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Journal ArticleDOI

Performance Analysis of System with Micro- and Macrodiversity Reception in Correlated Gamma Shadowed Rician Fading Channels

Nikola M. Sekulovic, +1 more
- 01 Jul 2012 - 
- Vol. 65, Iss: 1, pp 143-156
TLDR
Numerical results are graphically presented to show the effects of various system parameters to the system performance, as well as the enhancement due to use of the combination of micro- and macrodiversity.
Abstract
In this paper, the performance of wireless system employing microdiversity to mitigate the effects of short-term fading and macrodiversity to reduce long-term fading (shadowing) effects is studied. The system model assumes implementation of maximal-ratio combining (MRC) at the microlevel and selection combining (SC) at the macrolevel. The received signal envelope follows a Rician distribution and it also suffers gamma shadowing. Novel expressions for the probability density function (PDF), cumulative distribution function (CDF), and moment-generating function (MGF) of the output signal-to-noise ratio (SNR) are obtained. Several useful performance criteria, such as the moments of the output SNR and outage probability are analytically derived. Moreover, the average bit error probability (ABEP) for noncoherent binary differential phase-shift keying (BDPSK) is calculated using the MGF based approach while the ABEP for coherent binary phase-shift keying (BPSK) is studied by averaging the conditional bit error probability over the PDF. Numerical results are graphically presented to show the effects of various system parameters to the system performance, as well as the enhancement due to use of the combination of micro- and macrodiversity. Some of numerical results are complemented by equivalent computer simulated results which validate the accuracy of the proposed analysis. The agreement between the Rician-gamma and Rician-lognormal fading model is also established.

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Citations
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Journal ArticleDOI

Level Crossing Rate of Macro-diversity System with Two Micro-diversity SC Receivers over Correlated Gamma Shadowed α–µ Multipath Fading Channels

TL;DR: Numerical results are presented to examine the influence of various gamma shadowing and α–µ multipath fading parameters on LCR of the proposed system.
Journal ArticleDOI

Level crossing rate of macro diversity reception in composite Nakagami-m and Gamma fading environment with interference

TL;DR: A wireless receiver model that employs the macro diversity technique, consisting of a selection combining receiver fed by two micro diversity SC branches, which is used to simultaneously reduce the effects of Nakagami-m shortterm fading, Gamma long term fading, and co-channel interference on the system performances is considered.
Journal ArticleDOI

Level Crossing Rate of Macrodiversity System in the Presence of Multipath Fading and Shadowing

TL;DR: In this paper, the level crossing rate of a macrodiversity SC receiver and two micro-diversity SC receivers is evaluated using closed-form expressions for Gamma shadowing severity.
Journal ArticleDOI

Bivariate Fisher–Snedecor F Distribution and its Applications in Wireless Communication Systems

TL;DR: A bivariate Fisher–Snedecor distribution with identical shaping parameters and its applications in the wireless communication systems is presented and the validity of the theoretical analysis under various correlated fading and shadowing scenarios is demonstrated.
Journal ArticleDOI

Second‐Order Statistics of System with Microdiversity and Macrodiversity Reception in Gamma‐Shadowed Rician Fading Channels

TL;DR: A wireless communication system with microdiversity and macrodiversity reception in gammashadowed Rician fading channels is considered and exact and rapidly converging infinite-series expressions for the average level crossing rate and average fade duration are provided.
References
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Wireless Communications

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