Path loss signaling compensates for varying transmit power to improve positioning accuracy in LTE networks.
Electronic device detects neighboring devices and displays communication session interfaces automatically, resolving time-consuming manual browsing bottlenecks.
A behavior analysis device uses code division multiplexing to transmit unique signals from a single wireless transmitter.
A wireless tracking system processes channel state information reflections from a writing instrument tip to determine position.
Hash functions process anonymized location data to build geo-social networks, resolving privacy compromises while maintaining targeting precision.
A system associates mobile device identifiers with user identities to enable precise location tracking within large public venues.
Configures Radio Access Network Notification Areas with timing-based temporary tracking areas to reduce signaling overhead.
Cloud system sorts space objects using user relevance, timeliness, and objective data to resolve contradictions between search versatility and accuracy.
A processor estimates device location using received signal strength and timing data from nearby base stations.
A stack-effect compensation model refines wireless terminal elevation estimates using neutral pressure plane data.
A system calculates cyber risk scores for network devices using aggregated data.
Analyzes real-time demand patterns across sub-regions to identify under-supplied areas, guiding providers to reduce wait times.
A video streaming system manages adaptive bitrate playback by suspending sessions in radio white spot areas and switching to locally cached content.
Proactive LMF selection reduces locating delay by pre-establishing user plane secure connections before terminals exit current service ranges.
A zone-based communication system segments user devices into inner and proximity areas to enable targeted message delivery.
Generative state-space models create plausible obfuscated user location trajectories that preserve spatiotemporal correlations.
A system calculates aggregated locations from time-distributed data to predict mobile user equipment presence at specific future times.
Mobile devices cache location data and upload it via opportunistic transports to reduce cellular data usage.
A wireless pet guidance system fuses GPS and inertial data to track animal position.
An advertising server analyzes device movement and status indicators to select tailored advertisements for mobile devices.
System creates confound-free data points by associating behavior with exposure to resolve offline measurement precision issues.
Proximity recognition system analyzes WLAN signal strength to track visitor behavior, resolving GPS blockage limitations in indoor environments.
A central management unit retrieves location-specific environmental data and compares it against user-defined profiles to trigger targeted alerts.
A performance map interface displays discrete polygons with superimposed graphical keys to visualize wireless network metrics across venue zones.
A piconet scheduling system derives a neighborhood map to enable multiple devices to transmit signals concurrently during channel time allocation slots.
Mobile device location module compares current position against pre-stored coordinates to trigger content notifications.
A mobile operating system configures multiple location services to detect geofence crossings.
A co-location scoring system compares location data from multiple devices to identify household relationships and enable targeted content transmission.
Predicting routes via a dictionary schedules location data transmission ahead of time, preventing driver distraction while ensuring timely information delivery.
A location service system dynamically selects positioning methods based on electromagnetic environment suitability to maintain continuous triggered location requests.
Ground-based wireless interrogators relay signals to responders, enabling precise tracking in obstructed environments where GPS reliability fails.
Tracking system queries access points to detect device presence, resolving location determination delays and reliability issues.
Scheduling entities coordinate time-synchronized ranging events between tags and anchors, reducing message collisions in dense networks.
A mobile device defines a geofence around its current location and sets an internal timer to detect arrival without pre-selecting a destination.