2008•IEEE Signal Processing LettersRequires access

Outage Analysis of Decode-and-Forward Relaying Over Nakagami- $m$ Fading Channels

Nikos C. Sagias, F. Lazarakis, G.S. Tombras, Christos K. Datsikas

Open publisher page 86 citations

Abstract

In this letter, closed-form outage probability expressions are presented for an -relays dual-hop plus a direct link network, in which the decode-and-forward relaying protocol is employed. Our analysis significantly extends previous results on Rayleigh fading, considering a Nakagami- fading environment with either equal or distinct second hops fading parameters to average power ratios. Various numerical examples illustrate the proposed analysis.

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What this paper is about

In this letter, closed-form outage probability expressions are presented for an -relays dual-hop plus a direct link network, in which the decode-and-forward relaying protocol is employed. Our analysis significantly extends previous results on Rayleigh fading, considering a Nakagami- fading environment with either equal or distinct second hops fading parameters to average power ratios. Various numerical examples illustrate the proposed analysis.

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Available abstract

In this letter, closed-form outage probability expressions are presented for an -relays dual-hop plus a direct link network, in which the decode-and-forward relaying protocol is employed. Our analysis significantly extends previous results on Rayleigh fading, considering a Nakagami- fading environment with either equal or distinct second hops fading parameters to average power ratios. Various numerical examples illustrate the proposed analysis.

Key concepts: Fading, Nakagami distribution, Rayleigh fading, Fading distribution, Computer science, Weibull fading, Outage probability, Algorithm

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