Unmanned aerial vehicle storage cabinet

By designing drone storage cabinets, using electronic locks, charging interfaces and automated management, the problems of missing and damaged drone accessories in traditional storage methods are solved, and efficient and secure storage and management of drones are achieved.

CN223238676UActive Publication Date: 2025-08-19FUJIAN TONGLIDA IND
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Patent Information

Application Number
CN202422260732.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-08-19
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

Traditional drone storage methods cannot achieve long-term and real-time supervision, resulting in problems such as omission and damage to drone accessories, affecting the efficient operation and safety of equipment.

Method used

A drone storage cabinet is designed, including a cabinet body, display unit, speaker, a prompt light group and a control unit. An electronic lock and a charging interface are provided on the storage compartment. Combined with an RFID identification module and a biometric acquisition module, it realizes automated management and charging functions.

Benefits of technology

The batch and scientific management of drones is realized, reducing losses, improving management efficiency and storage security, and displaying status through display units to facilitate traceability management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an unmanned aerial vehicle storage cabinet, which comprises a cabinet body, a display unit, a loudspeaker, a prompt lamp group and a control unit, when in use, the display unit is used for selecting a storage grid where a required unmanned aerial vehicle model is located, the control unit is used for opening an electronic lock catch on the current storage grid, and the prompt lamp group is controlled to be turned on; a user can quickly take out the unmanned aerial vehicle from the storage cell, voice guidance can be carried out on the operation of taking and returning the unmanned aerial vehicle by the user through the loudspeaker when needed, when the unmanned aerial vehicle is placed in the storage cell, charging can be completed at the first charging interface, and the time period when the unmanned aerial vehicle is not used is fully utilized; batch and scientific management of the unmanned aerial vehicle is realized, the display unit can display the unmanned aerial vehicle state of each storage lattice in the cabinet body, traceability management of taking of the unmanned aerial vehicle is facilitated, the problem that the unmanned aerial vehicle and unmanned aerial vehicle accessories are lost is reduced, and the management efficiency of the unmanned aerial vehicle and the storage safety of the unmanned aerial vehicle are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of unmanned aerial vehicles (UAVs), and in particular to a storage cabinet for UAVs. Background Art

[0002] The increasing use of drones in inspection operations has clearly brought significant efficiency and convenience. However, with the widespread use of drones, traditional equipment management methods have become increasingly common, with drones being manually registered and placed in packaging boxes and then randomly stored in warehouses. This placement method prevents long-term, real-time monitoring of drone storage and use. Over time, this can lead to problems such as missing drone parts and damage, impacting the efficient operation of drone operations and equipment safety. Utility Model Content

[0003] In view of this, the purpose of the present invention is to provide a drone storage cabinet.

[0004] In order to achieve the above technical objectives, the technical solutions adopted by this utility model are:

[0005] A drone storage cabinet comprises a cabinet body, a display unit, a speaker, a warning light group and a control unit. The cabinet body is provided with a plurality of storage compartments, on which drones are placed, each storage compartment having a storage window, each storage window provided with a cover plate, each cover plate provided with an electronic lock, the storage compartment also provided with a first charging interface, the drone provided with a second charging interface, the first charging interface being compatible with the second charging interface; the display unit is arranged on the cabinet body; the speaker is arranged on the cabinet body; the warning light group comprises a plurality of warning lights, each warning light being arranged at a storage window; the control unit is electrically connected to the plurality of electronic lock plates, and the control unit is also electrically connected to the display unit, the speaker and the warning light group.

[0006] In some embodiments, a first storage slot and / or a second storage slot and / or a third storage slot is provided in the storage compartment; the first storage slot is used to place the drone, and the first storage slot is provided with a first charging interface; the second storage slot is used to place the remote control, and the second storage slot is provided with a third charging interface, the remote control is provided with a fourth charging interface, and the third charging interface is adapted to the fourth charging interface; the third storage slot is used to place the battery, and the third storage slot is provided with a fifth charging interface, the battery is provided with a sixth charging interface, and the fifth charging interface is adapted to the sixth charging interface.

[0007] In some embodiments, an RFID identification module is further included. The RFID identification module is arranged on the cabinet and is electrically connected to the control unit; an RFID identification chip is provided on the drone and / or battery and / or remote control.

[0008] In some embodiments, it also includes a fingerprint acquisition module and / or an iris acquisition module and / or a voiceprint acquisition module, the fingerprint acquisition module is electrically connected to the control unit; the iris acquisition module is electrically connected to the control unit; and the voiceprint acquisition module is electrically connected to the control unit.

[0009] In some embodiments, a battery management module is further included. The battery management module is electrically connected to each first charging interface, and the battery management module is also electrically connected to the control unit.

[0010] In some embodiments, the cabinet includes a first storage compartment and a second storage compartment, and the first storage compartment and the second storage compartment have different storage formats for items; the prompt light group includes a first prompt light and a second prompt light, the first prompt light is set at the first storage compartment, and the second prompt light is set at the second storage compartment.

[0011] In some embodiments, a first box body is provided on the first storage compartment, the first box body is detachably connected to the first storage compartment, and a first storage slot, a second storage slot and a third storage slot are provided in the first box body; a seventh charging interface is also provided at the bottom of the first box body, and an eighth charging interface is provided on the first storage compartment, and the seventh charging interface is adapted to the eighth charging interface.

[0012] In some embodiments, a temperature sensor group and a humidity sensor group are also included. The temperature sensor group includes multiple temperature sensors, which are electrically connected to the control unit. Each temperature sensor is set in a storage compartment for detecting the temperature in the storage compartment; the humidity sensor group includes multiple humidity sensors, which are electrically connected to the control unit. Each humidity sensor is set in a storage compartment for detecting the humidity in the storage compartment.

[0013] In some embodiments, a temperature regulating component and a humidity regulating component are also included. The temperature regulating component includes a heater, a refrigerator, a fan group, a valve group and a first delivery pipe group. The first delivery pipe group includes multiple first delivery pipes, each first delivery pipe is connected to a storage compartment. The valve group includes multiple valves, each valve is arranged on a first delivery pipe. The fan group includes a first fan and a second fan. The first fan is connected to the output end of the heater, and the second fan is connected to the refrigerator. The first fan and the second fan are respectively connected to the first delivery pipe. The heater, refrigerator, first fan, second fan and valve group are all electrically connected to the control unit; the humidity regulating component includes a humidifier and a second delivery pipe group. The second delivery pipe group includes multiple second delivery pipes, each second delivery pipe is connected to a storage compartment. The humidifier is electrically connected to the control unit, and the output end of the humidifier is connected to multiple second delivery pipes.

[0014] In some embodiments, a smoke detection sensor group is further included, which includes multiple smoke detection sensors. The multiple smoke detection sensors are electrically connected to the control unit, and each smoke detection sensor is set in a storage compartment to detect smoke in the storage compartment.

[0015] By adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art:

[0016] The drone storage cabinet includes a cabinet body, a display unit, a speaker, a prompt light group and a control unit. The cabinet body is provided with multiple storage compartments, and drones are placed on the storage compartments. Each storage compartment has a storage window, each storage window is provided with a cover, and each cover is provided with an electronic lock. The storage compartment is also provided with a first charging interface, and the drone is provided with a second charging interface, and the first charging interface is adapted to the second charging interface; the display unit is arranged on the cabinet body; the speaker is arranged on the cabinet body; the prompt light group includes multiple prompt lights, each prompt light is arranged at a storage window; the control unit is electrically connected to the multiple electronic locks, and the control unit is also electrically connected to the display unit, the speaker, and the prompt light group. During use, the storage compartment where the drone model to be used is located can be selected through the display unit, and the control unit can be used to open the electronic lock on the current storage compartment and control the prompt light to light up. The user can quickly take out the drone from the storage compartment, and the electronic lock will then close the cover on the storage window. In addition, the technical solution also provides a speaker, which can provide voice guidance to the user on the operation of taking and returning the drone when necessary. At the same time, a first charging interface is provided on the storage compartment and a second charging interface is provided on the drone. When the drone is placed in the storage compartment, it can be charged at the first charging interface, making full use of the time period when the drone is not in use, realizing batch and scientific management of drones. The display unit can display the status of the drones in each storage compartment in the current cabinet, which is convenient for traceability management of drone use, reduces the problem of loss of drones and drone accessories, and improves the management efficiency of drones and the storage security of drones. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0018] Figure 1 This is the first schematic diagram of the drone storage cabinet;

[0019] Figure 2 This is the second schematic diagram of the drone storage cabinet.

[0020] Reference numerals:

[0021] 1. Cabinet;

[0022] 11. Storage compartment;

[0023] 111. First storage tank;

[0024] 112. Second storage tank;

[0025] 113. Third storage tank;

[0026] 2. Display unit;

[0027] 21. Display screen;

[0028] 22. Operation screen;

[0029] 3. Speaker;

[0030] 4. Prompt light;

[0031] 5. Fingerprint collection module;

[0032] 6. Barcode gun;

[0033] 7. Universal wheel. DETAILED DESCRIPTION

[0034] The present invention will be further described in detail below with reference to the accompanying drawings and examples. It should be noted that the following examples are intended only to illustrate the present invention and are not intended to limit the scope of the present invention. Similarly, the following examples are merely partial embodiments of the present invention and are not intended to be exhaustive. All other embodiments derived by persons of ordinary skill in the art without inventive effort are intended to fall within the scope of protection of the present invention.

[0035] See also Figure 1 and Figure 2 This embodiment provides a drone storage cabinet, including a cabinet body 1, a display unit 2, a speaker 3, a set of four indicator lights, and a control unit. The cabinet body 1 is provided with multiple storage compartments 11, and drones are placed on the storage compartments 11. Each storage compartment 11 has a storage window, each storage window is provided with a cover, and each cover is provided with an electronic lock. The storage compartment 11 is also provided with a first charging port, and the drone is provided with a second charging port, and the first charging port is compatible with the second charging port; the display unit 2 is provided on the cabinet body 1; the speaker 3 is provided on the cabinet body 1; the set of four indicator lights includes multiple indicator lights 4, each indicator light 4 is provided at a storage window; the control unit is electrically connected to the multiple electronic locks, and the control unit is also electrically connected to the display unit 2, the speaker 3, and the set of four indicator lights.

[0036] In this embodiment, the cabinet body 1 can be obtained by welding sheet metal and square tubes, and a plurality of storage compartments 11 are provided on the cabinet body 1, such as Figure 1 As shown, the storage compartment 11 has a storage window. When the cabinet body 1 is placed vertically, the storage window can be opened on the side of the cabinet body 1 for user access. A cover is provided on the storage window, and the cover and the storage window are movably connected. Specifically, the cover and the storage window can be hinged or connected by a slide rail. A transparent glass layer can also be provided on the cover to facilitate the user to view the placement status of the drone in the storage compartment 11 more intuitively. An electronic lock is used to lock the cover to facilitate improving the safety of the drone placement. A first charging interface is provided on the storage compartment 11, and a second charging interface is provided on the drone. The first charging interface is adapted to the second charging interface. This method can realize the synchronous charging function of the drone when it is placed in the storage compartment 11.

[0037] In this embodiment, the display unit 2 is provided on the cabinet 1. Optionally, the display unit 2 includes a display screen 21 and an operation screen 22. The display screen 21 is provided on the top of the cabinet 1 and can be used to display the model of the currently used drone or the operation process prompt light 4 of the currently used drone. The display screen 21 allows the user to check more intuitively to improve the efficiency of the use. The operation screen 22 can be a touch screen or a screen with buttons or a keyboard. The user can implement the steps of using the drone on the operation screen 22, including: selecting the drone model, entering the number of drones to be used, etc. When returning the drone, the operation screen 22 can also be used to enter the model of the drone and the location prompt of the storage compartment 11 where the drone needs to be stored. The operation screen 22 can also realize the display of the status of all drones in the current cabinet 1 to facilitate user selection.

[0038] Furthermore, in this embodiment, each storage window is provided with a reminder light 4, which can be set on the cover or on the edge of the storage window. The reminder light 4 can be used to indicate the status of the current storage compartment 11. For example, when the reminder light 4 is set to green, it means that the current storage compartment 11 is open; when the reminder light 4 is set to red, it means that the current storage compartment 11 is placed with a drone and the cover is closed; when the reminder light 4 is set to yellow, it means that there is no drone in the current storage compartment 11 and the cover is closed. This allows users to more intuitively find the open storage compartment 11 and perform the operation of taking or returning a drone.

[0039] In this embodiment, the speaker 3 is arranged on the cabinet 1, and optionally, can be arranged below the display unit 2. The speaker 3 can make sounds. Specifically, the guidance audio data for the retrieval steps and the guidance audio data for the return steps can be pre-stored in the control unit. When the user selects voice guidance, the corresponding guidance audio data can be played through the speaker 3 to achieve one-to-one detailed guidance, so as to improve the efficiency of the user's retrieval or return.

[0040] In this embodiment, a control unit is further included, which is electrically connected to the display unit 2, the speaker 3, and the indicator light 4. When in use, the user interacts with the control unit through the display unit 2 to complete the operation of taking or returning the drone. The control unit generates instructions to control the prompt color of the indicator light 4 and simultaneously controls the opening or closing of the electronic lock of the corresponding storage compartment 11 to complete the corresponding operation steps, thereby realizing automated management of the drone and avoiding the problems of omissions and erroneous records caused by manual registration and management.

[0041] In some optional embodiments, universal wheels 7 may be further provided at the bottom of the cabinet 1 to facilitate moving the cabinet 1 and the drone to a desired location.

[0042] In some optional embodiments, a barcode gun 6 is further provided on the cabinet 1. A barcode is attached to the drone, and the drone can be registered by scanning the barcode with the barcode gun 6, making the entire retrieval or return process faster.

[0043] In this embodiment, the storage compartment 11 where the drone model to be used is located is selected through the display unit 2, and the control unit is used to open the electronic lock on the current storage compartment 11 and control the prompt light 4 to light up. The user can quickly take out the drone from the storage compartment 11, and the electronic lock then closes the cover on the storage window. A speaker 3 is also provided to provide voice guidance to the user on the operation of taking and returning the drone when necessary. At the same time, a first charging interface is provided on the storage compartment 11, and a second charging interface is provided on the drone. When the drone is placed in the storage compartment 11, it can be charged at the first charging interface, making full use of the time period when the drone is not in use, realizing batch and scientific management of drones. The display unit 2 can display the status of the drones in each storage compartment 11 in the current cabinet 1, facilitating traceability management of drone use, reducing the problem of loss of drones and drone accessories, and improving drone management efficiency and drone storage security.

[0044] See also Figure 1 and Figure 2In some embodiments, a first storage slot 111 and / or a second storage slot 112 and / or a third storage slot 113 is provided in the storage compartment 11; the first storage slot 111 is used to place the drone, and the first storage slot 111 is provided with a first charging interface; the second storage slot 112 is used to place the remote control, and the second storage slot 112 is provided with a third charging interface, the remote control is provided with a fourth charging interface, and the third charging interface is adapted to the fourth charging interface; the third storage slot 113 is used to place the battery, and the third storage slot 113 is provided with a fifth charging interface, the battery is provided with a sixth charging interface, and the fifth charging interface is adapted to the sixth charging interface.

[0045] In this embodiment, the storage compartment 11 is provided with a first storage slot 111 and / or a second storage slot 112 and / or a third storage slot 113; that is, the storage compartment 11 may only have the first storage slot 111, and then one storage compartment 11 can only be used to place a drone, the storage compartment 11 may only have the second storage slot 112, and then one storage compartment 11 can only be used to place a remote control, or the storage compartment 11 may only have the third storage slot 113, and then one storage compartment 11 can only be used to place batteries. In some embodiments, the storage compartment 11 may have both the first storage slot 111 and the second storage slot 112, and then one storage compartment 11 can be used to place a drone and a remote control that matches the drone. Similarly, the storage compartment 11 may also have the first storage slot 111, the second storage slot 112, and the third storage slot 113, and then one storage compartment 11 can be used to place a drone, a drone remote control, and a drone battery at the same time.

[0046] It should be noted that the battery of the drone can be the battery carried by the drone itself or a battery for backup. When the battery is backup, it means that a set of batteries is already stored on the drone. Optionally, the battery of the remote control can also be placed in the second storage slot 112.

[0047] In this embodiment, the drone can be charged through the first charging interface and the second charging interface when placed, the drone's remote control can also be charged through the third charging interface and the fourth charging interface, and the drone's battery can also be charged through the fifth charging interface and the sixth charging interface. That is, the storage compartment 11 shown in this embodiment can be configured with multiple categories of charging interfaces to meet the charging needs of the drone and drone-related accessories, making full use of the time when the drone is in a non-working state to complete charging.

[0048] In some embodiments, a battery management module is further included, electrically connected to each first charging interface and the control unit. The battery management module can manage the charging of the drone and its accessories, monitor the battery capacity, health value, and charge count of the current charging accessories, and display these values on the display unit 2, so that the user can manage the battery usage of the drone and its accessories more efficiently.

[0049] In some embodiments, the system further includes an RFID identification module, which is mounted on cabinet 1 and electrically connected to the control unit. An RFID identification chip is also mounted on the drone, battery, and / or remote control. In this embodiment, RFID stands for radio frequency identification, a technology that uses radio signals to identify objects. In this embodiment, an RFID identification chip is integrated into the drone, and the RFID identification module is mounted on cabinet 1. When a user returns the drone, cabinet 1 can identify the RFID chip on the returned drone, enabling tracking of the drone's return and improving the security of drone storage.

[0050] See also Figure 1 and Figure 2 In some embodiments, it also includes a fingerprint acquisition module 5 and / or an iris acquisition module and / or a voiceprint acquisition module, the fingerprint acquisition module 5 is electrically connected to the control unit; the iris acquisition module is electrically connected to the control unit; the voiceprint acquisition module is electrically connected to the control unit.

[0051] In this embodiment, the fingerprint acquisition module 5, iris acquisition module, and voiceprint acquisition module can be commercially available products. The acquisition of these biometric features allows users to complete user login operations using only their own biometric features, saving the user the need to access and return drones in emergencies. Furthermore, different permissions can be set for different biometric features to achieve a hierarchical management effect. For example, fingerprint authentication can be set as a required operation for user login, iris authentication as a required operation for emergency drone access, and voiceprint authentication as a required operation for users to select drones of different values. The specific layout can be reasonably determined based on actual needs.

[0052] In some embodiments, the cabinet 1 includes a first storage compartment and a second storage compartment, and the storage forms of items in the first storage compartment and the second storage compartment are different; the prompt light 4 group includes a first prompt light 4 and a second prompt light 4, the first prompt light 4 is set at the first storage compartment, and the second prompt light 4 is set at the second storage compartment.

[0053] It should be noted that both the first and second compartments are compartments 11, the difference being that they store items in different ways. For example, the first compartment can be compartment 11 used only for placing drones, while the second compartment can be compartment 11 used only for placing drone batteries. Correspondingly, the indicator light group 4 includes a first indicator light 4 and a second indicator light 4. The first indicator light 4 corresponds to the first compartment, and the second indicator light 4 corresponds to the second compartment. Optionally, the shapes of the first and second indicators 4 can be made different based on the different items placed in the first and second compartments or the different storage methods. This makes the difference between the first and second compartments more obvious, allowing users to more intuitively see the difference between the two, thereby improving access efficiency.

[0054] In some embodiments, a first box body is provided on the first storage compartment, and the first box body is detachably connected to the first storage compartment. A first storage slot 111, a second storage slot 112, and a third storage slot 113 are provided in the first box body; a seventh charging interface is also provided at the bottom of the first box body, and an eighth charging interface is provided on the first storage compartment, and the seventh charging interface is adapted to the eighth charging interface.

[0055] In this embodiment, the first box is detachably connected to the first storage compartment. A first storage slot 111, a second storage slot 112, and a third storage slot 113 are provided within the first box. Specifically, the first box can accommodate a drone, its batteries, and its remote control. The detachable connection between the first box and the first storage compartment allows the first box to be removed from the first storage compartment when needed, facilitating temporary storage of the drone while the user uses it elsewhere.

[0056] Furthermore, a seventh charging interface is provided at the bottom of the first box, and an eighth charging interface is provided on the first storage compartment. After the seventh charging interface and the eighth charging interface are connected, the charging operation of the first box can be realized. Optionally, the first box can be provided with a larger battery energy storage module. When the drone needs to be used for a long time, the first box can provide a temporary charging function for the drone.

[0057] In some embodiments, a temperature sensor group and a humidity sensor group are also included. The temperature sensor group includes multiple temperature sensors electrically connected to the control unit, each of which is located in a storage compartment 11 and is used to detect the temperature within the storage compartment 11. The humidity sensor group includes multiple humidity sensors electrically connected to the control unit, each of which is located in a storage compartment 11 and is used to detect the humidity within the storage compartment 11. This approach enables monitoring of the environment within the storage compartment 11, helps protect the safety and quality of drone storage, and improves the reliability and performance of the cabinet 1.

[0058] In some embodiments, a smoke detection sensor group is further included. The smoke detection sensor group includes multiple smoke detection sensors. The multiple smoke detection sensors are electrically connected to the control unit. Each smoke detection sensor is set in a storage compartment 11 and is used to detect smoke in the storage compartment 11.

[0059] In some optional embodiments, an alarm unit may also be included. The alarm unit is electrically connected to the control unit. When an abnormality occurs in the temperature sensor, humidity sensor or smoke detection sensor, an alarm may be issued so that the user can deal with the abnormality in time to improve the storage safety of the drone.

[0060] In some embodiments, a temperature regulating component and a humidity regulating component are also included. The temperature regulating component includes a heater, a refrigerator, a fan group, a valve group and a first delivery pipe group. The first delivery pipe group includes multiple first delivery pipes, each first delivery pipe is connected to a storage compartment 11. The valve group includes multiple valves, each valve is arranged on a first delivery pipe. The fan group includes a first fan and a second fan. The first fan is connected to the output end of the heater, and the second fan is connected to the refrigerator. The first fan and the second fan are respectively connected to the first delivery pipe. The heater, refrigerator, first fan, second fan and valve group are all electrically connected to the control unit; the humidity regulating component includes a humidifier and a second delivery pipe group. The second delivery pipe group includes multiple second delivery pipes, each second delivery pipe is connected to a storage compartment 11. The humidifier is electrically connected to the control unit, and the output end of the humidifier is connected to multiple second delivery pipes.

[0061] In this embodiment, the heater can increase and decrease the temperature in the storage compartment 11 by providing heat energy, and the refrigerator can absorb heat energy, respectively, to adapt to different temperature storage requirements. The first fan is connected to the heater, and the second fan is connected to the refrigerator. Multiple first delivery pipes are connected to the storage compartment 11, and are responsible for delivering the heated or cooled air to the corresponding storage compartment 11. The fan unit can evenly deliver the heated or cooled air to multiple storage compartments 11 through the circulation of wind, thereby realizing temperature transfer and regulation. The valve is set on the first delivery pipe. By controlling the opening and closing degree of the valve, the delivery volume of the heated or cooled air of the multiple storage compartments 11 can be controlled, thereby further realizing the regulation of different temperatures of the multiple storage compartments 11.

[0062] The humidifier increases the humidity within the storage compartments 11 by providing water vapor. Multiple second delivery pipes communicate with the storage compartments 11 and are responsible for delivering the humidified water vapor to the corresponding storage compartments 11. The control unit is electrically connected to various components of the temperature and humidity control components. By controlling these components, precise regulation of the temperature and humidity within the storage compartments 11 can be achieved.

[0063] In this embodiment, the fan assembly and the first delivery pipe assembly operate to evenly deliver heated or cooled air to each storage compartment 11, achieving a balanced distribution of temperature and humidity. This helps prevent the effects of temperature and humidity differences on items. The electrical connection between the control unit and the various components enables automated temperature and humidity regulation. Based on set parameters and feedback from the temperature and humidity sensors, the control unit intelligently controls the operating states of the heater, cooler, fan assembly, and humidifier to achieve the desired temperature and humidity.

[0064] The drone storage cabinet includes a cabinet body 1, a display unit 2, a speaker 3, 4 groups of prompt lights and a control unit. The cabinet body 1 is provided with multiple storage compartments 11, and drones are placed on the storage compartments 11. Each storage compartment 11 has a storage window, each storage window is provided with a cover, and each cover is provided with an electronic lock. The storage compartment 11 is also provided with a first charging interface, and the drone is provided with a second charging interface, and the first charging interface is adapted to the second charging interface; the display unit 2 is arranged on the cabinet body 1; the speaker 3 is arranged on the cabinet body 1; the 4 groups of prompt lights include multiple prompt lights 4, each prompt light 4 is arranged at a storage window; the control unit is electrically connected to the multiple electronic locks, and the control unit is also electrically connected to the display unit 2, the speaker 3, and the 4 groups of prompt lights. During use, the storage compartment 11 where the drone model to be used is located can be selected through the display unit 2, and the control unit can be used to open the electronic lock on the current storage compartment 11 and control the prompt light 4 to light up. The user can quickly take out the drone from the storage compartment 11, and the electronic lock then closes the cover on the storage window. In addition, the present technical solution is also provided with a speaker 3, which can provide voice guidance to the user on the operation of taking and returning the drone when necessary. At the same time, a first charging interface is provided on the storage compartment 11, and a second charging interface is provided on the drone. When the drone is placed in the storage compartment 11, it can be charged at the first charging interface, making full use of the time period when the drone is not in use, realizing batch and scientific management of drones, and the display unit 2 can display the status of the drones in each storage compartment 11 in the current cabinet 1, which is convenient for traceability management of drone use, reduces the problem of loss of drones and drone accessories, and improves the management efficiency of drones and the storage security of drones.

[0065] The above description is only part of the embodiments of the present invention and does not limit the scope of protection of the present invention. Any equivalent device or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A drone storage cabinet, characterized in that: include: A cabinet, wherein the cabinet is provided with a plurality of storage compartments, wherein drones are placed on the storage compartments, each storage compartment having a storage window, each storage window having a cover, each cover having an electronic lock, the storage compartments also having a first charging port, the drone having a second charging port, the first charging port being compatible with the second charging port; A display unit is provided on the cabinet; A speaker is arranged on the cabinet; A warning light group, comprising a plurality of warning lights, each of which is arranged at one of the storage windows; A control unit is electrically connected to the plurality of electronic locks, and the control unit is also electrically connected to the display unit, the speaker, and the warning light group.

2. The drone storage cabinet according to claim 1, characterized in that: The storage compartment is provided with: A first storage slot is used to place the drone, and a first charging port is provided on the first storage slot; and / or, a second storage slot for storing a remote control, the second storage slot being provided with a third charging interface, the remote control being provided with a fourth charging interface, the third charging interface being compatible with the fourth charging interface; And / or, a third storage slot is used to place a battery, the third storage slot is provided with a fifth charging interface, the battery is provided with a sixth charging interface, and the fifth charging interface is adapted to the sixth charging interface.

3. The drone storage cabinet according to claim 2, characterized in that: Also includes: An RFID identification module is provided on the cabinet, and the RFID identification module is electrically connected to the control unit; The drone and / or the battery and / or the remote controller are provided with an RFID identification chip.

4. The drone storage cabinet according to claim 2, characterized in that: Also includes: A fingerprint collection module is electrically connected to the control unit; and / or, an iris acquisition module electrically connected to the control unit; And / or, a voiceprint collection module is electrically connected to the control unit.

5. The drone storage cabinet according to claim 2, characterized in that: Also includes: A battery management module is electrically connected to each of the first charging interfaces, and the battery management module is also electrically connected to the control unit.

6. The drone storage cabinet according to claim 2, characterized in that: The cabinet includes a first storage compartment and a second storage compartment, and the first storage compartment and the second storage compartment have different storage formats for items; The warning light group includes a first warning light and a second warning light. The first warning light is arranged at the first storage compartment, and the second warning light is arranged at the second storage compartment.

7. The drone storage cabinet according to claim 6, characterized in that: The first storage compartment is provided with a first box body, the first box body is detachably connected to the first storage compartment, and the first storage slot, the second storage slot, and the third storage slot are provided in the first box body; A seventh charging interface is further provided at the bottom of the first box, and an eighth charging interface is provided on the first storage compartment, and the seventh charging interface is adapted to the eighth charging interface.

8. The drone storage cabinet according to claim 1, characterized in that: Also includes: a temperature sensor group, comprising a plurality of temperature sensors, the plurality of temperature sensors being electrically connected to the control unit, each of the temperature sensors being disposed in one of the storage compartments and configured to detect the temperature within the storage compartment; The humidity sensor group includes a plurality of humidity sensors, which are electrically connected to the control unit. Each humidity sensor is arranged in one of the storage compartments and is used to detect the humidity in the storage compartment.

9. The drone storage cabinet according to claim 8, characterized in that: Also includes: A temperature adjustment assembly includes a heater, a refrigerator, a fan group, a valve group, and a first delivery pipe group, wherein the first delivery pipe group includes a plurality of first delivery pipes, each of which is connected to one of the storage compartments, the valve group includes a plurality of valves, each of which is disposed on one of the first delivery pipes, the fan group includes a first fan and a second fan, the first fan is connected to an output end of the heater, the second fan is connected to the refrigerator, the first fan and the second fan are respectively connected to the first delivery pipe, and the heater, refrigerator, first fan, second fan, and valve group are all electrically connected to the control unit; The humidity regulating component includes a humidifier and a second delivery pipe group, wherein the second delivery pipe group includes multiple second delivery pipes, each of which is connected to one of the storage compartments, the humidifier is electrically connected to the control unit, and the output end of the humidifier is connected to multiple second delivery pipes.

10. The drone storage cabinet according to claim 9, characterized in that: Also includes: The smoke detection sensor group includes a plurality of smoke detection sensors, which are electrically connected to the control unit. Each of the smoke detection sensors is arranged in one of the storage compartments and is used to detect smoke in the storage compartment.