A segmented driftdown, deceleration, and final approach path helps pilots conserve energy and reach a runway after total engine thrust loss.
A hollow circular elastic member between fixing plates spreads mount stress and damps gimbal vibration for steadier UAV imaging.
Spline-based multipoint cable cam control enables smooth UAV footage with dynamic speed adjustment and safer trajectory tracking.
A winch and horizontal repositioning mechanism stabilize a tethered hook, improving UAV payload pickup and drop-off accuracy.
Drones encode media as 3D formations that a phone camera identifies for interactive, location-specific playback without network access.
Touch position changes set gimbal rotation angles directly, removing explicit stop commands and making control faster and more intuitive.
An aerial relay uses LIDAR-based environment sensing to keep links active and guide moving objects through obstacle-blocked areas.
A modular interface lets one payload mount on aerial, handheld, and wearable supports while preserving control and data transmission.
Pre-formed apertured plates bonded to metal sheets replace costly milling of aircraft grid panels, reducing build time and cost.
Sensor-driven prediction and feedback stabilize long-line loiter maneuvers, reducing bobbing, hazardous acceleration, and load response delays.
Visible and infrared cameras share real-time tracking data so a UAV can re-lock targets when one sensor loses visual contact.
A boom-mounted nozzle, sensors, and tethered paint supply help a UAV hold position and apply paint precisely on large structures.
In-flight keyframe edits let a UAV recompute its spline path without stopping automation, preserving pilot control for complex camera shots.
Marker-based sensing lets an autonomous vehicle align with a UAV for precise goods transfer, reducing misdelivery and damage in wind or rain.
Real-time cloud analysis lets inspection drones adapt flight and data capture during hazardous asset surveys, improving accuracy and efficiency.
Machining a flat plate before creep age forming helps make complex aircraft panels with less springback, simpler tooling, and better repeatability.
A boom propeller and force-sensing end-effector decouple UAV motion, enabling precise six-DOF control during object interaction.
Propulsion devices stabilize a pivoted payload mount independently of vehicle motion, reducing platform torque and gimbal complexity.
Sequentially engaged roller sets contour closed-loop ring components without removal, cutting profile change time and avoiding post-forming welding.
A segmented L-shaped gimbal layout removes geometric blocking, giving multiple payloads spherical FOV and accurate 3D target tracking.
Ambient pressure changes drive a piston pump to feed lubricant to the aircraft screw-nut interface, reducing manual replenishment and leakage.
Optical image comparison verifies mission-critical data on uncertified displays and flags any loss of integrity, continuity, or availability.
Dual operating units guide the drill through stacked parts while one vacuum captures dust and scraps from both entry and exit sides.
A flexible circuit wrapped around the gimbal motor shortens connections, saves space, and keeps electrical links stable during 3D rotation.
A resin entry sheet with solid lubricants and gas cooling cuts CFRP and metals with less drill wear, longer tool life, and fewer burrs.
A priority-based command filter lets multiple UAV control sources coexist while blocking conflicts and enforcing airspeed and geofence limits.
Closed-loop variable displacement pump control limits receiver inlet pressure, cuts energy waste, and reduces fuel heating in aerial refueling.
A curved inlet and splitter feed a rotating deaeration rotor to separate air from oil efficiently without a large static reservoir.
Sensor fusion and onboard threat analysis let unmanned security vehicles reroute, record video, and send alerts in real time.
Real-time staff direction and speed analysis lets a spraying UAV expand its warning range and pause spraying before workers enter risk zones.
A porous contoured vacuum support holds sheets in contact during machining to reduce spring back, improve hole quality, and protect drill bits.
A bead-expanded collet creates a positive stop in the guide hole, allowing high drilling thrust while compensating for part deformation.
A two-outlet blowdown valve splits air-oil flow by oil fraction, reducing misting and pressure buildup while improving aircraft engine oil scavenging.
Tension-based motor control stops reverse rotation when pull force drops, preventing cable backlash and reducing manual hoist unwinding effort.
A drone projector uses navigation data and surface reference points to correct image distortion on stationary or moving surfaces.
An autoloader and feedback signals let a UAV locate, pick up, and transport curbside payloads with precise autonomous delivery.
A guided internal routing path keeps gimbal transmission media uncoiled, reducing friction and inductance while preserving image signal integrity.
Real-time drone video overlays map alarm events to property locations, improving false alarm verification speed and accuracy.
By calculating how far the installation portion should move to meet a UAV-delivered workpiece, alignment becomes faster and avoids repeated positioning.
Autonomous boom steering maintains a stable non-zero angle for precise receptacle engagement, improving multi-aircraft in-flight refueling.
Segmented driftdown, deceleration, and final approach guidance helps pilots reach a runway after total engine thrust loss with lower workload.
An upper leaking tank inside the sump feeds lubricant by gravity and is refilled from the sump bottom to limit splashing during tilting.
Image tracking maps a suspended UAV delivery device in real time, correcting descent deviations for accurate ground payload release.
High-level UAV skill APIs replace direct pitch, roll, yaw, and power control to reduce pilot error and support safer autonomous flight.
A digital observer uses wide-view and directed cameras with radar or lidar to identify airspace objects and support BVLOS UAV safety.
Dynamic roll movement combines contact adjustment and origin shift to form variable-width arc parts with precise inner and outer curvatures.
Beam orientation and range data turn illuminated rescue landing spots into shareable coordinates, easing pilot workload and multi-aircraft coordination.
A host aircraft relays links over terrain and charges attached parasite UAVs, enabling precise in-flight release and longer missions.
A mediator platform matches sensor requests to drones already in flight, cutting UAV data collection cost and delay through shared capacity.
GPS-based distance checks trigger staged UAV responses near restricted airspace, from alerts to hover or descent for safer compliance.