A mobile application synchronizes with a vehicle's discontinuous receive schedule to manage user requests efficiently.
A network synchronization method shares configuration data through a centralized device list to maintain stable connectivity across multiple extending devices.
A network node deactivates transmissions upon receiving a timing source outage indication.
Central node transmits synchronization signals with beacon slots and hop count values, eliminating hidden node collisions and reducing power consumption.
Estimating propagation delay via satellite kinematics coordinates transmissions, raising the useful data ratio in uncoordinated networks.
A discovery burst transmission window configures user equipment with multiple channel access attempts per beam to enhance sidelink synchronization.
Subscriber units propagate channel timing references to establish common time slot boundaries in direct mode networks.
Grouping radio nodes by shared identity resolves ambiguity in interference source identification caused by limited physical cell IDs.
Network configuration defines specific bandwidth parts to resolve ambiguity in 5G NR measurement reporting procedures.
A network controller assesses connection quality at cell edges and disassociates devices from weak access points to trigger transitions.
A transmit multi-link device schedules frame transmission on one link based on backoff counter status and transmission opportunity establishment on another link.
System iteratively adjusts transmission delays between 0 and 1 ms to minimize interference in populated areas while maintaining dense network coverage.
A user equipment transmits signal-to-interference-and-noise ratio measurements to a network entity via configured channel state information reports.
Relay nodes use Precision Time Protocol to synchronize with arbitrary parent nodes, eliminating error propagation and improving spectral efficiency.
Joint secondary synchronization signal and physical broadcast channel design transmits beam identifiers to resolve detection complexity in 5G systems.
Pre-computed response values reduce latency in protected data transmission by eliminating multi-message exchange requirements.
A session management node obtains port numbers and configuration information for logical time sensitive network bridges.
Periodic message exchanges and drift rate calculations maintain synchronization stability while reducing energy consumption.
Time division multiplexed DMRS designs enable low peak-to-average power ratio operation for downlink transmissions.
A radio receiver device calculates a correlation metric using encoded bit sequences within data packets to estimate carrier frequency offset.
A communication apparatus uses an identification bit to select a specific link for beacon frame listening in multi-link networks.
Terminal manages uplink transmission during synchronous reconfiguration using distinct action sets for different reconfiguration types.
Dynamic polarization adjustment aligns receive beams with synchronization signals, reducing power losses from misalignment in high-frequency wireless systems.
Two-way message exchanges allow a tracking server to calculate clock skew and offset, resolving localization errors caused by anchor drift.
A user equipment corrects reference signal time difference measurements using data from helper devices to enhance location estimation accuracy.
Configuring user equipment to measure synchronization signal blocks without physical broadcast channels reduces base station energy consumption.
Signature filtering compares known SSS sequence patterns against detected signals to eliminate ghost cells caused by noise interference.
A wireless device determines timing adjustment parameters based on numerology to align uplink transmission.
A first user equipment determines a second device identifier using received D2D signals and cellular reference measurements.
A synchronization signal block transmission method for wireless communication systems.
A mobile device determines a sidelink resource pool using a repeated bitmap to exclude synchronization subframes.
Beacon timestamps enable precise synchronization without external servers, reducing fabrication costs and errors.
A base station schedules Time-Sensitive Networking clock information for wireless transmission to user equipment.
Sidelink round trip time positioning enables autonomous vehicle-to-everything location tracking without base station assistance.
A method estimates signal-to-noise ratio using synchronization symbol differences in digital radio signals.
A communication device adjusts data transmission timings across radio cells to maintain stable connections.
A trigger counter generates data transfer triggers within a single clock domain, eliminating clock domain transfers and reducing bit errors in wireless systems.
Low frequency transmission reception point provides beam direction information to user equipment for high frequency synchronization.
Guest digital devices determine time deltas relative to a host reference clock and adjust playback positions to align media streams.
A user equipment identifies a repetition configuration based on channel conditions to monitor downlink channels.
A user equipment detects synchronization signal blocks across organized sub-band groups spanning multiple frequency and time occasions.
Access network device adjusts downlink transmit frequency based on uplink signals to align with terminal receive requirements.
A dual MAC architecture merges monitoring and operational functions within a single wireless interface to capture channel frames for analysis.
User equipment selects synchronization sources to maintain communication links when base stations become unavailable during emergencies.
A terminal capability reporting format uses distinct frequency band indicators to transmit device support data.
Leaf nodes suppress beacon broadcasts during timeout periods, reducing network traffic while maintaining synchronized clock updates across the mesh.
Terminal selects target random access resources from broadcasted network information to initiate requests, eliminating carrier aggregation configuration delays.
Segmenting the frame into a partial subframe allows immediate transmission upon channel detection, resolving timing accuracy versus continuity conflicts.