B64F1/222

Storage system for flying object

A storage system for a flying object is equipped with a landing portion having a landing surface on which the flying object can land, and a storage main body for storing the flying object that has landed on the landing surface. The storage main body includes opening and closing portions that cover the landing surface. The storage system is further equipped with retaining mechanisms adapted to retain the flying object in a state of having landed on the landing surface from a direction perpendicular to the landing surface.

SURVEY MIGRATION SYSTEM FOR VERTICAL TAKE-OFF AND LANDING (VTOL) UNMANNED AERIAL VEHICLES (UAVS)

A method of migrating unmanned aerial vehicle (UAV) operations between geographic survey areas, including: uploading a first plurality of flight missions into a first UAV pod; deploying the UAV pod; autonomously launching the UAV from the UAV pod a plurality of times to perform the first plurality of flight missions; providing first survey data from the UAV to the UAV pod; autonomously migrating the UAV from the first UAV pod to a second UAV pod; receiving a second plurality of flight missions in a second UAV pod; providing the UAV with one of the second plurality of flight missions from the second UAV pod; autonomously launching the UAV from the second UAV pod a plurality of times to perform the second plurality of flight missions; and providing a second survey data from the UAV to the second UAV pod; where the autonomous migrating of the UAV to accomplish the first and second survey data happens autonomously and without active human intervention.

Enclosure For An Unmanned Aerial System

An enclosure for a UAS includes a housing having a base and a plurality of sidewalls coupled to the base, a motive apparatus coupled to the housing, a platform coupled to the motive apparatus, and a plurality of lids pivotably coupled to the sidewalls and the platform. The platform and the plurality of lids move collectively under control of the motive apparatus (e.g., a linear actuator). Driving the motive apparatus in a first direction causes the platform to raise from a stowed position toward a deployed position and causes each of the plurality of lids to pivot from a closed position toward an open position. Conversely, driving the motive apparatus in a second direction opposite the first direction causes the platform to lower from the deployed position toward the stowed position and causes each of the plurality of lids to pivot from the open position toward the closed position.

SYSTEM AND METHOD FOR PROTECTING AGAINST IMPACT BETWEEN A VEHICLE AND A FACILITY FOR HOUSING THE VEHICLE
20220179095 · 2022-06-09 ·

A method of protecting against impact between a vehicle and a physical structure of a facility having an opening for the vehicle to pass through includes defining a monitored plane relative to an edge of the opening, the monitored plane defined by a plurality of baseline measurements, wherein each of the plurality of baseline measurements: 1) corresponds to a distance between a sensor spaced apart from the edge and one of a plurality of virtual ends of the monitored plane, and 2) is identified by an angle parameter. The method also includes obtaining a subsequent measurement; evaluating the subsequent measurement relative to a corresponding baseline measurement to determine if a criterion indicative of an intrusion of the monitored plane is satisfied; and activating an alarm when the criterion is satisfied.

Ground support station for aerial vehicles
11352148 · 2022-06-07 ·

A ground station for aerial vehicles including a protective casing; at least one charging mechanism; and an extendable landing pad. The extended landing pad is operable to transition between a closed configuration having dimensions suitable to be contained within said protective casing, and an open configuration having dimensions suitable to land the aerial vehicle.

Drone routing combining autonomous flight and assist vehicle travel
11738867 · 2023-08-29 ·

A system comprises a drone having autonomous drive capability and an assist vehicle (AV) for transporting the drone in an assisted drive mode in which the drone is held at, and transported by, the assist vehicle. Control hardware and software are programmed to determine drone travel over a route having a first route section in which the drone travels autonomously and a second route section in which the drone travels in the assisted drive mode.

Products, Systems, and Methods for an Autonomous Drone Docking Station
20230257139 · 2023-08-17 ·

Various embodiments of a docking station configured for semi-autonomous or fully autonomous management of drones. In various embodiments, the station can identify the exact location and angle of a drone on a landing pad, and modify the location and angle in order for a robot to retrieve a used battery from the drone and also insert a fully charged replacement battery. The station may also determine the charge status of a drone's battery, the exact type of battery used by a particular drone, and select for replacement into the drone the specific battery needed. There are various embodiments of a system with such a docking station, command & control software, a database, and a network control center. Various embodiments are of methods to identify the need to replace a battery, identify the type of battery required, and effect replacement in an automated manner.

Broad-based ship

Disclosed herein is a broad-based ship that may be facilitated for landing and taking off of multiple aircraft, in accordance with some embodiments. Accordingly, the broad-based ship may include hulls, decks, and elevators. Further, the hulls may be configured to be floatably disposable in a water body. Further, the decks may be supported on the hulls. Further, the decks may include a flight deck and a lower deck. Further, the flight deck may include airstrips configured for allowing landing and taking off of aircraft on the airstrips simultaneously. Further, the elevators may be configured for transporting the aircraft between the lower deck and the flight deck simultaneously. Further, the transporting may include transferring the aircraft from the lower deck to the flight deck simultaneously. Further, the taking off of the aircraft simultaneously may be based on the transferring.

Unmanned aerial vehicle positioning mechanism

Disclosed are unmanned aerial vehicle (UAV) positioning mechanisms for moving a UAV across a surface. The positioning mechanisms comprise a first guide assembly arranged opposite to a second guide assembly. A drive system is arranged to move the first guide assembly towards the second guide assembly and guide the UAV from a first position to a second position.

Unmanned aerial vehicle management
11308815 · 2022-04-19 · ·

A base module may be used to receive and house one or more unmanned aerial vehicles (UAVs) via one or more cavities. The base module receives commands from a manager device and identifies a flight plan that allows a UAV to execute the received commands. The base module transfers the flight plan to the UAV and frees the UAV. Once the UAV returns, the base module once again receives it. The base module then receives sensor data from the UAV from one or more sensors onboard the UAV, and optionally receives additional information describing its flight and identifying success or failure of the flight plan. The base module transmits the sensor data and optionally the additional information to a storage medium locally or remotely accessible by the manager device.