Unified approaches based effective capacity analysis over composite α-η-μ/gamma fading channels

04/24/2018
by   H. Al-Hmood, et al.
0

This letter analyses the effective capacity of communications system using unified models. In order to obtain a simple closed-form mathematically tractable expression, two different unified approximate models have been used. The mixture gamma (MG) distribution which is highly accurate approximation approach has been firstly employed to represent the signal-to-noise-ratio (SNR) of fading channel. In the second approach, the mixture of Gaussian (MoG) distribution which is another unified representation approach has been utilised. A comparison between the simulated and numerical results using both distributions over composite α-η-μ/gamma fading channels has been provided.

READ FULL TEXT

page 1

page 2

research
05/14/2020

The α-η-F and α-κ-F Composite Fading Distributions

In this paper, we present the α-η-F and α-κ-F composite fading distribut...
research
11/16/2020

Unified Composite Distribution and Its Applications to Double Shadowed α-κ-μ Fading Channels

In this paper, we propose a mixture Gamma shadowed (MGS) distribution as...
research
04/30/2019

On the Utility of the Inverse Gamma Distribution in Modeling Composite Fading Channels

We introduce a general approach to characterize composite fading models ...
research
02/13/2019

HetNets Coverage Modeling and Analysis Over Fox's H-Fading Channels

This paper embodies the Fox's H-transform theory into a unifying modeli...
research
03/17/2019

Effective rate analysis over Fluctuating Beckmann fading channels

The effective rate of Fluctuating Beckmann (FB) fading channel is analys...
research
07/16/2018

Entropy and Energy Detection-based Spectrum Sensing over F Composite Fading Channels

In this paper, we investigate the performance of energy detection-based ...
research
07/24/2018

Statistical Characterization of Second Order Scattering Fading Channels

We present a new approach to the statistical characterization of the sec...

Please sign up or login with your details

Forgot password? Click here to reset