Portable unmanned aerial vehicle infrared operation edge analysis box

By designing an edge analysis box for UAV infrared operations with a network module, an edge analysis box, and a power module, the problems of charging and data processing during UAV transportation were solved, enabling rapid UAV endurance and data analysis, and enhancing the stability and protection functions of the equipment.

CN224061539UActive Publication Date: 2026-03-31TAICHANG TECH (HANGZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing drone transport equipment cannot meet the charging and data processing needs of drones in the field, nor can it meet the needs of continuous operation.

Method used

A portable edge analysis box for UAV infrared operations was designed, comprising a network module, an edge analysis box, and a power module. The inner liner provides cushioning protection and has data processing capabilities to ensure that the UAV is not damaged during transportation and can quickly recharge the UAV.

Benefits of technology

It enables data processing and rapid charging of drones during transportation, increases drone operating time and workload, enhances equipment durability and stability, and provides real-time communication and protection functions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an unmanned aerial vehicle infrared operation edge analysis box convenient to carry, and belongs to the technical field of unmanned aerial vehicle operation. The technical problem that data processing requirements of unmanned aerial vehicle operation cannot be met in the prior art is solved. The portable infrared operation edge analysis box for the unmanned aerial vehicle comprises a box body, an opening of the box body is provided with a box cover capable of being opened and closed, the opening is provided with a panel, the panel is provided with a lining pod installation opening, the lining pod installation opening is provided with a lining pod located between the lining pod installation opening and the box body, and the lining pod installation opening is provided with a box cover capable of being opened and closed. A network module, an edge analysis box and a power module are further installed at the bottom of the panel, buffering gaps are formed between the lining pod, the network module, the edge analysis box and the power module and the inner wall of the box body, and an external power connector is arranged on the box body. The utility model has the advantages of data analysis, easy movement, real-time communication with the unmanned aerial vehicle and the like.
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Description

Technical Field

[0001] This utility model belongs to the field of unmanned aerial vehicle (UAV) operation technology, and relates to transfer devices, particularly a portable UAV infrared operation edge analysis box. Background Technology

[0002] The carrying case for drones serves to prevent damage from bumps and knocks during transport. However, current technologies cannot adequately meet the charging, data processing, and other needs of drones during field operations. Therefore, researchers have conducted extensive research and proposed various solutions.

[0003] For example, a Chinese patent document discloses a surveying drone transport box with intelligent charging [Application No.: 202221790411.1], including a sealing cover, a box body, a battery box, and a clamp. The box body has a sealing cover that can be opened front and back, and the sealing cover has a protective cover with an outward protrusion design in the middle. The battery box is located in the middle of the inner cavity of the box body, and a magnetic charging plate is located at the top center of the battery box. Both sides of the inner side of the box body have storage slots, and the storage slots have retractable telescopic plates. One end of the telescopic plate has a clamp. The box body of this utility model has a sealing cover on the top, and a protective cover in the middle of the sealing cover, which allows space to be reserved for the stored drones, which can prevent them from being crushed and increase protection. The box body has a horizontally adjustable telescopic plate, and one end of the telescopic plate has a clamp. The position of the clamp can be adjusted, and the clamp can clamp and fix drones of different widths to prevent the drones from shaking.

[0004] This product can charge the drone using its own battery, thus improving the drone's battery life.

[0005] While the above solutions can improve the drone's battery life, the long charging time cannot meet the needs of continuous operation. Furthermore, they cannot meet the data processing requirements of drone operations. Summary of the Invention

[0006] The purpose of this invention is to address the aforementioned problems by providing a portable UAV infrared operation edge analysis box that has data processing capabilities and can safely transport UAVs.

[0007] To achieve the above objectives, the present invention adopts the following technical solution: This portable UAV infrared edge analysis box includes a box body, an openable lid on the opening of the box body, a panel on the opening, an inner liner pod mounting port on the panel, an inner liner pod located between the inner liner pod mounting port and the box body, a network module, an edge analysis box and a power module installed at the bottom of the panel, a buffer gap between the inner liner pod, the network module, the edge analysis box and the power module and the inner wall of the box body, and an external power connector on the box body.

[0008] The network module can be one or more of a mobile communication unit, a Wi-Fi unit, or a Bluetooth unit, with the mobile communication unit being 4G communication, 5G communication, etc. The edge analysis box is an existing device.

[0009] The inner pod can accommodate the drone, its remote controller, and spare batteries, enabling safe transport and rapid recharging of the drone. A network module and edge analytics box are installed at the bottom of the panel, allowing for communication between drones during operation and data processing upon return, thereby increasing the drone's workload and continuous operating time.

[0010] In the aforementioned portable UAV infrared edge analysis box, a power switch is also installed on the panel, with the main body of the power switch located below the panel. The switch body is flush with the panel or protrudes from the upper surface of the panel. The edge analysis box connects the power switch, power module, and network module. Positioning the power switch below the panel effectively prevents direct external impacts to the power switch, improving the durability and safety of the equipment.

[0011] In the aforementioned portable UAV infrared edge analysis box, the inner liner pod includes an inner liner with several holes for mounting the UAV and its accessories. The inner liner is fixed to the bottom of the panel via the pod, and the holes are located within the mounting openings of the inner liner pod. The structure of the inner liner and pod provides cushioning and protection for the UAV and its accessories, reducing impacts and damage during transportation or use.

[0012] In the aforementioned portable UAV infrared edge analysis box, the pod includes a base plate and side plates surrounding the base plate. The lower ends of the side plates are integrally connected to the base plate, and the upper ends of the side plates are fixed to the bottom of the panel via fixing ears. The fixing ears are fixed to the panel by bolts or welding. Weight-reduction holes are provided on the side plates and the base plate. The pod, composed of the base plate and the surrounding side plates, with the lower ends of the side plates integrally connected to the base plate, forms a robust frame capable of stably supporting and securing the UAV and its associated equipment.

[0013] In the aforementioned portable UAV infrared edge analysis case, the lid is lined with shock-absorbing cotton. This cotton, acting as a cushioning material, effectively absorbs and disperses impact forces, protecting the UAV and its associated equipment from damage when the case is subjected to a vertical impact.

[0014] In the aforementioned portable UAV infrared edge analysis box, the panel is connected to the box body via several L-shaped brackets. One end of each L-shaped bracket is connected to the panel, and the other end is positioned within a bracket slot on the side edge of the box body. This L-shaped bracket design ensures a more stable connection between the panel and the box body. The connection method, with one end connected to the panel and the other end positioned in the bracket slot on the side edge of the box body, effectively prevents the panel from shaking or falling off during transportation or use, thus improving the overall stability of the box body.

[0015] In the aforementioned portable UAV infrared edge analysis kit, the network module is detachably connected to the panel via a quick-release mounting plate located on top of the panel, while the network module mounting holes through which the network module passes are located at the bottom of the panel. This detachable connection not only improves installation efficiency but also facilitates replacement when the network module malfunctions or requires an upgrade.

[0016] In the aforementioned portable UAV infrared edge analysis box, the edge analysis box is fixed to the bottom of the panel by several bolts. The panel has windows for observing indicator lights or for inserting interfaces. The power module includes a transformer and / or a rechargeable battery. The windows on the panel are used to observe the edge analysis box's operating status and fault information, facilitating user monitoring and management. This helps improve the reliability and stability of the equipment.

[0017] In the aforementioned portable UAV infrared edge analysis box, one end of the box cover is connected to the box body by several hinges, and the other end is fixed by a detachable buckle and / or bolt structure.

[0018] The lid and / or body of the enclosure are equipped with a sealing ring. The hinge design allows the lid to rotate easily around a fixed point, enabling easy and quick opening and closing. The sealing ring reduces the corrosion and damage to the equipment inside the enclosure from the external environment, improves the equipment's waterproof and dustproof rating, and ensures that the equipment can still operate normally in harsh environments.

[0019] The aforementioned portable UAV infrared edge analysis case features a handle on the back, and / or several casters on the surface, and / or several hanging holes around its perimeter. The handle and casters allow the case to be easily slid and dragged across the ground during transport, eliminating the need for strenuous lifting or pushing. In some cases, the handle can also serve as an additional support point, helping users to place the case stably on the ground or a tabletop.

[0020] Compared to existing technologies, the advantages of this portable drone infrared edge analysis box are: 1. It enables analysis through the edge analysis box, assisting the drone in data analysis. 2. Its specially designed structure allows it to be stored as an accessory to extend the drone's battery life. 3. It features a convenient transport design, making it easier to move. 4. The network unit design ensures real-time positioning and communication between the drone and the remote controller operator. 5. The additional waterproof and cushioning structure further protects the drone from damage during transport. Attached Figure Description

[0021] Figure 1 This is a structural schematic diagram provided by this utility model.

[0022] Figure 2 This is a schematic diagram of the panel structure provided by this utility model.

[0023] Figure 3 This is a schematic diagram of the inner lining pod structure provided by this utility model.

[0024] Figure 4 This is a circuit diagram provided by this utility model.

[0025] In the diagram, the components are: 1. Box body; 11. Opening; 12. Box cover; 121. Anti-collision cotton; 122. Hinge; 13. Panel; 131. Inner liner pod mounting port; 132. Window; 133. Network module mounting hole; 14. L-shaped bracket; 15. Bracket hanging slot; 16. Buffer gap; 17. Handle; 18. Roller; 19. Hanging hole; 2. Inner liner pod; 21. Inner liner; 22. Hole; 23. Pod; 231. Base plate; 232. Side plate; 233. Fixing ear; 3. Network module; 3. Quick-release fixing plate; 4. Edge analysis box; 5. Power module; 51. External power connector; 52. Power switch; 53. Transformer; 6. Sealing ring. Detailed Implementation Example 1

[0026] like Figures 1 to 4As shown, a portable UAV infrared edge analysis box includes a box body 1. The box body 1 has an opening 11 with an openable cover 12. The opening 11 has a panel 13. The panel 13 has an inner liner pod mounting port 131. The inner liner pod 2 is located between the inner liner pod mounting port 131 and the box body 1. A network module 3, an edge analysis box 4, and a power module 5 are also installed at the bottom of the panel 13. A buffer gap 16 is provided between the inner liner pod 2, the network module 3, the edge analysis box 4, and the power module 5 and the inner wall of the box body 1. The box body 1 has an external power connector 51.

[0027] In this embodiment, the drone and its accessories are stored in the inner liner pod 2 during transportation, which prevents the drone from shaking and getting bumped. At the same time, the stored drone accessories can be quickly replaced to extend the drone's battery life when the drone returns, which has the effect of increasing the drone's operating time.

[0028] Furthermore, the edge analytics box 4 can process the data collected during drone operations when the drone returns.

[0029] More specifically, a power switch 52 is also installed on the panel 13, and the main body of the power switch 52 is located below the panel 13. The key body of the power switch 52 is flush with the panel 13 or exposed on the upper surface of the panel 13.

[0030] In this embodiment, the edge analysis box 4 is connected to the power switch 52, the power module 5, and the network module 3.

[0031] More specifically, the inner liner pod 2 includes an inner liner 21, which has several holes 22 for embedding the drone and its supporting equipment. The inner liner 21 is fixed to the bottom of the panel 13 by the pod 23, and the holes 22 are located inside the inner liner pod mounting opening 131.

[0032] More specifically, the pod 23 includes a base plate 231 and side plates 232 arranged around the base plate 231. The lower end of the side plates 232 is integrated with the base plate 231, and the upper end of the side plates 232 is fixed to the bottom of the panel 13 through fixing ears 233.

[0033] In this embodiment, the mounting lug 233 is fixed to the panel 13 by bolts. Weight reduction holes are provided on the side plate 232 and the bottom plate 231. The detachable design of the mounting lug 233 and the panel 13 facilitates the replacement of the pod 23 to accommodate different UAV models or accessory combinations.

[0034] More specifically, the box lid 12 is equipped with anti-collision cotton 121.

[0035] More specifically, the panel 13 is connected to the housing 1 by several L-shaped brackets 14 around its perimeter. One end of the L-shaped bracket 14 is connected to the panel 13, and the other end is set in the bracket hanging groove 15 on the side edge of the housing 1.

[0036] In this embodiment, L-shaped brackets 14 are arranged around the bottom surface of panel 13. Two L-shaped brackets 14 are evenly arranged on each side of panel 13. One end of L-shaped bracket 14 is fixed to panel 13 by bolts, and the other end is inserted into bracket hanging groove 15 and fixed to box 1 by bolts.

[0037] More specifically, the network module 3 is detachably connected to the panel 13 via a quick-release fixing plate 31. The quick-release fixing plate 31 is located above the panel 13, and the network module mounting hole 133 through which the network module 3 passes is located at the bottom of the panel.

[0038] In this embodiment, the quick-release fixing plate 31 is provided with four mounting holes and is fixed to the designated position on the panel 13 by bolts. The quick-release fixing plate 31 is made of transparent material so that the indicator light of the network module 3 can be seen directly from the top of the panel.

[0039] More specifically, the edge analysis box 4 is fixed to the bottom of the panel 13 by several bolts, and the panel 13 has a window 132 for observing indicator lights or for inserting interfaces; the power module 5 includes a transformer 53 and a rechargeable battery.

[0040] In this embodiment, the network module 3 and the edge analysis box 4 are controlled by the power switch 52 on the panel 13. When pressed, the power switch 52 self-locks the power input; when pressed again, the power switch 52 pops up and the power is disconnected. The external power connector 51 on the housing 1 supplies power to the internal transformer 53, and then the power module 5 outputs power to the network module 3 and the edge analysis box 4.

[0041] More specifically, one end of the lid 12 is connected to the box body 1 via two hinges 122, and the other end is fixed to the box body 1 via bolts.

[0042] A sealing ring 6 is provided on the lid 12.

[0043] More specifically, the back of the box 1 is equipped with a handle 17; the box 1 is also equipped with two sets of rollers 18; and the box 1 is also equipped with hanging holes 19 around its perimeter.

[0044] The working principle of this embodiment is that when the drone is out in operation, the handle 17 and the corresponding rollers 18 on the box 1 are used to pull the box 1 to the designated location, the box cover 12 is opened and the drone is taken out from the pod 23, the drone accessories are taken out from the hole 22 and the drone is used for operation.

[0045] During drone operations, the network module 3 can communicate with the drone in real time to collect data, while the edge analysis box 4 processes the data.

[0046] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

[0047] Although this document uses numerous terms such as enclosure, opening, cover, anti-collision cotton, hinge, panel, inner lining pod mounting port, window, network module mounting hole, L-shaped bracket, bracket hanging slot, buffer gap, handle, roller, hanging hole, inner lining pod, inner lining, hole position, pod, bottom plate, side plate, fixing ear, network module, quick-release fixing plate, edge analysis box, power module, external power connector, power switch, transformer, and sealing ring, the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.

Claims

1. A portable UAV infrared operation edge analysis box, comprising a box body (1), a box cover (12) capable of being opened and closed is arranged on an opening (11) of the box body (1), characterized in that, The opening (11) is provided with a panel (13), the panel (13) is provided with a lining pod installation opening (131), the lining pod installation opening (131) is provided with a lining pod (2) between the lining pod installation opening (131) and the box (1), the bottom of the panel (13) is further provided with a network module (3), an edge analysis box (4) and a power module (5), the lining pod (2), the network module (3), the edge analysis box (4) and the power module (5) are provided with a buffer gap (16) between the inner wall of the box (1), and the box (1) is provided with an external power connector (51).

2. The portable UAV IR mission edge analysis box of claim 1, wherein, The panel (13) is further provided with a power switch (52), and the main body of the power switch (52) is located below the panel (13), and the key body of the power switch (52) is flush with the panel (13) or protrudes above the surface of the panel (13).

3. The portable UAV IR mission edge analysis box of claim 2, wherein, The lining pod (2) comprises a lining (21), a plurality of hole positions (22) for embedding a drone and its supporting equipment are arranged on the lining (21), the lining (21) is fixed to the bottom of the panel (13) through a pod (23), and the plurality of hole positions (22) are located in the lining pod installation opening (131).

4. The portable UAV IR mission edge analysis box of claim 3, wherein, The pod (23) comprises a bottom plate (231) and a side plate (232) arranged around the bottom plate (231), the lower end of the side plate (232) is connected with the bottom plate (231), and the upper end of the side plate (232) is fixed to the bottom of the panel (13) through a fixing lug (233).

5. The portable UAV IR mission edge analysis box of claim 3, wherein, The box cover (12) is provided with an anti-collision cotton (121).

6. The portable UAV IR mission edge analysis box of any of claims 1-5, wherein, The panel (13) is connected with the box (1) through a plurality of L-shaped supports (14), one end of the L-shaped support (14) is connected with the panel (13), and the other end is arranged in a support hanging groove (15) at the side edge of the box (1).

7. The portable UAV IR mission edge analysis box of any of claims 1-5, wherein, The network module (3) is detachably connected with the panel (13) through a quick-release fixing plate (31), the quick-release fixing plate (31) is located above the panel (13), the network module (3) is arranged on the bottom of the panel (13) through a network module mounting hole (133) of the panel (13).

8. The portable UAV IR mission edge analysis box of any of claims 1-5, wherein, The edge analysis box (4) is fixed to the bottom of the panel (13) through a plurality of bolts, a window (132) for observing an indicator light or for inserting an interface is arranged on the panel (13); and the power module (5) comprises a transformer (53) and / or a rechargeable battery.

9. The portable UAV IR mission edge analysis box of any of claims 1-5, wherein, One end of the box cover (12) is connected with the box (1) through a plurality of hinges (122), and the other end is fixed through a detachable buckle and / or a bolt structure; The box cover (12) and / or the box (1) are provided with a sealing ring (6).

10. The portable UAV IR mission edge analysis box of claim 9, wherein, The back of the box (1) is provided with a handle (17); and / or the box (1) is further provided with a plurality of rollers (18); and / or the box (1) is further provided with a plurality of hanging holes (19).

Citation Information

Patent Citations

  • Surveying and mapping unmanned aerial vehicle transfer box with intelligent charging function

    CN217779376U