A synchronization raster adjusts its step size to match transmission bandwidth, enabling user equipment to detect synchronization signal blocks within narrow channels.
Transmitting synchronization signals across multiple consecutive symbols enables receiver correlation detection.
Switches high-rate AV content between 60 GHz and lower bands via chunked formatting to maintain continuity without latency.
Boosting specific code sequence tones enables efficient cell identification using simple FFT demodulation.
A communication device configures a secondary cell group via RRC messages without performing random access.
Targeted scanning of indicated frequencies reduces cell search latency and power consumption during 5G network acquisition.
A communication apparatus segments clock signals using a periodic generator and multiplication unit to synchronize processing.
A terminal detects synchronization signals while alternating input sample buffering across multiple memory segments.
Time synchronization apparatus adjusts system time using preset step values when satellite signals drop, preventing instability from direct realignment.
Segmenting the network with periodic sensors reduces energy consumption while maintaining leak detection accuracy.
A user equipment acquires network timing from a common synchronization signal and transmits an identifying pilot signal.
User equipment receives random access parameters from an anchor node to synchronize uplink timing and beam direction with a millimeter wave base station.
Configures slot offsets to adjust for round trip times, reducing scheduling latency and data transmission delays.
Control nodes merge multiple user equipment handovers into single operations to reduce signaling overhead and ensure ProSe service continuity.
Mobile stations transmit capability information to radio base stations regarding asynchronous inter-site carrier aggregation support.
Flagged routes enable network devices to update processing information with parallel notification, preventing data unit loss during the transition window.
Separates Doppler and local clock effects using reference signals to resolve synchronization accuracy issues in moving network nodes.
User equipment detects operational state mismatches by monitoring downlink messages, reducing data transfer stalls and unresponsive devices.
Broadcasting reference data and difference values reduces bit overheads for Doppler shift compensation in satellite communications.
Machine type communication devices select direct or relay paths via discovery procedures to maintain connectivity.
A terminal detects initial and third synchronization signals to identify its TRP group and corresponding numerology.
An interference cancellation repeater selects adaptive filters based on synchronization signals to cancel received signal interference.
Dynamic frequency band selection resolves data transmission efficiency bottlenecks by leveraging multiple wireless circuits for adaptive connectivity.
Adjusting synchronization signal block periodicity and count based on signal intensity improves resource utilization in weak coverage areas.
Closed loop timing advance adjusts uplink transmission without satellite signals, maintaining synchronization during outages.
A communication control device fragments non-real-time data to fit available bandwidth slots before real-time transmission windows.
A channel condition classifier extracts CSI from FTM messages to identify multi-path interference patterns.
User equipment activates an alternative base station link to prevent radio link failures during primary signal degradation.
A user apparatus executes timing difference measurements between base stations using configuration received from a master node.
Base stations signal additional random access resources when listen before talk delays beyond dedicated windows to prevent synchronization loss.
A MANET node assigns transmission slots using GPS-derived universal time references.
Base station transmits synchronization parameters prior to sleep mode and pre-transmits signals at projected wake-up times to minimize clock drift.
A user equipment apparatus manages timing advance configurations for candidate target cells to streamline connection establishment.
Terminals identify service information to select cells supporting required services, resolving reliability and complexity trade-offs.
User equipment measures synchronization signal block timing offsets to determine beam measurement groups.
Base station transmits multiple synchronization signal burst sets with varying parameters in a common carrier.
A user equipment transmits physical random access channel repetitions using multiple random access channel occasions indicated by downlink control information.
A TDMA super-frame structure embeds time-stamp fields in uplink transmissions to facilitate precise clock synchronization between industrial nodes.
A unique broadcast identifier code establishes a wireless connection between vehicles and accessories using out-of-band parameters.
A communication device synchronizes time with a base station to serve as a local source for network peers.
A multi-frequency ultrasonic positioning system determines location data using phase measurements of pulsed signals transmitted by dedicated units.
Restricting beam refinement measurements to the serving cell reduces time consumption and increases communication throughput.
Timing advance controlled switching in a universal sampling rate conversion circuit prevents signal overlap and reduces hardware resource requirements.
A wireless device adjusts its target clock using broadcast packet intervals to synchronize timing.
Fixed-location M2M terminals reuse stored uplink timing adjustment values to maintain synchronization without frequent random access procedures.
A user equipment predicts timing advance values using machine learning regressors to enable preconfigured uplink resource transmission.
A control channel transmission indicates expected synchronization signal block positions within a discovery reference signal window on shared spectrum.
Ground station characterizes satellite transponder distortions using reference signals to generate precorrection data for radiofrequency transmission.