Portable take-off platform for unmanned aerial vehicle

By designing a convenient takeoff platform for drones, utilizing acrylic platform panels, retractable support structures, and protective cover components, the stability issues of drone takeoff and landing in mountainous, densely forested terrain were resolved, enabling safe and convenient takeoff operations.

CN223949408UActive Publication Date: 2026-02-27JIANGMEN KEYU WATER CONSERVANCY PLANNING & DESIGN CONSULTING CO LTD
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Patent Information

Application Number
CN202520828082.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2026-02-27
Estimated Expiration
2035-04-28

AI Technical Summary

Technical Problem

Drones cannot provide stable takeoff and landing conditions in mountainous and densely forested terrain, and the limitations of artificial logging affect RTK positioning signals.

Method used

A portable takeoff platform for drones was designed, which uses an acrylic platform plate, a retractable support structure, a triangular bracket assembly, and a protective cover assembly. The height, angle, and protection of the platform are controlled by aluminum alloy rods and ropes to ensure stability and safety.

Benefits of technology

It enables stable placement and safe takeoff on various terrains, reduces the risk of equipment damage, improves ease of use and safety, and adapts to the takeoff requirements in mountainous areas.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a portable take-off platform of an unmanned aerial vehicle, and relates to the technical field of auxiliary equipment of the unmanned aerial vehicle. The telescopic supporting structure comprises an aluminum alloy rod and a plurality of sleeved connection rods arranged in the aluminum alloy rod in a sliding mode, a pointed end is arranged at the tail end of the aluminum alloy rod, and the sleeved connection rods are connected through threads or quick connection buckles. The triangular support assembly is formed by connecting two telescopic supporting legs with the aluminum alloy rod through fasteners, and the telescopic supporting legs and the ground form an included angle of 45 degrees and are locked through fastening devices; according to the technical scheme provided by the utility model, the height and the angle of the platform can be flexibly adjusted according to different ground conditions by adopting the telescopic supporting structure and the triangular bracket assembly, so that the platform can be stably placed on various terrains, and the unmanned aerial vehicle is effectively protected from being influenced by external environmental factors due to the arrangement of the acrylic protective cover; the problem that the unmanned aerial vehicle takes off in mountainous areas is solved. And meanwhile, the use safety of the unmanned aerial vehicle taking off in the deep forest is protected.
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Description

TECHNICAL FIELD

[0001] The utility model relates to unmanned aerial vehicle auxiliary equipment technical field especially, it relates to unmanned aerial vehicle portable take -off platform. BACKGROUND

[0002] With the rapid development of unmanned aerial vehicle technology, the application scene of unmanned aerial vehicle is increasingly extensive, has involved from aerial photography, agricultural monitoring to logistics distribution etc. Unmanned aerial vehicle takes off and needs a place of open and flat, when carrying out unmanned aerial vehicle photogrammetry operation in mountainous area, because by the luxuriant forest of mountainous area, ground plant covers, cannot provide take -off and landing condition for unmanned aerial vehicle. The space can be temporarily manufactured by artificial felling forest, can allow unmanned aerial vehicle to take off, but the limited space is too little, and unmanned aerial vehicle cannot obtain RTK positioning signal, and the take -off of unmanned aerial vehicle equipment is influenced. Moreover, the forest cannot be felled at will. INVENTION CONTENTS

[0003] The utility model solves the technical problem that the prior art lacks and provides unmanned aerial vehicle portable take -off platform to solve the problem in the background art.

[0004] Therefore, the utility model provides unmanned aerial vehicle portable take -off platform, including:

[0005] Unmanned aerial vehicle take -off platform, the platform plate of the acrylic material composition, the surface is even and four corners are equipped with platform plate hole hole;

[0006] Telescopic support structure, including aluminium alloy pole and the telescopic support structure of the plurality of section sleeve joint pole of sliding in aluminium alloy pole inside, aluminium alloy pole end is equipped with sharp head, and the plurality of section sleeve joint pole is connected through thread or quick -witted buckle connection;

[0007] Triangular support assembly, by two telescopic legs through fastener and aluminium alloy pole connection, and telescopic leg and ground are 45 ° angle of clamping and are locked through fastening device.

[0008] Protective cover assembly, containing left and right symmetrical semicircular arc acrylic protective cover, the acrylic protective cover is hinged with unmanned aerial vehicle take -off platform through hinge, and is controlled opening and closing through the rope of passing through platform plate hole hole.

[0009] Optionally, the aluminium alloy pole and the sleeve joint place of the plurality of section sleeve joint pole are equipped with anti -loosening rubber ring, and the top end is equipped with thread.

[0010] Optionally, the unmanned aerial vehicle take -off platform center is equipped with through -hole, and the thread of aluminium alloy pole top end cooperates, is fixed through nut and adjusts platform height.

[0011] Optionally, the fastening device of telescopic leg is screw locking structure, is used for locking leg telescopic length;

[0012] The telescopic supporting leg is realized length adjustment through two-section sleeve joint rod, and scale marks are arranged at the sleeve joint positions.

[0013] Optionally, the acrylic protective cover has a gap with a width of 3-5mm at the boundary, through which the rope passes and is linked with the hole of the platform plate.

[0014] Optionally, the two ends of the rope are fixed to the outside of the acrylic protective cover and the bottom of the unmanned aerial vehicle take-off platform respectively.

[0015] Optionally, the acrylic protective cover completely covers the unmanned aerial vehicle take-off platform when closed, and the edge of the cover body is provided with a waterproof sealing strip.

[0016] From the above technical solutions, the embodiments of the utility model have the following advantages:

[0017] 1. The unmanned aerial vehicle portable take-off platform of the utility model, by adopting the telescopic supporting structure and the triangular support assembly, the platform can flexibly adjust the height and angle according to different ground conditions, and the stable placement on various terrains is ensured. The selection of the aluminum alloy material not only increases the durability, but also reduces the overall weight, facilitating carrying. The setting of the acrylic protective cover effectively protects the unmanned aerial vehicle from external environmental factors such as wind sand and rain. The take-off platform is completely covered when closed, and is provided with a waterproof sealing strip, further enhancing the protection performance and reducing the risk of equipment damage caused by bad weather. The problem of unmanned aerial vehicle take-off in mountainous areas is solved. At the same time, the use safety of the unmanned aerial vehicle take-off in deep forest is protected.

[0018] 2. The unmanned aerial vehicle portable take-off platform of the utility model controls the opening and closing of the protective cover through the rope, so that the user can easily prepare for the take-off and landing of the unmanned aerial vehicle. The modular design of the whole system allows quick assembly and disassembly, greatly improving the convenience of use.

[0019] These features and advantages of the utility model will be disclosed in detail in the following specific embodiments and drawings. BRIEF DESCRIPTION OF DRAWINGS

[0020] The utility model will be further described below in combination with the drawings:

[0021] Fig. 1 It is the front view of the utility model;

[0022] Fig. 2 It is the side view of the utility model;

[0023] Fig. 3 It is the top view of the utility model.

[0024] Explanation of reference signs: 1, unmanned aerial vehicle take-off platform; 2, hinge; 3, nut; 4, rope; 5, aluminum alloy rod; 6, unmanned aerial vehicle; 7, acrylic protective cover; 8, fastener; 9, telescopic support leg; 10, multi-section sleeve joint rod; 11, platform plate hole; 12, boundary. DETAILED DESCRIPTION

[0025] The technical solutions of the embodiments of the utility model will be explained and described below in combination with the drawings of the embodiments of the utility model. However, the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0026] The unmanned aerial vehicle portable take-off platform of the embodiments of the utility model will be specifically described below in combination with the drawings. EMBODIMENT

[0027] For the convenience of understanding, please refer to Figs. 1 to 3 An embodiment of the unmanned aerial vehicle portable take-off platform provided by the utility model comprises:

[0028] The unmanned aerial vehicle take-off platform 1 is a platform plate made of acrylic material, the surface of which is flat and four corners of which are provided with platform plate holes 11;

[0029] The telescopic support structure comprises an aluminum alloy rod 5 and a multi-section sleeve joint rod 10 sliding in the aluminum alloy rod 5, the end of the aluminum alloy rod 5 is provided with a sharp head, and the multi-section sleeve joint rod 10 is connected through threads or quick-connection buckles;

[0030] The triangular support assembly is connected with the aluminum alloy rod 5 through fasteners 8 by two telescopic support legs 9, the telescopic support legs 9 form a 45° angle with the ground and are locked through fastening devices;

[0031] The protective cover assembly comprises left-right symmetrical semicircular acrylic protective covers 7, the acrylic protective covers 7 are hinged with the unmanned aerial vehicle take-off platform 1 through hinges 2 and are controlled to open and close through the rope 4 penetrating the platform plate holes 11.

[0032] It should be noted that the unmanned aerial vehicle take-off platform 1 is made of acrylic material, the surface of which is flat, and four corners of which are provided with platform plate holes 11 for the rope 4 to pass through to control the opening and closing of the protective cover assembly.

[0033] The telescopic support structure comprises an aluminum alloy rod 5 and a multi-section sleeve joint rod 10 sliding in the aluminum alloy rod 5, the end of the aluminum alloy rod 5 is provided with a sharp head, and the multi-section sleeve joint rod 10 is connected through threads or quick-connection buckles;

[0034] The triangular support assembly is connected by two telescopic legs 9 through buckles 8 and aluminum alloy rods 5. The legs are at a 45° angle with the ground and are locked by fastening devices to ensure the stability of the entire platform.

[0035] The protective cover assembly includes left and right symmetrical semi-circular acrylic protective covers 7, which are hinged to the unmanned aerial vehicle take-off platform 1 through hinges 2 and are controlled to open and close through ropes 4 passing through the holes 11 of the platform plate.

[0036] In some embodiments, the aluminum alloy rod 5 is provided with an anti-loosening rubber ring at the joint with the multi-section telescopic rod 10, and the top end is provided with threads.

[0037] It should be noted that the aluminum alloy rod 5 is provided with an anti-loosening rubber ring at the joint with the multi-section telescopic rod 10, and the top end is provided with threads to ensure stable connection.

[0038] In some embodiments, the unmanned aerial vehicle take-off platform 1 is provided with a through hole in the center, which cooperates with the threads at the top end of the aluminum alloy rod 5, is fixed by a nut 3, and adjusts the height of the platform. The unmanned aerial vehicle take-off platform 1 is provided with a through hole in the center, which is fixed by a nut 3 and adjusts the height of the platform

[0039] In some embodiments, the fastening device of the telescopic leg 9 is a threaded locking structure for locking the telescopic length of the leg.

[0040] The telescopic leg 9 adjusts the length through two sections of telescopic rods, and the joint is provided with a scale mark.

[0041] It should be noted that the telescopic leg 9 adopts a threaded locking structure to lock the length, supports two-stage length adjustment, and the joint has a scale mark for accurate adjustment.

[0042] The boundary 12 of the acrylic protective cover 7 is provided with a gap of 3-5mm in width for the rope 4 to pass through and cooperate with the hole 11 of the platform plate. The edge of the acrylic protective cover 7 is provided with a gap of 3mm in width for the rope 4 to pass through, realizing cooperation with the hole 11 of the platform plate.

[0043] The rope 4 is fixed at both ends to the outside of the acrylic protective cover 7 and the bottom of the unmanned aerial vehicle take-off platform 1. The rope 4 is fixed at both ends to the outside of the acrylic protective cover 7 and the bottom of the unmanned aerial vehicle take-off platform 1, which is convenient for operation.

[0044] When the acrylic protective cover 7 is closed, it completely covers the unmanned aerial vehicle take-off platform 1, and the edge of the cover body is provided with a waterproof sealing strip. When the acrylic protective cover 7 is closed, it completely covers the unmanned aerial vehicle take-off platform 1, and the edge of the cover body has a waterproof sealing strip, providing additional protection.

[0045] Working principle: First, according to the actual demand to adjust the height of the telescopic support structure. Aluminum alloy rod 5 and multi-section sleeve rod 10 are connected by thread or quick buckle, which can adjust the height according to the ground condition and personal demand, and use anti-loosening rubber ring to ensure stability. Two telescopic legs 9 are connected with aluminum alloy rod 5 through buckle 8 and placed at 45° angle with the ground, and the length is locked through fastening device to ensure the stability of the whole platform. The leg is provided with scale mark for convenient and accurate adjustment. The through hole in the center of the unmanned aerial vehicle take-off platform 1 is aligned with the thread at the top of the aluminum alloy rod 5, and is fixed with nut 3, and the height of the platform can be adjusted at the same time. Acrylic protective cover 7 is hinged with unmanned aerial vehicle take-off platform 1 through hinge 2. Rope 4 penetrates through platform plate hole 11, and the two ends are fixed outside acrylic protective cover 7 and the bottom of unmanned aerial vehicle take-off platform 1 respectively. The user controls the opening and closing of the protective cover by pulling the rope 4, and when the protective cover is closed, it completely covers the unmanned aerial vehicle take-off platform 1, and the waterproof sealing strip ensures the sealing property, preventing external factors from interfering with the unmanned aerial vehicle 6.

[0046] When ready, the unmanned aerial vehicle 6 can take off on the platform. Because the platform provides a flat and stable surface, plus the additional protection provided by the protective cover, the safety of the unmanned aerial vehicle 6 take-off is greatly improved. When landing, the unmanned aerial vehicle can also accurately return to this stable and safe platform, reducing the risk of damage due to unstable landing.

[0047] The above-described and above-mentioned embodiments are only used to illustrate the technical solutions of the present application, but not limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A portable take-off platform for a drone, characterized in that: The utility model relates to a kind of unmanned aerial vehicle take-off platform, including: Unmanned aerial vehicle take-off platform (1) is made of platform plate of acrylic material, surface is even and four corners are provided with platform plate hole (11); Telescopic support structure, including aluminum alloy pole (5) and multiple section sleeve connecting rod (10) sliding in aluminum alloy pole (5) inside, the tip of aluminum alloy pole (5) is provided with sharp head, multiple section sleeve connecting rod (10) is connected by thread or quick-connection buckle; Triangular support assembly, two telescopic legs (9) are connected with aluminum alloy pole (5) by fastener (8), telescopic leg (9) is 45 ° angle with ground and is locked by fastening device; Protective cover assembly, including left and right symmetrical semicircular arc acrylic protective cover (7), the acrylic protective cover (7) is hinged with unmanned aerial vehicle take-off platform (1) by hinge (2), and is controlled opening and closing by rope (4) passing through platform plate hole (11).

2. The portable take-off platform for drones of claim 1, wherein: The sleeve joint of aluminum alloy pole (5) and multiple section sleeve connecting rod (10) is provided with anti-loosening rubber ring, and the top end is provided with thread.

3. The portable take-off platform for drones of claim 1, wherein: The center of unmanned aerial vehicle take-off platform (1) is provided with through hole, and the thread of the top end of aluminum alloy pole (5) is matched, is fixed and adjusts platform height by nut (3).

4. The portable take-off platform for drones of claim 1, wherein: The fastening device of telescopic leg (9) is screw locking structure, for locking leg telescopic length; Telescopic leg (9) is adjusted in length by two section sleeve connecting rods, and scale mark is provided at sleeve joint.

5. The portable take-off platform for drones of claim 1, wherein: The boundary (12) of acrylic protective cover (7) is reserved gap of 3-5mm width, for rope (4) to pass through and link with platform plate hole (11).

6. The portable take-off platform for drones of claim 1, wherein: The both ends of rope (4) are fixed on the outside of acrylic protective cover (7) and the bottom of unmanned aerial vehicle take-off platform (1) respectively.

7. The portable take-off platform for drones of claim 1, wherein: When acrylic protective cover (7) is closed, it completely covers unmanned aerial vehicle take-off platform (1), and the edge of cover body is provided with waterproof sealing strip.