A steerable antenna system redirects traffic between communication networks to optimize link utilization.
Integrates gyroscope data locally to lower transmission rates, reducing power consumption while maintaining measurement precision.
Positionable beacons transmit 3-D coordinates to refine pose estimates via a SCAAT Kalman filter, resolving GPS attenuation and marker density constraints.
Route determination section calculates target traveling paths to minimize repeated ground contact areas for work vehicles.
UWB LAN anchors resolve indoor positioning limits by measuring time-of-flight distances with picosecond precision.
A collision risk calculation device converts geometrical region data into numerical values to enable quantitative assessment.
A mobile computing device determines location estimates based on beacon signals to optimize power usage.
Processor module determines action spot locations relative to mobile device position and signifies activity levels on a graphical user interface.
An autonomous locomotion craft moves to a network coverage point to relay communications for users outside the mobile communication range.
Fusing binocular parallax with inertial measurements resolves localization drift in sparse texture environments.
A location forecasting system estimates device position using sensor data to minimize continuous GPS usage.
A PDR positioning algorithm adjusts step size based on distance to virtual beacons.
A 3D positioning system corrects inertial navigation sensor drift using terrain elevation data and covariance intersection fusion.
A microphone array system uses beamforming and cross-correlation to automatically pair audio signals with source positions.
An autonomous drone uses LiDAR and AI to detect obstacles along planned routes, eliminating the need for expensive centralized control stations.
A speed command generator adjusts vehicle travel speeds using map data and curve conditions to ensure safe transitions.
Altitude map resolves floor detection inaccuracy by aggregating crowd-sourced sensor data.
A mobile terminal generates fishing tracks using GPS positioning data to record user location and target area coordinates.
A vision positioning system determines camera orientation using unique visual objects in images.
Iterative satisfiability checks on logical path representations verify obstacle avoidance without exhaustive enumeration, reducing computational time.
A threat object map creation module uses a three-dimensional sphericity metric to evaluate correlation maps between sensor detection data.
A sensor IC calculates posture variation using a dedicated calculation unit operating at high frequency to process angular velocity data.
Radio frequency identification and machine learning detect objects behind barriers, resolving accuracy issues with static product listings.
A camera detects environmental markings to estimate vehicle position, reducing radiation reflection errors in enclosed spaces.
Automated system calculates speed profiles to manage required time of arrival constraints across flight phases.
Ocean surface topography matching determines geographic position by correlating observed gradients with stored reference contours.
Visual tag detection eliminates wireless signal interference and satellite limitations for accurate indoor positioning.
Beacon-based indoor navigation determines user proximity to hazards, resolving the contradiction between manual warning reliability and system complexity.
Clustering road lane detections by parallel criteria and heading differences removes redundant sensor data, improving map accuracy.
A system matches time-lapse position histories to dynamically associate objects without direct interaction.
Automated flight plan optimization identifies shortcuts between waypoints to calculate efficient trajectories.
A pickup cart display replicates the physical arrangement of accommodation portions to guide operators during item placement.
A terminal management system identifies kiosk locations and transmits data to technician mobile apps.
A handheld device uses non-aligned ultrasonic transducers to emit sound and record echoes for spatial localization.
Threshold-based accelerometer gating minimizes continuous GPS usage, resolving the contradiction between location precision and energy consumption.
Dedicated sensor processors acquire and store data in FIFO queues while the main application processor remains inactive, reducing battery power consumption.
Belief state planners construct graphs in joint state spaces to account for localization uncertainty, reducing multi-vehicle rendezvous failures.
A 4D flight plan generator processes meteorological and safety data to produce precise route plans.
Onboard camera detects predefined marker patterns to determine guidance information, resolving radio communication ineffectiveness in noisy environments.
A semantic map generation system organizes IoT devices by spatial location to enable intuitive visual management.
A sea route evaluation device compares user-created paths with optimal routes to provide clear feedback.
A portable terminal calculates altitude by measuring atmospheric pressure and receiving reference data from a fixed-point device.
A mobility observation framework groups locational data into variable-length sliding time intervals to generate geometric representations of object movement.
Ad-hoc wireless devices form a neural network to detect human body position through 3D space image voxels.
A system calculates pedestrian sinuosity from shoe-mounted transceiver foot position data to assess walking fluidity.
Machine learning analyzes captured images to classify property damage while augmented reality directs user movement toward obscured structures.
Automated race route distribution system transmits directional data to mobile structures via sensors and displays, eliminating manual entry errors.
A mobile geolocation method combines global, personal, and local user habit probability distributions to determine current place.
A computer-implemented method processes mobile device trajectories in a map frame of reference to determine transition locations.