Integrated low-altitude support station

By setting up an anti-nest building device outside the base station pillar of the integrated low-altitude support station and using wind power to drive the rotation of hard plastic wind blades, the problems of obstruction of drone parking and bird dropping pollution caused by bird nesting and resting are solved, and the safety of drone parking and the cleanliness of infrastructure are achieved.

CN222845509UActive Publication Date: 2025-05-09SICHUAN HUATI LIGHTING TECH
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Patent Information

Application Number
CN202421993914.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-05-09
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

The base station platform of the integrated low-altitude support station is located in the air and can easily attract birds to build nests or rest, resulting in obstruction of drone parking and contamination of bird droppings.

Method used

Anti-nest building devices are installed outside the base station pillars, including air blade support, horizontal bracket, chassis, bearing fixing seat and hard plastic wind blades. The wind power is used to drive the hard plastic wind blades to rotate to play a role in repelling birds.

Benefits of technology

Effectively prevent birds from nesting and resting for a long time, reduce bird droppings pollution, avoid interference with drone parking, and eliminate high-altitude operations for regularly cleaning bird droppings.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222845509U_ABST
Patent Text Reader

Abstract

The utility model discloses an integrated low-altitude supporting station which comprises a supporting column and a base station supporting column arranged in the center of the supporting column, a base station platform is arranged at the upper end of the base station supporting column, and the base station supporting column is fixedly connected with the supporting column and the base station platform through flange plates and a plurality of screws. An unmanned aerial vehicle intelligent base station is arranged at the center of the top end of the base station supporting column, an anti-nesting device is arranged outside the upper side of the center of the base station supporting column, the novel anti-nesting device is additionally arranged outside the base station supporting column of the integrated low-altitude supporting station, and the anti-nesting device can rotate through wind power; the rotating part mainly rotates through the hard plastic fan blades by means of wind resistance, the multiple rotating hard plastic fan blades surround the outer side of the unmanned aerial vehicle intelligent base station, and the bird repelling effect can be achieved through the rotating hard plastic fan blades so that the situation that birds nest on the base station platform at the top end of the base station supporting column and the unmanned aerial vehicle intelligent base station can be prevented.
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Description

Technical Field

[0001] The utility model belongs to the technical field related to intelligent infrastructure, and specifically relates to an integrated low-altitude support station. Background Art

[0002] The integrated low-altitude support station is a multi-functional infrastructure designed to support and optimize the operation and management of drones. With the rapid development of drone technology and its wide application in fields such as aerial photography, environmental monitoring and transportation, the demand for supporting infrastructure is also increasing. The support station provides an efficient and safe operation platform by integrating multiple functions such as lighting, environmental monitoring, intelligent drone base station and real-time monitoring. Its design includes support columns and base station pillars. The support columns are hollow inside to facilitate wire routing and are sprayed with anti-corrosion and anti-rust paint for durability. The lamp holder body and lighting body equipped at the top of the support column provide lighting at night to ensure the safe operation of drones in low-light environments. The drone intelligent base station allows drones to dock automatically and provides the necessary power and real-time data through the distribution box and environmental monitor. The surveillance camera monitors the parking process of the drone in real time and monitors the surrounding environment. The flange design at the bottom of the support column simplifies installation and maintenance.

[0003] However, when the integrated low-altitude support station is used to park drones, the drones need to hover on the base station platform at the top of the integrated low-altitude support station. The base station platform needs to have a certain area to park the drones. Because the platform for parking drones is in the air, it will easily attract birds to rest or even build nests on the top platform of the integrated low-altitude support station. Nesting of birds on the top of the integrated low-altitude support station will hinder the parking of drones on its top. When birds rest on the top of the integrated low-altitude support station, they will easily leave a lot of bird droppings, which will not only hinder the parking of drones, but also easily corrode and damage the integrated low-altitude support station. Utility Model Content

[0004] The purpose of the utility model is to provide an integrated low-altitude support station to solve the problem raised in the above-mentioned background technology that because the platform for parking the drone is in the air, it is easy to attract birds to rest or even build nests on the top platform of the integrated low-altitude support station, and birds nesting on the top of the integrated low-altitude support station will hinder the drone from parking on its top, and birds resting on the top of the integrated low-altitude support station will easily leave a large amount of bird droppings.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an integrated low-altitude support station, comprising a support column and a base station pillar arranged at the center of the support column, a base station platform is arranged at the upper end of the base station pillar, the base station pillar is fixedly connected to the support column and the base station platform by a flange and a plurality of screws, a drone intelligent base station is arranged at the center of the top of the base station pillar, and an anti-nesting device is arranged on the upper outer side of the center of the base station pillar;

[0006] The anti-nesting device includes a fan blade bracket, a horizontal bracket, a supporting base and a bearing fixing seat. The supporting base is sleeved and fixed on the outside of the base station pillar. A bearing fixing seat is arranged on the upper side of the supporting base, and the bearing fixing seat is sleeved and fixed on the outside of the base station pillar. A bearing is arranged inside the bearing fixing seat, and the bearing can rotate clockwise and counterclockwise outside the base station pillar. A plurality of horizontal brackets are equidistantly fixed on the circular outer wall of the bearing fixing seat, and a fan blade bracket is welded to the top of the outermost end of the horizontal bracket.

[0007] Preferably, the anti-nesting device also includes a hard plastic fan blade and a screw fixing sleeve, the hard plastic fan blade is fixed to the front end of the fan blade bracket by a plurality of screw fixing sleeves, and the plurality of screw fixing sleeves are all sleeved and fixed on the outside of the fan blade bracket, and the hard plastic fan blade is set at an inclined angle.

[0008] Preferably, the horizontal bracket and the fan blade bracket are both aluminum alloy brackets, and both the horizontal bracket and the fan blade bracket adopt a hollow structure. The horizontal bracket can rotate clockwise and counterclockwise outside the base station pillar through the bearing inside the bearing fixing seat.

[0009] Preferably, an inspection door is provided inside the lower outer wall at the center of the support column, the inspection door is close to the bottom end of the support column, and the inspection door is rotatably connected to the support column through a hinge.

[0010] Preferably, a plurality of lamp holder bodies are equidistantly arranged at the top of the support column, and the plurality of lamp holder bodies are arranged in a ring-shaped interval on the outside of the base station pillar. A lighting lamp body is also arranged at the top of the lamp holder body, and LED light sources are built-in at the bottom of the lamp holder body and inside the lighting lamp body.

[0011] Preferably, a distribution box is provided at the rear side of the drone intelligent base station, and the distribution box is installed and fixed on the top of the base station platform. An environmental monitor and a surveillance camera are also provided on the base station platform.

[0012] Preferably, the support column is hollow inside to facilitate wiring, and the outside of the support column and the base station pillar are sprayed with paint for corrosion and rust prevention.

[0013] Compared with the prior art, the utility model provides an integrated low-altitude support station, which has the following beneficial effects:

[0014] The technical solution of the utility model is to add a new type of anti-nesting device to the outside of the base station pillar of the integrated low-altitude support station. The anti-nesting device can rotate by using wind force, and the rotating part mainly rotates by using wind resistance through hard plastic fan blades, and multiple rotating hard plastic fan blades surround the outside of the UAV intelligent base station. The rotating hard plastic fan blades can achieve the effect of repelling birds, so as to prevent birds from flying to the base station platform at the top of the base station pillar and the UAV intelligent base station to build nests. At the same time, it can also prevent birds from staying on the base station platform and the UAV intelligent base station for a long time to rest and leave too much bird droppings, thereby eliminating the need for high-altitude operations to regularly clean the base station platform and the UAV intelligent base station for bird droppings. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The utility model is a schematic diagram of the structure of an integrated low-altitude support station.

[0016] Figure 2 It is a front plan view structural diagram of the lamp holder body and the lighting lamp body of the utility model.

[0017] Figure 3 It is a schematic diagram of the front plan structure of the base station platform and the UAV intelligent base station of the utility model.

[0018] Figure 4 The utility model is a schematic diagram of a top-down plan structure of an integrated low-altitude support station.

[0019] Figure 5 It is a front plan view of the anti-nesting device of the utility model.

[0020] Figure 6 It is a schematic diagram of the planar structure of the anti-nesting device of the utility model when viewed from above.

[0021] In the figure: 1. Inspection door; 2. Support column; 3. Lamp holder body; 4. Lighting lamp body; 5. Base station pillar; 6. Base station platform; 7. UAV intelligent base station; 8. Anti-nesting device; 9. Environmental monitor; 10. Surveillance camera; 11. Distribution box; 12. Fan blade bracket; 13. Horizontal bracket; 14. Support chassis; 15. Bearing fixing seat; 16. Hard plastic fan blade; 17. Screw fixing sleeve. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0023] The utility model provides Figure 1-6 An integrated low-altitude support station shown in the figure includes a support column 2 and a base station pillar 5 arranged at the center of the support column 2. A base station platform 6 is arranged at the upper end of the base station pillar 5. The base station pillar 5 is fixedly connected to the support column 2 and the base station platform 6 by a flange and a plurality of screws. A drone intelligent base station 7 is arranged at the center of the top of the base station pillar 5. An inspection door 1 is arranged inside the lower outer wall at the center of the support column 2. The inspection door 1 is close to the bottom end of the support column 2. The inspection door 1 is rotatably connected to the support column 2 through a hinge. A plurality of lamp holder bodies 3 are also equidistantly arranged at the top of the support column 2. The plurality of lamp holder bodies 3 are arranged in a ring-shaped interval on the outer side of the base station pillar 5. A lighting lamp body 4 is also arranged at the top of the lamp holder body 3. The bottom of the lamp holder body 3 and the interior of the lighting lamp body 4 are both built-in LED light sources. A distribution box 11 is arranged on the rear side of 7, and the distribution box 11 is installed and fixed on the top of the base station platform 6. An environmental monitor 9 and a surveillance camera 10 are also arranged on the base station platform 6. The interior of the support column 2 is hollow to facilitate wiring. The exterior of the support column 2 and the base station pillar 5 are sprayed with paint for corrosion and rust prevention. A flange is welded at the bottom of the support column 2. When the support column 2 is installed vertically, the flange is installed on the ground by a plurality of special bolts. The lamp holder body 3 and the lighting lamp body 4 at the top of the support column 2, as well as the distribution box 11, the environmental monitor 9 and the surveillance camera 10 on the base station platform 6 are powered by wires that are routed inside the support column 2 to ensure that the lamp holder body 3 and the lighting lamp body 4, as well as the distribution box 11, the environmental monitor 9 and the surveillance camera 10 on the base station platform 6 can be powered on and used normally.

[0024] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, at night, the lamp holder body 3 and the lighting lamp body 4 will be controlled and energized by the control box, so that the bottom of the lamp holder body 3 and the built-in LED light source inside the lighting lamp body 4 will emit light, thereby providing lighting at night, and the UAV will hover on the UAV intelligent base station 7 for parking through terminal control, and the environmental monitor 9 can monitor the environment in real time to avoid accidents caused by the UAV being affected by extreme environments and forcibly parked on the UAV intelligent base station 7, and the monitoring camera 10 can not only monitor the nearby area, but also monitor the UAV in real time when it is parked on the UAV intelligent base station 7, helping the user to accurately hover the UAV on the UAV intelligent base station 7 through the terminal, so that the monitoring camera 10 can play a guiding role when the UAV is parked.

[0025] like Figure 1 , Figure 5 and Figure 6As shown, an anti-nesting device 8 is arranged on the upper side of the center of the base station pillar 5, and the anti-nesting device 8 includes a fan blade bracket 12, a horizontal bracket 13, a supporting base plate 14 and a bearing fixing seat 15. The supporting base plate 14 is sleeved and fixed on the outside of the base station pillar 5. A bearing fixing seat 15 is arranged on the upper side of the supporting base plate 14. The bearing fixing seat 15 is sleeved and fixed on the outside of the base station pillar 5. A bearing is arranged inside the bearing fixing seat 15, and the bearing can rotate clockwise and counterclockwise outside the base station pillar 5. A plurality of bearings are equidistantly fixed on the circular outer wall of the bearing fixing seat 15. The horizontal bracket 13 has a fan blade bracket 12 welded to the top of the outermost end of the horizontal bracket 13. The anti-nesting device 8 also includes a hard plastic fan blade 16 and a screw fixing sleeve 17. The hard plastic fan blade 16 is fixed to the front end of the fan blade bracket 12 by a plurality of screw fixing sleeves 17, and the plurality of screw fixing sleeves 17 are all sleeved and fixed to the outside of the fan blade bracket 12. The hard plastic fan blade 16 is set at an inclined angle. The horizontal bracket 13 and the fan blade bracket 12 are both aluminum alloy brackets. The horizontal bracket 13 and the fan blade bracket 12 are hollow structures. The horizontal bracket 13 can be The bearing inside the bearing fixing seat 15 rotates clockwise and counterclockwise outside the base station pillar 5. When the external environment is windy, the wind will blow onto the inclined hard plastic fan blades 16 to generate a torque, causing the hard plastic fan blades 16 to rotate. Because the hard plastic fan blades 16 are fixed to the vertical fan blade bracket 12 by the screw fixing sleeve 17, and the fan blade bracket 12 is fixed to the horizontal bracket 13, and the horizontal bracket 13 is fixed to the outer wall of the bearing fixing seat 15 outside the base station pillar 5, when the wind acts on the hard plastic fan blades 16 and it rotates, multiple hard plastic fan blades 16 will rotate around the outside of the base station platform 6. Once multiple hard plastic fan blades 16 rotate, they will play a physical role in driving away birds to prevent birds from approaching the integrated low-altitude support station. This can prevent birds from building nests on the integrated low-altitude support station, and can also prevent birds from resting for a long time on the integrated low-altitude support station and leaving a large amount of bird droppings. In addition, when the drone hovers on the drone intelligent base station 7, it can prevent birds from invading the drone, which can also protect the drone.

[0026] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. An integrated low-altitude support station, comprising a support column (2) and a base station support column (5) arranged at the center of the support column (2), a base station platform (6) being arranged at the upper end of the base station support column (5), the base station support column (5) being fixedly connected to the support column (2) and the base station platform (6) by a flange and a plurality of screws, a drone intelligent base station (7) being arranged at the center of the top end of the base station support column (5), characterized in that: An anti-nesting device (8) is provided on the upper outer side of the center of the base station pillar (5); The anti-nesting device (8) comprises a fan blade support (12), a horizontal support (13), a support base (14) and a bearing fixing seat (15); the support base (14) is sleeved and fixed on the outside of the base station pillar (5); a bearing fixing seat (15) is arranged on the upper side of the support base (14); the bearing fixing seat (15) is sleeved and fixed on the outside of the base station pillar (5); a bearing is arranged inside the bearing fixing seat (15), and the bearing can rotate outside the base station pillar (5); a plurality of horizontal supports (13) are equidistantly fixed on the outer wall of the bearing fixing seat (15); and a fan blade support (12) is welded to the top of the outer end of the horizontal support (13).

2. The integrated low-altitude support station according to claim 1, characterized in that: The anti-nesting device (8) further comprises a hard plastic fan blade (16) and a screw fixing sleeve (17); the hard plastic fan blade (16) is fixed to the front end of the fan blade support (12) via a plurality of screw fixing sleeves (17); and the plurality of screw fixing sleeves (17) are all sleeved and fixed to the outside of the fan blade support (12); and the hard plastic fan blade (16) is arranged at an inclined angle.

3. The integrated low-altitude support station according to claim 1, characterized in that: The horizontal support (13) and the fan blade support (12) are both aluminum alloy supports, and both the horizontal support (13) and the fan blade support (12) have a hollow structure. The horizontal support (13) can rotate outside the base station support column (5) via a bearing inside a bearing fixing seat (15).

4. The integrated low-altitude support station according to claim 1, characterized in that: An inspection door (1) is provided inside the lower outer wall at the center of the support column (2), the inspection door (1) is close to the bottom end of the support column (2), and the inspection door (1) is rotatably connected to the support column (2) via a hinge.

5. The integrated low-altitude support station according to claim 1 is characterized in that: A plurality of lamp holder bodies (3) are also equidistantly arranged at the top of the support column (2); the plurality of lamp holder bodies (3) are arranged in a ring-shaped manner at intervals on the outside of the base station pillar (5); a lighting lamp body (4) is also arranged at the top of the lamp holder body (3); and LED light sources are built into the bottom of the lamp holder body (3) and the interior of the lighting lamp body (4).

6. The integrated low-altitude support station according to claim 1, characterized in that: A distribution box (11) is provided on the rear side of the drone intelligent base station (7), and the distribution box (11) is installed and fixed on the top of the base station platform (6).

7. The integrated low-altitude support station according to claim 6, characterized in that: An environmental monitoring device (9) and a monitoring camera (10) are also provided on the base station platform (6).

8. The integrated low-altitude support station according to claim 7, characterized in that: The interior of the support column (2) is a hollow structure.

Citation Information

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