A personal locator device determines position via gateway arrays or proximate wireless devices.
Generating re-purposed RSS signatures from overlapping spatial regions enables accurate mobile device localization.
A vehicle warning system adjusts alert thresholds using a self-learning map to match driver experience and environmental conditions.
A controller system connects portable field measurement devices to mobile units via wireless links for automated data capture.
A radar sensor system corrects target angle errors by fusing phase curve data with V2X communication signals.
Portable electronic device calculates vehicle speed to filter incoming calls, ensuring drivers only answer when safe or from important contacts.
Compressive sensing reduces data volume at the source, lowering energy consumption during cryptographic operations while maintaining security.
A tracking system uses motion sensors to activate low-energy tags only during movement, computing location data via radio signals.
Processor extracts travel direction data from sensing results to notify user equipment within the 5GC network.
A processing device computes predicate data from sensor readings to enable third-party application access.
A symbol input device displays a correspondence table mapping input symbols to selection targets, allowing users to select displayed options.
A vehicle agent selector uses historical service quality records to choose the optimal function portion for occupant speech.
Multiple controller devices communicate with portable devices via distinct channels to determine location information.
A server compares test signals from a mobile phone and vehicle hands-free device to determine optimal signal processing settings for voice transmission.
A vehicle control system switches between high-precision and low-power position measuring units based on mobile terminal distance.
A vehicle communication mode selection method switches between direct and network-assisted interfaces to maintain service continuity.
A wireless tracking system fuses radio timing measurements with inertial sensor data to determine mobile device locations.
Wildcard subscription resources enable timely data transmission to unregistered entities by bypassing pre-registration delays.
A wireless node allocates sidelink resources by mapping multicarrier symbols to spatial Rx parameter groups for orthogonal beam access.
Segmented avatar processing reduces computational load on mobile devices while maintaining high-fidelity rendering through cloud-based preliminary actions.
A presence sensor detects technician proximity to trigger wireless device ID transmission for automatic position mapping.
A mobile ad-hoc network enables peer-to-peer content sharing among nearby devices.
An inclined sensor axis detects vehicle spacing changes by shifting the irradiated detection region along the sensor arrangement.
Optical transmitters convert RF location data into light signals to track assets in shielded facilities, eliminating manual inventory searches.
Dynamic channel selection resolves single-channel transfer rate limits by routing control data across multiple available frequencies.
A passive relay device captures and transmits precise farming operation data using integrated GPS and cellular modules.
A network security system monitors vehicle credentials against expected values to detect unauthorized changes.
A first user equipment establishes a unicast connection over a sidelink using radio resource control messages exchanged with a second user equipment.
Transmitting sensing service information via existing signaling prevents configuration loss and maintains reliability during user equipment mobility.
Aggregating acknowledgments for multiple transport blocks into a single feedback channel reduces resource overhead while maintaining transmission reliability.
A terminal device selects a radio access technology using pre-configured service identifiers to ensure reliable data transmission.
A vehicle control system suspends user device authorization when distance exceeds a threshold.
A mobile terminal detects iBeacon broadcast messages and determines a display manner based on received signal strength.
An in-vehicle computing system manages wireless communication requests by switching between Wi-Fi and Wi-Fi Direct protocols.
Geofence-based monitoring detects abandoned field devices to prevent financial loss and unauthorized data access.
A dynamic grouping mechanism allows fast-moving vehicles to form structured convoys that share a single high-throughput connection with an access point.
A clone digital twin processes time-incremented data streams from a source model to forecast future network states, resolving DAG time dependency constraints.
A teleoperated driving system predicts mobile communication quality to dynamically adjust operational parameters.
Extracting essential pedestrian movement parameters reduces computing resource consumption while maintaining detection precision for real-time safety warnings.
An RFID reader detects a mobile device's location inside a vehicle cabin to automatically adjust functionality and reduce driver distraction.
Wireless detection maps physical lighting fixtures to virtual models, reducing manual barcode scanning errors during network commissioning.
A node device group uses a sensor data search section to locate and transmit information across the network.
Wireless nodes detect events and transmit data packets containing node identifications and positional data to resolve manual reporting bottlenecks.
A vehicle telematics unit receives a command from a central facility to initiate a local emergency call.
Chained wireless communication nodes relay scan packets to a main node for terminal device location.
A UE retransmits sidelink channels using dynamic grant index information linked to configured grants.
A mesh network system uses RSSI fingerprinting to locate portable devices indoors.