This case compares fronthaul and backhaul signal quality to recommend range-extender movement and improve network connectivity.
Wide inactive beams provide access, while active spot beams deliver service on demand and reduce Sat RAN resource use.
Satellite ephemeris guides LEO NTN cell reselection, reducing searches and improving connectivity.
A seed-based peer distribution method cuts base station update time and network management bandwidth consumption.
This case coordinates client NWDAF discovery, selection, and re-selection to manage private federated learning in the 5G core.
ASF and ACF functions select and coordinate ACR procedures across capable network nodes, supporting continuity in 5G and NR services.
This case shows how shared AP element values reduce duplicate WLAN management-frame data across a Multiple BSSID set.
Devices monitor satellite network conditions, adjust service levels, and queue application requests until connectivity improves.
This case shows how slice support information guides 5G cell reselection, preserving connectivity when a target cell lacks the intended slice.
This case configures common search space parameters for UE acquisition of SIB6, SIB7, and SIB8, supporting timely public warnings.
This case combines MIB and SIB reselection identifiers to reduce delays when access is barred for specified UE.
The terminal monitors signal changes and updates NSA 5G state displays after threshold-triggered access in idle mode.
Extended E2 messages let the near-real-time RIC start federated learning at capable nodes while limiting external data exchange.
Terminals receive slicing information in advance to select target cells and resources, streamlining random access for low-latency services.
This case uses multicast IP descriptors in URSP rules to reduce activation steps and simplify network deployment.
This case targets exhaustive PLMN scans by searching only RATs supported by the network, reducing device current use and search time.
Discovery messages reveal relay cell reselection, helping remote UEs coordinate PC5 links without unnecessary RRC reestablishment.
This case shows how a UICC detects network loss and switches profiles to restore emergency communications without manual intervention.
This case retains MCC information across location changes to reduce UE power use, signaling waste, and registration issues.
When emergencies require positioning, the terminal shortens or removes DRX/DTX sleep periods to reduce measurement delays.
Location-based mode selection simplifies switching between maritime and land wireless networks.
This case uses uplink/downlink resource configuration and staged channel access to improve full-duplex communication in unlicensed bands.
Vehicle platooning uses V2X requests and eligibility feedback to balance reaction time, space, safety, and efficiency during joining.
RRC configuration lets user devices apply slice-group priorities to cell reselection and random access for adaptable service control.
Route VoLTE and RCS sessions to the correct IMS slice without static Diameter links.
Separate 1 Rx and 2 Rx barring signals let dual-mode UEs access cells by switching to one receiver branch when needed.
UE capability signaling validates subframe 3 for NB-IoT data allocation.
This case uses terminal-reported downlink quality in MACCEs to improve coding selection and reduce errors in NB-IoT.
An eNB forwards target gNB system messages before handover, reducing terminal access latency and energy use without extra security setup.
A monitoring entity checks a restricted zone and key server before startup, balancing data security, convenience, and infrastructure cost.
An active-slice list lets the UPF generate unique addresses on demand, reducing provisioning overhead as 5G slices change.
Using authentication-frame RSSI data and connection history, an access point adapts thresholds to protect Wi-Fi 6E performance.
Bundle files assemble functional units and monitoring policies for flexible network services.
Maps 5G service profiles into domain-specific slice attributes for enforcement.
This case derives function and slice evaluation metrics to assess individual network slices sharing one device.
This case uses slice-specific mobility profiles, thresholds, and RAT preferences to guide UE selection between source and target RANs.
When VoNR calling fails on 5G SA, the terminal switches to LTE VoLTE for an automatic retry and stable connection.
This case uses cellular encryption and Non-IP Data Delivery to provision IoT cryptographic materials while reducing authentication overhead.
This case uses SIM-stored NPN identifiers and frequencies, with base-station broadcasts, to streamline authorized network access.
This case uses AMF-maintained slice status and UE registration data to manage capacity and limit overload across networks.
This case uses geofencing, RFSP, and MNO authorization to block non-members and prioritize enterprise eMBMS traffic.
This case combines geographic and source routing with route redundancy to maintain packet delivery as mobile ad-hoc networks change.
This case pairs precise S-NSSAI slice identification with human-readable UE display labels for easier 5G network management.
An intermediary function enables NAS-limited UEs to select PLMNs and non-3GPP access networks for 5G core connectivity.
Upcoming suspend and resume indicators help 5G networks adapt scheduling as dual-SIM UEs tune away between connections.
This case uses dual cellular interfaces in one gateway to maintain a hot backup connection and reduce M2M communication downtime.
A first subscription entity shares network connection information so a second entity can connect with less latency and resource use.
This case uses session-type indications and access-specific counters to prevent threshold errors when managing MA PDU sessions.
Configured terminal ID signaling lets base stations report idle and inactive terminals to the core network for location awareness.
Application-based information-element selection creates varied wireless frames that reduce location tracking and privacy exposure.