• DocumentCode
    1062557
  • Title

    A Novel Numerical Model for Simulating Three Dimensional MIMO Channels With Complex Antenna Arrays

  • Author

    Wang, Hao Gang ; Wang, Li ; Li, Huan ; Song, Hong Bing ; Hong, Kan

  • Author_Institution
    EM Acad., Zhejiang Univ., Hangzhou, China
  • Volume
    57
  • Issue
    8
  • fYear
    2009
  • Firstpage
    2439
  • Lastpage
    2451
  • Abstract
    We develop a novel three-dimensional (3D) numerical model for rigorously simulating mutual coupling effects on the channel capacity of the multiple input multiple output (MIMO) systems. In this model, the efficient integral equation method mutlilevel Green´s function interpolation method (MLGFIM) is for the first time employed to calculate the input admittances and radiation patterns of the transmit and receive antennas of MIMOs. Comparing with the method of moments whose complexity is O(N2) , MLGFIM has an efficiency of O(NlogN) and is suitable for efficiently solving antenna arrays problems. To accurately model the EM wave propagation, we (1) use the ray tracing method to obtain the multi-paths and (2) rigorously obtain the dyadic path loss factor model from which a novel stochastic path loss model that is flexible for both the environments with PEC walls and that with infinite thick lossless dielectric walls is devised. Using the proposed model, we successfully analyze mutual coupling effects on the 3D correlation of a 2-by-2 monopole array and the indoor channel capacity of a 20-by-20 planar array and a 20-by-20 icosahedron array. The numerical examples in this paper demonstrate the efficiency of our model for simulating the MIMO system with complex radiators.
  • Keywords
    Green´s function methods; MIMO communication; antenna radiation patterns; channel capacity; communication complexity; electromagnetic wave propagation; indoor radio; integral equations; interpolation; monopole antenna arrays; multipath channels; planar antenna arrays; wireless channels; 2-by-2 monopole array; 20-by-20 icosahedron array; 20-by-20 planar array; EM wave propagation; channel capacity; complex antenna array; indoor channel capacity; integral equation method; method-of-moment; multipath channel; multiple input multiple output system; mutlilevel Greens function interpolation method; mutual coupling effect; numerical model; radiation pattern; ray tracing method; stochastic path loss model; three dimensional MIMO channel; Antenna arrays; Channel capacity; Dielectric losses; Green´s function methods; Integral equations; MIMO; Mutual coupling; Numerical models; Numerical simulation; Propagation losses; Integral equation method; multilevel Green´s function interpolation method (MLGFIM); multiple input multiple output (MIMO); mutual coupling;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2009.2024481
  • Filename
    5067349