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Mobile Multimedia Communications. 16th EAI International Conference, MobiMedia 2023, Guilin, China, July 22-24, 2023, Proceedings

Research Article

A Computation Offloading Strategy for the Large-Scale Disaster Scenario

Cite
BibTeX Plain Text
  • @INPROCEEDINGS{10.1007/978-3-031-60347-1_18,
        author={Bo Wang and Xu Wang and Dongyan Huang},
        title={A Computation Offloading Strategy for the Large-Scale Disaster Scenario},
        proceedings={Mobile Multimedia Communications. 16th EAI International Conference, MobiMedia 2023, Guilin, China, July 22-24, 2023, Proceedings},
        proceedings_a={MOBIMEDIA},
        year={2024},
        month={10},
        keywords={Mobile edge computing Offloading decisions Resource allocation},
        doi={10.1007/978-3-031-60347-1_18}
    }
    
  • Bo Wang
    Xu Wang
    Dongyan Huang
    Year: 2024
    A Computation Offloading Strategy for the Large-Scale Disaster Scenario
    MOBIMEDIA
    Springer
    DOI: 10.1007/978-3-031-60347-1_18
Bo Wang1,*, Xu Wang1, Dongyan Huang1
  • 1: Key Laboratory of Wideband Communication and Signal, Ministry of Education, Guilin University of Electronic Technology
*Contact email: glbluewind@126.com

Abstract

For the large-scale disaster scenario, this paper investigates a hybrid satellite-aerial-terrestrial network (HSATN) to provide computing services for ground user equipment (GUE). The optimization problem is modeled to maximize the quality of experience (QoE) for all GUEs. To solve this problem, a multi-user game computation offloading (MUGCO) strategy is proposed. Firstly, the Initialized offloading decision is given according to the priority of the tasks. Then, the cooperative game algorithm and the task priority-based resource competition (TPRC) algorithm are used to allocate subcarrier resources and computing resources for the offloaded tasks, respectively. Finally, the offloading decision problem is proved as a potential game process. According to the properties of the potential game, the offloading decision under the Nash equilibrium is found. The simulation results show that the proposed strategy can effectively improve the total QoE value of the system compared to the comparison strategies.

Keywords
Mobile edge computing Offloading decisions Resource allocation
Published
2024-10-25
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-031-60347-1_18
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