Effective throughput of MISO systems over κ-μ shadowed fading channels: MGF based analysis

04/29/2018
by   H. Al-Hmood, et al.
0

The effective throughput of multiple-input single-output (MISO) wireless communication systems over κ-μ shadowed fading channels is analysed. To obtain exact closed-from expression, the moment generating function (MGF) of the instantaneous signal to noise ratio (SNR) with independent and identically distributed (i.i.d.) transmit antennas is employed. In addition, a special case of integer values for the fading parameter is performed to simplify the derived expression. The asymptotic behaviour of the effective throughput at high values of SNR is also studied. The Monte Carlo simulations and the numerical results are presented to verify the validation of our analysis.

READ FULL TEXT

page 1

page 2

research
03/17/2019

Effective rate analysis over Fluctuating Beckmann fading channels

The effective rate of Fluctuating Beckmann (FB) fading channel is analys...
research
09/12/2019

Further Applications of Wireless Communication Systems over α-η-κ-μ Fading Channels

In this letter, some applications of wireless communication systems over...
research
06/05/2023

Selection Combining over Log-Logistic Fading Channels with Applications to Underwater Optical Wireless Communications

We study the performance of a selection combining (SC) receiver operatin...
research
11/30/2020

Polar-Cap Codebook Design for MISO Rician Fading Channels with Limited Feedback

Most of the prior works on designing codebooks for limited feedback syst...
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
01/06/2020

Analysis of Selective-Decode and Forward Relaying Protocol Over kappa-mu Fading Channel Distribution

In this work, we examine the performance of selective-decode and forward...
research
02/20/2018

AMC and HARQ: How to Increase the Throughput

In this work, we consider transmissions over block fading channels and a...

Please sign up or login with your details

Forgot password? Click here to reset