2011•Electronics LettersRequires access

Cooperative opportunistic beamforming using integrated relay node prototype

Geoffrey G. Messier, Jean‐François Bousquet, Sebastian Magierowski

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Abstract

Presented is a way to implement cooperative opportunistic beamforming using an all-analogue relay node. Unlike most cooperative transmission schemes, this approach does not require signal delay buffers or synchronisation at the relay. As a result, a very simple, all-analogue relay design is possible. The measured performance of an integrated prototype of the relay is used to predict the throughput improvement cooperative opportunistic beamforming will achieve on a multi-user link.

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What this paper is about

Presented is a way to implement cooperative opportunistic beamforming using an all-analogue relay node. Unlike most cooperative transmission schemes, this approach does not require signal delay buffers or synchronisation at the relay. As a result, a very simple, all-analogue relay design is possible. The measured performance of an integrated prototype of the relay is used to predict the throughput improvement cooperative opportunistic beamforming will achieve on a multi-user link.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Presented is a way to implement cooperative opportunistic beamforming using an all-analogue relay node. Unlike most cooperative transmission schemes, this approach does not require signal delay buffers or synchronisation at the relay. As a result, a very simple, all-analogue relay design is possible. The measured performance of an integrated prototype of the relay is used to predict the throughput improvement cooperative opportunistic beamforming will achieve on a multi-user link.

Key concepts: Relay, Beamforming, Node (physics), Computer science, Transmission (telecommunications), Computer network, Simple (philosophy), Relay channel

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