Preconfigured timing offsets for different RIS states let UEs keep uplink timing aligned despite delay shifts, reducing intra-cell interference.
Dynamic beam switching across repeated downlink transmissions preserves beam alignment for mobile RedCap UE, improving coverage and reducing delay.
Beam-specific IUC messages and CBR sensing help UEs choose sidelink resources and beam pairs with higher communication reliability.
Beam configuration and signal strength reporting help estimate UE location more accurately in non-terrestrial networks despite satellite movement.
By concatenating CG-UCI with HARQ-ACK and prioritizing CSI omission, this case simplifies UCI mapping in autonomous uplink PUSCH.
Pre-measured scale-model propagation data lets a base station update antenna directivity from terminal state or arrival direction without long runtime scans.
Time-slot beam switching lets a relay choose the right output direction from terminal signal timing without decoding user data.
Resource-group mapping lets terminals manage multiple uplink spatial relation candidates with lower configuration complexity and better communication quality.
Combining DFT and non-DFT precoders lets a UE adapt to phase offsets and maintain spectral efficiency in multi-antenna transmission.
Preconfigured beams and DCI-based switching help a WTRU adapt to mobility, improving link reliability without heavy beam-selection overhead.
When SyncRef SLSS reception overlaps an S-SSB period, the UE skips its own SLSS transmission to keep sidelink synchronization stable and reliable.
Historical beam likelihood guides selection of useful beam directions, improving channel estimation and downlink beamforming under low-SNR conditions.
A RIS determines and reports the minimum reflection beams needed for a target sensing zone, cutting beam sweeping, radio use, and latency.
By selecting reference channels near a user’s downlink channel, the base station cuts MU-MIMO feedback overhead and precoder complexity.
Multiple antenna modules let the tracker switch to the best orientation and maintain stronger wireless links when object position blocks signals.
Terminal measurements of candidate TRPs guide CP length and TRP recommendations to handle multipath delay variation and stabilize signal quality.
Direct and RIS-reflective beams are combined to expand candidate paths and improve beam failure recovery in 5G NR initial access.
Sequential trigger frames compare channel information across antenna groups, cutting antenna selection time before data reception.
By splitting downlink statistics collection from uplink sounding, this case reduces CSI overhead and terminal computation while preserving accuracy.
A unified triggerQuantity lets NR devices sort beam measurements consistently across events, cutting reporting overhead and ambiguity.
Radio link quality monitoring detects sidelink beam blockage early and triggers recovery to keep wireless data transmission stable.
TOA-based prioritization lets a UE rank SRS and PRS beams before CSI reporting, improving sensing and positioning accuracy with lower reporting overhead.
Joint feedback of multiple beam channel groups compresses precoding matrix reporting to cut overhead and terminal power use.
Directional beam random access helps mobile stations find base stations and complete reliable network entry in millimeter-wave systems.
Selecting a subset of frequency-domain basis vectors cuts Type II CSI feedback overhead and UE search complexity while preserving MU-MIMO accuracy.
Iterative arm nulling and channel statistics speed receiver beam training while cutting measurement overhead and search time.
Dynamic pre- and post-signal gap timing based on reference signal polarization improves UE measurement accuracy and cuts mismatch loss.
UEs measure cross-link interference across configured receive beams and report results to improve beam pairing and TDD settings.
Aperiodic SRS feedback confirms DCI beam-update decoding in 5G NR, reducing beam mismatch during mobility and low-SNR uplink operation.
LBT failure counters guide TCI switching recovery in unlicensed spectrum, reducing delay and improving link reliability.
Band-specific feedback tone indices for 20 and 40 MHz WLAN beamforming cut CSI feedback overhead while preserving sounding accuracy.
System information guides UE selection of wide and narrow beams for random access, improving channel quality and reducing interference.
Temperature sensing lets the controller correct phase drift between radar reception channels, preserving target detection accuracy.
A single SCell activation message lets the UE measure pathloss and apply a TCI state without extra signaling, cutting delay and overhead.
Transforms varying reference signal configurations into a common ML input so one UE model can estimate wireless parameters without re-training.
Dynamic DCI mapping lets a UE switch between single- and multi-TRP uplink modes while managing SRS sets, TPMI, rank, and port use.
Preconfigured TCI states and UE acknowledgement enable fast spatial-filter updates for more reliable 5G/NR downlink and uplink beam management.
Frequency-compressed subband PMIs align downlink and CSI subbands in DFFD links to cut CSI overhead while limiting interference.
Selective measurement of overlapping reference signals improves beam failure detection accuracy while limiting interference and recovery delays.
Grouping RIS reflective elements into phase-configured subsets cuts control signaling overhead while preserving beam-directed reflection.
Combining full- and partial-coherent codewords with zero matrices expands NR uplink MIMO beyond 4 ports and 4 layers for higher throughput.
Separate CSI-RS types improve channel and interference measurement accuracy in full-duplex, SBFD, and TDD reporting.
A motorized router antenna tracks device positions and redirects wireless beams to improve throughput and reduce interference in crowded spaces.
A reduced-period first broadcast signal enables coarse beam search, helping UEs find the strongest NTN beam and access satellites faster.
An external downlink pre-amplifier boosts weak cellular signals with low-noise filtering while preserving modem certification and network integrity.
Precomputed parameter sets let one wireless device send only needed model information, cutting transmission overhead and resource use.