A method, device and medium for monitoring movable cabinets at industrial sites

By integrating environmental collection, positioning and main control modules in the movable cabinet, and correcting the temperature and humidity data based on water immersion, smoke and environmental influencing factors, the problem of inaccurate data caused by differences in industrial site environments is solved, and the accuracy and pertinence of the internal cabinet environment monitoring are achieved.

CN116465452BActive Publication Date: 2025-09-26INSPUR YUNZHOU (SHANDONG) IND INTERNET CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202310225733.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-03
Publication Date
2025-09-26
Estimated Expiration
2043-03-03

AI Technical Summary

Technical Problem

The environment of the industrial site is quite different from the operating environment of the designated computer room. The internal environmental data of the movable cabinet is greatly affected by the industrial site equipment, resulting in inaccurate data from the environmental collection device and affecting the monitoring results.

Method used

The environmental acquisition module and positioning module of the movable cabinet are combined with the main control module to collect environmental data and location data, determine the on-site standard parameters, correct the temperature and humidity data based on water immersion, smoke and environmental influencing factors, generate specified temperature and humidity data, and compare them with preset thresholds for monitoring.

Benefits of technology

Ensure the accuracy of temperature and humidity data, and the monitoring results can better represent the environmental data generated by the operation of the host inside the cabinet, ensuring the accuracy and pertinence of the monitoring results.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116465452B_ABST
    Figure CN116465452B_ABST
Patent Text Reader

Abstract

The embodiments of this specification disclose a method, device and medium for monitoring movable cabinets at industrial sites, which relate to the field of industrial Internet technology. The method includes: collecting environmental data and current position data of the movable cabinet through the environmental acquisition module and positioning module of the movable cabinet, and the environmental data include temperature and humidity data, water immersion data and smoke data; determining the current site standard parameters according to the current position data through the main control module of the movable cabinet, and the current site standard parameters include environmental data corresponding to the current environment of the industrial site; determining the environmental impact factor of the industrial site based on the site standard parameters, and the environmental impact factor is used to indicate the degree of environmental impact of the environment of the industrial site on the movable cabinet; correcting the temperature and humidity data based on the water immersion data, smoke data and environmental impact factor to generate specified temperature and humidity data, so as to monitor the movable cabinet through the specified temperature and humidity data and pre-set temperature and humidity thresholds.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This specification relates to the field of industrial Internet technology, and in particular to a method, device, and medium for monitoring movable cabinets used in industrial sites. Background Art

[0002] With the rapid advancement of science and technology and the widespread and in-depth application of the Industrial Internet, more and more enterprises are increasingly demanding digital transformation. Among these, a large number of small and medium-sized enterprises (SMEs) face numerous challenges in achieving digital transformation. First, data security is particularly crucial in the industrial sector. Industrial enterprises are cautious about migrating data to the cloud, preferring edge computing and internal digital management to keep relevant information within the enterprise. Therefore, building their own data centers is imperative for enterprises. Second, traditional data center computer rooms require dedicated space, with supporting equipment housed independently within the room. To ensure the proper operation of IT equipment, the room must meet the equipment's operating environment requirements, requiring large space, high costs, and difficult maintenance. Existing small data center rooms often far exceed the requirements of SMEs, resulting in a situation where "not building enough is not enough, and building too much is a waste." Therefore, mobile cabinets installed on industrial sites allow SMEs to obtain the hardware infrastructure for digital transformation without having to build a computer room, significantly reducing their construction costs.

[0003] However, the environment of the industrial site is quite different from the designated operating environment of the computer room. The internal environmental data of the movable cabinet is greatly affected by the industrial site equipment, resulting in inaccurate data collected by the environmental collection device installed inside the cabinet, which in turn affects the environmental monitoring results of the cabinet. Summary of the Invention

[0004] One or more embodiments of this specification provide a method, device, and medium for monitoring a movable cabinet for an industrial site, which are used to solve the following technical problems: there is a significant difference between the environment of the industrial site and the operating environment of the specified computer room, and the internal environmental data of the movable cabinet is greatly affected by the industrial site equipment, resulting in inaccurate data collected by the environmental collection device installed inside the cabinet, which in turn affects the environmental monitoring results of the cabinet.

[0005] One or more embodiments of this specification adopt the following technical solutions:

[0006] One or more embodiments of the present specification provide a method for monitoring a movable cabinet for an industrial site, characterized in that the method is applied to a movable cabinet, wherein the movable cabinet includes a main control module, an environment acquisition module, and a positioning module. The method includes: collecting environmental data and current position data of the movable cabinet through the environment acquisition module and the positioning module of the movable cabinet, wherein the environmental data includes temperature and humidity data, water immersion data, and smoke data; determining, through the main control module of the movable cabinet, current site standard parameters of the movable cabinet at the industrial site based on the current position data, wherein the current site standard parameters include environmental data corresponding to the current environment of the industrial site; determining an environmental impact factor of the industrial site based on the site standard parameters, wherein the environmental impact factor is used to indicate the degree of environmental impact of the environment of the industrial site on the movable cabinet; and correcting the temperature and humidity data based on the water immersion data, the smoke data, and the environmental impact factor to generate specified temperature and humidity data, so as to monitor the movable cabinet through the specified temperature and humidity data and pre-set temperature and humidity thresholds.

[0007] Furthermore, before determining the current site standard parameters of the movable cabinet at the industrial site based on the current position data, the method also includes: pre-dividing the industrial site into space to obtain equipment areas and idle areas, wherein the equipment area includes multiple industrial equipment; obtaining the operating status of each industrial equipment in the equipment area, wherein the operating status includes equipment operation and equipment idle; when the operating status of the industrial equipment in the equipment area is equipment operation, obtaining the first operating environment parameter in the equipment area and the second operating environment parameter in the idle area; when the operating status of the industrial equipment in the equipment area is equipment idle, obtaining the first idle environment parameter in the equipment area and the second idle environment parameter in the idle area; storing the first operating environment parameter, the second operating environment parameter, the first idle environment parameter and the second idle environment parameter in the preset database of the main control module.

[0008] Furthermore, based on the current position data, the current site standard parameters of the movable cabinet at the industrial site are determined, specifically including: based on the current position data, judging the current area to which the movable cabinet belongs at the industrial site, wherein the current area includes any one of an equipment area and an idle area; when the current area is the idle area, obtaining the second operating environment parameter and the second idle environment parameter in the preset database, and using the second operating environment parameter and the second idle environment parameter as the current site standard parameters; when the current area is the equipment area, obtaining the first operating environment parameter and the first idle environment parameter in the preset database, and using the first operating environment parameter and the first idle environment parameter as the current site standard parameters.

[0009] Furthermore, based on the site standard parameters, the environmental impact factors of the industrial site are determined, specifically including: determining the operating environment parameters and idle environment parameters in the site standard parameters, wherein the environmental parameters include temperature and humidity data; generating environmental parameter changes based on the idle environment parameters and the operating environment parameters, wherein the environmental parameter changes are used to represent the parameter impact of the operation of the industrial equipment on the current industrial environment; based on the environmental parameter changes and the idle environment parameters, determining the environmental impact factors of the operation of the industrial equipment on the industrial site.

[0010] Furthermore, based on the water immersion data, the smoke data and the environmental influencing factors, the temperature and humidity data are corrected to generate specified temperature and humidity data, specifically including: based on the water immersion data and the smoke data, the temperature and humidity data are corrected to generate initial temperature and humidity data; according to the environmental influencing factors, the initial temperature and humidity data are corrected to generate specified temperature and humidity data.

[0011] Furthermore, based on the water immersion data and the smoke data, the temperature and humidity data are corrected to generate initial temperature and humidity data, specifically including: obtaining a preset water immersion data threshold and a smoke data threshold; judging whether the movable cabinet is in a water immersion situation through the water immersion data and the water immersion data threshold; if the movable cabinet is in a water immersion situation, converting the water immersion data into water immersion temperature and humidity data, so as to correct the temperature and humidity data according to the water immersion temperature and humidity data, and generating initial temperature and humidity data; judging whether the movable cabinet is in a smoke situation through the smoke data and the smoke data threshold; if the movable cabinet is in a smoke situation, converting the smoke data into smoke temperature and humidity data, so as to correct the temperature and humidity data according to the smoke temperature and humidity data, and generating initial temperature and humidity data.

[0012] Furthermore, according to the environmental influencing factors, the initial temperature and humidity data are corrected to generate specified temperature and humidity data, specifically including: determining the temperature and humidity change through the specified calculation method of the environmental influencing factors and the initial temperature and humidity data; generating the specified temperature and humidity data based on the temperature and humidity change and the initial temperature and humidity data.

[0013] Furthermore, the movable cabinet is monitored by comparing the specified temperature and humidity data with the preset temperature and humidity thresholds, specifically including: comparing the specified temperature and humidity data with the preset temperature and humidity thresholds, and when the difference between the specified temperature and humidity data and the temperature and humidity thresholds exceeds an error range, determining that an environmental abnormality has occurred in the movable cabinet; marking the environmental abnormality on a display device provided on the outside of the movable cabinet, and adjusting the state of the three-color light provided on the display device to facilitate the management user to obtain the environmental abnormality.

[0014] One or more embodiments of this specification provide a movable cabinet monitoring device for an industrial site, including:

[0015] at least one processor; and,

[0016] a memory communicatively connected to the at least one processor; wherein,

[0017] The memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to:

[0018] The environmental data and current position data of the movable cabinet are collected through the environmental acquisition module and positioning module of the movable cabinet, wherein the environmental data include temperature and humidity data, water immersion data and smoke data; the current site standard parameters of the movable cabinet at the industrial site are determined according to the current position data through the main control module of the movable cabinet, wherein the current site standard parameters include environmental data corresponding to the current environment of the industrial site; based on the site standard parameters, the environmental impact factor of the industrial site is determined, wherein the environmental impact factor is used to indicate the degree of environmental impact of the environment of the industrial site on the movable cabinet; based on the water immersion data, the smoke data and the environmental impact factor, the temperature and humidity data are corrected to generate specified temperature and humidity data, so as to monitor the movable cabinet through the specified temperature and humidity data and the pre-set temperature and humidity thresholds.

[0019] One or more embodiments of this specification provide a non-volatile computer storage medium storing computer-executable instructions, wherein the computer-executable instructions are configured to:

[0020] The environmental data and current position data of the movable cabinet are collected through the environmental acquisition module and positioning module of the movable cabinet, wherein the environmental data include temperature and humidity data, water immersion data and smoke data; the current site standard parameters of the movable cabinet at the industrial site are determined according to the current position data through the main control module of the movable cabinet, wherein the current site standard parameters include environmental data corresponding to the current environment of the industrial site; based on the site standard parameters, the environmental impact factor of the industrial site is determined, wherein the environmental impact factor is used to indicate the degree of environmental impact of the environment of the industrial site on the movable cabinet; based on the water immersion data, the smoke data and the environmental impact factor, the temperature and humidity data are corrected to generate specified temperature and humidity data, so as to monitor the movable cabinet through the specified temperature and humidity data and the pre-set temperature and humidity thresholds.

[0021] At least one of the above-mentioned technical solutions adopted in the embodiments of this specification can achieve the following beneficial effects: through the above-mentioned technical solution, combined with the actual location of the movable cabinet at the industrial site and the actual environment of the industrial site, the impact of water immersion and smoke on the temperature and humidity data is comprehensively considered, and the impact of the equipment operation at the industrial site on the temperature and humidity data is also considered, thereby ensuring the accuracy of the specified temperature and humidity data. The obtained specified temperature and humidity data can better represent the environmental data inside the movable cabinet due to the operation of the host in the cabinet. The movable cabinet is monitored by the specified temperature and humidity data, and the obtained monitoring result is the result generated by the operation of the host inside the cabinet, thereby ensuring the accuracy and pertinence of the monitoring result. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the embodiments of this specification or the technical solutions in the prior art, the following briefly introduces the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are only some of the embodiments described in this specification. For those skilled in the art, other drawings can be obtained based on these drawings without inventive work. In the drawings:

[0023] Figure 1 A flowchart of a method for monitoring a movable cabinet in an industrial field provided in an embodiment of this specification;

[0024] Figure 2 A schematic diagram of the structure of a movable cabinet provided in an embodiment of this specification;

[0025] Figure 3 A schematic diagram of a front-door structure of a movable cabinet provided in an embodiment of this specification;

[0026] Figure 4A schematic diagram of a rear door structure of a movable cabinet provided in an embodiment of this specification;

[0027] Figure 5 A schematic diagram of internal heat dissipation of a movable cabinet provided in an embodiment of this specification;

[0028] Figure 6 This is a schematic diagram of the structure of a movable cabinet monitoring device for industrial sites provided in an embodiment of this specification.

[0029] Reference numerals:

[0030] 1. Cabinet; 2. Front door; 3. Logo decoration; 4. Dynamic environment monitoring host; 5. Right front door decorative panel; 6. Decorative light strip; 7. Universal wheel; 8. Fixed foot; 9. Integrated air conditioner; 10. Rear door; 11. Left cabinet decorative panel; 12. Left front door decorative panel; 13. Antenna wiring hole; 14. Three-color light; 15. Trigger switch; 16. Server compartment; 17. Middle vertical board; 18. Small shelf board; 19. Accessory compartment; 20. Wiring hole; 21. Right cabinet decorative panel. DETAILED DESCRIPTION

[0031] To help those skilled in the art better understand the technical solutions in this specification, the following will provide a clear and complete description of the technical solutions in the embodiments of this specification, in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of this specification, not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this specification without creative work should fall within the scope of protection of this specification.

[0032] With the rapid advancement of science and technology and the widespread and in-depth application of the Industrial Internet, more and more enterprises are increasingly demanding digital transformation. Among these, a large number of small and medium-sized enterprises (SMEs) face numerous challenges in achieving digital transformation. First, data security is particularly crucial in the industrial sector. Industrial enterprises are cautious about migrating data to the cloud, preferring edge computing and internal digital management to keep relevant information within the enterprise. Therefore, building their own data centers is imperative for enterprises. Second, traditional data center computer rooms require dedicated space, with supporting equipment housed independently within the room. To ensure the proper operation of IT equipment, the room must meet the equipment's operating environment requirements, requiring large space, high costs, and difficult maintenance. Existing small data center rooms often far exceed the requirements of SMEs, resulting in a situation where "not building enough is not enough, and building too much is a waste." Therefore, mobile cabinets installed on industrial sites allow SMEs to obtain the hardware infrastructure for digital transformation without having to build a computer room, significantly reducing their construction costs.

[0033] However, the environment of the industrial site is quite different from the designated operating environment of the computer room. The internal environmental data of the movable cabinet is greatly affected by the industrial site equipment, resulting in inaccurate data collected by the environmental collection device installed inside the cabinet, which in turn affects the environmental monitoring results of the cabinet.

[0034] The embodiments of this specification provide a method for monitoring a movable cabinet for an industrial site. It should be noted that the execution subject in the embodiments of this specification can be a server or any device with data processing capabilities. Figure 1 A flow chart of a method for monitoring a movable cabinet in an industrial field provided in an embodiment of this specification is shown as follows: Figure 1 As shown, it mainly includes the following steps:

[0035] Step S101 : collecting environmental data and current location data of the movable cabinet through the environment collection module and positioning module of the movable cabinet.

[0036] In one embodiment of the present disclosure, an environmental collection module and a positioning module are installed in a movable cabinet. Since the movable cabinet is installed at an industrial site and its position is not fixed, the positioning module can be used to collect real-time data on the movable cabinet's current location. Furthermore, the environmental collection module primarily includes a smoke sensor, a temperature and humidity sensor, and a water sensor. The smoke sensor is installed on the upper portion of the cabinet, while the temperature and humidity sensors are located on both sides of the cabinet. The water sensor can be a water rope installed on the cabinet floor. The environmental collection module collects environmental data from the movable cabinet, including temperature and humidity data, water data, and smoke data.

[0037] Step S102 : determining the current on-site standard parameters of the movable cabinet at the industrial site according to the current position data through the main control module of the movable cabinet.

[0038] The current site standard parameters include environmental data corresponding to the current environment of the industrial site;

[0039] In real-world applications, environmental parameters vary across industrial sites. For example, operating industrial equipment can increase temperature and humidity. To prevent interference with sensor data within the cabinet due to environmental variations, the current standard parameters for the movable cabinet within the industrial site are determined based on the cabinet's current location data.

[0040] Before determining the current site standard parameters of the movable cabinet at the industrial site based on the current location data, the method further includes: pre-dividing the industrial site into a space to obtain an equipment area and an idle area, wherein the equipment area includes multiple industrial equipment; obtaining the operating status of each industrial equipment in the equipment area, wherein the operating status includes equipment operation and equipment idle; when the operating status of the industrial equipment in the equipment area is equipment operation, obtaining the first operating environment parameter in the equipment area and the second operating environment parameter in the idle area; when the operating status of the industrial equipment in the equipment area is equipment idle, obtaining the first idle environment parameter in the equipment area and the second idle environment parameter in the idle area; and storing the first operating environment parameter, the second operating environment parameter, the first idle environment parameter and the second idle environment parameter in a preset database of the main control module.

[0041] In one embodiment of the present specification, the industrial site environment has a certain degree of complexity, and the industrial site is spatially divided in advance into equipment areas and idle areas. It should be noted that when performing spatial division, the industrial site is divided into equipment areas and idle areas according to whether there are industrial equipment in the industrial site. The equipment area includes multiple industrial equipment, and no industrial equipment exists in the idle area. The operating status of each industrial equipment in the equipment area is obtained to determine whether each industrial equipment is in operation. When the operating status of the industrial equipment in the equipment area is that the equipment is running, the first operating environment parameters in the equipment area and the second operating environment parameters in the idle area are obtained. When the operating status of the industrial equipment in the equipment area is that the equipment is idle, the first idle environment parameters in the equipment area and the second idle environment parameters in the idle area are obtained. The above environmental parameters are stored in the preset database of the main control module.

[0042] Based on the current location data, the current site standard parameters of the movable cabinet in the industrial site are determined, specifically including: based on the current location data, judging the current area of ​​the movable cabinet in the industrial site, wherein the current area includes any one of an equipment area and an idle area; when the current area is the idle area, obtaining the second operating environment parameter and the second idle environment parameter in the preset database, and using the second operating environment parameter and the second idle environment parameter as the current site standard parameters; when the current area is the equipment area, obtaining the first operating environment parameter and the first idle environment parameter in the preset database, and using the first operating environment parameter and the first idle environment parameter as the current site standard parameters.

[0043] In one embodiment of the present specification, the area to which the movable cabinet belongs is determined based on the current position data of the movable cabinet, and the area to which the movable cabinet belongs is any one of an equipment area and an idle area. If the movable cabinet belongs to the idle area, that is, there is no industrial equipment in the area to which the movable cabinet currently belongs, then the second operating environment parameter and the second idle environment parameter corresponding to the idle area are obtained from the preset database, and the second operating environment parameter and the second idle environment parameter are used as the current on-site standard parameters. If the movable cabinet belongs to the equipment area, that is, there is industrial equipment in the area to which the movable cabinet currently belongs, then the first operating environment parameter and the first idle environment parameter corresponding to the equipment area are obtained from the preset database, and the first operating environment parameter and the first idle environment parameter are used as the current on-site standard parameters.

[0044] Step S103: determining the environmental impact factors of the industrial site based on the site standard parameters.

[0045] Based on the site standard parameters, the environmental impact factors of the industrial site are determined, specifically including: determining the operating environment parameters and idle environment parameters in the site standard parameters, wherein the environmental parameters include temperature and humidity data; generating an environmental parameter change according to the idle environment parameters and the operating environment parameters, wherein the environmental parameter change is used to represent the parameter impact of the operation of the industrial equipment on the current industrial environment; based on the environmental parameter change and the idle environment parameters, determining the environmental impact factor of the operation of the industrial equipment on the industrial site.

[0046] In one embodiment of the present specification, after obtaining the on-site standard parameters, the environmental impact factor of the industrial site is determined based on the on-site standard parameters. The environmental impact factor is used to indicate the degree of environmental impact of the environment of the industrial site on the movable cabinet. It should be noted that the on-site standard parameters refer to the environmental parameters of the area to which the movable cabinet currently belongs when the equipment is in operation and the environmental parameters of the area to which the equipment currently belongs when the equipment is idle, such as temperature and humidity data. In other words, it includes the operating environmental parameters of the area when the equipment is running, and the idle environmental parameters of the area when the equipment is idle. The difference between the idle environmental parameters and the operating environmental parameters is calculated, and the absolute value of the difference is used as the environmental parameter change. Based on the ratio of the environmental parameter change to the idle environmental parameters, the environmental impact factor of the industrial equipment operation on the industrial site is generated. The environmental impact factor is used to indicate the degree of environmental impact of the environment of the industrial site on the movable cabinet.

[0047] Step S104 , based on the water immersion data, the smoke data and the environmental impact factors, the temperature and humidity data are corrected to generate designated temperature and humidity data, so as to monitor the movable cabinet through the designated temperature and humidity data and the preset temperature and humidity thresholds.

[0048] Based on the water immersion data, the smoke data and the environmental influencing factor, the temperature and humidity data are corrected to generate specified temperature and humidity data, specifically including: based on the water immersion data and the smoke data, the temperature and humidity data are corrected to generate initial temperature and humidity data; according to the environmental influencing factor, the initial temperature and humidity data are corrected to generate specified temperature and humidity data.

[0049] In one embodiment of the present specification, water immersion and smoke generation in a movable cabinet can affect temperature. For example, if the cabinet is immersed in cold water, the collected temperature data will be low and the humidity data will be high. When smoke is generated, the collected temperature data will be high and the humidity data will be low. Therefore, it is necessary to correct the temperature and humidity data based on the water immersion data and the smoke data to generate initial temperature and humidity data. Furthermore, because the on-site environment within the industrial site can also affect the temperature and humidity data, it is necessary to perform a secondary correction on the temperature and humidity data based on environmental influencing factors to generate the specified temperature and humidity data.

[0050] Based on the water immersion data and the smoke data, the temperature and humidity data are corrected to generate initial temperature and humidity data, specifically including: obtaining a preset water immersion data threshold and a smoke data threshold; judging whether the movable cabinet is flooded by the water immersion data and the water immersion data threshold; if the movable cabinet is flooded, converting the water immersion data into water immersion temperature and humidity data, and correcting the temperature and humidity data according to the water immersion temperature and humidity data to generate initial temperature and humidity data; judging whether the movable cabinet is smoked by the smoke data and the smoke data threshold; if the movable cabinet is smoked, converting the smoke data into smoke temperature and humidity data, and correcting the temperature and humidity data according to the smoke temperature and humidity data to generate initial temperature and humidity data.

[0051] In one embodiment of the present specification, a pre-set water immersion data threshold and a smoke data threshold are obtained. By comparing the water immersion data with the water immersion data threshold, it is determined whether the movable cabinet is flooded. If the movable cabinet is flooded, the water immersion data is converted into water immersion temperature and humidity data, which is then corrected based on the water immersion temperature and humidity data to generate initial temperature and humidity data. Converting the water immersion data into water immersion temperature and humidity data involves two steps: first, converting the water immersion data into water immersion temperature data, and second, converting the water immersion data into water immersion humidity data. The data conversion can be performed by taking an average of experimental data. For example, based on actual on-site work at an industrial site, the source of potential flooding is analyzed to obtain source water with flooding potential. Multiple flooding simulation experiments are conducted using the source water, and the temperature change data corresponding to the flooding data generated by the source water is recorded. The average of the temperature change data is then recorded so that, during actual execution, the corresponding average of the temperature change data can be determined based on the actual flooding data and used as the water immersion temperature data. The conversion of water immersion data into water immersion humidity data is the same as the conversion of water immersion temperature data, and will not be described in detail here.

[0052] By comparing the smoke data with the smoke data threshold, it is determined whether the movable cabinet is exposed to smoke. If smoke is present in the movable cabinet, the smoke data is converted to smoke temperature and humidity data, which is then corrected to generate initial temperature and humidity data. It should be noted that the conversion between smoke data and smoke temperature and humidity data can also be performed by taking the average of experimental data to obtain the corresponding smoke temperature and humidity data.

[0053] According to the environmental impact factor, the initial temperature and humidity data is corrected to generate specified temperature and humidity data, specifically including: determining the temperature and humidity change through the specified operation method of the environmental impact factor and the initial temperature and humidity data; generating the specified temperature and humidity data based on the temperature and humidity change and the initial temperature and humidity data.

[0054] In one embodiment of the present specification, since the environmental impact factor is the degree of influence of the equipment operation on the environmental data at the industrial site, the temperature and humidity change is obtained by multiplying the environmental impact factor by the initial temperature and humidity data. According to the corresponding calculation method of the temperature and humidity change and the initial temperature and humidity, the specified temperature and humidity data are generated. The corresponding calculation formula here includes addition and subtraction operations. The selection of the specific calculation method should be determined according to the current operating state of the equipment. If the equipment operating state is the operating state at this time, the equipment operation will generate corresponding heat, causing the temperature to rise. Therefore, it is necessary to subtract the temperature and humidity change corresponding to the environmental impact factor from the initial temperature and humidity to obtain the specified temperature and humidity data. In addition, when performing the above steps, the environmental impact factor includes a temperature impact factor and a humidity impact factor. The temperature impact factor and the initial temperature data are processed accordingly to obtain the specified temperature data; the humidity impact factor and the initial humidity data are processed accordingly to obtain the specified humidity data.

[0055] It should be noted that the specified temperature and humidity data obtained through the above steps comprehensively considers the impact of water immersion and smoke on the temperature and humidity data, and also considers the impact of equipment operation on the temperature and humidity data at the industrial site, thereby ensuring the accuracy of the specified temperature and humidity data. This specified temperature and humidity data can better represent the environmental data inside the movable cabinet due to the operation of the host in the cabinet.

[0056] The movable cabinet is monitored by comparing the specified temperature and humidity data with the preset temperature and humidity thresholds, specifically including: comparing the specified temperature and humidity data with the preset temperature and humidity thresholds; when the difference between the specified temperature and humidity data and the temperature and humidity thresholds exceeds an error range, determining that an abnormal environment occurs in the movable cabinet; marking the abnormal environment on a display device provided on the outside of the movable cabinet, and adjusting the state of a three-color light provided on the display device to facilitate the management user to obtain the abnormal environment.

[0057] In one embodiment of the present specification, the designated temperature and humidity data is environmental data generated within the movable cabinet due to the operation of the host computer within the cabinet. By comparing the designated temperature and humidity data with pre-set temperature and humidity threshold data, it is determined whether an environmental anomaly has occurred within the movable cabinet. When the difference between the designated temperature and humidity data and the temperature and humidity threshold exceeds the error range, it is determined that an environmental anomaly has occurred within the movable cabinet. The environmental anomaly here refers to an anomaly caused by the operation of the host computer within the cabinet. The environmental anomaly is marked on a display device provided on the exterior of the movable cabinet, and the state of the three-color light provided on the display device is adjusted to facilitate the management user to obtain the environmental anomaly.

[0058] Through the above technical solution, combined with the actual location of the movable cabinet at the industrial site and the actual environment of the industrial site, the impact of water immersion and smoke on the temperature and humidity data is comprehensively considered, and the impact of the equipment operation at the industrial site on the temperature and humidity data is also considered, thereby ensuring the accuracy of the specified temperature and humidity data. The obtained specified temperature and humidity data can better represent the environmental data inside the movable cabinet due to the operation of the host in the cabinet. The movable cabinet is monitored by the specified temperature and humidity data, and the obtained monitoring results are the results generated by the operation of the host inside the cabinet, thereby ensuring the accuracy and pertinence of the monitoring results.

[0059] The embodiment of this specification also provides a movable cabinet for industrial sites, Figure 2 This is a structural diagram of a movable cabinet provided in an embodiment of this specification. Figure 3 This is a schematic diagram of a front-door structure of a movable cabinet provided in an embodiment of this specification. Figure 4 This is a schematic diagram of a rear door structure of a movable cabinet provided in an embodiment of this specification. The movable cabinet here can also be called an integrated micro data center, such as Figure 2 、 Figure 3 as well as Figure 4 As shown, the movable cabinet includes a cabinet, a power monitoring system, an integrated air conditioner, and a power module. The cabinet comprises a cabinet body 1, a front door 2, and a rear door 10. To maintain an industrial design, the cabinet body 1 and front door 2 are both designed with decorative panels 11, 21, 5, and 12. The cabinet body 1 and front door 2 are both designed in black, with the decorative panels in white. The right decorative panel 5 of the front door is printed in blue.

[0060] This cabinet features a sealed design that is waterproof and dustproof, making it suitable for harsh factory workshop environments. The cabinet body 1 and front door 2 are sealed with sealing strips installed on the cabinet body 1. The cabinet body 1 and rear door 10 are sealed with foam rubber installed on the rear door 10. The cabinet bottom features cable routing holes 20, which are sealed with cable glands. A rubber ring seals the cable glands and the cables. The cabinet bottom is equipped with universal wheels 7 and fixed feet 8, allowing the cabinet to be deployed in a workshop, exhibition hall, or existing machine room. The cabinet body 1 features a central vertical panel 17, dividing the interior space into a server compartment 16 and an accessory compartment 19. The server compartment 16 has a total of 32U of space, accommodating 8-10 2U servers and corresponding IT equipment such as rack-mount switches and firewalls. The accessory compartment 19 features four layers of sub-shelf panels 18, which can accommodate smaller communications equipment such as industrial gateways. Additional sub-shelf panels 18 can be added as needed.

[0061] The left and right sides of the cabinet 1 are designed with decorative panels 11 and 21, which form the overall industrial style of the cabinet together with the decorative panels 5 and 12 of the front door 2. The left decorative panel 11 is designed with a decorative light strip 6. A light strip power module is fixed on the top of the cabinet, and the power module provides 24V power for the front door and cabinet decorative light strips. A light strip trigger switch 15 is designed on the top of the front side of the cabinet 1. A three-color light 14 is designed on the top of the cabinet 1, which enables this integrated micro data center to be connected to the industrial Internet identification resolution system as a device. An antenna wiring hole 13 is reserved on the top to lead out the antenna of the communication equipment without affecting the sealing of the cabinet. The front door 2 is designed with a decorative light strip 6 and its trigger switch 15. The front door 2 is fixed with a logo 3 or other decorative parts.

[0062] The dynamic environment monitoring system includes a host 5, a smoke alarm, a temperature and humidity sensor, a water immersion sensor, and other components. It can also connect to an integrated air conditioner 9, a UPS power module, and other components. The dynamic environment monitoring system host 5 is installed on the front door 2, providing users with a page display and touch interaction. The smoke alarm is installed on the upper part of the cabinet. If smoke is generated, an alarm message is transmitted to the dynamic environment monitoring host 5, uploaded to the management platform, and pushed to the user via text message and email. The temperature and humidity sensors are located on the front and back of the cabinet. The front monitors the temperature and humidity on the server's air inlet side, which is the cold zone; the back monitors the temperature and humidity on the server's air outlet side, which is the hot zone. If the temperature and humidity exceed the set threshold, an alarm message is transmitted to the dynamic environment monitoring host 5, uploaded to the management platform, and pushed to the user via text message and email. The water immersion sensor has a water immersion rope laid on the cabinet floor. If the cabinet is flooded, an alarm message is transmitted to the dynamic environment monitoring host 5, uploaded to the management platform, and pushed to the user via text message and email. The dynamic environment monitoring system can monitor the integrated air conditioner 9 and the UPS power module to ensure the stability of the internal environment of the cabinet.

[0063] The integrated air conditioner 9 is installed on the rear door 10 to create a suitable temperature and humidity for the interior space of the cabinet. The heat exchange environment of the evaporation end and the condensation end of the air conditioner itself is isolated, which does not affect the sealing of the cabinet. The evaporator is built in, and there is no need to deal with condensed water separately. Figure 5 This is a schematic diagram of the internal heat dissipation of a movable cabinet provided in an embodiment of this specification. The heat dissipation principle of the cabinet and the air conditioner is as follows: Figure 5 The power module can be a rack-mounted UPS, which includes a UPS power supply unit and a battery pack and occupies space in the server compartment 16 for installation; or it can be a cabinet-type UPS power supply, which is placed outside the cabinet and connected to the power environment monitoring system through the bottom wiring hole 20 and provides power to the cabinet.

[0064] Through this technical solution, an all-in-one micro data center, where each cabinet functions as a computer room, enables small and medium-sized enterprises (SMEs) to obtain the hardware infrastructure for digital transformation without having to build a computer room, significantly reducing their construction costs. The fully sealed cabinet is waterproof, dustproof, and portable, making it suitable for harsh factory environments. Its industrial-style design also allows for deployment in showrooms or existing computer rooms. The integrated air conditioner with its own evaporator eliminates the need for an external unit or separate condensate treatment, improving data center deployment efficiency. A power monitoring system facilitates user monitoring of data center operations and enhances operational stability. The power supply module can be installed internally or externally, enhancing data center deployment flexibility. The 32U server compartment, equipped with an accessories compartment, allows for customized IT equipment configuration, meeting customer needs while reducing waste and improving IT equipment efficiency.

[0065] The embodiment of this specification also provides a movable cabinet monitoring device for industrial sites, such as Figure 6 As shown, the device includes: at least one processor; and a memory communicatively connected to the at least one processor; wherein the memory stores instructions that can be executed by the at least one processor, and the instructions are executed by the at least one processor to enable the at least one processor to:

[0066] The environmental data and current position data of the movable cabinet are collected through the environmental collection module and the positioning module of the movable cabinet, wherein the environmental data includes temperature and humidity data, water immersion data and smoke data; the current site standard parameters of the movable cabinet at the industrial site are determined according to the current position data through the main control module of the movable cabinet, wherein the current site standard parameters include environmental data corresponding to the current environment of the industrial site; based on the site standard parameters, the environmental impact factor of the industrial site is determined, wherein the environmental impact factor is used to indicate the degree of environmental impact of the environment of the industrial site on the movable cabinet; based on the water immersion data, the smoke data and the environmental impact factor, the temperature and humidity data are corrected to generate specified temperature and humidity data, so as to monitor the movable cabinet through the specified temperature and humidity data and the pre-set temperature and humidity thresholds.

[0067] The embodiments of this specification also provide a non-volatile computer storage medium storing computer-executable instructions, wherein the computer-executable instructions are configured as follows:

[0068] The environmental data and current position data of the movable cabinet are collected through the environmental collection module and the positioning module of the movable cabinet, wherein the environmental data includes temperature and humidity data, water immersion data and smoke data; the current site standard parameters of the movable cabinet at the industrial site are determined according to the current position data through the main control module of the movable cabinet, wherein the current site standard parameters include environmental data corresponding to the current environment of the industrial site; based on the site standard parameters, the environmental impact factor of the industrial site is determined, wherein the environmental impact factor is used to indicate the degree of environmental impact of the environment of the industrial site on the movable cabinet; based on the water immersion data, the smoke data and the environmental impact factor, the temperature and humidity data are corrected to generate specified temperature and humidity data, so as to monitor the movable cabinet through the specified temperature and humidity data and the pre-set temperature and humidity thresholds.

[0069] The various embodiments in this specification are described in a progressive manner. Similar portions between the various embodiments can be referenced to each other, and each embodiment focuses on the differences from the other embodiments. In particular, the device, apparatus, and non-volatile computer storage medium embodiments are generally similar to the method embodiments, so their descriptions are relatively simplified. For relevant details, refer to the descriptions of the method embodiments.

[0070] The foregoing description of this specification describes specific embodiments. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in an order different from that described in the embodiments and still achieve the desired results. Furthermore, the processes depicted in the accompanying drawings do not necessarily require the specific order shown or the sequential order to achieve the desired results. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0071] The devices and media provided in the embodiments of this specification correspond one-to-one to the methods. Therefore, the devices and media also have similar beneficial technical effects to their corresponding methods. Since the beneficial technical effects of the methods have been described in detail above, the beneficial technical effects of the devices and media will not be repeated here.

[0072] Those skilled in the art will appreciate that the embodiments of this specification may be provided as methods, systems, or computer program products. Therefore, this specification may take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Furthermore, this specification may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0073] This specification is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of this specification. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0074] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[0075] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operating steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 The steps for the function specified in one or more boxes.

[0076] In a typical configuration, a computing device includes one or more processors (CPUs), input / output interfaces, network interfaces, and memory.

[0077] Memory may include non-permanent storage in a computer-readable medium, random access memory (RAM) and / or non-volatile memory in the form of read-only memory (ROM) or flash RAM. Memory is an example of a computer-readable medium.

[0078] Computer-readable media includes permanent and non-permanent, removable and non-removable media that can be implemented by any method or technology to store information. The information can be computer-readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technology, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices or any other non-transmission media that can be used to store information that can be accessed by a computing device. As defined herein, computer-readable media does not include transitory computer-readable media (transitory media), such as modulated data signals and carrier waves.

[0079] It should also be noted that the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, commodity, or apparatus that includes a series of elements includes not only those elements but also other elements not explicitly listed, or includes elements inherent to such process, method, commodity, or apparatus. In the absence of further limitations, an element defined by the phrase "comprises a ..." does not exclude the presence of other identical elements in the process, method, commodity, or apparatus that includes the element.

[0080] The foregoing description is merely one or more embodiments of this specification and is not intended to limit this specification. It will be apparent to those skilled in the art that various modifications and variations may be made to one or more embodiments of this specification. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of one or more embodiments of this specification are intended to be within the scope of the claims of this specification.

Claims

1. A method for monitoring a movable cabinet at an industrial site, characterized in that: Applied to a movable cabinet, the movable cabinet includes a main control module, an environment acquisition module, and a positioning module, and the method includes: Collecting environmental data and current location data of the movable cabinet through the environment collection module and positioning module of the movable cabinet, wherein the environmental data includes temperature and humidity data, water immersion data, and smoke data; Determining, by a main control module of the movable cabinet, current on-site standard parameters of the movable cabinet at the industrial site according to the current location data, wherein the current on-site standard parameters include environmental data corresponding to the current environment of the industrial site; Determining an environmental impact factor of the industrial site based on the site standard parameters, wherein the environmental impact factor is used to indicate the degree of environmental impact of the industrial site environment on the movable cabinet; Based on the water immersion data, the smoke data, and the environmental influencing factors, the temperature and humidity data are corrected to generate designated temperature and humidity data, so as to monitor the movable cabinet by comparing the designated temperature and humidity data with preset temperature and humidity thresholds; Before determining the current site standard parameters of the movable cabinet at the industrial site according to the current location data, the method further includes: Performing spatial division on the industrial site in advance to obtain an equipment area and an idle area, wherein the equipment area includes a plurality of industrial equipment; Acquire the operating status of each industrial device in the device area, wherein the operating status includes device running and device idle; When the operating state of the industrial equipment in the equipment area is equipment operation, obtaining a first operating environment parameter in the equipment area and a second operating environment parameter in the idle area; When the operation state of the industrial equipment in the equipment area is equipment idle, obtaining a first idle environment parameter in the equipment area and a second idle environment parameter in the idle area; Storing the first operating environment parameter, the second operating environment parameter, the first idle environment parameter, and the second idle environment parameter in a preset database of the main control module; Determining, based on the current location data, current on-site standard parameters of the movable cabinet at the industrial site, specifically includes: Determining, based on the current location data, a current area to which the movable cabinet belongs in the industrial site, wherein the current area includes any one of an equipment area and an idle area; When the current area is the idle area, obtaining the second operating environment parameter and the second idle environment parameter in the preset database, and using the second operating environment parameter and the second idle environment parameter as current on-site standard parameters; When the current area is the equipment area, the first operating environment parameter and the first idle environment parameter are obtained from the preset database, and the first operating environment parameter and the first idle environment parameter are used as current on-site standard parameters.

2. A method for monitoring a movable cabinet at an industrial site according to claim 1, characterized in that: Based on the on-site standard parameters, the environmental impact factors of the industrial site are determined, specifically including: Determining operating environment parameters and idle environment parameters in the on-site standard parameters, wherein the environmental parameters include temperature and humidity data; Generate an environmental parameter change amount according to the idle environment parameter and the operating environment parameter, wherein the environmental parameter change amount is used to represent the parameter impact of the operation of the industrial equipment on the industrial environment; An environmental impact factor of the industrial equipment operation on the industrial site is determined based on the environmental parameter change and the idle environmental parameter.

3. The method for monitoring a movable cabinet at an industrial site according to claim 1, wherein: Correcting the temperature and humidity data based on the water immersion data, the smoke data, and the environmental influencing factors to generate designated temperature and humidity data specifically includes: Correcting the temperature and humidity data based on the water immersion data and the smoke data to generate initial temperature and humidity data; The initial temperature and humidity data are corrected according to the environmental influencing factors to generate designated temperature and humidity data.

4. A method for monitoring a movable cabinet at an industrial site according to claim 3, characterized in that: Correcting the temperature and humidity data based on the water immersion data and the smoke data to generate initial temperature and humidity data specifically includes: Get the preset water immersion data threshold and smoke data threshold; determining whether the movable cabinet is flooded according to the flood data and the flood data threshold; If the movable cabinet is flooded, converting the water immersion data into water immersion temperature and humidity data, correcting the temperature and humidity data according to the water immersion temperature and humidity data, and generating initial temperature and humidity data; Determining whether there is smoke in the movable cabinet based on the smoke data and the smoke data threshold; If smoke exists in the movable cabinet, the smoke data is converted into smoke temperature and humidity data, and the temperature and humidity data are corrected according to the smoke temperature and humidity data to generate initial temperature and humidity data.

5. The method for monitoring a movable cabinet at an industrial site according to claim 3, wherein: Correcting the initial temperature and humidity data according to the environmental influencing factors to generate designated temperature and humidity data specifically includes: Determining the temperature and humidity change by using the environmental influencing factors and the specified calculation method of the initial temperature and humidity data; The designated temperature and humidity data is generated based on the temperature and humidity change and the initial temperature and humidity data.

6. The method for monitoring a movable cabinet at an industrial site according to claim 1, wherein: Monitoring the movable cabinet using the specified temperature and humidity data and pre-set temperature and humidity thresholds specifically includes: Comparing the specified temperature and humidity data with a preset temperature and humidity threshold value, and when the difference between the specified temperature and humidity data and the temperature and humidity threshold value exceeds an error range, determining that an abnormal environment occurs in the movable cabinet; The abnormal environmental situation is marked on a display device arranged outside the movable cabinet, and the state of the three-color light arranged on the display device is adjusted to facilitate the management user to obtain the abnormal environmental situation.

7. A movable cabinet monitoring device for industrial sites, characterized in that: The device comprises: at least one processor; and, a memory communicatively connected to the at least one processor; wherein, The memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to: Collecting environmental data and current location data of the movable cabinet through the environment collection module and positioning module of the movable cabinet, wherein the environmental data includes temperature and humidity data, water immersion data, and smoke data; Determining, by a main control module of the movable cabinet, current on-site standard parameters of the movable cabinet at the industrial site according to the current location data, wherein the current on-site standard parameters include environmental data corresponding to the current environment of the industrial site; Determining an environmental impact factor of the industrial site based on the site standard parameters, wherein the environmental impact factor is used to indicate the degree of environmental impact of the industrial site environment on the movable cabinet; Based on the water immersion data, the smoke data, and the environmental influencing factors, the temperature and humidity data are corrected to generate designated temperature and humidity data, so as to monitor the movable cabinet by comparing the designated temperature and humidity data with preset temperature and humidity thresholds; Before determining the current site standard parameters of the movable cabinet at the industrial site according to the current location data, the method further includes: Performing spatial division on the industrial site in advance to obtain an equipment area and an idle area, wherein the equipment area includes a plurality of industrial equipment; Acquire the operating status of each industrial device in the device area, wherein the operating status includes device running and device idle; When the operating state of the industrial equipment in the equipment area is equipment operation, obtaining a first operating environment parameter in the equipment area and a second operating environment parameter in the idle area; When the operation state of the industrial equipment in the equipment area is equipment idle, obtaining a first idle environment parameter in the equipment area and a second idle environment parameter in the idle area; Storing the first operating environment parameter, the second operating environment parameter, the first idle environment parameter, and the second idle environment parameter in a preset database of the main control module; Determining, based on the current location data, current on-site standard parameters of the movable cabinet at the industrial site, specifically includes: Determining, based on the current location data, a current area to which the movable cabinet belongs in the industrial site, wherein the current area includes any one of an equipment area and an idle area; When the current area is the idle area, obtaining the second operating environment parameter and the second idle environment parameter in the preset database, and using the second operating environment parameter and the second idle environment parameter as current on-site standard parameters; When the current area is the equipment area, the first operating environment parameter and the first idle environment parameter are obtained from the preset database, and the first operating environment parameter and the first idle environment parameter are used as current on-site standard parameters.

8. A non-volatile computer storage medium storing computer-executable instructions, characterized in that: The computer executable instructions are configured to: Collecting environmental data and current location data of the movable cabinet through the environment collection module and positioning module of the movable cabinet, wherein the environmental data includes temperature and humidity data, water immersion data, and smoke data; Determining, by a main control module of the movable cabinet, current on-site standard parameters of the movable cabinet at the industrial site according to the current location data, wherein the current on-site standard parameters include environmental data corresponding to the current environment of the industrial site; Determining an environmental impact factor of the industrial site based on the site standard parameters, wherein the environmental impact factor is used to indicate the degree of environmental impact of the industrial site environment on the movable cabinet; Based on the water immersion data, the smoke data, and the environmental influencing factors, the temperature and humidity data are corrected to generate designated temperature and humidity data, so as to monitor the movable cabinet by comparing the designated temperature and humidity data with preset temperature and humidity thresholds; Before determining the current site standard parameters of the movable cabinet at the industrial site according to the current location data, the method further includes: Performing spatial division on the industrial site in advance to obtain an equipment area and an idle area, wherein the equipment area includes a plurality of industrial equipment; Acquire the operating status of each industrial device in the device area, wherein the operating status includes device running and device idle; When the operating state of the industrial equipment in the equipment area is equipment operation, obtaining a first operating environment parameter in the equipment area and a second operating environment parameter in the idle area; When the operation state of the industrial equipment in the equipment area is equipment idle, obtaining a first idle environment parameter in the equipment area and a second idle environment parameter in the idle area; Storing the first operating environment parameter, the second operating environment parameter, the first idle environment parameter, and the second idle environment parameter in a preset database of the main control module; Determining, based on the current location data, current on-site standard parameters of the movable cabinet at the industrial site, specifically includes: Determining, based on the current location data, a current area to which the movable cabinet belongs in the industrial site, wherein the current area includes any one of an equipment area and an idle area; When the current area is the idle area, obtaining the second operating environment parameter and the second idle environment parameter in the preset database, and using the second operating environment parameter and the second idle environment parameter as current on-site standard parameters; When the current area is the equipment area, the first operating environment parameter and the first idle environment parameter are obtained from the preset database, and the first operating environment parameter and the first idle environment parameter are used as current on-site standard parameters.

Citation Information

Patent Citations

  • Building communication cabinet automatic control device

    CN104483909A

  • Self-inspection method and device for sampling unit in moisture-proof device

    CN110954150A