• DocumentCode
    1514637
  • Title

    Topology Control Schema for Better QoS in Hybrid RF/FSO Mesh Networks

  • Author

    Awwad, Osama ; Al-Fuqaha, Ala ; Khan, Bilal ; Brahim, G.B.

  • Author_Institution
    Quest Software, Toronto, ON, Canada
  • Volume
    60
  • Issue
    5
  • fYear
    2012
  • fDate
    5/1/2012 12:00:00 AM
  • Firstpage
    1398
  • Lastpage
    1406
  • Abstract
    The practical limitations and challenges of radio frequency (RF) based communication networks have become increasingly apparent over the past decade, leading researchers to seek new hybrid communication approaches. One promising strategy that has been the subject of considerable interest is the augmentation of RF technology by Free Space Optics (FSO), using the strength of each communication technology to overcome the limitations of the other. In this article, we introduce a new scheme for controlling the topology in hybrid Radio-Frequency/Free Space Optics (RF/FSO) wireless mesh networks. Our scheme is based on adaptive adjustments to both transmission power (of RF and FSO transmitters) and the optical beam-width (of FSO transmitters) at individual nodes, with the objective of meeting specified Quality of Service (QoS) requirements, specifically end-to-end delay and throughput. We show how one can effectively encode the instantaneous objectives and constraints of the system as an instance of Integer Linear Programming (ILP). We demonstrate that the technique of Lagrangian Relaxation (LR), augmented with iterative repair heuristics, can be used to determine good (albeit sub-optimal) solutions for the ILP problem, making the approach feasible for mid-sized networks. We make the proposed scheme viable for large-scale networks in terms of number of nodes, number of transceivers, and number of source-destination pairs by solving the ILP problem using a Particle Swarm Optimization (PSO) implementation.
  • Keywords
    integer programming; iterative methods; linear programming; optical transceivers; particle swarm optimisation; quality of service; radio transceivers; relaxation; telecommunication network topology; wireless mesh networks; FSO transmitter; Lagrangian relaxation; QoS; RF transmitter; adaptive adjustment; hybrid RF-FSO mesh network; hybrid communication; hybrid radio-frequency-free space optics wireless mesh network; integer linear programming; iterative repair heuristics; mid-sized network; particle swarm optimization; quality of service requirement; radio frequency based communication network; topology control schema; transceiver; Delay; Network topology; Peer to peer computing; Quality of service; Radio frequency; Topology; Transceivers; Hybrid RF/FSO; Lagrangian relaxation; MANETs; QoS; linear programming; particle swarm optimization; topology control;
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/TCOMM.2012.12.110069
  • Filename
    6198405