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Predictive Relay Selection: A Cooperative Diversity Scheme Using Deep Learning

Wei Jiang, Hans D. Schotten

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Abstract

In this paper, we propose a novel cooperative multi-relay transmission scheme for mobile terminals to exploit spatial diversity. By improving the timeliness of measured channel state information (CSI) through deep learning (DL)-based channel prediction, the proposed scheme remarkably lowers the probability of wrong relay selection arising from outdated CSI in fast time-varying channels. It inherits the simplicity of opportunistic relaying by selecting a single relay, avoiding the complexity of multi-relay coordination and synchronization. Numerical results reveal that it can achieve full diversity gain in slow-fading channels and substantially outperforms the existing schemes in fast-fading wireless environments. Moreover, the computational complexity brought by the DL predictor is negligible compared to off-the-shelf computing hardware.

Topics & Concepts

RelayFadingComputer scienceChannel state informationCooperative diversityDiversity gainChannel (broadcasting)Transmission (telecommunications)Selection (genetic algorithm)Synchronization (alternating current)WirelessRelay channelAntenna diversityScheme (mathematics)ExploitAlgorithmComputer networkTelecommunicationsArtificial intelligenceMathematicsPhysicsComputer securityMathematical analysisQuantum mechanicsPower (physics)Cooperative Communication and Network CodingAdvanced MIMO Systems OptimizationAdvanced Wireless Communication Technologies
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