Combines sensor wind data, aircraft information, and 3D building models to detect urban wind shear and warn of unsafe flight paths.
A one-piece 3D-printed drilling jig uses separated sockets, bushings, and stand-offs to cut jig weight, machining time, and drilling error.
A GCS combines video and target coordinates from one aircraft to guide another while maintaining positive target identification to impact.
Separated sockets, bushings, and a webbed 3D-printed jig cut machining time and weight while preserving drilling accuracy.
A second drone with a higher-accuracy camera scans obstacles ahead, letting a lighter first aircraft reroute without costly cameras on every unit.
Real-time spray mapping lets crop protection drones adjust route and nozzle output to limit drift and keep field coverage uniform.
Gunfire detection, shooter tracking, and autonomous UAV restraint cut response delay and help neutralize attackers before police arrive.
Sensor-guided docking lets an agricultural UAV refill, clean, and optimize spray missions for precise crop treatment with less chemical use.
Varying airfoil surface shapes by operating state shifts natural frequencies to reduce flutter and acoustic energy in gas turbine rotors.
A virtual camera view with flight path and rail cues simplifies UAMV primary flight information and reduces operator training burden.
Strategic gaps in hoop-wound fiber bundles plus tougher resin maintain tank pressure resistance while simplifying filament winding.
Internal on-axis stops create torsional shear at a weakened region, enabling compact hinge detachment with low OML impact and reduced FOD risk.
By predicting the aircraft flight path and velocity direction, the gimbal aligns ahead of motion for steadier, more realistic UAV imaging.
High-energy hydroforming and annealing shape thick AlMgSc rolled plate into complex monolithic aluminium structures with lower residual stress.
Close-range drone triangulation, radar, and thermal imaging improve victim location and communication when tower-based positioning fails.
Internal branched coolant conduits feed each flute to cool tapered hole reaming in titanium, cutting machining time and tool changes.
A pressure foot, clamp, and flat angle drill enable robotic drilling in obstructed, confined areas while reducing manual handling and cycle time.
Direction and orientation signals replace sensitive manual actuation to cut multirotor vibration and improve image capture stability.
By calculating and sharing each drone's imageable region, the system prevents camera overlap and reduces route-planning load.
Image-based obstacle mapping shifts the drop point and flight path so UAVs can deliver payloads while avoiding trees, roads, and sidewalks.
A 3D virtual corridor and transition point display helps pilots land or take off safely when the landing zone is obscured or weather limits visibility.
A bearing-supported offset drilling head counters torque and thrust to make close-tolerance holes at large offsets or in restricted access areas.
Video analytics keeps critical features in a drone's view, detects urgent events, and sends prioritized alerts for faster emergency response.
A movable microphone arm lets a UAV approach a target, then extend away from propeller noise to improve sound pickup without upsetting flight balance.
A retractable lowering mechanism and onboard sensors help a UAV choose a suitable delivery surface and avoid obstacles at uncontrolled sites.
A three-gimbal camera module reduces blur and vibration artifacts while separating battery and display weight for better maneuverability.
A drone-mounted camera switches between monitoring and work-support flight modes to cover excavator blind spots and avoid contact during transitions.
Periodic transverse vibration and elastic coupling let a tool unit self-align to a rivet during threading, reducing control complexity and damage.
Thermal cycling makes shape-memory or bimetal conduits flex to break coke deposits and keep hydrocarbon flow paths clear.
A curved swirl path uses centrifugal acceleration to separate air from oil in aircraft engines without larger, heavier reservoirs.
An electric over-center dump gate linkage replaces heavy hydraulics to improve retardant release control, reliability, and maintenance.
Maps authorized clearances to procedural legs to generate 3D aircraft trajectories with ground track and vertical guidance.
Pre-flight checks compare position, heading, obstacles, and maintenance history to block unsafe agricultural drone takeoff.
When primary UAV navigation fails or is spoofed, visual feature mapping and relocalization enable real-time positioning and safe landing.
Flexible motor connections and nested housings keep an aerial camera stable while reducing gimbal weight, size, and heat buildup.
Adjustable straps and fasteners secure tablets or phones to any aircraft yoke while preserving pilot visibility and reducing mount weight.
An internal gimbal shock-absorbing layout cuts external space use while improving vibration isolation and body integration in unmanned vehicles.
Optical data transmission from a total station gives a UAV real-time 3D position feedback for accurate topography measurement and less remeasurement.
A flying drone pinpoints and visually inspects disabled storage robots in low-ceiling automated warehouses without stopping system operation.
Motor current sensing lets a UAV winch detect payload pickup, ground contact, and release without landing or complex coupling hardware.
A helical guide and follower align actuator parts during retraction, preventing piston twist while avoiding added weight, drag, and wear.
A single UAV with tethered emulator payloads reproduces multiple radar and heat signatures for lower-cost swarm detection and classification testing.
Autonomous UAV routing retrieves items, avoids obstacles, and lands safely to speed final mile delivery beyond road access.
A flying marker maps the hoistway in 3D and uses onboard position feedback to place accurate marks at designated locations.
Physical-layer checks using angle of arrival, signal fingerprints, and ToF help UAV swarms verify location and resist spoofing.
Real-time drift feedback and digital application maps help drones keep pesticide distribution uniform and away from protected zones.
Autonomous UAV servicing replaces hazardous field visits by charging remote IoT devices, transferring logs, and enabling predictive maintenance.
Aggregate and drill-down UAS map views improve local situational awareness while limiting exact location precision and sensitive operator exposure.
Field targets are mapped from a first vehicle using landmarks, letting a boom sprayer apply products faster with less unnecessary travel.
Propelled clasp deployment automates object capture and release, reducing crew risk and manual hook maneuvering in difficult recovery environments.