Gas alarm device management method and system based on ERP system

By generating a recommended list in the ERP system, the problem of unknown installation locations in the management of gas alarm devices was solved, enabling rapid and effective device control and improving management efficiency.

CN115168706BActive Publication Date: 2025-11-25BEIJING ZHONGDIAN HUALAO TECH CO LTD
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Patent Information

Application Number
CN202210749394.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-06-29
Publication Date
2025-11-25
Estimated Expiration
2042-06-29

AI Technical Summary

Technical Problem

In ERP systems, managers often struggle to effectively manage diverse gas alarm devices, especially when the specific installation locations of the devices are unknown, making it difficult to recommend necessary control measures.

Method used

By obtaining the login request command input by the user, it determines whether the operation command has been received. If not, a recommendation list is generated. The recommendation list is based on real-time warning information and historical browsing information, including factory exit reminders, warehouse exit reminders, etc., to help users quickly find and manage gas alarm devices.

Benefits of technology

This improves the management efficiency of gas alarm devices, allowing users to quickly and effectively manage devices based on the recommended list, reducing search time and enhancing the system's usability and accuracy.

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Abstract

The application relates to a gas alarm device management method and system based on an ERP system, and belongs to the field of artificial intelligence software systems.The method comprises the following steps: obtaining a login request instruction input by a login interface program; obtaining a management interface according to the login request instruction; judging whether an operation instruction input by a user is received within a first preset time period after the management interface is obtained; if not, reference information is called, and a recommendation list is generated according to the reference information and a preset recommendation model, wherein the reference information comprises real-time early warning information and historical browsing information; judging whether a confirmation instruction input by the user is received within a second preset time period after the recommendation list is generated; if yes, a target interface is called according to the confirmation instruction, and the target interface is an interface to be managed and controlled by the user. The application has the effect of improving the equipment management and control efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of artificial intelligence software systems, in particular to a gas alarm device management method and system based on an ERP system. BACKGROUND

[0002] With the progress of society, people's safety awareness has been improved, so various types of gas alarm devices for safety protection when working in limited space have been developed, and device management systems have been built based on various types of gas alarm devices. In order to improve the efficiency of controlling gas alarm devices, the basic information of gas alarm devices installed in limited space is often entered on the basis of an ERP system, and the authority of management personnel to dynamically manage the devices is added, but the types of gas alarm devices are various, and in the case that the management personnel cannot know the specific query field of the devices and need to update the device control, how to recommend the required control matters for the management personnel becomes a big problem. SUMMARY

[0003] The present application provides a gas alarm device management method and system based on an ERP system, which has the characteristics of improving the efficiency of device control.

[0004] The present application aims to provide a gas alarm device management method based on an ERP system.

[0005] The above application of the present application is achieved by the following technical scheme:

[0006] A gas alarm device management method based on an ERP system, comprising:

[0007] Obtaining a login request instruction input by a login interface program;

[0008] Obtaining a management interface according to the login request instruction;

[0009] Determining whether an operation instruction input by a user is received within a first preset time period after the management interface is obtained;

[0010] If not, reference information is called, and a recommendation list is generated according to the reference information and a preset recommendation model, the reference information including real-time warning information and historical browsing information;

[0011] Determining whether a confirmation instruction input by a user is received within a second preset time period after the recommendation list is generated;

[0012] If yes, a target interface is called according to the confirmation instruction, the target interface being an interface to be controlled by the user.

[0013] By adopting the technical scheme, when a user does not know a specific installation position of a gas alarm device (no operation instruction input by the user is received), a recommended list is generated, so that the user can quickly and effectively control the gas alarm device according to the recommended list.

[0014] In a preferred example, the application can be further configured that the operation instruction is a keyword input by the user, and the keyword includes a complete keyword and a fuzzy keyword.

[0015] By adopting the technical scheme, the application can provide two technical means for the user to input a complete keyword to search for a gas alarm device and input a fuzzy keyword to search for a gas alarm device, thereby improving the practicability of the application.

[0016] In a preferred example, the application can be further configured that the keyword input mode of the user includes any one of manual input, machine scanning and table import.

[0017] By adopting the technical scheme, the application provides three keyword input modes for the user, thereby further improving the practicability of the application.

[0018] In a preferred example, the application can be further configured that the step of generating the recommended list according to the reference information and the preset recommended model includes:

[0019] obtaining real-time early warning information;

[0020] generating the recommended list according to a generation time of the real-time early warning information from recent to distant.

[0021] By adopting the technical scheme, the application can push the real-time early warning information to the user, thereby facilitating the user to timely control the gas alarm device.

[0022] In a preferred example, the application can be further configured that the real-time early warning information includes factory delivery reminding, warehouse delivery reminding, use-in reminding, repair reminding, scrap / replacement reminding and calibration expiration reminding.

[0023] In a preferred example, the application can be further configured that the step of generating the recommended list according to the reference information and the preset recommended model further includes:

[0024] obtaining historical browsing information;

[0025] determining a browsed interface type and a total browsing number of each type of interface according to the historical browsing information;

[0026] arranging the browsed interface types according to the total browsing number from large to small to generate a matching list;

[0027] matching the associated interface in a preset database according to the interface type in the matching list, the associated interface including all interfaces in the same category as the browsed interface type;

[0028] determining whether the browsed interface type is traversed;

[0029] if yes, accumulating the matching times of the associated interface;

[0030] sorting the matching times of the associated interface from large to small to generate a recommendation list.

[0031] By adopting the above technical solution, the application can determine the role of the user according to the historical browsing record of the user, thereby recommending the interface that can be controlled by the role to which the user belongs.

[0032] In a preferred example, the application can be further configured to: before generating the recommendation list according to the reference information and the preset recommendation model, the database needs to be established, and the steps of establishing the database include:

[0033] obtaining a first category, the first category corresponding to the gas alarm device;

[0034] obtaining a second category, the second category corresponding to the interface type;

[0035] the first category and the second category are combined to form a database.

[0036] By adopting the above technical solution, the database is combined by the first category and the second category, thereby improving the integrity of the database, and further improving the accuracy of generating the recommendation list.

[0037] The second application purpose of the application is to provide a gas alarm device management system based on an ERP system.

[0038] The above second application purpose of the application is achieved by the following technical solution:

[0039] A gas alarm device management system based on an ERP system, comprising:

[0040] a first obtaining module configured to obtain a login request instruction input by a login interface program;

[0041] a first processing module configured to obtain a management interface according to the login request instruction;

[0042] a first determining module configured to determine whether an operation instruction input by a user is received within a first preset time period after the management interface is obtained;

[0043] The second obtaining module is configured to, when no operation instruction input by the user is received within a first preset time period after the management interface is obtained, invoke reference information;

[0044] The second processing module is configured to generate a recommendation list according to the reference information and a preset recommendation model.

[0045] The second judging module is configured to judge whether a confirmation instruction input by the user is received within a second preset time period after the recommendation list is generated.

[0046] The data confirming module is configured to, when the confirmation instruction input by the user is received within the second preset time period after the recommendation list is generated, invoke a target interface according to the confirmation instruction.

[0047] To sum up, the present application includes at least one of the following beneficial technical effects:

[0048] The present application can generate a recommendation list when the user does not know the specific installation position of the gas alarm device (no operation instruction input by the user is received), so that the user can quickly and effectively manage and control the gas alarm device according to the recommendation list. BRIEF DESCRIPTION OF DRAWINGS

[0049] Figure 1 The present application provides a gas alarm device management method based on an ERP system.

[0050] Figure 2 The present application provides a gas alarm device management system based on an ERP system.

[0051] Marked with reference numerals: 1, first obtaining module; 2, first processing module; 3, first judging module; 4, second obtaining module; 5, second processing module; 6, second judging module; 7, data confirming module. DETAILED DESCRIPTION

[0052] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme of the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0053] This application is used to manage various types of gas alarm devices, such as monitoring the status of gas alarm devices throughout their entire lifecycle, from manufacturing to disposal. Since gas alarm devices are used to detect the concentration of toxic gases, oxygen, or flammable gases in the air, monitoring their status not only ensures the safety of the monitored environment but also enables the creation of a real-time monitoring and emergency command system with intuitive display and intelligent alarms, based on the detection data uploaded by the gas alarm devices during normal operation, thereby further ensuring the safety of the monitored environment.

[0054] However, effectively managing various types of gas alarm devices and improving the efficiency of their management remains a significant challenge. To address this, this application utilizes the reliable and contactless nature of NFC tag reading, integrating it with a real-time monitoring emergency command system and an ERP system to establish a management system. This system enables comprehensive, efficient, and precise management of gas alarm devices and the SIM cards they use.

[0055] The NFC tag stores parameter information about the gas alarm device, including its manufacturing date, serial number, installation date, device category, installation method, and maintenance status. The SIM card facilitates data communication between the gas alarm device and the management system provided in this application, allowing the system to upload parameter information and control the gas alarm device accordingly.

[0056] Figure 1 The gas alarm device management method based on the ERP system provided in this application refers to... Figure 1 The main process of the management method is described as follows:

[0057] Step 10: Obtain the login request command input by the login interface program.

[0058] Before users can control gas alarm devices, they must first authenticate their identity by entering their username and password as prompted on the login screen.

[0059] When a user enters the correct username and password, the login interface program will generate a login request command, thus redirecting the user to the next screen. Otherwise, if the user enters an incorrect username or password, the login interface will prompt the user that the entered username or password is incorrect and that they need to re-enter it before logging in, thereby reducing the probability of data leakage incidents and improving the security of the gas alarm equipment.

[0060] Step S20: Obtain the management interface based on the login request instruction.

[0061] After the identity authentication, the management interface is entered, and the management interface includes a menu bar and a plurality of display areas distributed on the management interface after entering each menu item. In the embodiment, the menu bar includes a homepage, a comprehensive query, a device list, a SIM card list, and system management, wherein the device list, the SIM list, and the system management menu item are further provided with a sub-menu bar.

[0062] For the convenience of description, the homepage menu item is taken as an example below.

[0063] The homepage management interface includes a first display area and a second display area, and the first display area and the second display area are arranged side by side. The first display area is used to display the gas alarm device corresponding to the SIM card whose card pool usage exceeds the preset usage threshold. Further, the first display area displays the supplier of the gas alarm device, the card pool name, the card pool usage, and the card pool remaining amount, so that the user can clear the redundant data stored in the gas alarm device with excessive card pool usage according to the gas alarm device in the first display area, so as to reduce the card pool usage of the SIM card to below the preset usage threshold, thereby ensuring the data communication stability of the gas alarm device and the monitoring platform. The second display area is used to display the SIM card usage warning, that is, to statistically analyze the current flow usage of each SIM card in the past week, and then to sort the SIM cards according to the remaining flow from small to large. Further, the second display area displays the card number, the state, the used flow, the remaining flow, the expiration date, the device factory number, the device category, the device state, and the specific installation location, and other parameter information related to the gas alarm device. It should be noted that the homepage management interface is further provided with a third display area, and the third display area is used to display the recommended list generated subsequently.

[0064] Therefore, the user can know the current gas alarm device with excessive card pool usage and the SIM card usage on the homepage management interface, and can even find the required gas alarm device, so as to control the gas alarm device in a targeted manner.

[0065] For the comprehensive query management interface: four display areas are provided, which are respectively used for the user to input operation instructions, find the gas alarm device installed in any time period, query the required gas alarm device or export the parameter information of the required gas alarm device, display the queried gas alarm device, and export the parameter information for the user.

[0066] The operation instruction is a keyword input by the user. In the embodiment, the keyword includes a complete keyword and a fuzzy keyword. The complete keyword refers to a keyword input in the case that the specific installation position of the gas alarm device is known, i.e., the customer name, the work department, the work area, the master control room and the host are input in the display area, so that the required gas alarm device is accurately obtained. The fuzzy keyword refers to a keyword input in the case that the partial installation position of the gas alarm device is known, i.e., the partial installation position known is input in the display area, so that all the gas alarm devices located at the installation position are obtained, and then one of the gas alarm devices located at the installation position can be selected for management and control.

[0067] The display area for inputting the operation instruction by the user is arranged in the device list management interface and the SIM card list management interface, so that the user can easily find the required gas alarm device. The difference between the device list management interface and the SIM card list management interface lies in that:

[0068] The display area in the list management interface can also be used by the user to export the parameter information of the gas alarm device found, and even can import the parameter information of the known gas alarm device. The display area in the SIM card list management interface is used to display more detailed parameter information such as the SIM card number, the device connection mode, the device detection gas type and the management area to which the device belongs.

[0069] Six sub-menu bars are arranged on the system management interface, which are account management, role management, permission management, permission management interface, customer information, data management and log management. Each sub-menu bar in the system management interface corresponds to one work to be managed and controlled, such as:

[0070] The account management sub-menu bar is used to display the management permission grouped according to the role, because the password is created according to the complex password rule when the account is created, and only the administrator role can modify, enable or disable the account password and permission of others. The account of other users can only modify the account password of the user himself, and cannot modify other permissions, so the management permission of the user needs to be displayed in the account, so that the user can know his role;

[0071] The role management sub-menu bar is used to display four roles of pre-made administrator, production, after-sales and customer, and other roles can be added by the user;

[0072] The permission management sub-menu bar is used to display the access permission of each page and each item, and other operation permissions can be added by the user;

[0073] The customer information sub-menu bar is used to manage the unit name and organization structure of each item, and the organization structure can be batch imported in the form of online and offline tables;

[0074] The data management sub-menu bar is used to manage the backup and recovery of the system database.

[0075] The log management sub-menu bar is used to record the operation records of each step, including the records of success and failure, to facilitate subsequent auditing.

[0076] Therefore, the management interface in step S20 only provides a means for the user to find the gas alarm device, and displays the finding result in the management interface. In actual application, since a certain time is needed for the user to input the keyword, after entering the management interface, the user is reserved a first preset time period, and within the first preset time period, the user can manually input the keyword, scan the input keyword by an external scanner, or directly import the keyword to find the gas alarm device.

[0077] Step S30: determining whether an operation instruction input by the user is received within the first preset time period after the management interface is obtained.

[0078] If the user knows the installation position of the gas alarm device, the user can directly find the gas alarm device by inputting the specific installation position of the gas alarm device, so as to enter the target interface, that is, the management and control interface of the required gas alarm device, and monitor and control the gas alarm device in the management and control interface. In addition, if the user only knows part of the installation position of the gas alarm device, the user can obtain multiple interfaces by inputting part of the installation position of the gas alarm device, and then select the target interface from the multiple interfaces, so as to realize the management and control of the gas alarm device.

[0079] However, since there is a case that the user does not know the installation position of the gas alarm device at all, even if the user enters the management interface, the user cannot obtain the parameter information of the gas alarm device. Therefore, there is a case that even if the user enters the management interface, the management interface program still does not receive the user's return operation instruction within the first preset time period.

[0080] Step S40: if not, reference information is called, and a recommended list is generated according to the reference information and a preset recommendation model.

[0081] The reference information includes real-time warning information and historical browsing information. Specifically, the real-time warning information is the parameter information uploaded by the gas alarm device and received by the management system within a specified time period, for example, all the parameter information uploaded by the gas alarm device and collected by the management system within a week. The historical browsing information is the historical management and control record of the user, so from the historical browsing record, the management system can obtain the interface type browsed by the user and the browsing times of each type of interface.

[0082] Since the reference information contains real-time early warning information and historical browsing information which are two unrelated data, there are two cases for the recommendation list generated according to the reference information and the preset recommendation model.

[0083] Case one: Real-time early warning information and the preset recommendation model generate the recommendation list. The process is as follows: first, obtain the real-time early warning information, and then generate the recommendation list according to the generation time of the real-time early warning information from recent to distant. In simple terms, it is to obtain all parameter information uploaded by the gas alarm device received by the management system within a specified time period, and then arrange the parameter information according to the generation time from recent to distant, for example, the factory date of the gas alarm device A is March 12, and the maintenance date of the gas alarm device B is March 10, so the sorting of the gas alarm device B in the recommendation list is before the gas alarm device A.

[0084] Case two: Historical browsing information and the preset recommendation model generate the recommendation list, and the specific steps are as follows:

[0085] Step S41: Obtain the historical browsing information;

[0086] Step S42: Determine the interface type browsed according to the historical browsing information and the total number of browsing of each type of interface;

[0087] Step S43: Arrange the interface type browsed according to the total number of browsing from large to small to generate a matching list;

[0088] Step S44: Match the associated interface in the preset database according to the interface type in the matching list;

[0089] Step S45: Determine whether the interface type browsed is traversed;

[0090] Step S46: If yes, accumulate the matching number of the associated interface;

[0091] Step S47: Arrange the matching number of the associated interface from large to small to generate a recommendation list.

[0092] As can be seen from steps S41 to S47 above, a database needs to be established before generating the recommendation list based on historical browsing information and a preset recommendation model. In a specific example, the database establishment process is as follows: On the one hand, all gas alarm devices are individually set as a first category, and the interfaces involved in this first category are all related interfaces. For example, if gas alarm device C is a first category, then all interfaces involving gas alarm device C are related interfaces, such as the manufacturing date interface and the maintenance interface of gas alarm device C being related interfaces. On the other hand, interfaces with the same content are merged into a second category, and the interfaces involved in this second category are all related interfaces. For example, if the manufacturing date is a category, then the manufacturing date interfaces of gas alarm device D and gas alarm device E are related interfaces. Finally, all the first categories and all the second categories are combined to form a database.

[0093] After obtaining the database, the process of generating a recommendation list based on historical browsing information and a preset recommendation model can be summarized as follows: First, the browsing interface types are arranged from largest to smallest according to the total number of browsing visits to generate a matching list. Then, the related interfaces in the database are matched sequentially according to the interface types in the matching list. During the process of traversing the interface types in the matching list, the matching count of each related interface is accumulated. Finally, the matching counts of the related interfaces are sorted from largest to smallest to generate a recommendation list. In other words, the recommendation list is generated based on the user's historical browsing records.

[0094] Both of the above methods can generate a recommendation list, which is then displayed in the corresponding area of ​​the management interface. For example, it can be displayed in the third display area of ​​the homepage management interface. The display method can be either before the recommendation list generated by the real-time alert information and the preset recommendation model, or after the recommendation list generated by the preset recommendation model, or both side-by-side. Alternatively, a fourth display area can be added to the homepage management interface to display the recommendation list generated by the preset recommendation model and the historical browsing information. In practical applications, the specific display method chosen is not limited here, as long as it allows users to easily and intuitively see the recommendation list.

[0095] Step S60: Determine whether a confirmation command input by the user has been received within the second preset time period after the recommendation list is generated.

[0096] After the recommended list is generated, on the one hand, it is convenient to select an interface required from the recommended list when the user does not know the installation position of the gas alarm device at all. On the other hand, real-time early warning information can be pushed to the user, so as to facilitate the user to timely control the gas alarm device. In addition, the role of the user can be judged according to the historical browsing record of the user, so as to recommend the interface that can be controlled by the role of the user to the user.

[0097] In the embodiment, after the recommended list is obtained, if the confirmation instruction input by the user is not received within the second preset time, in order to prevent data leakage or non-related personnel from modifying data, the homepage management interface program automatically locks the recommended list, that is, only watching but not entering the interface contained in the recommended list. When the user wants to reselect the interface contained in the recommended list within the second preset time period, it is necessary to return to step S10, that is, it is necessary to reverify the identity. If the user inputs the confirmation instruction within the second preset time period, that is, selects the interface in the recommended list, the following step is entered.

[0098] Step S70: The target interface is called according to the confirmation instruction.

[0099] When the user selects the interface in the recommended list, the homepage management interface jumps to the interface selected by the user, that is, enters the target interface, and then it is convenient for the user to control the gas alarm device in the target interface.

[0100] In summary, the application provides three technical means for the user to find the gas alarm device, so that the user can quickly and effectively control the gas alarm device whether the user knows the specific installation position of the gas alarm device, knows part of the installation position of the gas alarm device, or does not know the installation position of the gas alarm device at all.

[0101] The above is an embodiment of the management method, and the following further illustrates the scheme by an embodiment of the management system.

[0102] Figure 2 The gas alarm device management system based on the ERP system provided by the application refers to Figure 2 The management system comprises a first acquisition module 1, a first processing module 2, a first judgment module 3, a second acquisition module 4, a second processing module 5, a second judgment module 6, and a data confirmation module 7.

[0103] The first obtaining module 1 is configured to obtain a login request instruction input by a login interface program. The first processing module 2 is configured to obtain a management interface according to the login request instruction. The first judging module 3 is configured to judge whether an operation instruction input by a user is received within a first preset time period after the management interface is obtained. The second obtaining module 4 is configured to call reference information when the operation instruction input by the user is not received within the first preset time period after the management interface is obtained. The second processing module 5 is configured to generate a recommendation list according to the reference information and a preset recommendation model. The second judging module 6 is configured to judge whether a confirmation instruction input by the user is received within a second preset time period after the recommendation list is generated. The data confirmation module 7 is configured to call a target interface according to the confirmation instruction when the confirmation instruction input by the user is received within the second preset time period after the recommendation list is generated.

[0104] The above description is merely preferred embodiments of the present application and a description of the principles of the technology used. Those skilled in the art should understand that the disclosed range of the present application is not limited to the technical solutions formed by the specific combinations of the technical features described above, and should also cover other technical solutions formed by any combinations of the technical features described above or their equivalent features without departing from the disclosed concept. For example, the technical solutions formed by the mutual replacement of the above-described features and the technical features disclosed in the present application (but not limited to) having similar functions.

Claims

1. An ERP system-based gas alarm device management method, characterized by, The method comprises the following steps: acquiring a login request instruction input by a login interface program; obtaining a management interface according to the login request instruction; determining whether an operation instruction input by a user is received within a first preset time period after the management interface is obtained; if not, calling reference information, and generating a recommendation list according to the reference information and a preset recommendation model, the reference information comprising real-time early warning information and historical browsing information; determining whether a confirmation instruction input by the user is received within a second preset time period after the recommendation list is generated; if yes, calling a target interface according to the confirmation instruction, the target interface being an interface to be managed by the user.

2. The ERP system-based gas alarm device management method of claim 1, wherein, The operation instruction is a keyword input by the user, the keyword comprising a complete keyword and a fuzzy keyword.

3. The ERP system-based gas alarm device management method of claim 2, wherein, The keyword input by the user comprises any one of manual input, machine scanning and table import.

4. The ERP system-based gas alarm device management method of claim 1, wherein, The step of generating the recommendation list according to the reference information and the preset recommendation model comprises the following steps: acquiring real-time early warning information; and generating the recommendation list by sorting the real-time early warning information from recent to distant according to the generation time of the real-time early warning information.

5. The ERP system-based gas alarm device management method of claim 4, wherein, The real-time early warning information comprises factory delivery reminders, warehouse delivery reminders, use-in reminders, repair reminders, scrap / replacement reminders and calibration expiration reminders.

6. The ERP system-based gas alarm device management method of claim 1, wherein, The step of generating the recommendation list according to the reference information and the preset recommendation model further comprises the following steps: acquiring historical browsing information; determining the interface type browsed and the total browsing times of each type of interface according to the historical browsing information; arranging the interface types browsed from large to small according to the total browsing times to generate a matching list; matching associated interfaces in a preset database according to the interface types in the matching list, the associated interfaces comprising all interfaces in the same category as the interface types browsed; determining whether the interface types browsed are traversed; if yes, accumulating the matching times of the associated interfaces; and sorting the matching times of the associated interfaces from large to small to generate the recommendation list.

7. The ERP system-based gas alarm device management method of claim 6, wherein, Before the recommendation list is generated according to the reference information and the preset recommendation model, the database needs to be established, and the step of establishing the database comprises the following steps: acquiring a first category, the first category corresponding to a gas alarm device; acquiring a second category, the second category corresponding to an interface type; and collecting the first category and the second category to form the database.

8. An ERP system-based gas alarm device management system, characterized by, The method comprises the following steps: a first acquiring module (1) is configured to acquire a login request instruction input by a login interface program; and a first processing module (2) is configured to obtain a management interface according to the login request instruction; a first determining module (3) is configured to determine whether an operation instruction input by a user is received within a first preset time period after the management interface is obtained; a second acquiring module (4) is configured to call reference information when the operation instruction input by the user is not received within the first preset time period after the management interface is obtained; a second processing module (5) is configured to generate a recommendation list according to the reference information and a preset recommendation model, the reference information comprising real-time early warning information and historical browsing information; a second determining module (6) is configured to determine whether a confirmation instruction input by the user is received within a second preset time period after the recommendation list is generated; and The data confirmation module (7) is configured to, when receiving the confirmation instruction input by the user within the second preset time period after generating the recommendation list, call a target interface according to the confirmation instruction, wherein the target interface is an interface to be controlled by the user.

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