A control unit identifies available random access channel resources based on a configuration table to reduce signaling overhead during initial access.
A receiver performs convolution arithmetic on known signal sequences to detect frame synchronization signals accurately.
Terminal acquires frame timing from PBCH payloads and DMRS sequences to resolve base station band occupation discontinuity in unlicensed spectrum.
Access points monitor network conditions to adjust scanning message transmission rates using periodic beacon frames.
A delay unit introduces a calculated delay period to control information frames, compensating for roundtrip latency in distributed antenna systems.
Defining a unique Sync Beacon frame subtype prevents legacy devices from misinterpreting NAN nodes as access points, resolving association confusion.
A communication repeater system synchronizes transmission timing across multiple service providers using a master station and radio frequency units.
Applying a symmetric waveform for peer-to-peer links reduces user equipment design complexity while maintaining HARQ timelines.
A wireless synchronization method calculates timing offsets between nodes to correct clock drift.
A privacy-preserving set intersection protocol matches encrypted data communications against enterprise databases without exposing cleartext information.
Timestamp conversion parameters bridge clock domains to eliminate wireless latency artifacts in distributed audio rendering systems.
A communication system adapts data subcarrier spacing to match synchronization signal block numerology for concurrent transmission.
A group radio resource management method uses secondary cell signal evaluation to determine transmission information.
Network nodes compare Time-of-Arrival and Rise-over-Thermal metrics against terrestrial baselines to identify aerial devices, reducing signal interference.
Source device sends timing data to sink devices, which calculate composite delays to eliminate audio echoes and video lag.
A ground station forwards timing advance data to user equipment, reducing transmission power and time delays in satellite communication systems.
A hybrid preamble merges Wi-Fi and LTE fields to enable fair channel access between unlicensed band devices.
A base station configures random access occasions by establishing one-to-one correspondences with synchronization signaling blocks.
Terminal device determines distinct timing advance values for uplink transmissions across multiple transmission points.
User equipment delays Physical Random Access Channel transmission by a calculated value to reduce base station resource load from simultaneous access attempts.
A receiver determines its own position by passively listening to wireless time synchronization communications exchanged between network nodes.
A transmitter aligns signal transmission delays between antennas using a directional coupler and adaptive control loop.
Network device transmits timing range information to user equipment for time offset selection in non-terrestrial networks.
A femto cell uses a forward link receiver to synchronize timing with a macro cell, bypassing GPS dependency for flexible indoor placement.
Repeated synchronization signals with larger tone spacing and DFT pre-coding improve beam tracking efficiency and PAPR performance.
A base station adjusts its frame structure and internal timing based on received signals to synchronize with outdoor networks.
A subband full duplex timing alignment mechanism synchronizes uplink transmissions with downlink receptions using calculated propagation delays.
A synchronization signal block uses uniform bandwidth allocation for PSS, SSS, and PBCH data within a single carrier quadrature amplitude modulation waveform.
A base station determines timing advance groups for component carriers using preset rules to assign shared timing values.
Automatic transition routers auto-discover protocol islands and dynamically establish tunnels, resolving header incompatibility between IPv4 and IPv6 networks.
Multiple receiver windows with distinct start times handle propagation delays in sidelink communication, improving decoding reliability.
User equipment measures synchronization signal blocks outside active bandwidth parts using dynamic capability signaling.
LLN nodes calculate sink timing via neighbor packet reception differences, eliminating active sync overhead.
A serving network configures periodic operation intervals based on detected device speed to optimize signal timing.
Base station estimates round trip time from uplink sounding reference signals triggered by state-based DCI.
User equipment estimates sidelink propagation delay using Reference Signal Received Power relationships for accurate reference timing.
A testing framework configures common delays and ephemeris values to simulate satellite communication paths for user equipment timing verification.
Aggregating timing measurements into bulk messages reduces bandwidth exhaustion and processor load during dense indoor location detection.
A vehicle terminal maintains dual connectivity with a macro and secondary node during handover.
Network device configures distinct random access preamble parameters for terminals with and without positioning functions to enable shared time-frequency resources.
A user equipment transmits a random access channel preamble generated using sequences from multiple zero-correlation zones to an evolved NodeB.
Timing advance signals provide accurate location estimates without additional infrastructure or bandwidth.
Paging-based timing advance commands align uplink transmission with network synchronization, preventing data disruption in idle states.
First user equipment determines D2D signal receiving time using downlink timing reference to ensure accurate reception.
A transmitting terminal selects sidelink resources and DMRS patterns from base station configurations to enable efficient vehicle-to-everything communication.
Dynamic timing advance groups resolve uplink synchronization conflicts by segmenting control to reduce interference and complexity.
A network coding node estimates bits per resource element to allocate uplink capacity.