A data reader adjusts antenna phase to manage radiation patterns and prevent dead spots during radio IC tag communication.
A joint estimation method uses covariance matrices to process ranging and anchor measurements.
A sonar processing unit calculates quality specifications for target trajectories and represents them in a single solution space.
A relative mapping system fuses magnetometer readings with dual-stream distance measurements to locate misplaced companion devices.
Derives signal source positions from simultaneous emissions by evaluating discrete time difference of arrival candidates and intersecting hyperbolic curves.
An equilateral triangular UWB antenna array determines client location via Phase-Difference-of-Arrival measurements.
A navigation system uses a communication port driver to adjust position using motion sensing data, maintaining accuracy in tunnels or high-rise buildings.
Adaptive location resolution reduces battery usage by switching detection modes based on proximity to stored geo-fence boundaries.
Multiple Range Estimation Location determines mobile station position using range rings derived from forward and reverse channel timing relationships.
A terminal receives positioning configuration and measurement time parameters from a network device to measure multiple carrier frequencies.
Embedded tag data enables mobile readers to calculate indoor positions via weighted averages, resolving GNSS signal loss in obstructed environments.
A hybrid positioning system combines GPS and base station data using a monitor cycle control unit to optimize location services.
Wireless ranging protocols measure distance between a mobile device and tagged hardware to automate control session establishment without manual selection.
A radar system generates environmental maps for ground-based vehicle localization by matching sensor data against reference maps.
A wireless terminal filters interfering base stations via assistance data lists to maintain measurement precision during location determination.
Master UUV broadcasts high-precision navigation data to slave units, correcting low-precision INS drift through acoustic ranging and extended Kalman filtering.
A location server filters client device scan lists to store only reliable access point identifiers and associated coordinates.
A multi-band wireless networking system tunnels machine-to-machine communications within WiFi transmissions between access points.
Decoding microscopic coded objects determines location without external signals, preventing tampering in obstructed environments.
A second user equipment intercepts uplink signals from a first device to capture measurement data for positioning calculations.
A user device detects antenna occlusion by analyzing RSSI changes and applying a calculated correction factor to signal measurements.
An intermediary server stores and forwards transmission data between terminals.
Embedded location data within ATSC 3.0 signals enables precise viewer identification despite scattered transmission sites.
A position detection system measures distances between master and slave devices using high-frequency signals to determine location within a measurement area.
A location server selects measurement data from user equipment and base stations to determine positioning information.
Weighted signal averaging calculates label positions to reduce obstruction errors in retail tracking.
Wireless devices determine an extended format to report code phase, carrier phase, and GNSS Signal ID measurements with higher resolution.
Authentication server retrieves policies and resolves requests using device location data, preventing unauthorized access while automating IoT verification.
A UWB localization device validates angle of arrival data using orientation sensors to filter non-line-of-sight measurements.
A calibration system computes time of arrival measurements to determine relative positions of RF receiver antennae.
A geolocation system clusters angle and time of arrival data using a Dirichlet Process Mixture Model to identify emitter sources.
A mobile device determines location by combining reference signal measurements with sidelink discovery signals from neighboring stations.
A synchronized graphical user interface displays plan views and text reports simultaneously, eliminating window switching to resolve workflow time bottlenecks.
Master anchor transceivers calculate target coordinates using time-of-flight radio frequency signals.
Triangulated thermal cameras capture dynamic temperature data through a constrained pathway, resolving delays in crowded screening.
Pre-registered small cell data enables accurate location determination without excessive signaling that degrades network performance.
User equipment reports location within calibration regions to enable dynamic positioning reference signal bandwidth adjustment.
A probabilistic ray-tracing method computes user equipment position using pre-calculated angle distributions.
A tracking device combines video, infrared, and Wi-Fi sensors to identify individuals across zones.
Independent component analysis transforms correlated received signal strength vectors into uncorrelated components for user equipment positioning.
Radio frequency sensors partition wireless uplink signals into spectrum tiles for statistical aggregation and clustering to estimate device positions.
A loosely-coupled integration filter combines global navigation satellite system data with inertial sensor outputs to generate blended position estimates.
Integrated processor combines laser detection with aircraft position and orientation data to locate perpetrators.
A network node obtains an approximate position in a first frequency allocation to determine resources for a second positioning procedure.
RF stimulation activates super-regenerative receivers to generate cross-modulated emissions, enabling detection of weak unintentional electromagnetic signals.
A GPS signal data converter device distributes information to multiple output ports.