A PKG-assisted RSMA scheme with joint trajectory-power-beamforming-compression optimization is developed for multi-user semantic communication in UAV networks and shown in simulations to beat conventional RSMA, NOMA, and SDMA on energy efficiency and semantic accuracy.
UA V-enabled integrated sens- ing, computing, and communication: A fundamental trade-off,
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Rate-Splitting Multiple Access Enabled Probabilistic Semantic Communication in UAV Networks
A PKG-assisted RSMA scheme with joint trajectory-power-beamforming-compression optimization is developed for multi-user semantic communication in UAV networks and shown in simulations to beat conventional RSMA, NOMA, and SDMA on energy efficiency and semantic accuracy.