Electronic device processes 2D images and depth maps to generate 3D video, restoring lost depth information for stereoscopic rendering.
A method for delivering system information blocks using multi-beam operations and orthogonal frequency division multiple access techniques.
A user terminal control section manages uplink signal transmission timing based on received downlink signals using shortened transmission time intervals.
Swapping and interleaving secondary synchronization codes using associated scrambling codes reduces ambiguity in multi-cell environments.
Base station transmits downlink synchronization signals via multiple propagation channels selected by a partly random pattern.
An adjustment term compensates for processing time differences between subcarrier spacings to maintain synchronization during cross-carrier scheduling.
Maps distinct synchronization signals to separate subframes for device-to-device discovery and communication.
A timing advance calculation method segments the adjustment into a common baseline and user-specific offset to reduce signaling overheads.
Segmented time durations accommodate varying numerologies, enabling efficient control information transmission.
Non-contiguous and contiguous tone sets transmit timing signals that allow the base station to measure arrival time and correct propagation delays.
Client detects expired timing advance and triggers base station reconfiguration, reducing signaling overhead and power consumption.
A UE prohibit timer restricts early synchronization reporting frequency to prevent excessive network resource consumption during intra-cell mobility.
A telecommunications receiver samples IR-UWB preamble sequences to determine frequency shifts for synchronization.
A relay UE transmits synchronization signals only during limited periods to conserve power.
Nodes exchange capability information to select appropriate timing alignment cases, resolving device complexity while maintaining IAB operation reliability.
A user equipment reorganizes timing advance groups to manage uplink synchronization across multiple component carriers.
Segments wideband coverage into subband-confined CORESETs to maintain detection reliability during Listen Before Talk procedures.
A digital phase-locked loop derives a corrected clock from timing messages to estimate frequency synchronization accuracy.
A base station broadcasts synchronization information allowing IoT user equipment to calculate independent transmission schedules.
User equipment selects a timing master from discovery signals to synchronize device-to-device communications.
A user equipment determines sensing and resource selection windows based on projected listen-before-talk completion time.
Adding a small intermediate frequency offset modulates carrier leakage away from the center frequency, improving receiver sensitivity by 3 dB to 4 dB.
A low reuse preamble transmits system information on a downlink traffic channel to enable user equipment detection.
A network node detects overshooting cells using real-time transmission environment information to determine dynamic coverage range adjustments.
Signaling interactions between source and target cells prevent air interface synchronization loss when base stations switch off to save energy.
A user equipment identifies a synchronization signal block frequency to generate a matching security key for handover.
MBS server coordinates radio access systems to transmit identical multicast broadcast packets simultaneously.
Mathematical algorithms calculate time offsets between fixed and moving nodes, eliminating dedicated synchronization hardware requirements.
Wireless devices transmit reports at specific symbols based on open-loop timing advance values to optimize data flow in non-terrestrial networks.
Dynamic slot allocation manages overlapped vehicular networks, reducing message collisions and delivery latency in dense traffic.
Independent Bluetooth receivers synchronize stereo audio within 20 μs tolerance by comparing local frame hashes against a master control stream.
User equipment transmits small data transfers via dedicated random access channel resources while remaining in idle mode.
Terminal performs beam-level measurement via signal associations, reducing throughput degradation in multi-beam systems.
A wireless media system switches between simplex and duplex modes to maintain synchronized content output across multiple devices.
A cell site clock synchronizer generates operation clocks for processing circuits using a setting signal from an external or internal source.
Base station performs clear channel assessment before scheduling to reduce mutual interference between user equipment in unlicensed bands.
Detecting OFDM symbol phases and PBCH DMRS sequences determines synchronization signal timing without external base station signaling.
Idle mode nodes take over synchronization when the primary gateway fails, reducing power consumption while preserving network reliability.
A wireless device manages HARQ processes using Timing Advance Groups to handle network timing variations.
Automated timing offset determination enables cable modems to achieve precision time protocol accuracy without global navigation satellite system access.
A vehicle communication device synchronizes reception timing with roadside units to register specific communication areas.
Dynamic correlation window sizing minimizes signature receiving time slots while reducing self noise and maintaining measurement precision.
External light indication synchronizes in-vivo device imaging to prevent overexposure while enabling precise position detection for targeted diagnostics.
A terminal applies frequency synchronization from a primary cell and time synchronization from a non-serving cell to enable device-to-device communication.
Inverting OTFS information sample mapping order along the Doppler dimension reduces distance to channel estimation blocks.
User equipment derives target cell synchronization signal block indexes from serving cell timing to schedule communications.
Network device performs listen before talk for each SSB transmission direction to ensure reliable channel access.
A wireless LAN method allocates uplink resources using trigger frames while managing channel access through enhanced distributed procedures.
User Plane Function schedules packet release at a calculated moment to ensure deterministic forwarding in 5G networks.