Selection of Wireless Communication Technologies for Embedded Devices using Multi-Criteria Approach and Expert Opinion
Emerging research has shown the significance of communication technologies in the development of embedded systems and devices. Since there are various communication technologies with varying advantages and disadvantages in embedded systems, decision makers in identifying the best alternative can b...
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Format: | Article |
Language: | English |
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Faculty of Engineering and Technology
2022-12-01
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Series: | Nigerian Journal of Technological Development |
Subjects: | |
Online Access: | https://www.journal.njtd.com.ng/index.php/njtd/article/view/1212 |
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author | J. A. Adebisi O. M. Babatunde |
author_facet | J. A. Adebisi O. M. Babatunde |
author_sort | J. A. Adebisi |
collection | DOAJ |
description |
Emerging research has shown the significance of communication technologies in the development of embedded systems and devices. Since there are various communication technologies with varying advantages and disadvantages in embedded systems, decision makers in identifying the best alternative can be prejudiced by various features. Hence, making the selection of the most suitable wireless communication technology a multi-criteria problem. To rank the common wireless communication technologies relevant to the development of embedded systems, this paper presents a multi-criteria decision making (MCDM) approach for analyzing experts opinion on the most preferred wireless communication technologies for embedded devices. To accommodate the subjective nature of experts’ responses, a Fuzzy-TOPSIS MCDM approach is proposed for the ranking wireless communication technologies that can be adopted in the development of embedded systems. Based on the aggregation of responses from experts, the results show that the most preferred wireless communication alternative for embedded application is Wi-Fi with a closeness coefficient () of 0.52, while the least preferred alternative is Long-Term Evolution (LTE) with a of 0.32.
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first_indexed | 2024-04-10T00:21:43Z |
format | Article |
id | doaj.art-0ee5954a656f4b64890b9ba6e9015f32 |
institution | Directory Open Access Journal |
issn | 2437-2110 |
language | English |
last_indexed | 2024-04-10T00:21:43Z |
publishDate | 2022-12-01 |
publisher | Faculty of Engineering and Technology |
record_format | Article |
series | Nigerian Journal of Technological Development |
spelling | doaj.art-0ee5954a656f4b64890b9ba6e9015f322023-03-15T22:32:41ZengFaculty of Engineering and TechnologyNigerian Journal of Technological Development2437-21102022-12-01194Selection of Wireless Communication Technologies for Embedded Devices using Multi-Criteria Approach and Expert OpinionJ. A. Adebisi0O. M. BabatundeUniversity of Namibia Emerging research has shown the significance of communication technologies in the development of embedded systems and devices. Since there are various communication technologies with varying advantages and disadvantages in embedded systems, decision makers in identifying the best alternative can be prejudiced by various features. Hence, making the selection of the most suitable wireless communication technology a multi-criteria problem. To rank the common wireless communication technologies relevant to the development of embedded systems, this paper presents a multi-criteria decision making (MCDM) approach for analyzing experts opinion on the most preferred wireless communication technologies for embedded devices. To accommodate the subjective nature of experts’ responses, a Fuzzy-TOPSIS MCDM approach is proposed for the ranking wireless communication technologies that can be adopted in the development of embedded systems. Based on the aggregation of responses from experts, the results show that the most preferred wireless communication alternative for embedded application is Wi-Fi with a closeness coefficient () of 0.52, while the least preferred alternative is Long-Term Evolution (LTE) with a of 0.32. https://www.journal.njtd.com.ng/index.php/njtd/article/view/1212Wireless communicationEmbedded systemsInternet of ThingsLong-Term EvolutionFuzzy-TOPSIS |
spellingShingle | J. A. Adebisi O. M. Babatunde Selection of Wireless Communication Technologies for Embedded Devices using Multi-Criteria Approach and Expert Opinion Nigerian Journal of Technological Development Wireless communication Embedded systems Internet of Things Long-Term Evolution Fuzzy-TOPSIS |
title | Selection of Wireless Communication Technologies for Embedded Devices using Multi-Criteria Approach and Expert Opinion |
title_full | Selection of Wireless Communication Technologies for Embedded Devices using Multi-Criteria Approach and Expert Opinion |
title_fullStr | Selection of Wireless Communication Technologies for Embedded Devices using Multi-Criteria Approach and Expert Opinion |
title_full_unstemmed | Selection of Wireless Communication Technologies for Embedded Devices using Multi-Criteria Approach and Expert Opinion |
title_short | Selection of Wireless Communication Technologies for Embedded Devices using Multi-Criteria Approach and Expert Opinion |
title_sort | selection of wireless communication technologies for embedded devices using multi criteria approach and expert opinion |
topic | Wireless communication Embedded systems Internet of Things Long-Term Evolution Fuzzy-TOPSIS |
url | https://www.journal.njtd.com.ng/index.php/njtd/article/view/1212 |
work_keys_str_mv | AT jaadebisi selectionofwirelesscommunicationtechnologiesforembeddeddevicesusingmulticriteriaapproachandexpertopinion AT ombabatunde selectionofwirelesscommunicationtechnologiesforembeddeddevicesusingmulticriteriaapproachandexpertopinion |