2004•Unpublished venueRequires access

Statistical modeling of fading channel statistics based on SIRP and H-functions

Kung Yao, M.K. Simon, E. Biglieri

Open publisher page 4 citations

Abstract

For wireless communication, fading is the dominant factor that reduces the performance of the system. Under various outdoor/indoor fading scenarios, statistical modeling of envelope distributions, such as Rayleigh, Rician, exponential, Nakagami-m, Weibull, lognormal, etc., have been proposed. We show that spherically-invariant random processes (SIRP), Mellin transform, and Fox H-functions, can be used to model these fading statistics. This approach can be used to obtain various explicit performances of fading communication systems.

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What this paper is about

For wireless communication, fading is the dominant factor that reduces the performance of the system. Under various outdoor/indoor fading scenarios, statistical modeling of envelope distributions, such as Rayleigh, Rician, exponential, Nakagami-m, Weibull, lognormal, etc., have been proposed. We show that spherically-invariant random processes (SIRP), Mellin transform, and Fox H-functions, can be used to model these fading statistics. This approach can be used to obtain various explicit performances of fading communication systems.

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Available abstract

For wireless communication, fading is the dominant factor that reduces the performance of the system. Under various outdoor/indoor fading scenarios, statistical modeling of envelope distributions, such as Rayleigh, Rician, exponential, Nakagami-m, Weibull, lognormal, etc., have been proposed. We show that spherically-invariant random processes (SIRP), Mellin transform, and Fox H-functions, can be used to model these fading statistics. This approach can be used to obtain various explicit performances of fading communication systems.

Key concepts: Fading, Rician fading, Weibull fading, Fading distribution, Nakagami distribution, Weibull distribution, Channel state information, Log-normal distribution

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