Communications

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Radio over Fiber Networks Synthesis Using Meta-Heuristic BCO

Received: 4 February 2013    Accepted:     Published: 10 January 2013
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Abstract

Radio access network over fiber (RoF) technology combines both wireless and fiber-optic technology. The advantages of this technology are low attenuation, bigger network bandwidth, easy installation and management, reduced power consumption, multiservice, dynamic allocation of resources. There are many methods of designing optical and wire-less networks. Since RoF combines these technologies, the design tasks are a complex problem. Therefore there is a need for a new design method for RoF technology. The main problem in designing DWDM transport networks is the wavelength assignment of light paths. If the network topology has a great need to use heuristic methods there is one way to solve this problem: use of the BCO-RWA algorithm. Meta-based heuristic algorithm BCO-RWA contains the modeling of the beha-vior of bees collecting nectar. The main advantage of this algorithm is low computational complexity. However, BCO-RWA has the following disadvantage: during the calculation of route selection probability, base algorithm does not take into account the nonlinear four-wave mixing phenomenon. In this paper we present new method to design RoF network and modification of BCO-RWA algorithm.

DOI 10.11648/j.com.20130101.12
Published in Communications (Volume 1, Issue 1, January 2013)
Page(s) 9-15
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

RoF, BCO-RWA, Route, Light Path, Design, Connection, Nonlinear Four-Wave Mixing Phenomenon DWDM

References
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  • APA Style

    Alexander Pereverzev, Dmitry Ageyev. (2013). Radio over Fiber Networks Synthesis Using Meta-Heuristic BCO. Communications, 1(1), 9-15. https://doi.org/10.11648/j.com.20130101.12

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    ACS Style

    Alexander Pereverzev; Dmitry Ageyev. Radio over Fiber Networks Synthesis Using Meta-Heuristic BCO. Communications. 2013, 1(1), 9-15. doi: 10.11648/j.com.20130101.12

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    AMA Style

    Alexander Pereverzev, Dmitry Ageyev. Radio over Fiber Networks Synthesis Using Meta-Heuristic BCO. Communications. 2013;1(1):9-15. doi: 10.11648/j.com.20130101.12

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  • @article{10.11648/j.com.20130101.12,
      author = {Alexander Pereverzev and Dmitry Ageyev},
      title = {Radio over Fiber Networks Synthesis Using Meta-Heuristic BCO},
      journal = {Communications},
      volume = {1},
      number = {1},
      pages = {9-15},
      doi = {10.11648/j.com.20130101.12},
      url = {https://doi.org/10.11648/j.com.20130101.12},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.com.20130101.12},
      abstract = {Radio access network over fiber (RoF) technology combines both wireless and fiber-optic technology. The advantages of this technology are low attenuation, bigger network bandwidth, easy installation and management, reduced power consumption, multiservice, dynamic allocation of resources. There are many methods of designing optical and wire-less networks. Since RoF combines these technologies, the design tasks are a complex problem. Therefore there is a need for a new design method for RoF technology. The main problem in designing DWDM transport networks is the wavelength assignment of light paths. If the network topology has a great need to use heuristic methods there is one way to solve this problem: use of the BCO-RWA algorithm. Meta-based heuristic algorithm BCO-RWA contains the modeling of the beha-vior of bees collecting nectar. The main advantage of this algorithm is low computational complexity. However, BCO-RWA has the following disadvantage: during the calculation of route selection probability, base algorithm does not take into account the nonlinear four-wave mixing phenomenon. In this paper we present new method to design RoF network and modification of BCO-RWA algorithm.},
     year = {2013}
    }
    

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  • TY  - JOUR
    T1  - Radio over Fiber Networks Synthesis Using Meta-Heuristic BCO
    AU  - Alexander Pereverzev
    AU  - Dmitry Ageyev
    Y1  - 2013/01/10
    PY  - 2013
    N1  - https://doi.org/10.11648/j.com.20130101.12
    DO  - 10.11648/j.com.20130101.12
    T2  - Communications
    JF  - Communications
    JO  - Communications
    SP  - 9
    EP  - 15
    PB  - Science Publishing Group
    SN  - 2328-5923
    UR  - https://doi.org/10.11648/j.com.20130101.12
    AB  - Radio access network over fiber (RoF) technology combines both wireless and fiber-optic technology. The advantages of this technology are low attenuation, bigger network bandwidth, easy installation and management, reduced power consumption, multiservice, dynamic allocation of resources. There are many methods of designing optical and wire-less networks. Since RoF combines these technologies, the design tasks are a complex problem. Therefore there is a need for a new design method for RoF technology. The main problem in designing DWDM transport networks is the wavelength assignment of light paths. If the network topology has a great need to use heuristic methods there is one way to solve this problem: use of the BCO-RWA algorithm. Meta-based heuristic algorithm BCO-RWA contains the modeling of the beha-vior of bees collecting nectar. The main advantage of this algorithm is low computational complexity. However, BCO-RWA has the following disadvantage: during the calculation of route selection probability, base algorithm does not take into account the nonlinear four-wave mixing phenomenon. In this paper we present new method to design RoF network and modification of BCO-RWA algorithm.
    VL  - 1
    IS  - 1
    ER  - 

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Author Information
  • Telecomunication system, Kharkiv, Ukraine; Kharkiv National University Radio Electronics, KNURE, Kharkov, Ukraine

  • Telecomunication system, Kharkiv, Ukraine; Kharkiv National University Radio Electronics, KNURE, Kharkov, Ukraine

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