Journal Article

·2016

Dual-hop amplify-and-forward multi-relay maximum ratio transmission

Eylem Erdoğan YTU , Tansal Güçlüoğlu YTU

Journal of Communications and Networks

Abstract

In this paper, the performance of dual-hop multi-relay maximum ratio transmission (MRT) over Rayleigh flat fading channels is studied with both conventional (all relays participate the transmission) and opportunistic (best relay is selected to maximize the received signal-to-noise ratio (SNR)) relaying. Performance analysis starts with the derivation of the probability density function, cumulative distribution function and moment generating function of the SNR. Then, both approximate and asymptotic expressions of symbol error rate (SER) and outage probability are derived for arbitrary numbers of antennas and relays. With the help of asymptotic SER and outage probability, diversity and array gains are obtained. In addition, impact of imperfect channel estimations is investigated and optimum power allocation factors for source and relay are calculated. Our analytical findings are validated by numerical examples which indicate that multi-relay MRT can be a low complexity and reliable option in cooperative networks.

Keywords

Relay Rayleigh fading Computer science Cumulative distribution function Moment-generating function Maximal-ratio combining Hop (telecommunications) Probability density function Topology (electrical circuits) Transmission (telecommunications) Signal-to-noise ratio (imaging) Outage probability Fading Channel (broadcasting) Algorithm Telecommunications Power (physics) Mathematics Statistics Physics

Subject Areas

Cooperative Communication and Network Coding ·Computer Networks and Communications ·Physical Sciences
Advanced MIMO Systems Optimization ·Electrical and Electronic Engineering ·Physical Sciences
Full-Duplex Wireless Communications ·Electrical and Electronic Engineering ·Physical Sciences

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