Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network

The fog radio access network (F-RAN) is considered an efficient architecture for caching technology as it can support both edge and centralized caching due to the backhauling of the fog access points (F-APs). Successful transmission probability (STP), delay, and energy efficiency (EE) are key perfor...

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Main Authors: Bani-Bakr, Alaa, Dimyati, Kaharudin, Hindia, Mhd Nour, Wong, Wei Ru, Tengku Mohmed Noor Izam, Tengku Faiz
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Published: MDPI 2021
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Online Access:http://eprints.um.edu.my/27974/
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spelling my.um.eprints.279742022-06-22T05:03:16Z http://eprints.um.edu.my/27974/ Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network Bani-Bakr, Alaa Dimyati, Kaharudin Hindia, Mhd Nour Wong, Wei Ru Tengku Mohmed Noor Izam, Tengku Faiz QA75 Electronic computers. Computer science TA Engineering (General). Civil engineering (General) TK Electrical engineering. Electronics Nuclear engineering The fog radio access network (F-RAN) is considered an efficient architecture for caching technology as it can support both edge and centralized caching due to the backhauling of the fog access points (F-APs). Successful transmission probability (STP), delay, and energy efficiency (EE) are key performance metrics for F-RAN. Therefore, this paper proposes a proactive cache placement scheme that jointly optimizes STP, delay, and EE in wireless backhauled cache-enabled F-RAN. First, expressions of the association probability, STP, average delay, and EE are derived using stochastic geometry tools. Then, the optimization problem is formulated to obtain the optimal cache placement that maximizes the weighted sum of STP, EE, and negative delay. To solve the optimization problem, this paper proposes the normalized cuckoo search algorithm (NCSA), which is a novel modified version of the cuckoo search algorithm (CSA). In NCSA, after generating the solutions randomly via Levy flight and random walk, a simple bound is applied, and then the solutions are normalized to assure their feasibility. The numerical results show that the proposed joint cache placement scheme can effectively achieve significant performance improvement by up to 15% higher STP, 45% lower delay, and 350% higher EE over the well-known benchmark caching schemes. MDPI 2021-08 Article PeerReviewed Bani-Bakr, Alaa and Dimyati, Kaharudin and Hindia, Mhd Nour and Wong, Wei Ru and Tengku Mohmed Noor Izam, Tengku Faiz (2021) Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network. Electronics, 10 (15). ISSN 2079-9292, DOI https://doi.org/10.3390/electronics10151847 <https://doi.org/10.3390/electronics10151847>. 10.3390/electronics10151847
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QA75 Electronic computers. Computer science
TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
spellingShingle QA75 Electronic computers. Computer science
TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
Bani-Bakr, Alaa
Dimyati, Kaharudin
Hindia, Mhd Nour
Wong, Wei Ru
Tengku Mohmed Noor Izam, Tengku Faiz
Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network
description The fog radio access network (F-RAN) is considered an efficient architecture for caching technology as it can support both edge and centralized caching due to the backhauling of the fog access points (F-APs). Successful transmission probability (STP), delay, and energy efficiency (EE) are key performance metrics for F-RAN. Therefore, this paper proposes a proactive cache placement scheme that jointly optimizes STP, delay, and EE in wireless backhauled cache-enabled F-RAN. First, expressions of the association probability, STP, average delay, and EE are derived using stochastic geometry tools. Then, the optimization problem is formulated to obtain the optimal cache placement that maximizes the weighted sum of STP, EE, and negative delay. To solve the optimization problem, this paper proposes the normalized cuckoo search algorithm (NCSA), which is a novel modified version of the cuckoo search algorithm (CSA). In NCSA, after generating the solutions randomly via Levy flight and random walk, a simple bound is applied, and then the solutions are normalized to assure their feasibility. The numerical results show that the proposed joint cache placement scheme can effectively achieve significant performance improvement by up to 15% higher STP, 45% lower delay, and 350% higher EE over the well-known benchmark caching schemes.
format Article
author Bani-Bakr, Alaa
Dimyati, Kaharudin
Hindia, Mhd Nour
Wong, Wei Ru
Tengku Mohmed Noor Izam, Tengku Faiz
author_facet Bani-Bakr, Alaa
Dimyati, Kaharudin
Hindia, Mhd Nour
Wong, Wei Ru
Tengku Mohmed Noor Izam, Tengku Faiz
author_sort Bani-Bakr, Alaa
title Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network
title_short Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network
title_full Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network
title_fullStr Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network
title_full_unstemmed Joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network
title_sort joint successful transmission probability, delay, and energy efficiency caching optimization in fog radio access network
publisher MDPI
publishDate 2021
url http://eprints.um.edu.my/27974/
_version_ 1738510682872086528
score 13.2014675