NSSAI guides preferred slice selection, reducing signaling overhead in visited networks.
When disaster roaming timers block normal registration, the UE enables emergency service access and resumes roaming afterward.
Adding load and channel information to Beacon signals lets terminals select better BSSs before communication quality degrades.
This case updates S-NSSAI registration requests after tracking-area changes, improving slice availability accuracy and service continuity.
A terminal applies positioning configuration by PLMN ID, preserving operator-specific control while sharing radio resources.
Slice information lists map priorities across tracking areas, helping UEs separate slice-aware and general cell reselection.
This case uses UE capability signaling and new PDU sessions to continue service when a 5G network slice is congested or misses its SLA.
Wireless base stations set congestion thresholds from past data to balance terminal quality.
Dynamic network searches balance public-NPN service access with terminal power use.
This case uses licensed-to-unlicensed frequency translation and mapped initial CORESET signaling to improve wireless access reliability.
An access network device uses route reassignment messages to select core network paths early, reducing repeated forwarding and processing.
This case coordinates 5G network slice updates through a master AMF, reducing signaling overload while keeping configurations synchronized.
Idle-mode users receive microcell access information from macro nodes, reducing SSB decoding during microcell energy-saving periods.
This case uses broadcast-guided feedback repetitions to improve NTN initial access for cell-edge terminals while limiting unnecessary delay.
Sharing SIB transmission status between network entities reduces post-handover requests, signaling overhead, latency, and UE battery use.
A target base station provides context and MBS configuration so an RRC-inactive UE can switch cells without losing active sessions.
A readable storage area preserves service data so an image-forming device can answer Bonjour requests without waking its main control unit.
A RIC stores UE mobility history to prioritize likely cells, improving RAN paging while reducing RNA updates and signaling overhead.
The communication method caches authentication status and session keys, allowing multiple services to share one trusted session.
Reference-point distance thresholds select neighboring-cell frequencies, improving accuracy while reducing scans and power use.
UEs identify energy-saving cells through signaling and select them using set criteria.
A ground-based server maps vehicle user-device IPs to identity records, validating access before internet connections are granted.
This case uses NCR-MT measurements and beam-pair feedback to reduce access-link interference on the control link.
This case uses required network slice information to select suitable cells and access resources before random access.
A connection-state table helps image-forming apparatuses share LAN information wirelessly, simplifying multi-device network setup.
The UE compares SNPN identifiers with stored subscriptions before registration, reducing unauthorized attempts and network resource use.
This case configures slice features across network devices and uses AMF negotiation to reduce signaling overhead during roaming.
Separate pilot processing helps terminals select network-side devices with lower overhead and improved initial-access reliability.
This case uses DCI, CORESET, or SSB to identify the SIB1 PDSCH band, avoiding full 20 MHz buffering in eRedCap UEs.
The case defines RO groups by frequency and ascending time indexes to coordinate multiple PRACH transmissions accurately.
Critical paths and coordinated parent-child switching maintain mesh connectivity and timing synchronization when backhaul links fail.
An access point advertises a service identifier and authenticates IoT devices for reliable reconnection after WLAN changes.
A dedicated network link supplies WLAN signatures so the sniffer classifies traffic, protects neighboring data, and reduces manual setup.
Pre-provisioned keys encrypt NSSAI while temporary identifiers prevent tracking and reduce waste from inefficient AMF selection.
This case uses applicability checks and parameter removal to keep terminal camping accurate after zone or state changes.
A radio access node sends tunnel parameters directly to the UPF, reducing control-plane delay during handover.
The UE excludes reference-signal resource elements from RSSI measurement to calculate more accurate RSRQ for wireless communication.
This case uses MA signature checks to keep terminals RRC_INACTIVE when possible, reducing signaling and power overhead during mobility.
This case uses a wireless management link to retrieve multiple operating systems and SIM information for flexible device configuration.
In blockage-prone 5G networks, Fast Wireless Backhaul separates control and data connections to reduce handover latency.
A connection-state table lets image-forming apparatuses share LAN information wirelessly, avoiding one-to-one computer setup.
This 5G NR case schedules adjacent-cell SSBs in different time slots to reduce interference and improve SS-SINR by 9–13 dB.
The device deactivates selected measurement events during IMS voice service to reduce fallback delay and interruptions.
A starter SIM activates alternate local or remote SIMs, maintaining wireless service when carrier connections are disrupted.
ICN-specific service requests separate control and user-plane forwarding to reduce bottlenecks and improve link utilization.
Correlate UE IP addresses with PGW and AMF data to locate roaming Wi-Fi calls and analyze usage by country.
The vehicle checks signal, location, time, data type, and permission before establishing wireless links, reducing failed attempts and costs.
This case uses an SDN controller to shift applications between terrestrial and satellite networks as coverage conditions change.
The case uses proactive scanning and redundant radio connections to reduce handover delays and service interruptions.
This case uses known CE-SIB locations or parameters on PDSCH to reduce WTRU battery use while maintaining acquisition reliability.