This case maps an uplink hopping pattern to SBFD subbands, keeping resources in range without separate pattern signaling.
This case separates SRS and CSI-RS measurements to improve downlink CSI accuracy for UEs with partial reciprocity.
Dynamic CSI reporting adapts to scenarios while limiting hardware complexity and costs.
This NR case combines positioning with MsgA and MsgB to reduce signaling overhead, time to first fix, and UE power use.
A combined preamble and data transmission streamlines random access and uplink mobility, reducing latency and UE power consumption.
A first-SCI timer keeps DRX receivers active for later control and data signals, reducing sidelink transmission delays.
This case coordinates paging configuration, DRX cycles, offsets, and search spaces so relay UEs monitor remote UE paging efficiently.
Defined slots, search spaces, and monitoring occasions preserve scheduling flexibility while reducing receiver activity above 52.6 GHz.
ASIC mapping reduces latency when multiplexing 5G uplink UCI, data, DMRS, and PTRS.
Prioritization and reference rules align UE and base-station PDCCH selection across overlapping search space sets.
This case groups CORESETs by TCI state to reduce unnecessary PDCCH monitoring while preserving downlink reception reliability.
This 5G NR case uses segment-based UCI multiplexing and redundancy version cycling to manage overlap across multi-slot PUSCH transmissions.
A transmission block indication links redundant scheduling grants and TCI paths to preserve uplink data reception during FR2 blockage.
This case configures multi-slot PUCCH repetition and PRB hopping to balance transmission reliability with efficient resource use.
This case uses RA information to map PUSCH transmission across RB interlaces and guarded subbands in unlicensed bands.
This case fixes the PUCCH symbol count to align DMRS and UCI mapping, improving signal demodulation across varying durations.
Preconfigured uplink and downlink resources let idle or inactive UEs support positioning while reducing power use and signaling overhead.
Multiple SRS resources and DCI port indications help UEs support up to eight transmit chains for PUSCH transmission.
Co-channel MLD APs use eMLSC domains and IDs to maintain connectivity during seamless Wi-Fi roaming without reassociation.
This case uses shared and entity-specific TCI components to reduce beam signaling overhead for uplink and downlink transmissions.
A streamlined random access procedure lets ambient IoT devices acquire resources while reducing signaling overhead and energy use.
In SBFD operation, DCI-driven PDCCH skipping detects overlaps and prioritizes uplink transmission to reduce latency and power consumption.
This case separates semi-static RRC settings from dynamic MAC-CE or DCI updates to reduce overhead and support MU-MIMO adaptation.
IMS data channel signaling uses capability and subscription checks for clearer establishment.
Dynamic SBFD signaling adapts resource availability to asymmetric traffic.
This case combines FD capability signaling with initial access so network nodes can configure RACH resources and reduce interference.
This case uses search-space priorities and candidate limits to reduce PDCCH blind detection complexity in 5G WTRUs.
This case uses uplink BWP resource blocks and a reference RB to align subband frequency resources in downlink slots.
Evaluate measurement gaps before secondary-network scans to protect primary service.
This case dynamically selects a second PUCCH resource from configured options based on UCI payload size, improving uplink resource use.
This case aligns FDRA with single-side or double-side shifts, improving spectral efficiency and reducing overhead in passive backscatter.
This NR transmission approach uses uplink, supplementary uplink, and ultra-high-frequency bands to separate signals without using downlink spectrum.
This case separates transmission and reception frequency resources so readers can send and receive backscatter signals simultaneously.
This case groups legacy CMRs into multi-resource configurations, supporting CSI-RS beyond 32 ports while improving throughput and latency.
Dynamic RS pools speed radio link assessment and beam failure recovery.
A single hopping table aligns hopping timings across channel durations, reducing unallocated radio resources and processing load.
This wireless communication case uses adaptive information blocks to schedule multiple carriers with one DCI and less overhead.
Dynamic RRC and DCI signaling improves UE resource-set control for flexible PDSCH scheduling.
This case uses adaptive feedback delays for grants and relays to balance sidelink latency, processing load, and signaling use.
Independent carrier configurations distribute messages across wireless resources, improving reliability and reducing transmission latency.
Configurable resource-value spacing adapts BWP and CORESET assignments for RedCap and diverse UEs while avoiding frequency-domain overload.
The case aligns Edge resources and communication links to device capabilities, balancing fairness and performance consistency.
Preconfigured feedback sequences help UEs block spoofed sidelink ACK and NAK signals.
This case uses configured SDT search spaces and periodic PDCCH monitoring to schedule small data without full connection setup.
Separate patterns align control puncturing and data rate-matching around cross-RAT reference signals, preserving spectral efficiency.
Map DCI receiving positions to time resources for more reliable URLLC transmission.
Terminals report SCS-specific processing limits to improve scheduling reliability.
This case segments PDCCH decoding and releases configured-grant PUSCH settings to reduce latency and UE energy use.
This case configures PUCCH repetition count, timing, and beam selection to improve HARQ feedback reliability during beam blockage.
This wireless paging case assigns PO groups to terminal groups, clarifying time-domain resources while reducing power and network overhead.