A head-mounted device synchronizes with a peripheral inertial measurement unit using interrupt request timestamps for time compensation.
Prioritizing unicast signaling and pre-compensating propagation delays at the gNB improves synchronization accuracy for HRLLC scenarios.
User equipment calculates timing advance values using data from the first base station, reducing signaling overhead and handover latency in satellite networks.
A network node estimates timing measurement uncertainty using A-GPS, AoA, RSRP, and RSRQ data to refine search windows.
Intelligent switches select master timing devices from wireless synchronization reports to distribute accurate time signals across campus networks.
Mapping m-sequences to PSS symbols resolves synchronization precision trade-offs in V2X communication.
A master timer derives system time from a coarse interrupt and high-resolution timer to synchronize wireless devices without real-time data transmission.
A paging occasion reallocation method assigns incapable user equipment to alternative time slots.
Segmenting PBCH from PSS and SSS into separate slots reduces signal searching time by eliminating frequent processing type switches.
A user equipment selects random access preambles and occasions based on configuration information to request system information messages.
Coordinated scheduling synchronizes access points to reduce network latency and improve quality of service for bounded latency applications.
Offset-based resource mapping reduces contention during random access by distributing terminals across distinct time-frequency segments.
A carrier-phase difference detection system uses a linear model to reduce feedback overhead in wireless networks.
A D2D reception terminal measures DM RS power to detect PSBCH presence, avoiding futile decoding attempts and saving energy.
Time domain rate matching on a single carrier waveform reduces peak-to-average power ratio while maintaining bandwidth utilization in high-band networks.
A computing device sends test messages over a dedicated channel to verify wireless synchronization connections with mobile devices.
A model-based method calculates synchronization metrics for each station to select the optimal master clock in a communication network.
Intra-layer sharing factor aligns serving and non-serving cell SSB periods to reduce collisions and optimize resource utilization.
Applying a BWP measurement offset corrects layer 1 measurements outside the active bandwidth part, reducing recovery errors and improving data throughput.
A NAN proxy client registers with a proxy server to offload service discovery tasks.
User equipment derives uplink synchronization timing from satellite ephemeris data and validity duration parameters.
Layer 1 measurement reports with interruption-free timing advance indications enable distributed network devices to trigger early synchronization.
A relay user equipment forwards data traffic via a PC5 sidelink to bypass outdoor-to-indoor penetration loss and maintain service continuity.
Configuring predetermined time windows for synchronization signal block transmission within a period.
A user equipment adjusts physical uplink shared channel transmission slots based on synchronization signal block configurations from serving and non-serving cells.
Dynamic timing advance determination adjusts basic units per subcarrier spacing, resolving synchronization precision trade-offs in wireless systems.
A wireless network method calculates message residence time to correct timing offsets between base stations and user plane functions.
Mapping synchronization sequences to specific OFDM resources resolves interference with WiFi while maintaining stable device synchronization.
Segmented UWB ranging phases reduce power consumption and improve network efficiency.
Aligning D2D subframe boundaries with timing advance values reduces interference with eNB-UE links while improving resource utilization efficiency.
Segmenting resource allocation into distinct indication fields improves communication efficiency while maintaining service capacity across multiple cells.
A broadcast signal transmission system applies frequency and timing offsets via a Studio-to-Transmitter Link to prevent pilot superposition.
A user terminal leverages synchronization and random access signals to manage interference from neighboring base stations.
Aligning PSSCH DMRS mapping with PSCCH resource boundaries resolves detection performance deterioration and improves resource utilization efficiency.
A gNB ignores new timing advance estimations during a restriction duration after issuing an initial command.
Satellites update uplink-downlink timing offsets based on user equipment reports to prevent communication errors from propagation delay changes.
Phase-locked subcarrier signals stabilize local oscillators in WiMAX base stations without direct GPS access.
Temporary SSB bursts without PBCH reduce activation delay and signaling overhead while preventing misidentification against regular SSB bursts.
A communication apparatus dynamically switches neighbor awareness networking operations based on wireless connection states.
Dynamic RRC state management reduces power consumption by minimizing unnecessary transitions between connected and dormant states.
User equipment determines preconfigured uplink resource validity to initiate mobile-terminated early data transmission.
An auxiliary transceiver detects synchronization signals outside standard time slots to maintain network timing.
A PSS-based beam scan method measures primary synchronization signals to accelerate user equipment beam refinement in wireless networks.
Determining adaptive cyclic prefix durations based on propagation path lengths reduces inter-symbol interference from distant high-power transmitters.
Segments uplink carriers into groups to distribute control signaling offload, maintaining reliability while increasing data transmission capacity.
Communication repeater system corrects transmission switching timing variations using a master station detector and corrector.
A user terminal forwards a particular sequence to enable base stations to detect timing references for synchronization.
Alternative demodulation reference signal patterns reduce overhead density in small cell networks.
Base station coordinates anchor channel reconfiguration using device interference feedback to prevent disruption in shared spectrum.
An asynchronous communication system spreads message transmissions to avoid interference from synchronous networks.