• DocumentCode
    1547875
  • Title

    Simulating radio channel statistics for different building environments

  • Author

    Cheon, Cheolhang ; Liang, George ; Bertoni, Henry L.

  • Author_Institution
    Dept. of Electr. Eng., Polytech. Univ., Brooklyn, NY, USA
  • Volume
    19
  • Issue
    11
  • fYear
    2001
  • fDate
    11/1/2001 12:00:00 AM
  • Firstpage
    2191
  • Lastpage
    2200
  • Abstract
    The design of advanced radio systems requires knowledge of higher order channel statistics, such as the time delay spread and the angle of arrival spread. Time delay has been measured in a number of cities, while angle of arrival has been measured in only a few. Since the link geometry is not the same for all measurements, it is not clear how to compare the measured values, or if they are applicable to other building environments, antenna height, etc. To clarify these issues, we have used a three-dimensional ray tracing code, called the vertical plane launch (VPL) method, to simulate time delay spread and angle of arrival spread in different building environments. Results for elevated base station antennas show that the distribution of root mean square (RMS) delay spreads is not sensitive to the statistical properties of the buildings but increases with distance to the mobiles and increases as the base antenna is lowered below the rooftops. In contrast, the distribution of RMS angle spread is sensitive to the distribution of building heights and to the height of the base station antenna but not to the distance to the mobile. The influence of street geometry on delay and angle spread for low base station antennas is also discussed
  • Keywords
    UHF antennas; UHF radio propagation; delays; digital simulation; microcellular radio; radio links; ray tracing; statistical analysis; telecommunication channels; 3D ray tracing code; 900 MHz; RMS delay spreads distribution; UHF; angle of arrival spread; antenna height; building environments; elevated base station antennas; higher order channel statistics; link geometry; low base station antennas; microcellular environment; radio channel statistics simulation; radio systems design; statistical properties; street geometry; three-dimensional ray tracing code; time delay spread; vertical plane launch method; Antenna measurements; Base stations; Buildings; Cities and towns; Delay effects; Geometry; Higher order statistics; Mobile antennas; Ray tracing; Time measurement;
  • fLanguage
    English
  • Journal_Title
    Selected Areas in Communications, IEEE Journal on
  • Publisher
    ieee
  • ISSN
    0733-8716
  • Type

    jour

  • DOI
    10.1109/49.963805
  • Filename
    963805