Bitmap resource remapping enhances configuration flexibility and channel utilization while reducing energy consumption in unlicensed spectrum transmissions.
A communication scheduling system assigns time slots to M2M devices based on real-time network resource utilization statistics.
A user equipment divides contiguous PUSCH transmissions into two sets to apply distinct channel access procedures.
A reinforcement learning model predicts drone trajectories to minimize ping-pong handovers and signaling overhead.
DCI K3 values resolve synchronization bottlenecks by providing precise timing offsets that balance adaptability against signaling overhead.
Receiver UEs signal expiration times to transmitters, preventing packet loss and reducing latency in wireless networks.
A User Equipment event processing method measures signals and reports results when configured conditions are met.
Segmenting search spaces for different random access types resolves parsing errors when multiple terminal device versions coexist in a cell.
RF collision avoidance coordinates LTE and WLAN transceivers to prevent intermodulation distortion without increasing device size or noise figure.
A network entity selects terminals based on distance and capacity values to perform radio measurements.
Generating transmission gaps allows terminals to measure interference during active data periods, resolving capacity reduction in shared unlicensed bands.
A radio terminal reports measurement information from a source cell to a target cell after moving between different radio access technologies.
Wireless devices buffer scheduled data to transmit immediately after listen-before-talk succeeds.
A user equipment manages PSCell handover using a trigger message exchanged with the target primary cell to coordinate the transition process.
Network-side channel sensing identifies idle periods to configure random access occasions, reducing latency and improving reliability.
UE reporting of NSA and SA cell attributes updates LTE neighbor lists, resolving missing 5G information gaps.
A cell change method adjusts reselection parameters based on user equipment mobility state to minimize unnecessary handovers in heterogeneous networks.
A station segments wireless channels into primary and secondary resources to enable non-contention based multiple access.
Classifies random access procedures into two-step and four-step categories to reduce processing complexity while maintaining complete information capture.
A communication apparatus determines measurement configurations and transmits results according to satisfied reporting rules.
A multi-link backoff counter mechanism segments resource access across parallel links to improve station contention efficiency.
AMF registration of multiple SUPIs coordinates paging for multi-USIM devices, resolving single-transceiver conflicts and ensuring reliable service delivery.
A base station detects airborne radar signals and schedules downlink transmissions during specific subintervals to maintain connectivity.
A phase-based search procedure identifies reflected FMCW radar signals without reference signals.
Candidate time domain locations resolve unlicensed spectrum channel conflicts by enabling dynamic paging signaling transmission.
A relay station switches communication frequencies to route signals between mobile stations.
A first terminal autonomously determines whether to monitor or use a resource object based on preset information.
Mode 3 UEs transmit reserved resource information in SCI messages to enable autonomous selection by mode 4 devices.
Predicts user equipment trajectory using beam strength to allocate edge resources before handover, reducing migration latency.
A wireless device selects consecutive time slots based on transport block priority values to enable efficient multi-slot sidelink transmission.
Wireless sniffing enables non-link control of physical layer testing, eliminating expensive link-based hardware costs.
A digital twin representation of a radio network uses machine learning to identify representative node subsets for efficient monitoring.
Network node provides instructions to user equipment for reporting beam measurements within existing minimization of drive test configurations.
Target-specific configuration reduces resource consumption by limiting responses to the intended base station.
Prioritizing paging reception resolves missed voice calls while maintaining packet-switched data connectivity.
A network component transmits a list of prepared target cells to a mobile device for seamless connection switching.
A bi-layered mobility approach handles serving cell changes in 5G networks by distinguishing between intra and inter distributed unit scenarios.
A benefit algorithm model calculates expected access benefits to select target cells for user equipment handovers.
Segmenting configuration data via preliminary action optimizes handover reliability while reducing device complexity.
A two-step random access procedure combines preamble and payload transmissions to optimize wireless communication.
A wireless device checks 5G network support for existing calls during registration to maintain active sessions.
Access nodes adjust measurement thresholds based on anchor carrier status to facilitate user equipment transitions between carriers.
Predicted location information directs cellular network control signals to minimize frequent handovers, reducing network traffic and extending battery life.
A carrier switching model predicts signal strength and radio access technology to determine optimal network transitions.
Predicts connection feasibility to select suitable carriers for reference signals, reducing network energy consumption and resource overhead.
Network modules coordinate IP packet forwarding between transceiver modules to maintain data continuity during access terminal transitions.
A network entity configures reception points to vary participation in uplink data forwarding based on signal quality metrics.
Transferring immediate MDT configuration data between source and target networks maintains measurement continuity across multiple PLMNs.