Intelligent factory data acquisition device

By setting up visual surveillance cameras and environmental monitoring devices in the monitoring workshop of the smart factory, combined with remote service platforms and local control terminals, the incomplete and timely problem of personnel and environmental safety management in the smart factory is solved, and automated data collection and management of the monitoring workshop is realized, improving the efficiency and accuracy of safety management.

CN223140047UActive Publication Date: 2025-07-22JIANGXI DINGSHAN INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422298985.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-07-22
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

The existing smart factories have problems of incomplete supervision and untimely supervision in personnel safety and environmental safety management, especially in production workshops, which cannot effectively monitor whether personnel are wearing safety protective equipment correctly and environmental safety conditions.

Method used

Set up a visual surveillance camera device and an environmental monitoring device in the monitoring workshop to obtain video and environmental data in real time, and upload the data to the remote service platform through the local control terminal to achieve judgment and environmental warning of whether personnel wear safety protective equipment correctly, and combine the entrance and exit control device, intelligent storage cabinet and safety protective equipment for unified management.

Benefits of technology

It realizes automated data collection of smart factory monitoring workshops, ensures the timeliness and comprehensiveness of personnel safety management and environmental monitoring, reduces the shortcomings of manual inspections, and improves the efficiency and accuracy of safety management.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Patent Text Reader

Abstract

The utility model discloses an intelligent factory data acquisition device which comprises a visual monitoring camera device, an environment monitoring device and a local control terminal which are arranged in a monitoring workshop of an intelligent factory. The visual monitoring camera device obtains a monitoring video of a corresponding video monitoring point of the monitoring workshop in real time; the environment monitoring device obtains environment data of a corresponding environment monitoring point of the monitoring workshop in real time; and the local control terminal sends the obtained monitoring video of the monitoring workshop and the environment data to the remote service platform, so that the remote service platform judges whether a person in the monitoring workshop correctly wears the safety protection appliance or not according to the monitoring video of the monitoring workshop and carries out environment early warning on the monitoring workshop according to the environment data. According to the utility model, automatic acquisition of video data and environment data of the monitoring workshop of the intelligent factory can be realized, so that remote monitoring of the monitoring workshop of the intelligent factory can be realized.
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Description

Technical Field

[0001] The utility model is applied to the field of data acquisition, and particularly relates to a data acquisition device for an intelligent factory. Background Art

[0002] With the popularization of industrialization and intelligentization, more and more factories are promoting the construction of intelligent factories. However, the management of intelligent factories mainly focuses on the intelligent management of efficient production such as production and personnel scheduling, and rarely involves intelligent management solutions for personnel safety and environmental safety. It is impossible to supervise the users entering the intelligent factory. Especially for some production workshops that require protection, while ensuring efficient production, it is also necessary to ensure the safety and health of personnel. For example, whether the safety protection users are correctly worn and whether it is illegal entry cannot be monitored, which may lead to safety accidents. At present, the supervision of personnel is mainly achieved by the person in charge actively patrolling in the workshop to supervise personnel and manually record data. However, manual patrol has problems such as incomplete and untimely supervision. Summary of the Utility Model

[0003] In order to overcome the deficiencies of the prior art, the purpose of the utility model is to provide a data acquisition device for an intelligent factory, which can solve the problems of incomplete and untimely supervision of personnel in existing intelligent factories.

[0004] The purpose of the utility model is achieved by adopting the following technical solutions:

[0005] A data acquisition device for an intelligent factory, the data acquisition device for the intelligent factory includes a visual monitoring camera device, an environment monitoring device and a local control terminal arranged in the monitoring workshop of the intelligent factory; wherein, the visual monitoring camera device and the environment monitoring device are respectively electrically connected to the local control terminal; the visual monitoring camera device is provided with a plurality of them, which are respectively installed at corresponding video monitoring points of the monitoring workshop for real-time acquisition of monitoring videos of the corresponding video monitoring points of the monitoring workshop; the environment monitoring device is provided with a plurality of them, which are respectively installed at corresponding environment monitoring points of the monitoring workshop for real-time acquisition of environment data of the corresponding environment monitoring points of the monitoring workshop;

[0006] The local control terminal includes the local control host and a remote communication module; the local control host is communicatively connected to a remote service platform through the remote communication module, and is used to send the acquired monitoring videos and environment data of the monitoring workshop to the remote service platform through the remote communication module, so that the remote service platform judges whether the personnel in the monitoring workshop correctly wear safety protection equipment according to the monitoring videos of the monitoring workshop and conducts environmental early warning on the monitoring workshop according to the environment data.

[0007] Further, it also includes a local display screen disposed in the monitoring workshop; the local display screen is electrically connected to the local control host, and is used for displaying the monitoring video and environmental data in real time and displaying the information of personnel who do not wear safety protection equipment correctly.

[0008] Further, it also includes an access control device disposed at the entrance and exit of the monitoring workshop; the access control device includes an automatic gate, a gate driving device, and an access registration smart screen; the access registration smart screen is communicatively connected to the local control host, and is used for sending user registration information to the local control host, so that the local control host sends the user registration information to the remote service platform, and the remote service platform verifies the user according to the user registration information; the access registration smart screen is also used for receiving the registration code sent by the local control host and displaying it to the user, and also driving the opening of the automatic gate through the gate driving device to allow entry into the monitoring workshop.

[0009] Further, it also includes an intelligent locker; the intelligent locker includes a control cabinet body and a plurality of sub-cabinet bodies arranged in an array; a microcontroller is also disposed inside the control cabinet body, a display screen and function keys are also disposed on the control cabinet body; each sub-cabinet body is used for storing safety protection equipment, each sub-cabinet body is provided with a cabinet door, an electronic lock is installed on the cabinet door, and each electronic lock is electrically connected to the microcontroller; the microcontroller is electrically connected to the function keys, and is also used for receiving the user registration code and controlling the corresponding electronic lock to unlock to provide the corresponding safety protection equipment to the user; the display screen and the microcontroller are used for displaying the number of the currently opened sub-cabinet body and the user registration code; the function keys include 10 numeric keys, a delete key, and a confirmation key.

[0010] Further, the safety protection equipment includes a safety protection wristband; wherein, a main control module, a WIFI communication module, a positioning module, a heartbeat monitoring sensor, and a blood pressure monitoring sensor are disposed inside the safety protection wristband; the positioning module, the heartbeat monitoring sensor, the blood pressure monitoring sensor, and the positioning module are respectively electrically connected to the main control module; the main control module is communicatively connected to the local control host through the WIFI communication module; the heartbeat monitoring sensor is used for acquiring the user's heartbeat data; the blood pressure monitoring sensor is used for acquiring the user's blood pressure data; the positioning module is used for acquiring the user's position data;

[0011] The local control host is also used for uploading the corresponding user heartbeat data, user blood pressure data, and user position data acquired by the main control module to the remote service platform through the remote communication module.

[0012] Further, the safety protection equipment further includes a safety protection cap and / or a safety protection suit, a micro camera, and a micro intercom; the micro camera is disposed on the safety protection suit or the safety protection cap and is electrically connected to the main control module for periodically photographing the surrounding environment of the intelligent safety protection equipment; the micro intercom is disposed on the safety protection suit or the safety protection cap and is electrically connected to the main control module and further electrically connected to the local control host for two-way communication.

[0013] Further, it further includes a local broadcasting device disposed in the monitoring workshop; the local broadcasting device is electrically connected to the local control host for playing information of personnel who do not wear the safety protection equipment correctly and for playing notification information.

[0014] Further, the types of the environment monitoring devices include the following types: a temperature sensor, a humidity sensor, a dust particle detection sensor, a toxic gas concentration detection sensor, a fire detection sensor, and a smoke detection sensor; the temperature sensor is used for monitoring the temperature data of the corresponding environment monitoring point in the monitoring workshop; the humidity sensor is used for monitoring the humidity data of the corresponding environment monitoring point in the monitoring workshop; the dust particle detection sensor is used for monitoring the dust particle concentration data of the corresponding environment monitoring point in the monitoring workshop; the toxic gas concentration detection sensor is used for monitoring the toxic gas concentration of the corresponding environment monitoring point in the monitoring workshop; the fire detection sensor is used for fire monitoring of the monitoring workshop; the smoke detection sensor is used for obtaining the smoke concentration of the corresponding environment monitoring point in the monitoring workshop.

[0015] Further, it further includes an infrared monitoring camera device disposed in the restricted area of the monitoring workshop; the infrared monitoring camera device is electrically connected to the local control host for detecting whether anyone enters the restricted area.

[0016] Further, it further includes a plurality of brightness detection sensors disposed in the monitoring workshop; each brightness detection sensor is electrically connected to the local control host for real-time obtaining the brightness data of the monitoring workshop and uploading the data to the remote service platform through the local control host, so that the remote service platform automatically adjusts the illumination brightness of the lighting equipment in the monitoring workshop according to the brightness data of the monitoring workshop.

[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0018] The utility model realizes automatic collection of data in the monitoring workshop of an intelligent factory by setting up visual monitoring cameras in the monitoring workshop of the intelligent factory to obtain real-time video data of the monitoring workshop and obtaining environmental data through environmental monitoring devices and uploading the data to a remote service platform, so as to realize remote supervision of personnel in multiple workshops in the intelligent factory and make up for the problems of incomplete and untimely personnel supervision in the workshops of existing intelligent factories. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of module connection between a data collection device and a remote service platform of an intelligent factory provided by the utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] Next, in combination with the drawings and specific embodiments, the present utility model will be further described. It should be noted that, on the premise of no conflict, the following described embodiments or technical features can be combined arbitrarily to form new embodiments.

[0021] The utility model is applied to an intelligent factory. Based on the existing intelligent factory, visual monitoring cameras are set in each monitoring workshop of the intelligent factory to obtain real-time monitoring video data of the monitoring workshop, and environmental monitoring devices are set to obtain environmental data of the monitoring workshop and upload the data to the remote service platform in a timely manner, so as to realize remote data collection and monitoring of the monitoring workshop of the intelligent factory. More specifically, the utility model provides a preferred embodiment, which is applied to the monitoring workshop of an intelligent factory to realize data collection of the monitoring workshop and realize remote supervision of the monitoring workshop. As Figure 1 shown, a data collection device of an intelligent factory includes a visual monitoring camera device, an environmental monitoring device and a local control terminal.

[0022] Among them, the visual monitoring camera device and the environmental monitoring device are respectively connected to the local control terminal. The local control terminal is also communicatively connected to the remote service platform and is used for data interaction with the remote service platform to realize automatic collection of monitoring data in the workshop of the intelligent factory and upload the data to the remote service platform, so as to realize data collection of the intelligent factory and provide data support for subsequent early warning monitoring. At the same time, the data collection in the present utility model is automatically completed without manual upload, realizing automatic data collection, and further realizing personnel supervision and environmental supervision of the intelligent factory to make up for the problems of incomplete and untimely data collection in existing intelligent factories.

[0023] More specifically, there are multiple visual monitoring camera devices, which are respectively installed at the video monitoring points in the monitoring workshop of the intelligent factory, and are used to obtain the monitoring videos of the monitoring workshop in real time. Based on the monitoring videos, the monitoring of the personnel in the monitoring workshop can be realized to determine whether they correctly wear safety protection equipment and / or safety clothing, etc. Specifically, in order to ensure the safety of personnel, all personnel entering the monitoring workshop need to correctly wear safety protection equipment, etc. However, in reality, due to some personal reasons, etc., the personnel entering the monitoring workshop may not wear safety protection equipment or wear it incorrectly. Therefore, the present utility model realizes the supervision of the safety of the personnel in the monitoring workshop by setting multiple video monitoring points, installing visual monitoring camera devices at each video monitoring point, monitoring the personnel in the monitoring workshop through video, and uploading it to the remote service platform, so that the remote service platform can judge whether the personnel in the monitoring workshop correctly wear safety protection equipment, etc. based on the monitoring video. In this way, once it is detected that a person does not correctly wear safety protection equipment, the relevant patrol personnel can be notified to urge the person who does not correctly wear safety protection equipment in time.

[0024] Preferably, the data acquisition device of an intelligent factory provided by the present utility model is for data acquisition of a monitoring workshop. In practice, there may be multiple workshops in an intelligent factory. By applying the present utility model in each workshop, unified management of all workshops in the intelligent factory can be realized.

[0025] Furthermore, the environmental monitoring device is installed at the environmental monitoring point in the monitoring workshop of the intelligent factory and is used to obtain the environmental data of the corresponding environmental monitoring point in the monitoring workshop. For example, the environmental monitoring device may include various devices or sensors related to the environment such as a temperature sensor, a humidity sensor, a dust particle detection sensor, a toxic gas concentration detection sensor, a smoke concentration detection sensor, a fire detection sensor, and a noise sensor to realize the monitoring of the environmental data of the intelligent factory.

[0026] The local control terminal is used to upload the environmental data to the remote service platform so that the background can make an environmental early warning judgment on the monitoring workshop of the intelligent factory based on the environmental data to ensure the normal production of the workshop. For example, when the weather is hot in summer, the temperature in the workshop will change with the air temperature. Then, the temperature in the workshop can be detected in real time to appropriately adjust the working states of the air conditioners and exhaust fans in the workshop to ensure that the temperature in the workshop is within a suitable range and ensure the safety of production and personnel. By setting different types of monitoring devices, the monitoring of the environmental data of the intelligent factory is realized, and environmental early warning is realized.

[0027] More preferably, the local control terminal includes a local control host and a remote communication module. The local control host is communicatively connected to the remote service platform through the remote communication module to realize the unified and synchronous management of multiple monitoring workshops of the intelligent factory by the remote service platform.

[0028] Further, the utility model further includes a local display screen arranged in the monitoring workshop. The local display screen is electrically connected to the local control host and is used for displaying the monitoring video of the monitoring workshop in real time and displaying the information of the personnel who do not wear safety protection equipment correctly. For example, when the remote service platform determines that there is a person who does not wear safety protection equipment correctly, the corresponding personnel information can be sent to the local display screen through the local control host, and then displayed on the local display screen. When each user wears safety protection equipment, a corresponding binding relationship is established between the user and the corresponding safety protection equipment until the user finishes using the safety protection equipment.

[0029] Moreover, the utility model realizes the data collection of the monitoring workshop of the intelligent factory at the construction site remotely, and then realizes unified management. That is to say, the remote service platform can simultaneously control multiple different monitoring workshops in an intelligent factory to realize the coordination of different monitoring workshops. For example, the monitoring workshops can be numbered, and each monitoring workshop is bound to a local control host. After the background service center receives the data of each local control host, it can remotely monitor each monitoring workshop.

[0030] Preferably, the utility model further includes an access control device arranged at the entrance and exit of the monitoring workshop. The access control device includes an automatic gate, a gate driving device and an access registration intelligent screen. At present, the management of most workshop personnel is chaotic, and they can enter and exit automatically, which poses a safety hazard. Therefore, in this embodiment, an access control device is set for each monitoring workshop to realize closed management. When someone enters the monitoring workshop, access registration is required. Of course, for the employees belonging to the monitoring workshop, a number can be set for each employee, and an intelligent card can be equipped. When entering and exiting the monitoring workshop, they need to punch the card to sign in. Specifically, the employees in the monitoring workshop can enter and exit the monitoring workshop according to the equipped intelligent card, which can realize quick registration. Through this, the time when the employees enter and exit the monitoring workshop can also be queried according to the sign-in record, so as to realize the monitoring of the working hours of the employees.

[0031] More specifically, the access registration intelligent screen is communicatively connected to the local control host and is used for sending user registration information to the local control host, so that the local control host sends the user registration information to the remote service platform, so that the remote service platform verifies the user registration information. When the user registration information is verified, the access registration intelligent screen will receive the registration code sent by the local control host and display it to the user. The user can record the code. At the same time, the gate driving device is also used to drive the opening of the automatic gate to allow entry into the corresponding monitoring workshop.

[0032] The utility model realizes the control of the personnel entering and leaving the monitoring workshop by setting an access registration intelligent screen and an automatic gate, so as to ensure the safety of the monitoring workshop and realize the traceability of personnel control.

[0033] Preferably, the utility model further includes an intelligent storage cabinet. The intelligent storage cabinet is used to store safety protection appliances. When the user is verified and allowed to enter the monitoring workshop, the user also needs to be guided to the intelligent storage cabinet so that the user can take out the safety protection appliances before entering the monitoring workshop. Specifically, the intelligent storage cabinet includes a control cabinet body and a plurality of sub-cabinet bodies arranged in an array. The control cabinet body includes a microcontroller installed in the cabinet body, a display screen installed on the cabinet body, and function keys. Each sub-cabinet body is used to store safety protection appliances, and each sub-cabinet body is provided with a cabinet door, and an electronic lock is installed on the cabinet door. Each electronic lock is electrically connected to the microcontroller. By opening the electronic lock of the microcontroller, the user can take out the safety protection appliances from the corresponding sub-cabinet body.

[0034] The display screen is electrically connected to the microcontroller and is used to display the number of the currently opened sub-cabinet body and the registration code input by the user. That is, after each user registers access information, the background service center will generate a registration code and display it to the user through the local control host and the access registration intelligent screen. After the user takes a photo or records the registration code, the user inputs it into the intelligent storage cabinet to allocate safety protection appliances for the user. The process of allocating safety protection appliances is simple to operate, such as random allocation or sequential allocation, etc.

[0035] The function keys include 10 numeric keys, a delete key, a confirm key, etc. The 10 numeric keys include a 0 key, a 1 key, a 2 key, a 3 key, a 4 key, a 5 key, a 6 key, a 7 key, an 8 key, and a 9 key. The user can input the corresponding registration code through the above keys to allocate safety protection appliances. The microcontroller controls the opening of the electronic lock of the corresponding sub-cabinet body for the user to take out the safety protection appliances. At the same time, after the user takes out the safety protection appliances, the user can close the cabinet door of the corresponding sub-cabinet body. When the user returns the safety protection appliances, the user also inputs the registration code through the keys, and the microcontroller will automatically open the electronic lock of the corresponding sub-cabinet body for the user to place the safety protection appliances and close the cabinet door of the corresponding sub-cabinet body.

[0036] Preferably, an ultraviolet disinfection device is also provided in the intelligent storage cabinet to disinfect the safety protection appliances and safety clothing with ultraviolet rays.

[0037] Preferably, for an actual monitoring workshop, some areas are restricted access areas. To ensure safety, an infrared monitoring camera device is set around the restricted access areas of the monitoring workshop to detect whether someone enters. By setting the infrared monitoring camera device, the personnel control of the restricted access areas can be realized, and an alarm can be combined with the holding device.

[0038] Furthermore, the safety protection equipment in this embodiment includes a safety protection wristband, a safety protection suit, and a safety protection cap. Among them, the safety protection wristband is provided with a main control module, a WIFI communication module, a positioning module, a heart rate monitoring sensor, and a blood pressure monitoring sensor. The positioning module, the heart rate monitoring sensor, and the blood pressure monitoring sensor are respectively electrically connected to the main control module. The main control module is communicatively connected to a local control host through the WIFI communication module. The heart rate monitoring sensor is used to obtain the user's heart rate data; the blood pressure monitoring sensor is used to obtain the user's blood pressure data; the positioning module is used to obtain the user's location data. By setting the safety protection wristband, the user's heart rate and blood pressure can be monitored in a timely manner to promptly detect users with abnormalities, so as to further assist in determining whether the user is correctly wearing the safety protection equipment.

[0039] The local control host is also used to upload the user's heart rate data, user's blood pressure data, and user's location data corresponding to each intelligent safety protection equipment obtained by the main control module to a remote service platform through a remote communication module. By setting the safety protection wristband, the personnel information can be monitored in a timely manner to monitor the user's physical health in a timely manner.

[0040] The positioning module is used to locate the corresponding safety protection equipment. In this way, once it is detected that someone in a certain area is not correctly wearing the safety protection equipment, the background service center can lock the corresponding personnel information of those not correctly wearing the safety protection equipment in combination with the location information of each intelligent safety protection equipment for display on the local display screen. At the same time, it can further assist in determining whether someone has entered a restricted area and the personnel information of those who have entered the restricted area.

[0041] In addition, the remote service platform can also analyze the trajectory of personnel based on the positioning data analysis to provide data support for subsequent personnel management.

[0042] More specifically, the safety protection equipment further includes a micro camera and a micro intercom provided on the safety protection cap or the safety protection suit. The micro camera is electrically connected to the main control module and is used to periodically take pictures of the surrounding environment data of the intelligent safety protection equipment. The micro intercom is electrically connected to the main control module and then electrically connected to the local control host and is used for intercom.

[0043] Preferably, the present utility model further includes a local broadcast provided in the monitoring workshop. The local broadcast is electrically connected to the local control host and is used to play the information of personnel not correctly wearing the safety protection equipment and play notification messages, etc.

[0044] The utility model realizes the personnel supervision and environment monitoring of the monitored workshop by automatically collecting the monitoring videos and environmental data of the monitored workshop, timely feeds back the personnel who do not correctly wear safety protection equipment, and gives environmental early warnings in time to ensure the safety of the monitored workshop and personnel. At the same time, the utility model also combines the installation of a local display screen and local broadcasting in the monitored workshop to realize information display and information broadcasting. The personnel monitoring of the monitored workshop is realized by using intelligent safety protection equipment, and the personnel registration and intelligent control of safety protection equipment are realized by using intelligent lockers and access registration.

[0045] The above embodiments are only the preferred embodiments of the utility model, and the protection scope of the utility model cannot be limited thereby. Any non-substantive changes and substitutions made by those skilled in the art on the basis of the utility model belong to the protection scope required by the utility model.

Claims

1. An intelligent factory data acquisition device, characterized in that, The intelligent factory data acquisition device includes a visual monitoring camera device, an environmental monitoring device, and a local control terminal disposed in the monitoring workshop of the intelligent factory; wherein, the visual monitoring camera device and the environmental monitoring device are respectively electrically connected to the local control terminal; the visual monitoring camera device, there are multiple, which are respectively installed at the corresponding video monitoring points of the monitoring workshop, and are used to obtain the monitoring videos of the corresponding video monitoring points of the monitoring workshop in real time; the environmental monitoring device, there are multiple, which are respectively installed at the corresponding environmental monitoring points of the monitoring workshop, and are used to obtain the environmental data of the corresponding environmental monitoring points of the monitoring workshop in real time. The local control terminal includes a local control host and a remote communication module; the local control host is communicatively connected to the remote service platform through the remote communication module, and is used to send the obtained monitoring videos and environmental data of the monitoring workshop to the remote service platform through the remote communication module, so that the remote service platform can judge whether the personnel in the monitoring workshop are wearing safety protection equipment correctly according to the monitoring videos of the monitoring workshop and conduct environmental early warning on the monitoring workshop according to the environmental data.

2. The intelligent factory data acquisition device according to claim 1, wherein It also includes a local display screen disposed in the monitoring workshop; the local display screen is electrically connected to the local control host, and is used to display the monitoring videos and environmental data in real time and display the information of the personnel who are not wearing safety protection equipment correctly.

3. The intelligent factory data acquisition device according to claim 1, characterized in that, It also includes an access control device disposed at the entrance and exit of the monitoring workshop; the access control device includes an automatic gate, a gate driving device, and an access registration smart screen; the access registration smart screen is communicatively connected to the local control host, and is used to send user registration information to the local control host, so that the local control host sends the user registration information to the remote service platform to enable the remote service platform to verify the user according to the user registration information; the access registration smart screen is also used to receive the registration code sent by the local control host and display it to the user, and also drive the opening of the automatic gate through the gate driving device to allow entry into the monitoring workshop.

4. The intelligent factory data acquisition device according to claim 3, wherein, It also includes an intelligent storage locker; the intelligent storage locker includes a control cabinet body and multiple sub-cabinet bodies arranged in an array; a microcontroller is also disposed inside the control cabinet body, a display screen and function keys are also disposed on the control cabinet body; each sub-cabinet body is used to store safety protection equipment, each sub-cabinet body is provided with a cabinet door, an electronic lock is installed on the cabinet door, and each electronic lock is electrically connected to the microcontroller; the microcontroller is electrically connected to the function keys, and is also used to receive the user registration code and control the corresponding electronic lock to unlock to provide the corresponding safety protection equipment to the user; the display screen and the microcontroller are used to display the number of the currently opened sub-cabinet body and the user registration code; the function keys include 10 numeric keys, a delete key, and a confirm key.

5. The intelligent factory data acquisition device according to claim 4, wherein The safety protection equipment includes a safety protection wristband; wherein, a main control module, a WIFI communication module, a positioning module, a heart rate monitoring sensor, and a blood pressure monitoring sensor are provided inside the safety protection wristband; the positioning module, the heart rate monitoring sensor, the blood pressure monitoring sensor, and the positioning module are respectively electrically connected to the main control module; the main control module is communicatively connected to the local control host through the WIFI communication module; the heart rate monitoring sensor is used to obtain the user's heart rate data; the blood pressure monitoring sensor is used to obtain the user's blood pressure data; the positioning module is used to obtain the user's location data; The local control host is further configured to upload the corresponding user's heart rate data, user's blood pressure data, and user's location data obtained by the main control module to the remote service platform through the remote communication module.

6. The intelligent factory data acquisition device according to claim 5, characterized in that, The safety protection equipment further includes a safety protection cap and / or a safety protection suit, a micro camera, and a micro intercom; the micro camera is disposed on the safety protection suit or the safety protection cap and is electrically connected to the main control module, and is used to periodically photograph the surrounding environment of the safety protection equipment; the micro intercom is disposed on the safety protection suit or the safety protection cap and is electrically connected to the main control module, and further electrically connected to the local control host, and is used for intercom.

7. The intelligent factory data acquisition device according to claim 1, characterized in that, It further includes a local broadcast device disposed in the monitoring workshop; the local broadcast device is electrically connected to the local control host and is used to play the information of the personnel who do not wear the safety protection equipment correctly and play the notice information.

8. The intelligent factory data acquisition device according to claim 1, characterized in that, The types of the environmental monitoring devices include the following types: a temperature sensor, a humidity sensor, a dust particle detection sensor, a toxic gas concentration detection sensor, a fire detection sensor, and a smoke detection sensor; the temperature sensor is used to monitor the temperature data of the corresponding environmental monitoring point in the monitoring workshop; the humidity sensor is used to monitor the humidity data of the corresponding environmental monitoring point in the monitoring workshop; the dust particle detection sensor is used to monitor the dust particle concentration data of the corresponding environmental monitoring point in the monitoring workshop; the toxic gas concentration detection sensor is used to monitor the concentration of toxic gases at the corresponding environmental monitoring point in the monitoring workshop; the fire detection sensor is used to monitor the monitoring workshop for fires; The smoke detection sensor is used to obtain the smoke concentration of the corresponding environmental monitoring point in the monitoring workshop.

9. The intelligent factory data acquisition device according to claim 1, wherein, It further includes an infrared monitoring camera device disposed in the restricted area of the monitoring workshop; the infrared monitoring camera device is electrically connected to the local control host and is used to detect whether anyone enters the restricted area.

10. The intelligent factory data acquisition device according to claim 1, wherein, It further includes a plurality of brightness detection sensors disposed in the monitoring workshop; each brightness detection sensor is electrically connected to the local control host and is used to obtain the brightness data of the monitoring workshop in real time and upload it to the remote service platform through the local control host, so that the remote service platform automatically adjusts the illumination brightness of the lighting equipment in the monitoring workshop according to the brightness data of the monitoring workshop.