Aggregates energy measurements from multiple sensing devices to allocate wireless channels without costly Environmental Sensing Capability infrastructure.
Allocates localized PUCCH resources near the cell center to resolve frequency diversity versus bandwidth compatibility contradictions.
Terminal receives base station parameters to determine channel access type and transmission start position on unlicensed spectrum.
Network node configures UE timing to perform RSSI measurements within idle Frame-Based Equipment periods.
Suppressing reference signals during quiet periods enables channel sensing in cognitive radio networks.
Network control device configures spectrum sharing manners between communications systems using dynamic resource allocation messages.
Regular mobile terminals acquire and forward network parameters via standardized signaling channels, eliminating dedicated test runs and external GPS hardware.
User equipment signals coverage enhancement mode changes via detachment to prevent unnecessary message repetition.
A scheduling node transmits joint grants with variable delays based on detected transmission activity to optimize resource usage.
Base station splits carrier bandwidth into regions for interlaced and contiguous resource allocations to support concurrent uplink transmissions.
Sharing transmission status allows the second device to adjust ECCA parameters, increasing successful channel access probability.
Terminal devices select licensed or unlicensed carriers based on channel availability to improve random access performance in NR-U scenarios.
A link-up device processes resource applications to update frequency availability tables in wireless communication systems.
Transmitting cell splitting patterns via X2 updates MRO parameters, preventing handover failures from dynamic topology changes.
A decentralized resource allocation apparatus manages radio and computing resources in co-located edge environments.
User equipment transmits network data upon detecting a charging event, eliminating intrusive field measurement campaigns and reducing resource consumption.
User equipment initiates random access using available PRACH subframes after the LAA cell successfully preempts a channel.
A network node system dynamically determines operational density and allocates resources based on real-time traffic information.
Signal Descriptor Objects summarize RF spectrum occupancy to resolve inefficiencies from fully allocated bands.
Segmenting terrain into vector obstacles and matrix elevation reduces computing time while maintaining prediction precision for radio field levels.
Integrating small radio units with a central module increases network capacity while reducing installation complexity and backhaul requirements.
A semi-static channel access method schedules uplink transmissions across multiple fixed frame periods in unlicensed bands.
Configuring separate measurement gaps for master and secondary cell groups enables precise RF tuning during inter-frequency measurements.
A wireless node switches between transmission and listening phases to utilize adjacent channels without interference.
A relay node executes conditional handovers after receiving flow control feedback or failure notifications from parent nodes.
Radio nodes transmit Short Control Signaling via limited Clear Channel Assessment to reduce transmission latency while maintaining interference compliance.