Terminal transmits aperiodic channel state information using selective resource index reporting to minimize transmission overhead and maintain data freshness.
A hybrid beamforming device determines analog and digital beam coefficients to produce precise radio frequency radiation patterns.
Beamformed timing messages suppress multipath interference, improving Time-of-Arrival estimates.
A MU-MIMO transmission method calculates signal-to-interference-plus-noise ratio using channel state information and error coefficients.
A millimeter wave phased-array device determines beam alignment angles using a low-band communication link to reduce blind searching.
Partitioning spatial streams into orthogonal sets enables separate channel estimation and correlation averaging to reduce processing complexity.
Network side device determines vertical beamforming array information to pre-process horizontal pilot signals for user equipment measurement.
Radio base station reports search space candidate configuration to user terminals for blind decoding downlink control information.
Segmented indication fields convey terminal capabilities to resolve signaling format limitations in multi-carrier aggregation scenarios.
A Publish-Subscribe Broker architecture distributes real-time data streams across LTE network nodes to manage high connection loads.
Segmenting licensed and unlicensed spectrum reduces device complexity while enhancing network bandwidth through dynamic resource allocation.
Coherent accumulation of PRACH OFDM symbols in the time domain reduces interface bandwidth requirements while maintaining detection accuracy.
Generating low-dimensional representation data accelerates model training by reducing computational burden while maintaining communication reliability.
Embedding RTS and CTS messages within a single self-contained mini slot coordinates channel access, reducing interference between radio access technologies.
Infrastructure equipment applies a same beamforming weight vector to antenna ports for physical resource blocks.
A universal constellation diagram enables User Equipment to blindly detect interference parameters without explicit signaling.
Codebook subset restriction limits precoding matrix candidates to reduce channel state information reporting overhead.
A beam pattern table stores antenna weights for communicating apparatuses, enabling dynamic signal quality monitoring and periodic weight adjustments.
A quasi-passive vector-sum phase shifter circuit divides signal paths into parallel units to manage phase shifts in antenna arrays.
A cyclic delay diversity controller selects specific sub-carriers for phase shifting to compensate for shadow zone variations.
A user equipment transmits a beam failure recovery request on an uplink bandwidth part to receive control signaling on an associated downlink bandwidth part.
Frequency-domain block processing with cyclic prefix insertion mitigates distortion in fast fading environments while reducing system complexity.
A terminal selects an uplink working beam using the difference between measured RSRP and back-off power.
Assigning orthogonal vectors to base stations prevents destructive interference in single frequency networks.
A communication system aggregates primary and secondary cells with different frame structure types to enable efficient transmission control.
Merging antenna panels across UEs into a unified entity improves network throughput and reduces latency by eliminating separate coordination procedures.
User equipment selects channel state information reference signal resources to feed back horizontal dimension data for base station processing.
Segmenting the beam search into independent backhaul and access stages reduces system complexity while maintaining complete coverage.
Flexible DMRS port mapping with identical column vectors prevents CDD gain reduction when ports are fewer than M times L.
Wireless terminals use quasi-omni probe requests to bypass time-consuming beamforming training, accelerating discovery in 60 GHz networks.
Uplink sounding protocol reduces interference by extracting channel state information via periodic null data packet feedback.
Segmenting digital training from analog transmission reduces overhead and complexity while maintaining high directive gain.
Base station transmits data via idle resource elements in CSI-RS mapping structures during beam sweeping to resolve resource waste in high-load scenarios.
Segments training fields into subfields per space-time stream to resolve throughput-reliability trade-offs in bonded channels.
A terminal device selects receiving beams from reference signals to configure antenna panel combinations for communication.
Coordinator synchronizes two remote antennas via digital connectivity to enable concurrent transmission scheduling.
Segmenting the communication link into multiple independent antenna pairs allows data capacity to scale linearly with node count rather than logarithmically.
Integrating first and second multiplexer circuitry reduces insertion loss and loading when supporting carrier aggregation between FDD and TDD operating bands.
A network-controlled relay apparatus uses repeaters with beamforming to direct radio signals from base stations.