• DocumentCode
    19878
  • Title

    Coverage Optimization and Power Reduction in SFN Using Simulated Annealing

  • Author

    Lanza, Mario ; Gutierrez, Angel L. ; Perez, Jesus R. ; Morgade, Javier ; Domingo, Marta ; Valle, Luis ; Angueira, Pablo ; Basterrechea, Jose

  • Author_Institution
    Dept. de Ing. de Comun., Univ. of Cantabria, Santander, Spain
  • Volume
    60
  • Issue
    3
  • fYear
    2014
  • fDate
    Sept. 2014
  • Firstpage
    474
  • Lastpage
    485
  • Abstract
    An approach that predicts the propagation, models the terrestrial receivers and optimizes the performance of single frequency networks (SFN) for digital video broadcasting in terms of the final coverage achieved over any geographical region, enhancing the most populated areas, is proposed in this paper. The effective coverage improvement and thus, the self-interference reduction in the SFN is accomplished by optimizing the internal static delays, sector antenna gain, and both azimuth and elevation orientation for every transmitter within the network using the heuristic simulated annealing (SA) algorithm. Decimation and elevation filtering techniques have been considered and applied to reduce the computational cost of the SA-based approach, including results that demonstrate the improvements achieved. Further representative results for two SFN in different scenarios considering the effect on the final coverage of optimizing any of the transmitter parameters previously outlined or a combination of some of them are reported and discussed in order to show both, the performance of the method and how increasing gradually the complexity of the model for the transmitters leads to more realistic and accurate results.
  • Keywords
    digital video broadcasting; optimisation; radio receivers; radio transmitters; radiofrequency interference; transmitting antennas; SFN; azimuth orientation; coverage optimization; decimation techniques; digital video broadcasting; elevation filtering techniques; elevation orientation; geographical region; heuristic simulated annealing; internal static delays; power reduction; sector antenna gain; self-interference reduction; single frequency networks; terrestrial receivers; transmitter parameters; Azimuth; Digital video broadcasting; OFDM; Optimization; Receivers; Transmitting antennas; DVB systems; propagation prediction; simulated annealing; single frequency network optimization;
  • fLanguage
    English
  • Journal_Title
    Broadcasting, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9316
  • Type

    jour

  • DOI
    10.1109/TBC.2014.2333131
  • Filename
    6874529