• DocumentCode
    688075
  • Title

    Interpolation distortion in Large-Scale Parameter maps for wireless system simulation

  • Author

    Sadowsky, John S. ; Ariyavisitakul, Lek ; Lu, Kevin W. ; Stauffer, Erik ; Jing Wang ; Zacharias, Leena

  • Author_Institution
    Broadcom Corp., Irvine, CA, USA
  • fYear
    2013
  • fDate
    9-13 Dec. 2013
  • Firstpage
    3954
  • Lastpage
    3958
  • Abstract
    Spatial Channel Models (SCM) used in wireless system simulations are determined by Large-Scale Parameters (LSP). LSPs include delay spread, shadow fading, angle of arrival and departure spread, and Rice K for line-of-sight channels. LSPs are modeled as a spatially correlated random field over the geometry of the network scenario being simulated. The general method is to generate an LSP map on a discrete lattice (or grid) and induce spatial correlation via spatial filtering as determined by the LSP´s correlation distance. This step represents a large part of the simulator´s computation load, which leads to the use of a coarsely spaced lattice and interpolation from nearest lattice points to arbitrary UE locations on the x-y plane. We investigate the computation vs. fidelity trade associated with LSP generation. We will show that when a coarse grid is employed, there can be significant nonstationary distortion of the LSP correlation due to the interpolation step. We investigate three different interpolators having varying correlation fidelity and computation load.
  • Keywords
    Rician channels; direction-of-arrival estimation; interpolation; wireless channels; Rice K channel; angle of arrival estimation; correlation fidelity; delay spread; departure spread; interpolation distortion; large-scale parameter maps; line-of-sight channel; shadow fading; spatial channel models; spatially correlated random field; wireless system simulation; Computational modeling; Correlation; Finite impulse response filters; Interpolation; Lattices; Wireless communication; angle spread; delay spread; large-scale parameters; shadow fade; spatial channel models; wireless system simulation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Global Communications Conference (GLOBECOM), 2013 IEEE
  • Conference_Location
    Atlanta, GA
  • Type

    conf

  • DOI
    10.1109/GLOCOM.2013.6831691
  • Filename
    6831691