END-TO-END JOINT ANTENNA SELECTION STRATEGY AND DISTRIBUTED COMPRESS AND FORWARD STRATEGY FOR RELAY CHANNELS

End-to-End Joint Antenna Selection Strategy and Distributed Compress and Forward Strategy for Relay Channels

End-to-End Joint Antenna Selection Strategy and Distributed Compress and Forward Strategy for Relay Channels

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Multihop relay channels use multiple relay stages, each with multiple relay nodes, to facilitate communication between a source and destination.Previously, distributed space-time codes were proposed to maximize the achievable diversity-multiplexing tradeoff; however, they fail to achieve all the points of the optimal diversity-multiplexing tradeoff.In the presence of a low-rate feedback link from the destination to each relay stage and the source, this paper proposes an end-to-end antenna selection (EEAS) strategy as an alternative to distributed space-time codes.The EEAS strategy uses a subset of antennas of each relay stage for Misc 25% transmission of the source signal to the destination with amplifying and Sweat Control forwarding at each relay stage.The subsets are chosen such that they maximize the end-to-end mutual information at the destination.

The EEAS strategy achieves the corner points of the optimal diversity-multiplexing tradeoff (corresponding to maximum diversity gain and maximum multiplexing gain) and achieves better diversity gain at intermediate values of multiplexing gain, versus the best-known distributed space-time coding strategies.A distributed compress and forward (CF) strategy is also proposed to achieve all points of the optimal diversity-multiplexing tradeoff for a two-hop relay channel with multiple relay nodes.

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