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[Author] Do-Seob AHN(2hit)

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  • Antenna Beam Pattern Characteristics of HAPS User Terminal

    Bon-Jun KU  Dae Sub OH  Nam KIM  Do-Seob AHN  

     
    LETTER

      Vol:
    E92-B No:11
      Page(s):
    3394-3396

    High Altitude Platform Stations (HAPS) are recently considered as a green infrastructure to provide high speed multimedia services. The critical issue of HAPS is frequency sharing with satellite systems. Regulating antenna beam pattern using adaptive antenna schemes is one of means to facilitate the sharing with a space receiver for fixed satellite services on the uplink of a HAPS system operating in U bands. In this letter, we investigate antenna beam pattern characteristics of HAPS user terminals with various values of scan angles of main beam, null position angles, and null width.

  • Evaluation of Cooperative Diversity Techniques Using STC for Future S-DMB Services

    Sooyoung KIM  Unhee PARK  Hee-Wook KIM  Do-Seob AHN  

     
    PAPER

      Vol:
    E92-B No:11
      Page(s):
    3345-3353

    This paper presents an evaluation of various cooperative diversity techniques applied to future satellite digital multimedia broadcasting (S-DMB) systems. The increasing importance of hybrid and/or integrated satellite and terrestrial networks is associated with the utilization of spatial diversity techniques such as antenna diversity using space-time coding. The space-time coding schemes can be expected to result in more diversity gain as the number of transmit antennas are increased. However, we cannot design a rate-1 scheme that achieves full diversity for more than two transmit antennas. To overcome this limitation, quasi-orthogonal schemes were proposed, at the expense of the decoder complexity and diversity gain. In this paper, we introduce an efficient quasi-orthogonal space time coding scheme, and evaluate various aspects associated with the application of the proposed scheme to satellite systems. The proposed scheme in this paper provides the full rate as well as maximum-likelihood decoding via simple linear detection.