2002IEEE Transactions on Microwave Theory and TechniquesRequires access

A generalized solution for diversity combining techniques in fading channels

C.R.C.M. da Silva, Michel Daoud Yacoub

Open publisher page 26 citations

Abstract

This paper develops an exact and general formulation in order to investigate the performance of equal gain, selection/equal gain, and selection/maximal ratio combining techniques. The performance is examined in terms of both the reliability and mean signal-to-noise ratio at the combiner output. Although the solution presented here considers the Nakagami fading environment, the formulation is general and can be easily applied to any other fading channel.

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What this paper is about

This paper develops an exact and general formulation in order to investigate the performance of equal gain, selection/equal gain, and selection/maximal ratio combining techniques. The performance is examined in terms of both the reliability and mean signal-to-noise ratio at the combiner output. Although the solution presented here considers the Nakagami fading environment, the formulation is general and can be easily applied to any other fading channel.

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OpenAlex reports 26 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper develops an exact and general formulation in order to investigate the performance of equal gain, selection/equal gain, and selection/maximal ratio combining techniques. The performance is examined in terms of both the reliability and mean signal-to-noise ratio at the combiner output. Although the solution presented here considers the Nakagami fading environment, the formulation is general and can be easily applied to any other fading channel.

Key concepts: Fading, Nakagami distribution, Maximal-ratio combining, Fading distribution, Signal-to-noise ratio (imaging), Diversity gain, Diversity combining, Selection (genetic algorithm)

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