A fuzzy-measurement algorithm for assessing the impact of EMF on health
In this paper we propose a novel fuzzy-measurement algorithm for the assessment of the impact of electromagnetic fields on human health. The algorithm was developed to unify complex and diverse measuring methodologies, standards and fuzzy logic control into a single entity – a comprehensive methodol...
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doaj-8ca1de05d7384b568efca8052c36324d2020-11-25T00:18:42ZengVINCA Institute of Nuclear SciencesNuclear Technology and Radiation Protection1451-39941452-81852019-01-0134212913710.2298/NTRP190121018M1451-39941900018MA fuzzy-measurement algorithm for assessing the impact of EMF on healthMilić Saša D.0Vulević Branislav D.1Stojić Đorđe M.2Electrical Engineering Institute “Nikola Tesla”, University of Belgrade, Belgrade, SerbiaElectrical Engineering Institute “Nikola Tesla”, University of Belgrade, Belgrade, SerbiaElectrical Engineering Institute “Nikola Tesla”, University of Belgrade, Belgrade, SerbiaIn this paper we propose a novel fuzzy-measurement algorithm for the assessment of the impact of electromagnetic fields on human health. The algorithm was developed to unify complex and diverse measuring methodologies, standards and fuzzy logic control into a single entity – a comprehensive methodology for the assessment of the impact of electromagnetic fields on humans. The algorithm will enable multiple criteria automated assessment based on measurement results and the existing electromagnetic field standards, guidelines and recommendations in order to avoid potential subjectivity and varied approach. We have therefore considered two classes of fuzzy logic systems (Type-1 and Type-2) and developed a graphic model intended for scenarios where expert opinions differ and where such a difference might significantly affect the assessment. The fuzzy model was developed on the principles of the proposed algorithm and this resulted in a unique procedure for the assessment of all types of electro- magnetic fields on human health. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. TR 33024]http://www.doiserbia.nb.rs/img/doi/1451-3994/2019/1451-39941900018M.pdfmeasurement of electromagnetic fieldhuman healthfuzzy measurement algorithmfuzzy logic systems |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Milić Saša D. Vulević Branislav D. Stojić Đorđe M. |
spellingShingle |
Milić Saša D. Vulević Branislav D. Stojić Đorđe M. A fuzzy-measurement algorithm for assessing the impact of EMF on health Nuclear Technology and Radiation Protection measurement of electromagnetic field human health fuzzy measurement algorithm fuzzy logic systems |
author_facet |
Milić Saša D. Vulević Branislav D. Stojić Đorđe M. |
author_sort |
Milić Saša D. |
title |
A fuzzy-measurement algorithm for assessing the impact of EMF on health |
title_short |
A fuzzy-measurement algorithm for assessing the impact of EMF on health |
title_full |
A fuzzy-measurement algorithm for assessing the impact of EMF on health |
title_fullStr |
A fuzzy-measurement algorithm for assessing the impact of EMF on health |
title_full_unstemmed |
A fuzzy-measurement algorithm for assessing the impact of EMF on health |
title_sort |
fuzzy-measurement algorithm for assessing the impact of emf on health |
publisher |
VINCA Institute of Nuclear Sciences |
series |
Nuclear Technology and Radiation Protection |
issn |
1451-3994 1452-8185 |
publishDate |
2019-01-01 |
description |
In this paper we propose a novel fuzzy-measurement algorithm for the assessment of the impact of electromagnetic fields on human health. The algorithm was developed to unify complex and diverse measuring methodologies, standards and fuzzy logic control into a single entity – a comprehensive methodology for the assessment of the impact of electromagnetic fields on humans. The algorithm will enable multiple criteria automated assessment based on measurement results and the existing electromagnetic field standards, guidelines and recommendations in order to avoid potential subjectivity and varied approach. We have therefore considered two classes of fuzzy logic systems (Type-1 and Type-2) and developed a graphic model intended for scenarios where expert opinions differ and where such a difference might significantly affect the assessment. The fuzzy model was developed on the principles of the proposed algorithm and this resulted in a unique procedure for the assessment of all types of electro- magnetic fields on human health. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. TR 33024] |
topic |
measurement of electromagnetic field human health fuzzy measurement algorithm fuzzy logic systems |
url |
http://www.doiserbia.nb.rs/img/doi/1451-3994/2019/1451-39941900018M.pdf |
work_keys_str_mv |
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