End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment

Internet of Things (IoT) is operationally defined in this study as “an end-to-end fully-informed network associated with 433 MHz outdoor propagation environment”. The work is motivated by the fact that minimizing delay and transmission time is crucial to maintaining fully-informed network under 433...

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محفوظ في:
التفاصيل البيبلوغرافية
المؤلفون الرئيسيون: Abubakar, Adamu, El-Gammal, Mohamed Tarek, Alarood, Ala Abdusalam
التنسيق: مقال
اللغة:English
English
منشور في: University of Bahrain 2022
الموضوعات:
الوصول للمادة أونلاين:http://irep.iium.edu.my/84894/1/84894_End-to-end%20fully-informed%20network.pdf
http://irep.iium.edu.my/84894/2/84894_End-to-end%20fully-informed%20network_SCOPUS.pdf
http://irep.iium.edu.my/84894/
https://journal.uob.edu.bh/bitstream/handle/123456789/3972/IJCDS-1101110-1570659144.pdf?sequence=4&isAllowed=y
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spelling my.iium.irep.848942022-06-13T00:19:37Z http://irep.iium.edu.my/84894/ End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment Abubakar, Adamu El-Gammal, Mohamed Tarek Alarood, Ala Abdusalam Q350 Information theory Internet of Things (IoT) is operationally defined in this study as “an end-to-end fully-informed network associated with 433 MHz outdoor propagation environment”. The work is motivated by the fact that minimizing delay and transmission time is crucial to maintaining fully-informed network under 433 MHz propagation. This is intended to answers two questions: “how transmission delay affect early detection of network failure:” and “how faster is necessary to recover from a network failure?”. Endto- end fully-informed network was designed and constructed. An experimental analysis for data transmission on the network were performed. The experimental analysis has shown that the antenna height and the distance between transmitter and receiver have the most effective impact on the transmission success. Furthermore, the high rate bandwidths have shown a negative effect on the data integrity and total dysfunctionality above 50 meters. Thus, in end-to-end fully-informed network, it is revealed that transmitting more than 8 KB (at both 57600 bps and 115200 bps) has a drawback in end-to-end fully-informed network. However, transmission over 80 meters the most stable bandwidth that keeps the data integrity in end-to-end network is (9600 bps). Experimental analysis reveals that delay is thus reduced as well as transmission times increases. University of Bahrain 2022-04-15 Article PeerReviewed application/pdf en http://irep.iium.edu.my/84894/1/84894_End-to-end%20fully-informed%20network.pdf application/pdf en http://irep.iium.edu.my/84894/2/84894_End-to-end%20fully-informed%20network_SCOPUS.pdf Abubakar, Adamu and El-Gammal, Mohamed Tarek and Alarood, Ala Abdusalam (2022) End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment. International Journal of Computing and Digital Systems, 11 (1). pp. 1329-1373. ISSN 2210-142X https://journal.uob.edu.bh/bitstream/handle/123456789/3972/IJCDS-1101110-1570659144.pdf?sequence=4&isAllowed=y 10.12785/ijcds/1101110
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
English
topic Q350 Information theory
spellingShingle Q350 Information theory
Abubakar, Adamu
El-Gammal, Mohamed Tarek
Alarood, Ala Abdusalam
End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment
description Internet of Things (IoT) is operationally defined in this study as “an end-to-end fully-informed network associated with 433 MHz outdoor propagation environment”. The work is motivated by the fact that minimizing delay and transmission time is crucial to maintaining fully-informed network under 433 MHz propagation. This is intended to answers two questions: “how transmission delay affect early detection of network failure:” and “how faster is necessary to recover from a network failure?”. Endto- end fully-informed network was designed and constructed. An experimental analysis for data transmission on the network were performed. The experimental analysis has shown that the antenna height and the distance between transmitter and receiver have the most effective impact on the transmission success. Furthermore, the high rate bandwidths have shown a negative effect on the data integrity and total dysfunctionality above 50 meters. Thus, in end-to-end fully-informed network, it is revealed that transmitting more than 8 KB (at both 57600 bps and 115200 bps) has a drawback in end-to-end fully-informed network. However, transmission over 80 meters the most stable bandwidth that keeps the data integrity in end-to-end network is (9600 bps). Experimental analysis reveals that delay is thus reduced as well as transmission times increases.
format Article
author Abubakar, Adamu
El-Gammal, Mohamed Tarek
Alarood, Ala Abdusalam
author_facet Abubakar, Adamu
El-Gammal, Mohamed Tarek
Alarood, Ala Abdusalam
author_sort Abubakar, Adamu
title End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment
title_short End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment
title_full End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment
title_fullStr End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment
title_full_unstemmed End-to-end fully-informed network nodes associated with 433 MHz outdoor propagation environment
title_sort end-to-end fully-informed network nodes associated with 433 mhz outdoor propagation environment
publisher University of Bahrain
publishDate 2022
url http://irep.iium.edu.my/84894/1/84894_End-to-end%20fully-informed%20network.pdf
http://irep.iium.edu.my/84894/2/84894_End-to-end%20fully-informed%20network_SCOPUS.pdf
http://irep.iium.edu.my/84894/
https://journal.uob.edu.bh/bitstream/handle/123456789/3972/IJCDS-1101110-1570659144.pdf?sequence=4&isAllowed=y
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