From Wikipedia, the free encyclopedia

The WSSUS (Wide-Sense Stationary Uncorrelated Scattering) model provides a statistical description of the transmission behavior of wireless channels. "Wide-sense stationarity" means the second-order moments of the channel are stationary, which means that they depends only on the time difference, while "uncorrelated scattering" refers to the delay τ due to scatterers. Modelling of mobile channels as WSSUS (wide sense stationary uncorrelated scattering) has become popular among specialists. The model was introduced by Phillip A. Bello in 1963. [1]

A commonly used description of time variant channel applies the set of Bello functions and the theory of stochastic processes.

References

  1. ^ Matthias Pätzold, Mobile Radio Channels, ch. 7, John Wiley & Sons, 2011 ISBN  1119975255.
  • Kurth, R. R.; Snyder, D. L.; Hoversten, E. V. (1969) "Detection and Estimation Theory", Massachusetts Institute of Technology, Research Laboratory of Electronics, Quarterly Progress Report, No. 93 (IX), 177–205

Primary documents

External links


From Wikipedia, the free encyclopedia

The WSSUS (Wide-Sense Stationary Uncorrelated Scattering) model provides a statistical description of the transmission behavior of wireless channels. "Wide-sense stationarity" means the second-order moments of the channel are stationary, which means that they depends only on the time difference, while "uncorrelated scattering" refers to the delay τ due to scatterers. Modelling of mobile channels as WSSUS (wide sense stationary uncorrelated scattering) has become popular among specialists. The model was introduced by Phillip A. Bello in 1963. [1]

A commonly used description of time variant channel applies the set of Bello functions and the theory of stochastic processes.

References

  1. ^ Matthias Pätzold, Mobile Radio Channels, ch. 7, John Wiley & Sons, 2011 ISBN  1119975255.
  • Kurth, R. R.; Snyder, D. L.; Hoversten, E. V. (1969) "Detection and Estimation Theory", Massachusetts Institute of Technology, Research Laboratory of Electronics, Quarterly Progress Report, No. 93 (IX), 177–205

Primary documents

External links



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