Multi-Objective Distributed On-Demand Small Cell Resource Allocation for eHealth

Research output: Chapters, Conference Papers, Creative and Literary WorksRGC 32 - Refereed conference paper (with host publication)peer-review

2 Citations (Scopus)

Abstract

Small cell (SC) resource allocation for the next-generation cellular networks embraces ultra-low latency, energy efficiency, and reliable challenges. Conventional optimization algorithms may not be capable of supporting the abovementioned scenarios, with aggregated and centralized traffic burden causing excessive latency, especially for the conceived large-scale eHealth networks in Healthcare 4.0. In this paper, we propose a new Decentralized Integer-based Non-Dominated Sorting Genetic Algorithm (DI-NSGA), on top of the authors' previous work. Integer-based resource allocation process are formulated, and decentralized to mobile edge computing embedded SCs for releasing centralized traffic burden. Overall latency and achieved data rate are considered as the optimization objectives. Simulation analysis shows that the proposed DI-NSGA achieves low computation cost while maintaining high optimality by searching for the Pareto Front, compared with the selected benchmarks.
Original languageEnglish
Title of host publicationIECON 2022 - 48th Annual Conference of the IEEE Industrial Electronics Society
PublisherIEEE
Number of pages5
ISBN (Electronic)9781665480253
ISBN (Print)978-1-6654-8026-0
DOIs
Publication statusPublished - 2022
Event48th Annual Conference of the Industrial Electronics Society (IECON 2022) - Convention Center SQUARE, Brussels, Belgium
Duration: 17 Oct 202220 Oct 2022
https://iecon2022.org/

Publication series

NameIECON Proceedings (Industrial Electronics Conference)
ISSN (Print)1553-572X
ISSN (Electronic)2577-1647

Conference

Conference48th Annual Conference of the Industrial Electronics Society (IECON 2022)
PlaceBelgium
CityBrussels
Period17/10/2220/10/22
Internet address

Research Keywords

  • decentralization
  • eHealth
  • integer-based multi-objective optimization
  • resource allocation
  • Small cell

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