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Erschienen in: Cluster Computing 1/2023

09.01.2023

Energy efficient offloading scheme for MEC-based augmented reality system

verfasst von: Abdelhamied A. Ateya, Ammar Muthanna, Andrey Koucheryavy, Yassine Maleh, Ahmed A. Abd El-Latif

Erschienen in: Cluster Computing | Ausgabe 1/2023

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Abstract

Augmented reality (AR) is a recent communication paradigm that is considered one of the primary functions of the fifth-generation cellular system (5G). AR is one of the ultra-reliable low latency communications since it requires a total delay of about 5 ms for AR applications. Since mobile devices are battery-operated and have many limitations in computing resources, i.e., processing, storage, and energy, computing tasks associated with mobile AR applications have to be offloaded to nearby devices with sufficient computing resources. To this end, this paper provides a system structure for mobile AR and web-based AR applications; based on the modified multi-level mobile edge computing system (MM-MEC). Furthermore, the required offloading algorithms for managing data offloading from mobile devices to edge servers are introduced. The algorithms are latency and energy-aware, as the selection of the executing device for the AR computing tasks achieves the highest energy and latency efficiency. The proposed structure and offloading techniques have been validated through simulation processes. The developed framework and the proposed offloading schemes have been simulated over a reliable environment for various simulation The suggested system and its offloading methods were simulated in a dependable environment for a number of simulation situations.

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Metadaten
Titel
Energy efficient offloading scheme for MEC-based augmented reality system
verfasst von
Abdelhamied A. Ateya
Ammar Muthanna
Andrey Koucheryavy
Yassine Maleh
Ahmed A. Abd El-Latif
Publikationsdatum
09.01.2023
Verlag
Springer US
Erschienen in
Cluster Computing / Ausgabe 1/2023
Print ISSN: 1386-7857
Elektronische ISSN: 1573-7543
DOI
https://doi.org/10.1007/s10586-022-03914-7

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