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An Efficient 5G Data Plan Approach Based on Partially Distributed Mobility Architecture

Reaching a flat network is the main target of future evolved packet core for the 5G mobile networks. The current 4th generation core network is centralized architecture, including Serving Gateway and Packet-data-network Gateway; both act as mobility and IP anchors. However, this architecture suffers...

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Autores principales: Al Shinwan, Mohammad, Abualigah, Laith, Huy, Trong-Dinh, Younes Shdefat, Ahmed, Altalhi, Maryam, Kim, Chulsoo, El-Sappagh, Shaker, Abd Elaziz, Mohamed, Kwak, Kyung Sup
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8749826/
https://www.ncbi.nlm.nih.gov/pubmed/35009891
http://dx.doi.org/10.3390/s22010349
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author Al Shinwan, Mohammad
Abualigah, Laith
Huy, Trong-Dinh
Younes Shdefat, Ahmed
Altalhi, Maryam
Kim, Chulsoo
El-Sappagh, Shaker
Abd Elaziz, Mohamed
Kwak, Kyung Sup
author_facet Al Shinwan, Mohammad
Abualigah, Laith
Huy, Trong-Dinh
Younes Shdefat, Ahmed
Altalhi, Maryam
Kim, Chulsoo
El-Sappagh, Shaker
Abd Elaziz, Mohamed
Kwak, Kyung Sup
author_sort Al Shinwan, Mohammad
collection PubMed
description Reaching a flat network is the main target of future evolved packet core for the 5G mobile networks. The current 4th generation core network is centralized architecture, including Serving Gateway and Packet-data-network Gateway; both act as mobility and IP anchors. However, this architecture suffers from non-optimal routing and intolerable latency due to many control messages. To overcome these challenges, we propose a partially distributed architecture for 5th generation networks, such that the control plane and data plane are fully decoupled. The proposed architecture is based on including a node Multi-session Gateway to merge the mobility and IP anchor gateway functionality. This work presented a control entity with the full implementation of the control plane to achieve an optimal flat network architecture. The impact of the proposed evolved packet Core structure in attachment, data delivery, and mobility procedures is validated through simulation. Several experiments were carried out by using NS-3 simulation to validate the results of the proposed architecture. The Numerical analysis is evaluated in terms of total transmission delay, inter and intra handover delay, queuing delay, and total attachment time. Simulation results show that the proposed architecture performance-enhanced end-to-end latency over the legacy architecture.
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spelling pubmed-87498262022-01-12 An Efficient 5G Data Plan Approach Based on Partially Distributed Mobility Architecture Al Shinwan, Mohammad Abualigah, Laith Huy, Trong-Dinh Younes Shdefat, Ahmed Altalhi, Maryam Kim, Chulsoo El-Sappagh, Shaker Abd Elaziz, Mohamed Kwak, Kyung Sup Sensors (Basel) Article Reaching a flat network is the main target of future evolved packet core for the 5G mobile networks. The current 4th generation core network is centralized architecture, including Serving Gateway and Packet-data-network Gateway; both act as mobility and IP anchors. However, this architecture suffers from non-optimal routing and intolerable latency due to many control messages. To overcome these challenges, we propose a partially distributed architecture for 5th generation networks, such that the control plane and data plane are fully decoupled. The proposed architecture is based on including a node Multi-session Gateway to merge the mobility and IP anchor gateway functionality. This work presented a control entity with the full implementation of the control plane to achieve an optimal flat network architecture. The impact of the proposed evolved packet Core structure in attachment, data delivery, and mobility procedures is validated through simulation. Several experiments were carried out by using NS-3 simulation to validate the results of the proposed architecture. The Numerical analysis is evaluated in terms of total transmission delay, inter and intra handover delay, queuing delay, and total attachment time. Simulation results show that the proposed architecture performance-enhanced end-to-end latency over the legacy architecture. MDPI 2022-01-04 /pmc/articles/PMC8749826/ /pubmed/35009891 http://dx.doi.org/10.3390/s22010349 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Al Shinwan, Mohammad
Abualigah, Laith
Huy, Trong-Dinh
Younes Shdefat, Ahmed
Altalhi, Maryam
Kim, Chulsoo
El-Sappagh, Shaker
Abd Elaziz, Mohamed
Kwak, Kyung Sup
An Efficient 5G Data Plan Approach Based on Partially Distributed Mobility Architecture
title An Efficient 5G Data Plan Approach Based on Partially Distributed Mobility Architecture
title_full An Efficient 5G Data Plan Approach Based on Partially Distributed Mobility Architecture
title_fullStr An Efficient 5G Data Plan Approach Based on Partially Distributed Mobility Architecture
title_full_unstemmed An Efficient 5G Data Plan Approach Based on Partially Distributed Mobility Architecture
title_short An Efficient 5G Data Plan Approach Based on Partially Distributed Mobility Architecture
title_sort efficient 5g data plan approach based on partially distributed mobility architecture
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8749826/
https://www.ncbi.nlm.nih.gov/pubmed/35009891
http://dx.doi.org/10.3390/s22010349
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