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A new simple model for composite fading channels: Second order statistics and channel capacity
97
Citations
20
References
2010
Year
Unknown Venue
Channel ModelingEngineeringChannel Capacity EstimationMillimeter WaveReceived Signal EnvelopeSecond Order StatisticsComposite Fading ChannelsWireless PropagationComputer Simulation ExamplesRadio Over FiberComputational ElectromagneticsChannel EstimationFading ChannelChannel ModelChannel CharacterizationSignal ProcessingChannel Capacity
In this paper, we introduce the most general composite fading distribution to model the envelope and the power of the received signal in such fading channels as millimeter wave (60 GHz or above) fading channels and free-space optical channels, which we term extended generalized-K (EGK) composite fading distribution. We obtain the second-order statistics of the received signal envelope characterized by the EGK composite fading distribution. Expressions for probability density function, cumulative distribution function, level crossing rate and average fade duration, moments, amount of fading and average capacity are derived. Numerical and computer simulation examples validate the accuracy of the presented mathematical analysis.
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