Dynamic CSI-RS port mapping and power boosting support flexible 5G channel estimation while separating D2D and cellular uplink resources.
An initial BWP spans dedicated NR and shared LTE spectrum, enabling fast adaptation without UE-specific RRC reconfiguration.
A common CORESET frequency area across BWP sub-bands simplifies control-channel monitoring for unlicensed wireless operation.
Floating and adaptive PUCCH configurations let UEs select available unlicensed sub-bands while conserving signaling resources.
This case shifts FDD uplink frequencies to align LTE and NR grids, reducing interference while preserving modulation quality.
Monitoring sensors and programmable channelization adapt spectrum allocation to changing signals, standards, and interference conditions.
OCC multiplexing and modified DMRS patterns adapt NR-PUCCH resources for compliant, higher-capacity NR-U operation.
Selecting carrier-relevant SL control elements during logical channel prioritization helps receivers identify the correct carrier.
This case configures MTRP HARQ-ACK multiplexing across PUCCH and PUSCH to simplify UE signaling and manage collisions.
This case adapts modulation order and transport block sizing so LTE unlicensed-band transmissions use partial subframes more efficiently.
This case uses RB-set indications and adaptive dormancy to reduce PDCCH monitoring while responding to short-term channel blocking.
LBT-prioritized uplink allocation balances QoS reliability and unlicensed-cell capacity.