Real-time onboard and external feedback lets an autonomous UAV adapt flight plans and resolve conflicts without continuous human control.
Mobile authentication triggers vehicle and locating label startup, removing manual label pickup, switching, and return steps.
Alternating electromagnetic positioning helps a mobile robot follow one or more people with stable 360° tracking in outdoor and crowded settings.
A server computes relative position and movement from both wireless devices, then guides them to meet even without GPS or fixed destinations.
Binocular vision lets a UAV estimate target distance and optical axis in real time for precise autonomous orbiting where GPS is weak or unavailable.
When route choice is unclear at a fork, goal position and posture control keeps the target within the mobile device's field of view.
Quadrant-based target setting lets a user-following robot adapt to turns and avoid cutting across the user's path.
Body key-point detection lets the gimbal follow selected parts for smoother close-up tracking, steadier framing, and less blur.
Uses moving-object location data to keep communicating with a selected target while steering through less crowded paths and avoiding contact.
By calculating target positions and moving accordingly, the drone keeps directional audio effective for multiple nearby people.
Coded sky illumination and notch-filtered detection help an interceptor UAV locate small, fast rogue drones for quicker engagement.
Autonomous robots patrol activity-based forest routes to detect fires and other hazards earlier while reducing manual monitoring effort.
Real-time visual field adjustment keeps a deviating target within view, helping robots maintain continuous following without losing detection.
Real-time visual field adjustment keeps a fast-moving target within view, helping robots maintain smooth following and continuous detection.
Separate flight routing and sensor tracking let an aerial vehicle move toward one target while continuously following another with less manual control.
Ground beam footprint mapping guides aircraft movement and searchlight aiming to avoid repeated SAR searches and close coverage gaps.