Tool cabinet and tool management method

By setting up the host and camera in the tool cabinet, the tool identity identification and automatic management are realized, the problem of inefficient tool management is solved, the tool management is accurately managed and automated operation is realized, and the fault handling efficiency is improved.

CN120164280APending Publication Date: 2025-06-17MEIZHOU POWER SUPPLY BUREAU OF GUANGDONG POWER GRID CORP +1

Patent Information

Application Number
CN202510244228.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-06-17

AI Technical Summary

Technical Problem

The management efficiency of existing tool cabinets is inefficient, and the lack of effective supervision leads to random stacking, loss or damage of tools, and manual management is cumbersome, affecting the efficiency of troubleshooting.

Method used

Design an intelligent tool cabinet. By setting up a host and a camera in the cabinet, the linkage between the two is realized, the tool identity tag is identified, the compartment door switch is automatically controlled, the database information is synchronized, and the asset management platform is connected to the asset management platform to automatically configure and collect the required tools.

Benefits of technology

It realizes the precise management and automated operation of tools, reduces the tedious steps of manual operation, improves the efficiency of tool management, shortens the preparation time for operation and maintenance operations, and improves the efficiency of fault handling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a tool cabinet and a tool management method, and relates to the technical field of tool cabinets. The tool cabinet comprises a cabinet body internally provided with a plurality of compartments, and a host and a camera which are arranged in the cabinet body, the camera is connected with the host, and the host is connected with the asset management platform; the camera identifies the identity tag on the tool to be put in storage and sends the obtained tag information to the host; the host opens a cabinet door of a compartment corresponding to the tool based on the label information, and synchronizes warehousing information of the tool to an asset management platform; and receiving the operation plan sent by the server, and controlling to open a cabinet door of a compartment corresponding to a target tool required for storing the operation plan. The host and the camera are arranged in the cabinet body, linkage of the host and the camera is achieved, the in-out warehouse information of the tools and instruments is recorded, the cabinet doors of the corresponding compartments are automatically controlled to be opened, many problems in manual management are effectively solved, tedious steps of manual operation are reduced, and the tool and instrument management efficiency is remarkably improved.
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Description

Technical Field

[0001] This application relates to the technical field of tool cabinets, and in particular, to a tool cabinet and a tool management method. Background Art

[0002] In the daily operation and maintenance work of power grid enterprises, the management and use of tools are important links to ensure the safe and stable operation of the power system. According to the regulations in relevant safety codes, tools must be stored under specific environmental conditions to prevent tool damage or performance degradation caused by environmental factors.

[0003] In the related art, tool cabinets are usually used to store and manage tools, and manual management is relied on for the warehousing, receiving, and placement of tools, etc., but there is a problem of low tool management efficiency. Summary of the Invention

[0004] This application provides a tool cabinet and a tool management method to improve the problem of low tool management efficiency.

[0005] In a first aspect, this application provides a tool cabinet, including: a cabinet body with multiple compartments inside, and a host and a camera arranged in the cabinet body; the camera is connected to the host, and the host is connected to the asset management platform; wherein:

[0006] The camera is used to identify the identity label on the tool to be warehoused and send the obtained label information to the host.

[0007] The host is used to open the cabinet door of the corresponding compartment of the tool based on the label information, synchronize the warehousing information of the tool to the asset management platform; and receive the operation plan sent by the asset management platform, and control the opening of the cabinet door of the corresponding compartment for storing the target tool required by the operation plan.

[0008] In a possible implementation manner, at least one of the following is further arranged inside the cabinet body of the tool cabinet: a temperature control device for monitoring and adjusting the temperature inside the cabinet body; a humidity control device for monitoring and adjusting the humidity inside the cabinet body; a disinfection device for disinfecting and sterilizing the tools in the cabinet; a drying device for drying the tools in the cabinet; the temperature control device, the humidity control device, the disinfection device, and the drying device are all connected to the host, and the host is further used to adjust and control the temperature control device, the humidity control device, the disinfection device, and the drying device.

[0009] In a possible implementation manner, the disinfection device includes an ultraviolet disinfection device.

[0010] In a possible implementation manner, the drying device includes a plurality of independent dryers, and the plurality of dryers are respectively installed in different compartments.

[0011] In a possible implementation, heat dissipation holes are provided on the cabinet body of the tool cabinet for dissipating heat from the host and the devices arranged inside the cabinet body.

[0012] In a possible implementation, the host is further configured to: graphically display operation plans, tool inventory information, inbound and outbound information, and environmental information; and / or, graphically display alarm information when the temperature and / or humidity inside the cabinet body exceeds the standard.

[0013] In a possible implementation, the host is further configured to respond to a change instruction from a user, adjust a target tool to obtain an adjusted target tool, and associatively store the adjusted target tool with the operation plan.

[0014] In a possible implementation, a weight sensing component is provided at the bottom of the compartment; the weight sensing component is configured to sense the weight of the tools in the compartment and transmit the sensed weight to the host; the host is further configured to judge the tool status based on the obtained weight and synchronously update it to the asset management platform.

[0015] In a possible implementation, the camera is further configured to identify a face image of a user and transmit the face image to the host; the host is further configured to perform login verification based on the face image or the identity information input by the user and authorize the user who passes the login verification to access and operate the tool cabinet.

[0016] In a possible implementation, a cabinet door pop-up relay connected to the host is provided on the inner side of the cabinet door of each compartment; the cabinet door pop-up relay is configured to receive a control signal sent by the host and drive the corresponding compartment's cabinet door to pop open.

[0017] In a second aspect, the present application provides a tool management method, which is applied to the host in the tool cabinet described in any one of the first aspect. The tool management method includes:

[0018] Obtain an operation plan;

[0019] Based on the operation plan, determine the target tools required for the operation plan;

[0020] Control to open the cabinet door of the compartment corresponding to the storage of the target tool.

[0021] In a possible implementation, the tool management method further includes: obtaining environmental information inside the tool cabinet; based on the environmental information, adjusting and controlling the working state of the environmental control devices arranged inside the tool cabinet, and the environmental control devices include at least one of a temperature control device, a humidity control device, a disinfection device, and a drying device.

[0022] In a third aspect, the present application provides a tool management device, which is applied to a host computer in any one of the tool cabinets described in the first aspect, and includes:

[0023] An acquisition module, configured to acquire a work plan;

[0024] A determination module, configured to determine target tools required for the work plan based on the work plan;

[0025] A control module, configured to control the opening of the cabinet door of the compartment for storing the corresponding target tool.

[0026] In a fourth aspect, the present application provides an electronic device, including: a processor, and a memory communicatively connected to the processor;

[0027] The memory is configured to store computer-executable instructions;

[0028] The processor is configured to execute the computer-executable instructions stored in the memory to implement the method described in any one of the second aspects.

[0029] In a fifth aspect, the present application provides a computer-readable storage medium, in which computer-executable instructions are stored, and when the computer-executable instructions are executed, they are used to implement the method described in any one of the second aspects.

[0030] In a sixth aspect, the present application provides a computer program product, including a computer program, and when the computer program is executed, it implements the method described in any one of the second aspects.

[0031] The tool cabinet and tool management method provided by this application, where the tool cabinet includes: a cabinet body with multiple compartments inside, a host and a camera arranged in the cabinet body; the camera is connected to the host, and the host is connected to the asset management platform; the camera is used to identify the identity tag on the tool to be stored in the warehouse and send the obtained tag information to the host; the host is used to open the cabinet door of the corresponding compartment of the tool based on the tag information and synchronize the warehousing information of the tool to the asset management platform; and receive the operation plan sent by the asset management platform and control the opening of the cabinet door of the corresponding compartment for storing the target tool required by the operation plan. By setting a host and a camera in the cabinet body and realizing the linkage between the two in this application, the warehousing and outbound information of the tool can be accurately recorded, and at the same time, the cabinet door of the corresponding compartment can be automatically controlled to open, ensuring the accurate receipt and return of the tool, effectively improving the problems such as random stacking, loss or damage of tools caused by the lack of effective supervision in manual management. At the same time, the cumbersome steps of manual operation are greatly reduced, and the efficiency of tool management is significantly improved. In addition, by connecting the host to the asset management platform, the operation plan can be synchronized, and the cabinet door for storing the required tool can be automatically opened according to the plan, so that the operation and maintenance personnel can quickly obtain the required tool without spending a lot of time preparing, which can effectively shorten the preparation time of on-site operation and maintenance operations, thus significantly improving the efficiency of fault handling and providing efficient and reliable support for the operation and maintenance work of power grid enterprises. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] The accompanying drawings here are incorporated into the description and form a part of this description, showing the embodiments consistent with this application, and are used together with the description to explain the principles of this application.

[0033] Figure 1 FIG. 1 is a schematic structural diagram of a tool cabinet provided for an exemplary embodiment of this application;

[0034] Figure 2 FIG. 2 is another schematic structural diagram of a tool cabinet provided for an exemplary embodiment of this application;

[0035] Figure 3 FIG. 3 is a schematic flow diagram of a tool management method provided for an exemplary embodiment of this application;

[0036] Figure 4 FIG. 4 is a schematic structural diagram of a tool management device provided for an exemplary embodiment of this application;

[0037] Figure 5 FIG. 5 is a schematic structural diagram of an electronic device provided for an exemplary embodiment of this application.

[0038] REFERENCE NUMERALS

[0039] 10. Tool cabinet; 11. Compartment; 12. Cabinet body; 13. Host; 14. Camera; 15. Heat dissipation hole; 40. Tool management device; 41. Acquisition module; 42. Determination module; 43. Control module; 50. Electronic device; 51. Processor; 52. Memory; 53. Communication interface.

[0040] Through the above-mentioned drawings, specific embodiments of the present application have been shown, and more detailed descriptions will be provided hereinafter. These drawings and written descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed implementation manners

[0041] Here, the exemplary embodiments will be described in detail, and the examples are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all implementation manners consistent with the present application. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.

[0042] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects and do not necessarily have to be used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present application described herein can be implemented, for example, in an order different from those illustrated or described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, system, product or device that includes a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, products or devices.

[0043] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in the present application are all information and data authorized by the user or fully authorized by all parties. Moreover, the collection, use and processing of relevant data need to comply with relevant laws, regulations and standards, and corresponding operation entrances are provided for users to choose to authorize or refuse.

[0044] In the daily operation and maintenance process of power grid enterprises, common tools and equipment include insulated operation rods, grounding wires, foot climbers, safety belts, safety ropes, insulated boots, safety helmets, insulated gloves, megohmmeters, earth resistance megohmmeters, screwdrivers, long-nose pliers, wire stripping pliers, electric pens, insulating tapes, clamp meters, multimeters, utility knives, etc. However, there are many problems with the method of relying on manual management of tools and equipment. For example, processes such as the warehousing, collection, and return of tools and equipment often become mere formalities, lacking effective supervision; manually sorting tools and equipment is time-consuming and laborious, and the placement positions are messy and disorderly, easily leading to the loss or damage of tools and equipment; in addition, if the management personnel are not familiar with the operation and maintenance work content, it is difficult to accurately select the required tools and equipment, resulting in an extended on-site operation preparation time and seriously affecting the efficiency of fault handling. These problems make the management efficiency of tools and equipment low and difficult to meet the needs of modern power grid operation and maintenance.

[0045] To solve the above problems, the embodiment of the present application provides a solution for an intelligent tool cabinet. By setting a host and a camera in the cabinet body of the tool cabinet, and utilizing the linkage between the camera and the host, as well as the connection between the host and the asset management platform, the automation, precision, and efficiency of tool and equipment management are realized, effectively improving many problems in relying on manual management of tools and equipment, and significantly enhancing the management efficiency of tools and equipment; in addition, by connecting the host to the asset management platform, the operation plan can be synchronized, and the cabinet door storing the required tools and equipment can be automatically opened according to the operation plan, enabling the operation and maintenance personnel to quickly obtain the required tools and equipment without spending a lot of time preparing, effectively shortening the on-site operation and maintenance preparation time, and thus significantly enhancing the efficiency of fault handling, providing efficient and reliable support for the operation and maintenance work of power grid enterprises.

[0046] The following uses specific embodiments to elaborate in detail on the technical solution of the present application and how the technical solution of the present application solves the above technical problems. These several specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The following will describe the embodiments of the present application in conjunction with the drawings.

[0047] Figure 1 It is a schematic structural diagram of a tool cabinet provided for an exemplary embodiment of the present application. As Figure 1 shown, the tool cabinet 10 includes: a cabinet body 12 with multiple compartments 11 provided inside, and a host 13 and a camera 14 provided in the cabinet body 12; the camera 14 is connected to the host 13, and the host 13 is connected to the asset management platform; wherein:

[0048] The camera 14 is used to identify the identity tag on the tool and equipment to be warehoused, and send the obtained tag information to the host 13.

[0049] Among them, an identity label for indicating the unique identity of the tool is attached to each tool, such as a Radio Frequency Identification (RFID) label or a two-dimensional code. By way of example, before the tool is first put into storage, according to the pre-established asset management rules, the identity label of the tool is printed in the asset management platform and attached to the corresponding tool to be put into storage. Correspondingly, when the tool is first put into storage or returned to storage, the tool is placed in the identification area in front of the cabinet 12. Based on the infrared identification module built in the camera 14, the identity label on the tool is scanned, and the identity label is parsed through the image recognition algorithm built in the camera 14, and the obtained label information is sent to the host 13.

[0050] The host 13 is used to open the cabinet door of the corresponding compartment of the tool based on the label information and synchronize the storage information of the tool to the asset management platform; and receive the operation plan sent by the asset management platform and control the opening of the cabinet door of the corresponding compartment for storing the target tool required by the operation plan.

[0051] Correspondingly, the host 13 obtains the type and storage location of the tool according to the label information and automatically controls the opening of the cabinet door of the corresponding compartment; after the maintenance personnel put the tool into the compartment and close the cabinet door, the host 13 synchronizes the storage information of the tool to the asset management platform. The storage information includes but is not limited to the tool type, quantity, storage location, time, etc. Among them, the quantity of the tool is determined, for example, according to the number of times of the received label information, or jointly determined in combination with the camera 14, etc., which is not limited here.

[0052] Furthermore, the host 13 is connected to the asset management platform and can receive the operation plan sent by the asset management platform in real time. For example, when the asset management platform issues a "0.4kV low-voltage power consumption inspection plan", the host 13 automatically configures the required tools according to the content classification of the plan, such as a flat screwdriver, a Phillips screwdriver, a clamp meter, an infrared thermometer, an electric pen, 0.4kV insulating gloves, a safety helmet, etc.; in response to the retrieval instruction of the maintenance personnel, it controls the opening of the cabinet doors of the corresponding compartments for storing these tools.

[0053] It should be noted that Figure 1 The settings of the shown compartments (such as the compartment size, the number of compartments, and the position of the compartments in the cabinet, etc.), the setting position of the host in the cabinet, and the setting position of the camera in the cabinet are only one example. In actual applications, they can be flexibly set according to specific application requirements, which is not limited here.

[0054] The tool cabinet provided by the embodiment of the present application can accurately record the incoming and outgoing information of tools by setting a host and a camera in the cabinet body and realizing the linkage between the two. At the same time, it can automatically control the opening of the cabinet door of the corresponding compartment to ensure the accurate collection and return of tools, effectively improving the problems such as the random stacking, loss or damage of tools caused by the lack of effective supervision in manual management. At the same time, it greatly reduces the cumbersome steps of manual operation and significantly improves the efficiency of tool management. In addition, by connecting the host to the asset management platform, the operation plan can be synchronized, and the cabinet door for storing the required tools can be automatically opened according to the plan, so that the operation and maintenance personnel can quickly collect the required tools without spending a lot of time preparing, which can effectively shorten the preparation time of on-site operation and maintenance operations, thus significantly improving the efficiency of fault handling and providing efficient and reliable support for the operation and maintenance work of power grid enterprises.

[0055] Considering the strict requirements and storage standards for tool management, according to the regulations in relevant safety codes, tools should be stored in an environment with a temperature of -15°C to +35°C, a relative humidity of less than 80%, and dry and well-ventilated. The storage environment should be equipped with a humidity detection device and a dehumidification device, etc., to ensure the dryness of the storage environment. It shall not be used as a material warehouse and shall not store corrosive materials such as oil, acid, and alkali. Therefore, in some embodiments, at least one of the following is further provided inside the cabinet body of the tool cabinet: a temperature control device for monitoring and adjusting the temperature inside the cabinet body; a humidity control device for monitoring and adjusting the humidity inside the cabinet body; a disinfection device for disinfecting and sterilizing the tools inside the cabinet; a drying device for drying the tools inside the cabinet; the temperature control device, the humidity control device, the disinfection device, and the drying device are all connected to the host, and the host is also used to adjust and control the temperature control device, the humidity control device, the disinfection device, and the drying device.

[0056] In the first implementation method, a temperature control device for monitoring and adjusting the temperature inside the cabinet body is provided inside the cabinet body of the tool cabinet to ensure that the tools are stored within a suitable temperature range and prevent the performance degradation or damage of the tools caused by too high or too low temperature. For example, the temperature control device is built-in with a temperature sensor to monitor the temperature inside the cabinet in real time and upload the data to the host; the host automatically controls the temperature control device to start the heating or cooling function according to the preset temperature range (such as 15°C - 25°C). For example, when the temperature inside the cabinet is lower than 15°C, the host starts the heating module, and in cold regions, it can prevent tools such as insulating gloves and insulating boots from becoming hard or cracking due to low temperature; when the temperature is higher than 25°C, the cooling module is started, and in hot regions, it can prevent the tools from aging due to high temperature.

[0057] In the second implementation method, a humidity control device for monitoring and adjusting the humidity inside the cabinet body of the tool cabinet is provided inside the cabinet body to ensure that the tools are stored in a dry environment and prevent the tools from being affected by moisture, rusted, or having a reduced insulation performance due to excessive humidity. For example, the humidity control device is built with a humidity sensor to monitor the humidity inside the cabinet in real time and upload the data to the host computer. The host computer automatically controls the humidity control device to start the dehumidification or humidification function according to the preset humidity range (for example, 30%-60%). For example, when the humidity inside the cabinet is higher than 60%, the host computer starts the dehumidification module to prevent metal tools (such as screwdrivers, pliers) from rusting and insulating tools (such as insulating gloves, insulating boots) from being affected by moisture and becoming ineffective. When the humidity is lower than 30%, the humidification module is started.

[0058] In the third implementation method, a disinfection device for disinfecting and sterilizing the tools inside the cabinet body of the tool cabinet is provided inside the cabinet body to ensure the hygienic safety of the tools and prevent the spread of bacteria caused by multiple people using them. For example, the host computer automatically controls the start and stop of the disinfection device according to the preset disinfection time (for example, once a day, 30 minutes each time). In the scenario where tools are shared by multiple people, the disinfection device can effectively kill the bacteria on the surface of the tools to ensure the use safety. For example, tools that directly contact the human body, such as insulating gloves and safety helmets, can avoid cross-infection after disinfection.

[0059] In the fourth implementation method, a drying device for drying the tools inside the cabinet body of the tool cabinet is provided inside the cabinet body to prevent the tools from being damaged or having a reduced performance due to residual moisture after cleaning or use. For example, the host computer controls the drying device to start according to the instructions of the operation and maintenance personnel or a preset program. For example, when tools such as insulating gloves and insulating boots are put into the cabinet after cleaning, the operation and maintenance personnel can start the drying device through the host computer interface. In the rainy season or a humid environment, the drying device can quickly dry tools such as insulating gloves and insulating boots to prevent their insulation performance from decreasing or generating odors due to moisture.

[0060] In the fifth implementation method, the interior of the tool cabinet body is simultaneously provided with: a temperature control device for monitoring and adjusting the temperature inside the cabinet body, a humidity control device for monitoring and adjusting the humidity inside the cabinet body, a disinfection device for disinfecting and sterilizing the tools inside the cabinet, and a drying device for drying the tools inside the cabinet; the host serves as the control center of the tool cabinet and is responsible for uniformly regulating the temperature control device, humidity control device, disinfection device, and drying device to ensure that each device works in coordination to provide the best storage environment for the tools. Exemplarily, the operation and maintenance personnel can set parameters such as temperature, humidity, disinfection time, and drying duration through the host interface. For example, set the temperature to 20 °C, the humidity to 50%, the disinfection time to 22:00 every day, and the drying duration to 1 hour; correspondingly, the host automatically sends instructions to each device according to the set parameters. Correspondingly, when the temperature sensor detects that the temperature inside the cabinet is higher than 25 °C, the host automatically starts the refrigeration module; when the humidity sensor detects that the humidity is higher than 60%, the host automatically starts the dehumidification module.

[0061] It should be noted that the above several implementation methods are only examples. In actual applications, the implementation methods include but are not limited to the above examples. Optionally, one implementation method can be adopted, or several implementation methods can be combined, which are not specifically limited here.

[0062] In some embodiments, a direct plug-in power supply is adopted to provide stable and reliable electrical energy for the entire tool cabinet. For example, the input is AC 220V, and the outputs are DC 5V, DC 24V, or AC 220V, etc., to facilitate power supply for each device inside the cabinet.

[0063] In the embodiments of the present application, by providing a temperature control device, a humidity control device, a disinfection device, or a drying device inside the tool cabinet body, it is possible to provide a suitable storage environment for the tools and prevent damage or performance degradation of the tools caused by temperature, humidity, bacteria, or moisture. In addition, the host serves as the control center, realizing the unified regulation of each device, ensuring the stability of the cabinet environment and the safety of the tools, and at the same time effectively extending the service life of the tools.

[0064] In some embodiments, the disinfection device includes an ultraviolet disinfection device.

[0065] Exemplarily, the ultraviolet disinfection device mainly consists of an ultraviolet lamp tube, a lamp tube bracket, a control module, and a power supply module. Among them, the ultraviolet lamp tube is installed at the top inside the cabinet or at the top of each compartment to ensure that the ultraviolet can cover all the storage areas of the tools. Specifically, when the ultraviolet lamp tube is started, it emits ultraviolet light of, for example, 253.7 nm, which irradiates the surface of the tools in the cabinet. According to the preset parameters of the host, such as the preset disinfection time (22:00 every day), the ultraviolet disinfection device is automatically started and automatically turned off after working for 30 minutes. In addition, the operation and maintenance personnel can also manually start the ultraviolet disinfection device through the host interface, which is suitable for the immediate disinfection needs in special cases.

[0066] In some embodiments, the drying device includes a plurality of independent dryers, and the plurality of dryers are respectively installed in different compartments.

[0067] Exemplarily, a small independent dryer is installed in each compartment, and the size and power of the dryer are optimized according to the size of the compartment and the characteristics of the tools. Among them, the dryer can use electric heating wires, positive temperature coefficient (PTC) heating elements, or other suitable heating technologies to provide a stable heat source; ventilation holes and hot air circulation channels are provided in the compartment to ensure that the hot air can be evenly distributed throughout the compartment; the material and structure design of the compartment need to consider heat insulation and fire prevention performance to ensure safety. Correspondingly, for example, when tools such as insulating gloves and insulating boots are cleaned and placed in the cabinet, the operation and maintenance personnel can select the corresponding compartment through the host interface to start the drying function of the dryer.

[0068] It should be noted that the number of dryers can be increased or decreased accordingly. For example, two dryers can be installed in one compartment, or two compartments share one dryer to adapt to application scenarios of different scales and requirements.

[0069] In the embodiments of the present application, by setting independent dryers in different compartments, a flexible control mechanism is realized. Each dryer can be started or stopped separately according to specific needs. This flexible control mechanism allows for customized drying services according to the material and humidity requirements of different tools, greatly improving the drying efficiency and effect; and the dedicated dryer can ensure that the hot air is evenly distributed in the compartment, reducing the problem of uneven drying caused by different compartment sizes or tool placement positions; in addition, by only starting the dryer in the required compartment, unnecessary energy consumption is effectively reduced; at the same time, the independent dryer can flexibly adjust the working time and intensity according to actual needs, which helps to further save energy.

[0070] On the basis of the above embodiments, in some embodiments, heat dissipation holes are provided on the cabinet body of the tool cabinet for dissipating heat from the host and the devices arranged inside the cabinet.

[0071] Exemplarily, Figure 2 Another structural schematic diagram of the tool cabinet provided for the exemplary embodiment of the present application. As Figure 2 shown, heat dissipation holes 15 are provided on the cabinet body 12 of the tool cabinet 10 for dissipating heat from the host 13 and the devices provided inside the cabinet body 12.

[0072] Among them, the heat dissipation holes 15 can be provided on the side and / or the back of the cabinet body 12 to ensure that the heat generated during the operation of the host 13 and the devices provided inside the cabinet body 12, such as temperature control devices, humidity control devices, disinfection devices, and drying devices, can be smoothly discharged; the size and shape of the heat dissipation holes 15 need to meet the requirements of both effective heat dissipation and preventing dust and foreign objects from entering; in addition, the materials around the heat dissipation holes 15 need to be specially treated to enhance their heat resistance and corrosion resistance.

[0073] It should be noted that Figure 2 the shown setting position, shape, and quantity, etc. of the heat dissipation holes 15 are only an example. In actual applications, they can be flexibly set according to the setting position of the host 13, the deployment of internal devices, and application requirements, etc. The setting position, shape, and quantity, etc. of the heat dissipation holes 15 are not limited herein.

[0074] In the embodiment of the present application, through effective heat dissipation design, it can effectively ensure that the host and the devices provided inside the cabinet body operate within the optimal temperature range, improving the overall performance and reliability; at the same time, it can also effectively reduce equipment failures or safety hazards caused by overheating, further enhancing the stability and safety of the tool cabinet, and helping to extend the service life of the tool cabinet.

[0075] In some embodiments, the host is also used for: graphical display of operation plans, tool inventory information, inbound and outbound information, and environmental information; and / or graphical display of alarm information when the temperature and / or humidity inside the cabinet body exceeds the standard.

[0076] In one implementation, the host is also used for graphical display of job plans, tool inventory information, inbound and outbound information, and environmental information. For example, on the host screen outside the cabinet, the job plan is displayed in a graphical interface, including task time, required tool list, and operation steps. Maintenance personnel can interact through the touch screen or button interface to view detailed task information; the host updates in real time and displays the tool information in the current inventory on the display screen, including quantity, location, and status, and uses color coding or icons to identify tools in different states (such as available, under repair, or lent out, etc.); the host records each inbound and outbound operation of the tools and provides a historical record query function on the display screen. Maintenance personnel can view the inbound and outbound details within a specific time period, including maintenance personnel, time, and tool identification (abbreviated as ID); the host connects to temperature control devices, humidity control devices, disinfection devices, and drying devices to monitor the environmental conditions inside the cabinet in real time and graphically display the current temperature and humidity data, as well as the working status and related operation records of the disinfection device and drying device, etc., on the host screen.

[0077] In another implementation, the host is also used for graphical display of alarm information when the temperature and / or humidity inside the cabinet exceeds the standard. For example, when the host detects that a certain device function is abnormal, such as a temperature control device failure or environmental parameter exceeding the limit (such as too high humidity), a pop-up alarm appears on the host screen to remind maintenance personnel to handle it in time.

[0078] In yet another implementation, the host is also used for graphical display of job plans, tool inventory information, inbound and outbound information, and environmental information; and graphical display of alarm information when the temperature and / or humidity inside the cabinet exceeds the standard. For example, on the host screen outside the cabinet, job plans, tool inventory information, inbound and outbound information, environmental information, etc., as well as alarm information such as when the temperature and humidity inside the cabinet exceed the standard, are displayed in a graphical interface.

[0079] In the embodiments of the present application, through graphical display, job plans, tool inventory information, inbound and outbound information, and environmental information can be intuitively presented, facilitating maintenance personnel to promptly master the relevant information of the tool cabinet, enabling maintenance personnel to quickly obtain the required information without having an in-depth technical background, improving the efficiency of information transmission, and further enhancing the work efficiency of maintenance personnel; in addition, by graphically displaying the relevant alarm information of the devices inside the cabinet, maintenance personnel can promptly discover and handle abnormal situations, reducing equipment failures or tool damages caused by environmental factors.

[0080] In some embodiments, the host is also used to respond to a user's change instruction, adjust the target tool to obtain the adjusted target tool, and associatively store the adjusted target tool with the job plan.

[0081] Exemplarily, the host is connected to the asset management platform. When the host receives the job plan sent by the asset management platform, it automatically configures the required target tools according to the content classification of the job plan, such as flat screwdrivers, cross screwdrivers, clamp meters, infrared thermometers, electric pens, 0.4 kV insulating gloves, safety helmets, etc.; the operation and maintenance personnel can manually click to add or cancel tools on the basis of this configuration, such as adding insulating tapes and wire stripping pliers, or canceling some unnecessary tools. After the adjustment is completed, the operation and maintenance personnel click to confirm to obtain the adjusted target tools; the host controls to open the cabinet door of the compartment corresponding to the adjusted target tools. After the operation and maintenance personnel finish collecting, they manually close the cabinet door; if the operation and maintenance personnel are not satisfied with the target tools automatically configured by the host, they can associate and store the adjusted target tools with the job plan in the local database of the host, so that when receiving the same job plan next time, the previously adjusted target tools can be automatically applied according to the information stored locally.

[0082] In the embodiments of the present application, not only the automation degree of tool management is improved, but also flexible manual adjustment is allowed, which can better meet different job requirements, thereby further enhancing the user experience and the flexibility of tool management.

[0083] In some embodiments, a weight sensing component is provided at the bottom of the compartment; the weight sensing component is used to sense the weight of the tools in the compartment and transmit the sensed weight to the host; the host is also used to judge the tool status based on the obtained weight and synchronously update it to the asset management platform.

[0084] Exemplarily, the weight sensing component includes but is not limited to strain gauge sensors, piezoelectric sensors, capacitive sensors, etc. Correspondingly, during the process of the cabinet door being opened and then closed, the weight sensing component senses the weight of the tools in the compartment; and transmits the sensed weight to the host; the host judges the weight change information based on the received weight to ensure the correct collection and return of the tools; if the weight change information does not change, it is determined that the tools are not normally collected or returned, and a first warning prompt is issued to remind the operation and maintenance personnel to check the operation; if the weight change information does not meet the expectation, the host determines that there may be tool damage or incorrect storage, and issues a second warning prompt to remind the operation and maintenance personnel to verify; if the weight change information meets the expectation, the host records the outbound or inbound information of the tools and synchronously updates it to the asset management platform to ensure the real-time accuracy of the data.

[0085] In the embodiments of the present application, by setting a weight sensing component at the bottom of the compartment, during the process of the cabinet door opening and closing, the status of the tools is judged by the weight change, which can more accurately confirm the taking and returning of the tools and reduce the errors caused by human factors. When an abnormal situation (such as no weight change or not meeting the expectation) is detected, an alarm is sent in time to prevent the misuse, loss or damage of the tools, further improving the safety of the tools.

[0086] In some embodiments, the camera is further configured to identify the face image of the user and transmit the face image to the host; the host is further configured to perform login verification based on the face image or the identity information input by the user and authorize the user who passes the login verification to access and operate the tool cabinet.

[0087] Exemplarily, when user A stands in front of the cabinet body, the camera automatically captures the face image of user A and transmits it to the host; the host, based on the built-in face recognition algorithm, matches the face image with the face images of the authorized users stored in the database. If the match is successful, user A passes the login verification and is authorized to access and operate the tool cabinet; if user A fails to pass the face recognition, the host also provides an alternative authentication method, such as entering the username and password, entering the employee ID or fingerprint unlocking, etc., and the host verifies the obtained identity information to ensure the authenticity of the user identity. Correspondingly, the authorized user can perform corresponding operations according to their permission levels, such as picking up tools, returning tools, viewing work plans or viewing inventory information, etc.

[0088] In the embodiments of the present application, through login verification, it is ensured that only authorized users can access the tool cabinet, thus effectively preventing unauthorized access and operation, not only improving the safety of the tools, but also allowing tracing of all access and operation records, further strengthening the safety management; in addition, the user can quickly log in through face recognition without carrying additional authentication devices, greatly improving the convenience of operation.

[0089] In some embodiments, a cabinet door opening relay connected to the host is provided on the inner side of the cabinet door of each compartment; the cabinet door opening relay is configured to receive the control signal sent by the host and drive the corresponding compartment cabinet door to open.

[0090] Exemplarily, a cabinet door pop-up relay is installed on the inner side of the cabinet door of each compartment. The relay is connected to the host through a cable or wirelessly and can receive control signals from the host. Correspondingly, when the user passes the authentication and selects the compartment to be accessed through the host screen or places the tools to be stored in the identification area in front of the cabinet body, the host sends a control signal to the corresponding target cabinet door pop-up relay; after receiving the control signal, the target cabinet door pop-up relay drives the mechanical device to automatically pop open the corresponding cabinet door, facilitating the user to pick up or return the tools. Additionally, when the cabinet door pops open, the host can also provide a sound prompt or a visual signal to remind the user that the cabinet door has been opened.

[0091] In the embodiment of the present application, when it is necessary to open the cabinet door of the corresponding compartment, the user does not need to manually open the cabinet door. Only through the control signal sent by the host, the cabinet door of the required compartment can be automatically popped open, improving the convenience and efficiency of the operation.

[0092] In summary, the present application has at least the following advantages:

[0093] First, by setting a host and a camera in the cabinet body and realizing the linkage between the two, the inbound and outbound information of the tools can be accurately recorded, and at the same time, the cabinet door of the corresponding compartment can be automatically controlled to open, ensuring the accurate picking up and returning of the tools, effectively improving the problems such as random stacking, loss or damage of tools caused by the lack of effective supervision in manual management. At the same time, the cumbersome steps of manual operation are significantly reduced, and the efficiency of tool management is remarkably improved. Additionally, by connecting the host to the asset management platform, the operation plan can be synchronized, and the cabinet door for storing the required tools can be automatically opened according to the plan, enabling the maintenance personnel to quickly pick up the required tools without spending a lot of time preparing, effectively shortening the preparation time of on-site maintenance operations, and thus significantly improving the efficiency of fault handling, providing efficient and reliable support for the maintenance work of power grid enterprises.

[0094] Second, by setting a temperature control device, a humidity control device, a disinfection device or a drying device inside the cabinet body of the tool cabinet, a suitable storage environment can be provided for the tools, preventing the damage or performance degradation of the tools caused by temperature, humidity, bacteria or moisture. Additionally, as the control center, the host realizes the unified regulation of each device, ensuring the stability of the cabinet environment and the safety of the tools, and at the same time effectively improving the service life of the tools.

[0095] III. Through graphical display, the operation plan, tool inventory information, inbound and outbound information, and environmental information can be visually presented, facilitating the operation and maintenance personnel to promptly grasp the relevant information of the tool cabinet. This enables the operation and maintenance personnel to quickly obtain the required information without the need for in-depth technical background, improving the efficiency of information transmission and further enhancing the work efficiency of the operation and maintenance personnel. Additionally, by graphically displaying the relevant alarm information of the devices inside the cabinet, the operation and maintenance personnel can promptly detect and handle abnormal situations, preventing equipment failures or tool damages caused by environmental factors.

[0096] IV. By setting a weight sensing component at the bottom of the compartment, during the process of the cabinet door opening and closing, the status of the tools can be judged based on the weight change, enabling more accurate confirmation of the tool taking and returning, reducing errors caused by human factors. And when an abnormal situation (such as no weight change or not meeting expectations) is detected, an alarm is promptly issued to prevent the misuse, loss, or damage of the tools, further enhancing the safety of the tools.

[0097] The above embodiments introduce the implementation method of the tool cabinet. Next, the application in tool management will be introduced through specific embodiments.

[0098] Figure 3 This is a flowchart of the tool management method provided by an exemplary embodiment of the present application. The tool management method provided by the embodiments of the present application is applied to the host in the tool cabinet in the above embodiments. As Figure 3 shown, the tool management method includes:

[0099] S301. Obtain the operation plan.

[0100] Exemplarily, receive the operation plan sent by the asset management platform; or enter the operation plan on the host screen, such as "0.4kV low-voltage power consumption inspection plan".

[0101] S302. Based on the operation plan, determine the target tools required for the operation plan.

[0102] Exemplarily, the host automatically configures the required tools according to the content classification of the plan, such as flat screwdrivers, cross screwdrivers, clamp meters, infrared thermometers, electric pens, 0.4kV insulating gloves, safety helmets, etc.; correspondingly, the operation and maintenance personnel can also manually click to add or cancel tools on this basis, such as adding insulating tapes and wire stripping pliers, or canceling some unnecessary tools. After the adjustment is completed, the operation and maintenance personnel click to confirm to obtain the adjusted target tools.

[0103] S303. Control to open the cabinet door of the compartment for storing the target tools.

[0104] Exemplarily, the host sends a control signal to the corresponding cabinet door opening relay; after receiving the control signal, the cabinet door opening relay drives the mechanical device to automatically open the corresponding cabinet door, facilitating the user to retrieve or return the tools.

[0105] Based on the above embodiments, in some embodiments, the tool management method further includes: obtaining the environmental information inside the tool cabinet; based on the environmental information, adjusting and controlling the working state of the environmental control device arranged inside the tool cabinet, and the environmental control device includes at least one of a temperature control device, a humidity control device, a disinfection device, and a drying device.

[0106] Exemplarily, the temperature control device, the humidity control device, the disinfection device, and the drying device report the monitored environmental information such as temperature, humidity, and air quality to the host; correspondingly, the host performs unified regulation and control on the temperature control device, the humidity control device, the disinfection device, and the drying device based on the received environmental information to ensure the coordinated operation of each device and provide a suitable storage environment for the tools. Exemplarily, the operation and maintenance personnel set parameters such as temperature, humidity, disinfection time, and drying duration through the host interface, for example, set the temperature to 20 °C, the humidity to 50%, the disinfection time to 22:00 every day, and the drying duration to 1 hour; correspondingly, the host automatically issues instructions to each device according to the set parameters; accordingly, when the temperature sensor detects that the temperature inside the cabinet is higher than 25 °C, the host automatically starts the refrigeration module; when the humidity sensor detects that the humidity is higher than 60%, the host automatically starts the dehumidification module.

[0107] The following is an embodiment of the device of the present application, which can be used to execute the method embodiment of the present application. For the details not disclosed in the device embodiment of the present application, please refer to the method embodiment of the present application.

[0108] Figure 4 This is a schematic structural diagram of a tool management device provided for an exemplary embodiment of the present application. As Figure 4 shown, the tool management device 40 includes an acquisition module 41, a determination module 42, and a control module 43, where:

[0109] The acquisition module 41 is used to acquire the operation plan;

[0110] The determination module 42 is used to determine the target tools required for the operation plan based on the operation plan;

[0111] The control module 43 is used to control the opening of the cabinet door of the corresponding compartment for storing the target tools.

[0112] In a possible implementation manner, the control module 43 may specifically be configured to: obtain the environmental information inside the tool cabinet; based on the environmental information, adjust and control the working state of the environmental control device arranged inside the tool cabinet, where the environmental control device includes at least one of a temperature control device, a humidity control device, a disinfection device, and a drying device.

[0113] The tool management device provided by the embodiments of the present application may execute the technical solutions shown in the foregoing embodiments of the tool management method, and its implementation principle and beneficial effects are similar, and will not be elaborated herein again.

[0114] It should be noted that, for the foregoing method embodiments, for the sake of simple description, they are all expressed as a series of action combinations. However, those skilled in the art should know that the present application is not limited by the described action sequence, because according to the present application, certain steps may be performed in other sequences or simultaneously. Secondly, those skilled in the art should also know that the embodiments described in the specification are all optional embodiments, and the actions and modules involved are not necessarily essential to the present application.

[0115] Furthermore, it should be noted that although the steps in the flowchart are sequentially shown according to the indication of the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless there is a clear description in this article, the execution of these steps has no strict order limitation, and these steps may be executed in other orders. Moreover, at least a part of the steps in the flowchart may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily executed at the same time, but may be executed at different times. The execution order of these sub-steps or stages is not necessarily sequential, but may be executed alternately or alternately with at least a part of other steps or sub-steps or stages of other steps.

[0116] It should be noted that the above device embodiments are only illustrative, and the devices of the present application can also be implemented in other ways; moreover, it should be understood that the division of each module of the above device is only a division of logical functions, and in actual implementation, it can be fully or partially integrated into a physical entity, or physically separated. And these modules can all be implemented in the form of software called by processing elements; they can also all be implemented in the form of hardware; or some modules can be implemented in the form of software called by processing elements, and some modules can be implemented in the form of hardware. For example, the control module can be a separately established processing element, or can be integrated in a certain chip of the above device. In addition, it can also be stored in the memory of the above device in the form of program code, and called and executed by a certain processing element of the above device to perform the functions of the above control module. The implementation of other modules is similar. In addition, all or part of these modules can be integrated together or can be independently implemented. Here, the processing element can be an integrated circuit with signal processing capabilities. In the implementation process, each step of the above method or each of the above modules can be completed by the integrated logic circuit in the processor element or the instruction in the form of software.

[0117] For example, the above modules can be one or more integrated circuits configured to implement the above method, such as: one or more Application Specific Integrated Circuits (ASICs), or, one or more Digital Signal Processors (DSPs), or, one or more Field Programmable Gate Arrays (FPGAs), etc. Again, when a certain module above is implemented in the form of a processing element scheduling program code, the processing element can be a general-purpose processor, such as a Central Processing Unit (CPU) or other processors that can call program code. Again, these modules can be integrated together and implemented in the form of a System-On-a-Chip (SOC).

[0118] In the above embodiments, it can be implemented in whole or in part by software, hardware, firmware, or any combination thereof. When implemented using software, it can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer instructions are loaded and executed on a computer, the processes or functions according to the embodiments of the present application are generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. The computer instructions can be stored in a computer-readable storage medium, or transmitted from one computer-readable storage medium to another. For example, the computer instructions can be transmitted from a website, computer, server, or data center to another website, computer, server, or data center in a wired manner (such as coaxial cable, optical fiber, Digital Subscriber Line (DSL)) or a wireless manner (such as infrared, wireless, microwave, etc.). The computer-readable storage medium can be any available medium that the computer can access, or a data storage device such as a server or data center that includes one or more integrated available media. The available medium can be a magnetic medium (such as a floppy disk, hard disk, magnetic tape), an optical medium (such as a Digital Video Disc (DVD)), or a semiconductor medium (such as a solid state disk (SSD)), etc.

[0119] Figure 5 Schematic diagram of the structure of the electronic device provided by the exemplary embodiment of the present application. As Figure 5 shown, the electronic device 50 of this embodiment includes:

[0120] At least one processor 51; and a memory 52 communicatively connected to the at least one processor;

[0121] Wherein, the memory 52 stores instructions executable by the at least one processor 51, and the instructions are executed by the at least one processor 51 to cause the electronic device to execute the method described in any of the above embodiments.

[0122] Optionally, the memory 52 can be either independent or integrated with the processor 51.

[0123] The memory 52 may include a high-speed random access memory (Random Access Memory, RAM) and may also include non-volatile memory, such as at least one disk memory.

[0124] The processor 51 may be a Central Processing Unit (CPU), or an Application Specific Integrated Circuit (ASIC), or one or more integrated circuits configured to implement the embodiments of the present application. Specifically, when implementing the tool management method described in the foregoing method embodiments, the electronic device may be an electronic device with processing functions such as a server.

[0125] Optionally, the electronic device may further include a communication interface 53. In a specific implementation, if the communication interface 53, the memory 52, and the processor 51 are implemented independently, the communication interface 53, the memory 52, and the processor 51 may be interconnected through a bus and communicate with each other. The bus may be an Industry Standard Architecture (ISA) bus, a Peripheral Component Interconnect (PCI) bus, or an Extended Industry Standard Architecture (EISA) bus, etc. The bus may be divided into an address bus, a data bus, a control bus, etc., but it does not mean that there is only one bus or one type of bus.

[0126] Optionally, in a specific implementation, if the communication interface 53, the memory 52, and the processor 51 are integrated on a single chip, the communication interface 53, the memory 52, and the processor 51 may communicate through an internal interface.

[0127] For the implementation principle and technical effects of the electronic device provided in this embodiment, reference may be made to the foregoing embodiments, which will not be elaborated herein.

[0128] The embodiments of the present application further provide a computer-readable storage medium, in which computer-executable instructions are stored. When the computer-executable instructions are executed, they are used to implement the method steps in the method embodiments as described above. The specific implementation manners and technical effects are similar and will not be elaborated here.

[0129] The above-mentioned computer-readable storage medium can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as Static Random Access Memory (SRAM), Electrically Erasable Programmable Read Only Memory (EEPROM), Erasable Programmable Read Only Memory (EPROM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk. The readable storage medium can be any available medium accessible by a general-purpose or special-purpose computer.

[0130] An exemplary readable storage medium is coupled to the processor, enabling the processor to read information from and write information to the readable storage medium. Of course, the readable storage medium can also be a component of the processor. The processor and the readable storage medium can be located in an application-specific integrated circuit. Of course, the processor and the readable storage medium can also exist as discrete components in the tool management device.

[0131] The embodiments of the present application also provide a computer program product, including a computer program, which implements the method steps in the above-mentioned method embodiments when the computer program is executed. The specific implementation manners and technical effects are similar and will not be elaborated here.

[0132] In the above embodiments, the descriptions of the respective embodiments have their own focuses. For parts not detailed in a certain embodiment, reference can be made to the relevant descriptions of other embodiments. The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as within the scope described in this specification.

[0133] Those skilled in the art will readily think of other implementation manners of the present application after considering the specification and practicing the invention disclosed herein. The present application is intended to cover any variations, uses or adaptations of the present application, which follow the general principles of the present application and include common general knowledge or conventional technical means in the technical field not disclosed in the present application. The specification and the embodiments are only regarded as exemplary, and the true scope and spirit of the present application are pointed out by the following claims.

[0134] It should be understood that the present application is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present application is only limited by the appended claims.

Claims

1. A tool cabinet, characterized in that: include: A cabinet having multiple compartments therein, and a host and a camera arranged in the cabinet; the camera is connected to the host, and the host is connected to an asset management platform; wherein: The camera is used to identify the identity tags on the tools to be put into storage and send the acquired tag information to the host; The host is used to open the door of the compartment corresponding to the tool based on the tag information, and synchronize the storage information of the tool to the asset management platform; And receiving the operation plan sent by the asset management platform, and controlling the opening of the cabinet door corresponding to the compartment for storing the target tools required by the operation plan.

2. The tool cabinet according to claim 1, characterized in that: The tool cabinet is also provided with at least one of the following: A temperature control device for monitoring and adjusting the temperature inside the cabinet; A humidity control device for monitoring and adjusting the humidity inside the cabinet; A disinfection device for disinfecting tools in the cabinet; A drying device for drying tools in the cabinet; The temperature control device, the humidity control device, the disinfection device and the drying device are all connected to the host, and the host is also used to adjust and control the temperature control device, the humidity control device, the disinfection device and the drying device.

3. The tool cabinet according to claim 2, characterized in that: The disinfection device comprises an ultraviolet disinfection device.

4. The tool cabinet according to claim 2, characterized in that: The drying device comprises a plurality of independent dryers, and the plurality of dryers are respectively installed in different compartments.

5. The tool cabinet according to any one of claims 1 to 4, characterized in that: The cabinet body of the tool cabinet is provided with heat dissipation holes for dissipating heat to the host and the devices arranged inside the cabinet body.

6. The tool cabinet according to any one of claims 1 to 4, characterized in that: The host is also used for: graphical display of the operation plan, tool inventory information, in-and-out warehouse information, and environmental information; And / or, a graphical display of alarm information indicating that the temperature and / or humidity inside the cabinet exceeds the standard.

7. The tool cabinet according to claim 6, characterized in that: The host is further used to adjust the target tool in response to a change instruction from a user to obtain an adjusted target tool, and store the adjusted target tool in association with the operation plan.

8. The tool cabinet according to any one of claims 1 to 4, characterized in that: A weight sensing component is provided at the bottom of the compartment; The weight sensing component is used to sense the weight of the tool in the compartment and transmit the sensed weight to the host; The host is also used to determine the status of the tool based on the acquired weight and synchronously update it to the asset management platform.

9. The tool cabinet according to any one of claims 1 to 4, characterized in that: The camera is also used to recognize the user's facial image and transmit the facial image to the host; The host is also used to perform login verification based on the facial image or the identity information input by the user, and authorize the user who passes the login verification to access and operate the tool cabinet.

10. The tool cabinet according to any one of claims 1 to 4, characterized in that: A door opening relay connected to the host is arranged on the inner side of the door of each compartment; The cabinet door pop-up relay is used to receive the control signal sent by the host and drive the cabinet door of the corresponding compartment to pop up.

11. A tool management method, characterized in that: A host computer used in a tool cabinet according to any one of claims 1 to 10, wherein the tool management method comprises: Get the job plan; Based on the operation plan, determining target tools required for the operation plan; Control to open the cabinet door corresponding to the compartment for storing the target tool.

12. The tool management method according to claim 11, characterized in that: Also includes: Obtaining environmental information in the tool cabinet; Based on the environmental information, the working state of the environmental control device arranged in the tool cabinet is adjusted and controlled, and the environmental control device includes at least one of a temperature control device, a humidity control device, a disinfection device and a drying device.

Citation Information

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