Time-division scheduling assigns separate transmission windows to dual-SIM terminals, avoiding SIM resource conflicts and improving service reliability.
Allocation maps and modulation order data let a UE cancel phase-noise-driven inter-UE leakage in FDM and SDM downlink multiplexing.
COT sharing information carried in sidelink control and shared channels improves unlicensed-band access efficiency and cuts V2X latency.
Responder UEs opt out of group PRS LBT under local interference, improving channel access consistency and positioning reliability.
By grouping service-interested remote UEs for multicast via relay UE, this case cuts signaling, saves transmission resources, and speeds delivery.
Combining TDD, SUL, SDL, and FDD bands into a soft band improves spectrum use, coverage, capacity, and latency in one cell.
Contiguous and distributed RB-set selection improves sidelink coverage in unlicensed bands while reducing latency and resource contention.
Intra-UE sharing of LTE sensing results helps NR sidelink exclude overlapping resources, improving allocation efficiency and reducing conflicts.
Beam energy projections and preset beam correlation data let base stations determine UE spatial association without full SRS, cutting overhead and interference.