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Second-order statistics of maximal-ratio and equal-gain combining in Weibull fading
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2005)
General exact level crossing rate and average fade duration for dual-diversity combining of nonidentical correlated Weibull signals
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2007)
Simple precise approximations to Weibull sums
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2006)
Joint statistics for two correlated Weibull variates
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2005)
General Exact and Accurate Approximate Formulations for the Crossing Rates of Multibranch Diversity Receivers over Non-Identical Correlated Weibull Channels
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2009)
The alpha-mu distribution: A physical fading model for the Stacy distribution
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2007)
Fox H-function: a Study Case on Variate Modeling of Dual-Hop Relay Over Weibull Fading Channels
(Ieee, 2018-01-01)
This paper proposes a novel analytical framework based on the Fox H-function distribution. To test its efficacy we focus on a study case where we derive closed form expressions for the distribution of the end-to-end signal ...