the best conductor phase arrangement for lowest peak magnetic field, lowest average magnetic field and lowest magnetic field at the edge of the right-of-way. It was found that magnetic field reduction of more than 91.5% can be achieved using proper conductor phase arrangement. Final 2023-12-29T07:57:09Z 2023-12-29T07:57:09Z 2008 Conference Paper 10.1109/UPEC.2008.4651632 2-s2.0-68949205649 https://www.scopus.com/inward/record.uri?eid=2-s2.0-68949205649&doi=10.1109%2fUPEC.2008.4651632&partnerID=40&md5=08670e513f247f83fd41d078cb10eed8 https://irepository.uniten.edu.my/handle/123456789/30979 4651632 Scopus |
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Electric lines Health hazards Light transmission Magnetic fields Magnetic materials Towers Transmission line theory Adverse health effects Magnetic field reduction Magnetic field simulation Malaysia Phase arrangement Power transmission lines Public concern Simulation studies Transmission line Electromagnetic field effects |
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Electric lines Health hazards Light transmission Magnetic fields Magnetic materials Towers Transmission line theory Adverse health effects Magnetic field reduction Magnetic field simulation Malaysia Phase arrangement Power transmission lines Public concern Simulation studies Transmission line Electromagnetic field effects Said I. Hussain H.B. Computation of magnetic field from quadruple tower transmission lines in Malaysia |
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Public concern related to the adverse health effects of magnetic fields emanating from overhead power transmission lines resulted in a growing need to develop methods aimed at reducing such hazards. This paper presents the results of magnetic field simulation studies conducted on the quadruple tower transmission lines currently used in Malaysia. The results of the simulation studies were categorized to indicate the best conductor phase arrangement for lowest peak magnetic field, lowest average magnetic field and lowest magnetic field at the edge of the right-of-way. It was found that magnetic field reduction of more than 91.5% can be achieved using proper conductor phase arrangement. |
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56186718000 |
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56186718000 Said I. Hussain H.B. |
format |
Conference Paper |
author |
Said I. Hussain H.B. |
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Said I. |
title |
Computation of magnetic field from quadruple tower transmission lines in Malaysia |
title_short |
Computation of magnetic field from quadruple tower transmission lines in Malaysia |
title_full |
Computation of magnetic field from quadruple tower transmission lines in Malaysia |
title_fullStr |
Computation of magnetic field from quadruple tower transmission lines in Malaysia |
title_full_unstemmed |
Computation of magnetic field from quadruple tower transmission lines in Malaysia |
title_sort |
computation of magnetic field from quadruple tower transmission lines in malaysia |
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2023 |
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1806426471851360256 |
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13.214268 |