Segmented detectors evaluate energy independently to eliminate false carrier detection and improve accuracy in mixed-mode TDMA systems.
A reference clock transmission method using a reverse signal path within communication nodes.
Processing circuitry predicts frequency and time shifts from node movement to keep wireless transmissions within designated channel boundaries.
Segmenting the system time field into synchronized and offset parts reduces overhead channel resources during inter-radio access technology handovers.
A user equipment transmits sidelink synchronization signals and broadcast information using shared resources allocated for downlink or uplink communication.
Frequency and time indexing reduce signaling overhead by offloading message payloads to subcarrier and slot selection for device discovery.
Discontinuous transmission patterns cycle LTE activity to reduce interference and improve spectral efficiency on shared unlicensed bands.
A communication device coordinates beacon signal transmission timing to prevent interference between different wireless systems.
User equipment determines frequency domain resource locations using offsets relative to synchronization signal blocks.
Complementary timing information distinguishes positioning reference signal repetitions to enable accurate observed time difference of arrival measurements.
A frequency error estimation method processes correlator outputs using autocorrelation to preserve phase components.
Segmented primary and secondary synchronization signals reduce detection time while maintaining high correlation performance for distributed networks.
Segments total bandwidth into multiple configurable parts to reduce power consumption while maintaining high data rates.
Distinct slot type allocation sequences mitigate inter-cell interference at network boundaries, improving signal-to-interference noise ratio.
Core network node determines and transmits security context indications to electronic devices during inter radio access technology mobility.
Segmented synchronization signals map to distinct transmission resources, resolving the trade-off between wide coverage area and high transmission efficiency.
Indication message triggers random access procedure allowing user equipment to obtain timing advance for carrier switching without PUSCH transmission.
A master audio device selection mechanism optimizes data throughput distribution across networked speakers.
A Layer 2 messaging protocol detects status changes and generates messages between distributed units and radio units.
An unscented Kalman filter estimates O-RU synchronization errors using UL-TDOA measurements.
Central unit selects distributed unit for user equipment sidelink configuration to improve control reliability while managing system complexity.
A secondary node configures random access resources for a user equipment using synchronization signal block association.
Virtual cell IDs replace physical identifiers to reduce interference between uplink reference signals in multi-node systems.
Distinct subcarrier allocation enables channel estimation per antenna while eliminating interference and reducing control information overhead.
A control panel uses a repeating superframe to synchronize wireless annunciators.
A docking station identifies paired devices and predicts content based on historical user activity patterns.
An access point encodes a synchronized transmission opportunity trigger frame to allocate resources and synchronize stations within a single signaling event.
A communication node determines radio signal start times using time window positions to ensure uplink synchronization.
Buffering audio frames prevents disconnection during packet loss by enabling retransmission within the connection interval.
A synchronization signal block transmits beam indices to enable efficient multi-stage beam search.
Segmenting devices by capability optimizes coverage and efficiency while limiting signaling overhead during initial network access.
User equipment applies early timing advance to candidate cell, reducing handover latency during conditional layer 1/layer 2 triggered mobility.
Enhanced coverage mode accumulates receiver energy through periodic packet repetition without increasing transmission power.
Real-time phase error detection in quadrature demodulators corrects signal inaccuracies through feedback loops that adjust phase shifters.
A D2D terminal selects target timing by evaluating disconnection duration and device priority to resolve synchronization accuracy issues.
Pre-configured timing advances and burst formats eliminate multi-step bandwidth requests, cutting delay for small data transfers.
User equipment adjusts sidelink synchronization timing using a base station signaling offset relative to global navigation satellite system references.
Shifts the decision window using threshold comparisons of sample sums to correct sampling clock-offsets without complex correlation.
A network device generates tagged and untagged data units to detect loops within multi-chassis link aggregation groups.
Orthogonal resource allocation based on connectivity states reduces signal collisions and interference in wireless backhaul networks.
Aligning paging occasions with synchronization signal blocks reduces user equipment power consumption by consolidating wake-ups into single reception periods.
A user equipment detects a physical downlink shared channel indication to activate synchronization signal blocks.
A front-haul transport network uses distinct transmission channels to route data based on specific delay requirements.
User equipment infers synchronization signal block index values from time delays to decode master information blocks.
A base-navigator framework corrects unknown clock biases using differential pseudoranges, enabling accurate indoor localization.
Predictive timing advance commands adjust uplink transmission timing using device mobility data, preventing interference from unsynchronized signals.
A terminal device acquires maximum transmission delay times among connected devices to establish a data prohibition period.
Dual reference signals separate common phase error from inter-carrier interference, enabling accurate channel state feedback for high-order modulation schemes.
Base stations transmit multiple control information repetitions to enable user equipment to identify beamforming parameters for scheduled transmissions.
A terminal calculates signal-to-interference noise ratio using shared interference measurement resources configured with common spatial parameters.