An unmanned aerial vehicle flying station

The Unmanned Aerial Vehicle Flying Station addresses the limitations of existing systems by incorporating a robust anchoring system, environmental monitoring, and comprehensive management features, ensuring reliable UAV operations across varying environmental conditions.

WO2025114748A1PCT designated stage expired Publication Date: 2025-06-05ESCUELA SUPERIOR POLITÉCNICA DEL LITORAL (ESPOL) +1
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Patent Information

Application Number
PCT/IB2023/061984
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-11-28
Publication Date
2025-06-05

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Abstract

The present invention relates generally to a fixed flying station for UAV (Unmanned Aerial Vehicle). The present invention discloses an Unmanned Aerial Vehicle Flying Station for take-off and where-house management comprising, a set of stud bolts that anchor the lower base to the ground, a set of clamps that clamp the lower base to the ground, a lower base that has a large contact area with the ground, a set of extendable column links, an upper base that supports the interior, access hatch, and accessories, an interior shelter, a drive motor of the gate, a base of the mechanical iris that supports the iris blades and the opening belt, a set of blades of the mechanical iris, an iris opening tape, a sensing platform, a set of anchor cables to provide stability to the slender structure, a clamp that joins the cables with the structure, a recharging platform.
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Description

[0001] AN UNMANNED AERIAL VEHICLE FLYING STATION

[0002] Technical Filed The present invention relates generally to a fixed flying station for UAV (Unmanned Aerial Vehicle).

[0003] Background Art One type of known Unmanned Aerial Vehicle (UAV) station is to provide the take-off platform for ease of access to the UAV service area. In patent publication KR102355885B1, a drone station that stores a drone, and is disposed on four walls and four walls so that the drone is a drone station It may include an upper door that opens and closes an entrance for take-off and landing, wherein the upper door consists of at least one sub-door, and the at least one or more sub-doors slide in one direction to open and close the entrance. However, this patent is only limited to providing the takeoff service. The system based on this patent may fail if the environmental variables are not controlled for take-off actions.

[0004] Summary of invention

[0005] According to the present invention, there is provided an Unmanned Aerial Vehicle Flying Station (1) for take-off and where-house management comprising, a set of stud bolts that anchor the lower base to the ground (2), a set of clamps that clamp the lower base to the ground (3), a lower base that has a large contact area with the ground (4), a set of extendable column links (5), an upper base that supports the interior, access hatch, and accessories (6), an interior shelter (7), a drive motor of the gate (8), a base of the mechanical iris that supports the iris blades and the opening belt (9), a set of blades of the mechanical iris (10), an iris opening tape (11), a sensing platform (12), a set of anchor cables to provide stability to the slender structure (13), a clamp that joins the cables with the structure (14), a recharging platform (15).

[0006] According to the present invention, the Unmanned Aerial Vehicle Flying Station as claimed in claim 1, wherein the anchor cables (2) made of GFRP material that has a circular shape and some shims to fix each clamp.

[0007] According to the present invention, the Unmanned Aerial Vehicle Flying Station as claimed in claim 1, wherein the lower base anchor (4) is made of steel.

[0008] Brief Description of Drawing

[0009] For better understanding of the nature and objects of invention, reference should be made to the following detailed description taken in connection with the accompanying drawing forming apart of this specification and in which similar numerals of reference indicate corresponding part in all the figures of the drawings.

[0010] Figure 1

[0011] Figure 2

[0012] Figure 3

[0013] Figure 4

[0014] Figure 5

[0015] Figure 6

[0016] Figure 7

[0017] Figure 8

[0018] Figure 9 Figure 10

[0019] Detailed Description of the Preferred Embodiment

[0020] Referring to Figure 1 a general image of the portable station is shown in top isometric view with its conforming parts.

[0021] Referring to Figure 2 a general image of the portable station in lower isometric view with its conforming parts.

[0022] Referring to Figure 3 the portable station is displayed with its main components listed where: (1) are the stud bolts that anchor the lower base to the ground, (2) are the clamps that clamp the lower base to the ground and prevent it from rotating structure, (3) is the lower base that has a large contact area with the ground to support the structure, (4) is the column links that are assembled according to the desired height, (5) is the upper base that supports the interior, access hatch, sensors and accessories, and (6) that is the interior that serves as a shelter to rest and climatically adapt the drone.

[0023] Referring to Figure 4 the portable station is visualized with its main components where: (7) are the drive motors of the gate, (8) is the base of the mechanical iris that supports the iris blades and the opening belt, ( 9) are the blades of the mechanical iris that are shaped like petals, (10) is the iris opening tape, (11) is the meteorological sensor that collects information from the outside environment and (12) the solar radiation sensor to measure the incidence and intensity of solar rays.

[0024] Referring to Figure 5 the portable station is displayed with its main components listed where: (13) shows the anchor cables to provide stability to the slender structure against the lateral load of the wind, (14) represents the clamp that joins the cables with the structure and provides rigidity, (15) are the solar batteries to recharge the drone and (16) are the internal environmental sensors.

[0025] Referring to Figure 6 the column link element made of GFRP material has a height of 1.5 m without considering the socket that protrudes and the one that enters; its cross section is honeycomb shaped. Referring to Figure 7 the lower base of GFRP material has a circular shape and some shims to fix each clamp.

[0026] Referring to Figure 8 a piece of the lower base anchor is made of steel.

[0027] Referring to Figure 9 the upper base is displayed, which has wedges and depths to fix the passenger compartment and avoid accidents.

[0028] Referring to Figure 10 the passenger compartment has shims inside to bolt the access hatch.

Claims

Claims1. An Unmanned Aerial Vehicle Flying Station (1) for take-off and where-house management comprising:A set of stud bolts that anchor the lower base to the ground (2);A set of clamps that clamp the lower base to the ground (3);A lower base that has a large contact area with the ground (4);A set of extendable column links (5);An upper base that supports the interior, access hatch, and accessories (6);An interior shelter (7);A drive motor of the gate (8);A base of the mechanical iris that supports the iris blades and the opening belt (9);A set of blades of the mechanical iris (10);An iris opening tape (11);A sensing platform (12);A set of anchor cables to provide stability to the slender structure (13);A clamp that joins the cables with the structure (14);A recharging platform (15);2. The Unmanned Aerial Vehicle Flying Station as claimed in claim 1, wherein the anchor cables (2) made of GFRP material that has a circular shape and some shims to fix each clamp.

3. The Unmanned Aerial Vehicle Flying Station as claimed in claim 1, wherein the lower base anchor (4) is made of steel.

Citation Information

Patent Citations

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    CN111776790A

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  • Unmanned aerial vehicle charging system and street lamp that charges

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  • Modular-combined smart poles for building smart cities equipped with drone stations

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