Holding pole and tower type intelligent unmanned aerial vehicle nest with multiple safety protection
The safety and protection capabilities of the pole-mounted tower-mounted intelligent drone nest are enhanced through lifting buffers, sealing protection, and stable installation components. This solves the problem of stable drone operation in severe weather and complex environments, ensures the accurate positioning of the drone and the safety of the equipment, and is suitable for power inspection and security monitoring tasks.
Patent Information
- Application Number
- CN202510947309.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2025-10-10
AI Technical Summary
Existing pole-mounted tower-type intelligent drone nests have defects in resisting severe weather, preventing external attacks, and ensuring the safety of drone takeoff and landing. In particular, the positioning accuracy and reliability are insufficient in complex environments, affecting the stable operation of the drone and the data quality.
A pole-mounted tower-type intelligent drone nest with multiple safety protections has been designed. Through lifting buffer components, sealing protection components and side fixed installation components, the drone's height adjustment, fully enclosed protection and stable installation can be achieved. Combined with automated operation and maintenance and electromagnetic shielding, the drone's mission reliability in complex environments is improved.
It effectively resists severe weather conditions such as wind, rain, sand and dust, ensures the safety of drone takeoff and landing, improves positioning accuracy and equipment reliability, and reduces operation and maintenance costs. It is suitable for high-security protection scenarios such as power inspection and security monitoring.
Smart Images

Figure CN120756699A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of intelligent unmanned aerial vehicle (UAV) nests, and in particular to a pole-mounted tower-type intelligent UAV nest with multiple safety protection features. Background Art
[0002] In today's drone application landscape, pole-mounted, tower-mounted intelligent drone nests are playing an increasingly important role. With the rapid advancement of technology, drones are widely used in a variety of industries, including power inspection, security monitoring, surveying and mapping, and agricultural and forestry plant protection. However, drone operations face numerous challenges. For power inspection, traditional manual inspection methods are inefficient and pose safety risks, making it difficult to meet the growing demand for power facility maintenance. While drone inspections can improve efficiency, drones have limited endurance and require frequent charging or battery replacement. Furthermore, in complex environments, signals are susceptible to interference, leading to unstable flight. For security monitoring, drones must be able to operate continuously and stably under diverse weather and environmental conditions. Conventional drone nests are unable to withstand severe weather conditions, such as heavy rain and strong winds, and cannot provide reliable protection and maintenance for drones. In surveying and mapping, drones require precise positioning and stable flight control to obtain accurate data. Existing nests lack positioning accuracy and anti-interference capabilities, impacting the quality of surveying and mapping data.
[0003] The emergence of pole-mounted tower-type intelligent drone nests provides a possible solution to these problems. However, the pole-mounted tower-type nests currently on the market still have some defects in terms of safety protection. For example, in terms of resisting severe weather, the protection measures are not perfect, and the equipment inside the nest is easily eroded by rain and damaged by strong winds. In terms of preventing external malicious attacks, there is a lack of effective physical and electronic protection measures, and the safety of the nest and the drones inside are threatened. In addition, in terms of ensuring the safety of drone take-off and landing, the accuracy and reliability of the existing positioning and navigation systems in complex environments need to be improved. For this reason, we propose a pole-mounted tower-type intelligent drone nest with multiple safety protections. Summary of the Invention
[0004] (1) Technical problems solved
[0005] In view of the shortcomings of the existing technology, the present invention provides a pole-mounted tower-type intelligent drone nest with multiple safety protections, which solves the above problems.
[0006] (2) Technical solution
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions:
[0008] A pole-mounted tower-type intelligent drone nest with multiple safety protection features, including:
[0009] The mounting support platform, the integral support plate, the UAV support plate, and the UAV body are installed. The top surface of the mounting support platform is fixedly connected to the integral support plate. The top surface of the UAV support plate is provided with equally spaced positioning grooves. The top surface of the UAV support plate is slidably connected to the UAV body. The inner side of the positioning groove is slidably connected to the foot bracket of the UAV body.
[0010] A lifting buffer assembly is provided between the bottom surface of the mounting support platform and the top surface of the integral support plate, the lifting buffer assembly comprising a support buffer plate, a buffer assembly and a lifting assembly, the top surface of the integral support plate being provided with the lifting assembly, and the top surface of the support buffer plate being provided with the buffer assembly;
[0011] A sealing protection assembly is provided on the top surface of the integral support plate, the top surface of the integral support plate is fixedly connected to equidistantly distributed drive motors, and the output shafts of the drive motors are provided with sealing protection assemblies;
[0012] A fixed installation component is set on the side of the installation support platform, which is used for the overall fixed installation of the installation support platform and the drone nest.
[0013] Preferably, the lifting assembly includes a lifting electric rod, an internal lifting slide rod, and a support buffer plate. The top surface of the integral support plate is fixedly connected to the equidistantly distributed lifting electric rods. The internal sliding connection of the lifting electric rod is connected to the internal lifting slide rod. The top surface of the internal lifting slide rod is fixedly connected to the support buffer plate.
[0014] Preferably, the buffer assembly includes a buffer spring and a drone support plate, the top surface of the support buffer plate is fixedly connected to equidistantly distributed buffer springs, the top surface of the buffer spring is fixedly connected to the drone support plate, and the top inner side of the support buffer plate is slidably connected to the drone support plate.
[0015] Preferably, the top surface of the UAV support plate is provided with equidistantly distributed side correction components, and the side correction components include a telescopic electric push cylinder, a telescopic slide rod, a correction push plate, and a telescopic fixed plate. The top surface of the UAV support plate is fixedly connected with the equidistantly distributed telescopic fixed plates, and the side of the telescopic fixed plate is fixedly connected with a symmetrically distributed telescopic electric push cylinder. The inner side of the telescopic electric push cylinder is slidably connected with the telescopic slide rod, and the other side of the telescopic slide rod is fixedly connected with the correction push plate. The top surface of the UAV support plate is slidably connected with the correction push plate.
[0016] Preferably, the sealing and protective assembly consists of a sealing assembly and a protective assembly. The top surface of the integral support plate is fixedly connected to an equidistantly distributed screw support platform. The top surface of the integral support plate is provided with a sliding groove for providing an installation and support position for the sealing and protective assembly.
[0017] Preferably, the protective assembly includes a sealing protective cover 1, a sealing protective cover 2, a driving screw, and a driving motor. The top surface of the integral support plate is fixedly connected to an equidistantly distributed driving motor, the output shaft of the driving motor is fixedly connected to a driving screw, the inner side of the screw support platform is rotatably connected to the driving screw, the inner side of the sliding groove is slidably connected to the sealing protective cover 1 and the sealing protective cover 2, the inner sides of the sealing protective cover 1 and the sealing protective cover 2 are fixedly connected to equidistantly distributed connecting platforms, and the inner side of the connecting platform is threadedly connected to the driving screw.
[0018] Preferably, the sealing assembly includes a connecting sealing strip, and sealing grooves are provided on the sides of the sealing protective cover 1 and the sealing protective cover 2, and a connecting platform is fixedly connected to the inner side of the sealing groove.
[0019] Preferably, the side fixing installation component is composed of a side fixing component and a side mounting component, the side fixing component includes an anti-slip fixing ring, a fixing clamp, a fixing bolt, a fixing nut, and a mounting support platform, one side of the mounting support platform is rotatably connected with a fixing clamp, the anti-slip fixing ring is fixedly connected to the outer side of the fixing clamp with an anti-slip fixing ring, the inner side of the anti-slip fixing ring is frictionally connected with a mounting support rod, the fixing clamp and the side of the mounting support platform are provided with concentrically aligned connecting holes, the inner side of the connecting hole is slidably connected with a fixing bolt, and the other end of the fixing bolt is threadedly connected with a fixing nut.
[0020] Preferably, the side mounting assembly includes a fixed sliding rod and a connecting support rod. The bottom surface of the integral support plate is fixedly connected with equidistantly distributed sliding sleeves. The side of the mounting support platform is fixedly connected with symmetrically distributed connecting support rods. A positioning sliding hole is opened on the side of the connecting support rod. The inner side of the sliding sleeve is slidingly connected to the connecting support rod, and the inner side of the positioning sliding hole is slidingly connected to the fixed sliding rod.
[0021] (3) Beneficial effects
[0022] Compared with the prior art, the advantages of the present invention are:
[0023] A pole-mounted tower-mounted intelligent drone nest with multiple safety protection features is provided, which has the following beneficial effects:
[0024] The pole-mounted tower-type intelligent drone nest with multiple safety protections provided by the present invention realizes height adjustment and impact buffering during take-off and landing of the drone through a lifting buffer component, and cooperates with the side correction component to ensure accurate positioning; the sealing protection component drives the opening and closing of the sealing protection cover through a driving motor and a screw structure, and combines with the connecting sealing strip to form a fully enclosed protection, which effectively resists severe weather such as wind, rain, sand and dust; the side fixed installation component uses anti-slip fixing rings, fixing clamps and sliding sleeves and other structures to achieve stable installation and rapid disassembly of the nest on the pole or tower; the overall design combines the characteristics of automated operation and maintenance, electromagnetic shielding, and lightweight, which can improve the mission reliability of the drone in complex environments, reduce manual intervention and equipment loss, and reduce operation and maintenance costs. It is suitable for scenarios with high safety protection requirements such as power inspection and security monitoring. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0026] Figure 2 This is a schematic diagram of the overall structure of the present invention;
[0027] Figure 3 It is a schematic cross-sectional view of the overall structure of the present invention;
[0028] Figure 4 It is a cross-sectional schematic diagram of a sealing component in a partial structure of the present invention;
[0029] Figure 5 It is a cross-sectional schematic diagram of a lifting buffer assembly in a partial structure of the present invention;
[0030] Figure 6 It is a cross-sectional schematic diagram of the installation of the fixing assembly in the partial structure of the present invention;
[0031] Figure 7 for Figure 2 A local enlarged schematic diagram of point A in the figure.
[0032] In the figure: 1. Install the support rod; 2. Anti-slip fixing ring; 3. Fixing clamp; 4. Fixing bolt; 5. Fixing nut; 6. Install the support platform; 7. Integral support plate; 8. Fixing sliding clamp; 9. Connecting support rod; 10. Sealing protective cover 1; 11. Connecting hole; 12. Sealing protective cover 2; 13. Positioning slide hole; 14. Screw support platform; 15. Driving screw; 16. Driving motor; 17. Lifting electric rod; 18. Internal lifting slide; 19. Support buffer plate; 20. Buffer spring; 21. Connecting sealing strip; 22. Sealing groove; 23. Connecting platform; 24. UAV support plate; 25. Telescopic electric push cylinder; 26. Telescopic slide; 27. Correction push plate; 28. UAV body; 29. Telescopic fixing plate; 30. Sliding sleeve; 31. Sliding groove. DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of protection of the present application.
[0034] Please refer to Figure 1-7 The present application provides a technical solution:
[0035] A tower-station intelligent unmanned aerial vehicle nest with multiple security protections comprises:
[0036] The top surface of the mounting support table 6 is fixedly connected with the overall support plate 7, the top surface of the unmanned aerial vehicle support plate 24 is provided with equidistantly distributed clamping grooves, the top surface of the unmanned aerial vehicle support plate 24 is slidably connected with the unmanned aerial vehicle body 28, and the inner side of the clamping groove is slidably connected with the foot support of the unmanned aerial vehicle body 28;
[0037] The lifting buffer assembly is arranged between the bottom surface of the mounting support table 6 and the top surface of the overall support plate 7, and comprises a support buffer plate 19, a buffer assembly and a lifting assembly; the top surface of the overall support plate 7 is provided with the lifting assembly, and the top surface of the support buffer plate 19 is provided with the buffer assembly;
[0038] The sealing protection assembly is arranged on the top surface of the overall support plate 7, the top surface of the overall support plate 7 is fixedly connected with equidistantly distributed driving motors 16, and the output shaft of the driving motor 16 is provided with the sealing protection assembly;
[0039] The fixed mounting assembly is arranged on the side surface of the mounting support table 6, and is used for fixing and mounting the mounting support table 6 and the overall unmanned aerial vehicle nest.
[0040] Further, the lifting assembly comprises a lifting electric rod 17, an internal lifting slide rod 18 and a support buffer plate 19; the top surface of the overall support plate 7 is fixedly connected with equidistantly distributed lifting electric rods 17; the internal lifting slide rod 18 is slidably connected in the lifting electric rod 17; and the top surface of the internal lifting slide rod 18 is fixedly connected with the support buffer plate 19. Through the action of the lifting assembly, the height position of the unmanned aerial vehicle support plate 24 is adjusted.
[0041] Further, the buffer assembly comprises buffer springs 20 and a UAV support plate 24, the top surface of the buffer support plate 19 is fixedly connected with equidistantly distributed buffer springs 20, the top surface of the buffer spring 20 is fixedly connected with the UAV support plate 24, the inner side of the top of the buffer support plate 19 is slidably connected with the UAV support plate 24, and the UAV support plate 24 has a buffering effect through the action of the buffer assembly, so as to protect the safe and stable landing of the UAV.
[0042] Further, the top surface of the UAV support plate 24 is provided with equidistantly distributed side correction assemblies, the side correction assembly comprises telescopic electric push cylinders 25, telescopic slide rods 26, correction push plates 27 and telescopic fixed plates 29, the top surface of the UAV support plate 24 is fixedly connected with equidistantly distributed telescopic fixed plates 29, the side surface of the telescopic fixed plate 29 is fixedly connected with symmetrically distributed telescopic electric push cylinders 25, the inner side of the telescopic electric push cylinder 25 is slidably connected with the telescopic slide rod 26, the other side of the telescopic slide rod 26 is fixedly connected with the correction push plate 27, and the top surface of the UAV support plate 24 is slidably connected with the correction push plate 27, so as to realize the adjustment and correction of the position of the UAV through the action of the side correction assembly.
[0043] Further, the sealing and protection assembly is composed of a sealing assembly and a protection assembly, the top surface of the overall support plate 7 is fixedly connected with equidistantly distributed lead screw support tables 14, and the top surface of the overall support plate 7 is provided with a sliding groove 31 for providing a position for installing and supporting the sealing and protection assembly.
[0044] Further, the protection assembly comprises a sealing protection cover one 10, a sealing protection cover two 12, a driving lead screw 15 and a driving motor 16, the top surface of the overall support plate 7 is fixedly connected with equidistantly distributed driving motors 16, the output shaft of the driving motor 16 is fixedly connected with the driving lead screw 15, the inner side of the lead screw support table 14 is rotatably connected with the driving lead screw 15, the inner side of the sliding groove 31 is slidably connected with the sealing protection cover one 10 and the sealing protection cover two 12, the inner side of the sealing protection cover one 10 and the sealing protection cover two 12 is fixedly connected with equidistantly distributed connecting tables 23, and the inner side of the connecting table 23 is threadedly connected with the driving lead screw 15, so as to protect the UAV through the action of the protection assembly.
[0045] Further, the sealing assembly comprises a connecting sealing strip 21, the side surface of the sealing protection cover one 10 and the sealing protection cover two 12 is provided with a sealing groove 22, and the inner side of the sealing groove 22 is fixedly connected with the connecting table 23, so as to realize good sealing of the inside through the action of the sealing assembly.
[0046] Furthermore, the side fixing installation assembly consists of a side fixing assembly and a side installation assembly, the side fixing assembly includes an anti-slip fixing ring 2, a fixing clamp 3, a fixing bolt 4, a fixing nut 5, and a mounting support platform 6, one side of the mounting support platform 6 is rotatably connected with the fixing clamp 3, the anti-slip fixing ring 2 is fixedly connected to the outer side of the fixing clamp 3 with the anti-slip fixing ring 2, the inner side of the anti-slip fixing ring 2 is frictionally connected with the mounting support rod 1, and concentrically aligned connecting holes 11 are opened on the side of the fixing clamp 3 and the inner side of the connecting hole 11 is slidingly connected with the fixing bolt 4, and the other end of the fixing bolt 4 is threadedly connected with the fixing nut 5, and the fixed installation between the mounting support platform 6 and the mounting support rod 1 is achieved through the action of the side fixing assembly.
[0047] Furthermore, the side mounting assembly includes a fixed sliding clamping rod 8 and a connecting support rod 9. The bottom surface of the integral support plate 7 is fixedly connected with equidistantly distributed sliding sleeves 30. The side of the mounting support platform 6 is fixedly connected with symmetrically distributed connecting support rods 9. A positioning sliding hole 13 is provided on the side of the connecting support rod 9. The inner side of the sliding sleeve 30 is slidingly connected with the connecting support rod 9. The inner side of the positioning sliding hole 13 is slidingly connected with the fixed sliding clamping rod 8. Through the action of the side mounting assembly, the fixed installation between the mounting support platform 6 and the integral support plate 7 is achieved.
[0048] Structure Description:
[0049] Mounting support platform 6: Serving as the foundation for the machine nest, its top surface is fixedly connected to the integral support plate 7, and its sides incorporate integrated mounting components. Using fixing bolts 4 and nuts 5, the anti-slip fixing ring 2 is tightly clamped to the mounting support rod 1, forming a pole-type fixing structure. This provides horizontal support and wind resistance for the machine nest, ensuring overall installation reliability.
[0050] Integral support plate 7: Horizontally fixed to the top surface of the mounting support platform 6, it serves as the carrier for the core functional layer of the machine nest. The top surface integrates components such as the drive motor 16, the screw support platform 14, and the sliding groove 31, and is used to install the sealing and protection components. The bottom surface slides with the connecting support rod 9 of the mounting support platform 6 through the sliding sleeve 30 to achieve a detachable connection. It also provides an installation base for the lifting and buffering components and coordinates the coordinated operation of various functional modules.
[0051] The top surface of the drone support plate 24 features equidistant slots for supporting the drone body 28. Its legs fit into these slots for initial positioning. The bottom surface is elastically connected to the support buffer plate 19 via buffer springs 20, forming a takeoff and landing buffer structure. The top surface also features a side correction assembly that pushes the correction push plate 27 laterally to ensure the drone precisely aligns with the slots during landing, improving positioning accuracy and takeoff and landing safety.
[0052] The drone body 28 is slidably connected to the slots of the drone support plate 24 via the foot brackets, enabling positioning and fixation during takeoff and landing. The drone nest provides multiple protections through components such as lift buffers, side corrections, and sealing protection. It is suitable for complex tasks such as power inspections and security monitoring, and improves the safety and reliability of the drone when not in operation.
[0053] Lifting assembly: It consists of a lifting electric rod 17, an internal lifting slide 18, and a support buffer plate 19. The electric rod drives the internal slide to extend and retract, which drives the support buffer plate 19 up and down, adjusting the height of the drone support plate 24 to meet different take-off and landing requirements;
[0054] Buffer assembly: The top surface of the support buffer plate 19 is connected to the drone support plate 24 through the buffer spring 20. When the drone lands, the spring compresses to absorb the impact energy, avoiding damage to the equipment due to hard landing, and achieving the dual protection of "electric lifting + elastic buffering";
[0055] Protection component: The driving motor 16 drives the sealing protective cover 10 and the sealing protective cover 2 12 to slide toward each other in the sliding groove 31 through the driving screw 15. When closed, they form a fully enclosed physical protection to resist wind, rain, sand and dust; when opened, the take-off and landing area is exposed to meet the operation requirements of drones;
[0056] Sealing assembly: A sealing groove 22 is provided on the side of the protective cover, and a sealing strip 21 is embedded therein. When closed, the sealing strip is squeezed to fill the gap, forming an airtight structure to prevent external pollutants from entering the interior of the machine nest and protect the safety of electronic equipment;
[0057] The side correction assembly is mounted on the top surface of the drone support plate 24 and consists of a telescopic electric push cylinder 25, a telescopic slide rod 26, a correction push plate 27, and a telescopic fixed plate 29. When the drone's landing position deviates, the electric push cylinder drives the slide rod to move the correction push plate laterally, pushing the drone to the center of the positioning slot, ensuring the leg bracket is accurately inserted. This solves the problem of autonomous positioning deviation in complex environments and improves docking reliability.
[0058] Side fixing assembly: includes fixing clamp 3, anti-skid fixing ring 2, fixing bolt 4, etc. The fixing clamp is installed around the support rod 1. The bolts are tightened to ensure that the rough inner surface of the anti-skid fixing ring rubs closely against the support rod, preventing the machine nest from sliding. It is suitable for fast fixing of columnar structures such as poles and towers.
[0059] Side mounting assembly: The sliding sleeve 30 on the bottom surface of the integral support plate 7 is inserted into the connecting support rod 9 of the mounting support platform 6, and the fixed sliding clamping rod 8 is inserted into the locking sliding hole 13 to lock it, thereby realizing the detachable connection between the upper and lower structures, which is convenient for installation and maintenance;
[0060] Screw support platform 14: fixed to the top surface of the integral support plate 7, supports the rotation of the driving screw 15 and provides transmission support for the translation of the sealing protective cover;
[0061] Sliding groove 31: opened on the top surface of the integral support plate 7, providing a track for the sliding of the sealing protective cover 10 and 2 12, ensuring the smooth opening and closing of the protective structure;
[0062] Communication hole 11: located on the side of the fixing clamp 3 and the mounting support platform 6, for passing the fixing bolt 4 to achieve mechanical connection and fastening;
[0063] Working principle: During installation, the fixing clamp is wrapped around the outside of the mounting support rod 1, and the anti-slip fixing ring 2 is tightly attached to the surface of the mounting support rod by tightening the fixing bolts. The rough inner side of the anti-slip fixing ring increases friction to prevent the machine nest from sliding and achieves a stable fixation. The sliding sleeve 30 on the bottom surface of the integral support plate is inserted into the connecting support rod 9 on the side of the mounting support platform. By inserting the fixed sliding card rod 8 through the card position slide hole 13 of the connecting support rod, the integral support plate is fixedly connected to the mounting support platform to ensure the stability of the machine nest structure and facilitate disassembly and maintenance. When the UAV needs to take off and land, the lifting electric rod 17 on the top surface of the integral support plate is started, and the internal lifting slide rod 18 pushes the support buffer plate 19 up and down, thereby adjusting the height of the UAV support plate 24 to adapt to the take-off and landing requirements of the UAV. At the same time, the buffer spring 20 on the top surface of the support buffer plate is connected to the UAV support plate. When the UAV lands, the impact force is transmitted to the buffer spring through the UAV support plate. The spring compression absorbs the impact energy to avoid damage to the UAV due to hard landing, achieving a safe and smooth landing. The retractable electric push cylinder 25 is installed The telescopic fixed plate 29 mounted on the top surface of the drone support plate drives the telescopic slide rod 26 to drive the correction push plate 27 to move horizontally. When the drone lands on the drone support plate, if the position is offset, the side correction component is activated, and the correction push plates on both sides are extended synchronously to push the drone into the preset positioning groove, ensuring that the drone foot bracket is accurately inserted into the positioning groove to achieve precise positioning. When the machine nest needs to be closed, the driving motor drives the driving screw to rotate, and the threaded connection platform 23 pushes the sealing protective cover 10 and the sealing protective cover 2 12 to slide toward each other in the sliding groove 31 until they are completely closed, forming a physical protection for the drone to resist external environmental influences such as wind, rain, sand and dust. When the drone needs to take off, the driving motor rotates in the opposite direction, and the driving screw drives the sealing protective cover to slide in the opposite direction to open, exposing the drone take-off and landing area. At the same time, sealing grooves 22 are provided on the sides of the sealing protective covers 1 and 2, and connecting sealing strips 21 are embedded inside. When the protective covers are closed, the sealing strips squeeze each other to fill the gaps to form a sealing structure to prevent rainwater, dust, etc. from entering the interior of the machine nest and ensure the safety of internal equipment.
[0064] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A tower-mounted intelligent drone nest with multiple safety features, characterized by: include: A mounting support platform (6), an integral support plate (7), an unmanned aerial vehicle (UAV) support plate (24), and an unmanned aerial vehicle (UAV) body (28) are installed. The top surface of the mounting support platform (6) is fixedly connected to the integral support plate (7). The top surface of the unmanned aerial vehicle (UAV) support plate (24) is provided with equally spaced positioning grooves. The top surface of the unmanned aerial vehicle (UAV) support plate (24) is slidably connected to the UAV body (28). The inner side of the positioning groove is slidably connected to the foot support of the UAV body (28). A lifting buffer assembly is provided between the bottom surface of the mounting support platform (6) and the top surface of the integral support plate (7), the lifting buffer assembly comprising a support buffer plate (19), a buffer assembly and a lifting assembly, the top surface of the integral support plate (7) being provided with the lifting assembly, and the top surface of the support buffer plate (19) being provided with the buffer assembly; A sealing protection assembly is provided on the top surface of the integral support plate (7), the top surface of the integral support plate (7) is fixedly connected to drive motors (16) distributed at equal intervals, and the output shaft of the drive motor (16) is provided with a sealing protection assembly; A fixed installation component is arranged on the side of the installation support platform (6) and is used for integrally fixing the installation support platform (6) and the drone nest.
2. The pole-mounted tower-mounted intelligent drone nest with multiple safety protections according to claim 1 is characterized by: The lifting assembly comprises a lifting electric rod (17), an internal lifting slide rod (18), and a support buffer plate (19); the top surface of the integral support plate (7) is fixedly connected to the lifting electric rods (17) distributed at equal intervals; the internal sliding connection of the lifting electric rod (17) is connected to the internal lifting slide rod (18); and the top surface of the internal lifting slide rod (18) is fixedly connected to the support buffer plate (19).
3. The pole-mounted tower-mounted intelligent drone nest with multiple safety protections according to claim 2 is characterized by: The buffer assembly comprises a buffer spring (20) and a drone support plate (24); the top surface of the support buffer plate (19) is fixedly connected to the buffer springs (20) distributed at equal intervals; the top surface of the buffer spring (20) is fixedly connected to the drone support plate (24); and the inner side of the top of the support buffer plate (19) is slidably connected to the drone support plate (24).
4. The pole-mounted tower-mounted intelligent drone nest with multiple safety protections according to claim 3 is characterized by: The top surface of the UAV support plate (24) is provided with equidistantly distributed side correction components, and the side correction components include a telescopic electric push cylinder (25), a telescopic slide rod (26), a correction push plate (27), and a telescopic fixed plate (29). The top surface of the UAV support plate (24) is fixedly connected with the equidistantly distributed telescopic fixed plate (29), and the side of the telescopic fixed plate (29) is fixedly connected with a symmetrically distributed telescopic electric push cylinder (25). The inner side of the telescopic electric push cylinder (25) is slidably connected with the telescopic slide rod (26), and the other side of the telescopic slide rod (26) is fixedly connected with the correction push plate (27). The top surface of the UAV support plate (24) is slidably connected with the correction push plate (27).
5. The pole-mounted tower-mounted intelligent drone nest with multiple safety protections according to claim 1 is characterized in that: The sealing and protective assembly is composed of a sealing assembly and a protective assembly. The top surface of the integral support plate (7) is fixedly connected to equidistantly distributed screw support platforms (14). The top surface of the integral support plate (7) is provided with a sliding groove (31) for providing a position for installing and supporting the sealing and protective assembly.
6. The pole-mounted tower-mounted intelligent drone nest with multiple safety protections according to claim 5, characterized in that: The protective assembly comprises a sealing protective cover 1 (10), a sealing protective cover 2 (12), a driving screw (15), and a driving motor (16); the top surface of the integral support plate (7) is fixedly connected to the driving motor (16) which is distributed at equal intervals; the output shaft of the driving motor (16) is fixedly connected to the driving screw (15); the inner side of the screw support platform (14) is rotatably connected to the driving screw (15); the inner side of the sliding groove (31) is slidably connected to the sealing protective cover 1 (10) and the sealing protective cover 2 (12); the inner sides of the sealing protective cover 1 (10) and the sealing protective cover 2 (12) are fixedly connected to the connecting platforms (23) which are distributed at equal intervals; the inner side of the connecting platform (23) is threadedly connected to the driving screw (15).
7. The pole-mounted tower-mounted intelligent drone nest with multiple safety protections according to claim 6, characterized in that: The sealing assembly includes a connecting sealing strip (21), and the sides of the sealing protective cover 1 (10) and the sealing protective cover 2 (12) are provided with sealing grooves (22), and the inner side of the sealing groove (22) is fixedly connected with a connecting platform (23).
8. The pole-mounted tower-mounted intelligent drone nest with multiple safety protections according to claim 1, characterized in that: The side fixing installation component is composed of a side fixing component and a side installation component, and the side fixing component includes an anti-slip fixing ring (2), a fixing clamp (3), a fixing bolt (4), a fixing nut (5), and a mounting support platform (6). One side of the mounting support platform (6) is rotatably connected to the fixing clamp (3), the anti-slip fixing ring (2) and the outer side of the fixing clamp (3) are fixedly connected to the anti-slip fixing ring (2), the inner side of the anti-slip fixing ring (2) is frictionally connected to the mounting support rod (1), the side of the fixing clamp (3) and the mounting support platform (6) are provided with concentrically aligned connecting holes (11), the inner side of the connecting hole (11) is slidably connected to the fixing bolt (4), and the other end of the fixing bolt (4) is threadedly connected to the fixing nut (5).
9. The pole-mounted tower-mounted intelligent drone nest with multiple safety protections according to claim 8, characterized in that: The side mounting assembly comprises a fixed sliding clamping rod (8) and a connecting support rod (9); the bottom surface of the integral support plate (7) is fixedly connected with sliding sleeves (30) distributed at equal intervals; the side surface of the mounting support platform (6) is fixedly connected with symmetrically distributed connecting support rods (9); a locking sliding hole (13) is provided on the side surface of the connecting support rod (9); the inner side of the sliding sleeve (30) is slidingly connected with the connecting support rod (9); the inner side of the locking sliding hole (13) is slidingly connected with the fixed sliding clamping rod (8).