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  1. 研究報告
  2. インターネットと運用技術(IOT)
  3. 2024
  4. 2024-IOT-064

Selection Method of Suitable Multi-Edge Computing Server based on Position Prediction of Mobile Users

https://ipsj.ixsq.nii.ac.jp/records/233071
https://ipsj.ixsq.nii.ac.jp/records/233071
2897c9d4-81b1-476d-9ef6-2f858ed58cd0
名前 / ファイル ライセンス アクション
IPSJ-IOT24064051.pdf IPSJ-IOT24064051.pdf (3.2 MB)
Copyright (c) 2024 by the Institute of Electronics, Information and Communication Engineers This SIG report is only available to those in membership of the SIG.
IOT:会員:¥0, DLIB:会員:¥0
Item type SIG Technical Reports(1)
公開日 2024-03-05
タイトル
タイトル Selection Method of Suitable Multi-Edge Computing Server based on Position Prediction of Mobile Users
タイトル
言語 en
タイトル Selection Method of Suitable Multi-Edge Computing Server based on Position Prediction of Mobile Users
言語
言語 eng
キーワード
主題Scheme Other
主題 IA-G
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_18gh
資源タイプ technical report
著者所属
Graduate School of Information Science and Engineering, Ritsumeikan University
著者所属
Graduate School of Information Science and Engineering, Ritsumeikan University
著者所属
Graduate School of Information Science and Engineering, Ritsumeikan University
著者所属(英)
en
Graduate School of Information Science and Engineering, Ritsumeikan University
著者所属(英)
en
Graduate School of Information Science and Engineering, Ritsumeikan University
著者所属(英)
en
Graduate School of Information Science and Engineering, Ritsumeikan University
著者名 Massinissa, Lakhdar Friha

× Massinissa, Lakhdar Friha

Massinissa, Lakhdar Friha

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Hideaki, MIiyaji

× Hideaki, MIiyaji

Hideaki, MIiyaji

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Hiroshi, Yamamoto

× Hiroshi, Yamamoto

Hiroshi, Yamamoto

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著者名(英) Massinissa, Lakhdar Friha

× Massinissa, Lakhdar Friha

en Massinissa, Lakhdar Friha

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Hideaki, MIiyaji

× Hideaki, MIiyaji

en Hideaki, MIiyaji

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Hiroshi, Yamamoto

× Hiroshi, Yamamoto

en Hiroshi, Yamamoto

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論文抄録
内容記述タイプ Other
内容記述 In the rapidly evolving landscape of mobile networks, the integration of Multi-access Edge Computing (MEC) with 5G technology presents a transformative approach to network architecture. Existing network architectures centered around cloud-based processing encounter bottlenecks due to centralized servers, resulting in higher latency and bandwidth constraints that impede real-time data processing. The proposed architecture proposes the utilization of edge servers as a solution, decentralizing the computational load to enhance responsiveness and reduce latency within 5G networks. This paper outlines the conceptual framework and simulation of such an integration, aiming to enhance the quality of service and user experience through reduced latency and improved computational efficiency. Utilizing the OMNeT++ simulation platform, this research constructs a detailed representation of a 5G network environment. The integration of the Simu5G and INET libraries further strengthens the simulation that provides comprehensive models for 5G network functionalities alongside Multi-Access Edge Computing. The core of the proposed architecture is the MEC Orchestrator, a system that manages the computing resources at the network’s edge. It interfaces with multiple MEC Hosts, which are small servers positioned at the edge of the network. These MEC hosts are tasked with processing data and delivering services in close proximity to the user, significantly cutting down on latency. In our research, we focus on establishing the network’s architecture, simulating the dynamic interactions between a User Equipment (UE) of a mobile user and the MEC infrastructure, and the research anticipate the development of a predictive algorithm designed to predict the future position of the User Equipment (UE). This future prediction algorithm is expected to orchestrate the selection of the optimal MEC Host for processing user tasks based on the predicted location of the UE. It leverages historical and real-time location data, aiming to ensure that data processing occurs at the network’s edge nearest to the user’s future location.
論文抄録(英)
内容記述タイプ Other
内容記述 In the rapidly evolving landscape of mobile networks, the integration of Multi-access Edge Computing (MEC) with 5G technology presents a transformative approach to network architecture. Existing network architectures centered around cloud-based processing encounter bottlenecks due to centralized servers, resulting in higher latency and bandwidth constraints that impede real-time data processing. The proposed architecture proposes the utilization of edge servers as a solution, decentralizing the computational load to enhance responsiveness and reduce latency within 5G networks. This paper outlines the conceptual framework and simulation of such an integration, aiming to enhance the quality of service and user experience through reduced latency and improved computational efficiency. Utilizing the OMNeT++ simulation platform, this research constructs a detailed representation of a 5G network environment. The integration of the Simu5G and INET libraries further strengthens the simulation that provides comprehensive models for 5G network functionalities alongside Multi-Access Edge Computing. The core of the proposed architecture is the MEC Orchestrator, a system that manages the computing resources at the network’s edge. It interfaces with multiple MEC Hosts, which are small servers positioned at the edge of the network. These MEC hosts are tasked with processing data and delivering services in close proximity to the user, significantly cutting down on latency. In our research, we focus on establishing the network’s architecture, simulating the dynamic interactions between a User Equipment (UE) of a mobile user and the MEC infrastructure, and the research anticipate the development of a predictive algorithm designed to predict the future position of the User Equipment (UE). This future prediction algorithm is expected to orchestrate the selection of the optimal MEC Host for processing user tasks based on the predicted location of the UE. It leverages historical and real-time location data, aiming to ensure that data processing occurs at the network’s edge nearest to the user’s future location.
書誌レコードID
収録物識別子タイプ NCID
収録物識別子 AA12326962
書誌情報 研究報告インターネットと運用技術(IOT)

巻 2024-IOT-64, 号 51, p. 1-6, 発行日 2024-03-05
ISSN
収録物識別子タイプ ISSN
収録物識別子 2188-8787
Notice
SIG Technical Reports are nonrefereed and hence may later appear in any journals, conferences, symposia, etc.
出版者
言語 ja
出版者 情報処理学会
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