Display method and device of safe and intelligent map, electronic equipment and storage medium

By integrating the display method of the safety intelligent map, the inefficiency of the traditional gas safety risk notification method is solved, and the dynamic visualization of task locations and risks is realized, thereby improving the efficiency and timeliness of gas safety management.

CN121233682APending Publication Date: 2025-12-30BOCOM SMART INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202511209435.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2025-12-30

AI Technical Summary

Technical Problem

Traditional methods of notifying gas safety risks rely on manual transmission, which leads to inaccurate information delivery, is time-consuming and labor-intensive, makes it difficult to respond quickly, and has low processing efficiency, failing to meet the needs of modern gas safety risk efficient handling.

Method used

This paper provides a method for displaying a safe and intelligent map, which integrates a today's key tasks module, a safety inspection module, and a safety overview module. It displays task locations and risk dynamics through a geographic information system, uses preset filtering rules and intelligent algorithms to filter pending tasks, generates a recommended personnel list, and provides navigation information.

Benefits of technology

It has achieved centralized management of security information, improved the efficiency of information transmission and processing, rationally arranged work routes, ensured that no important matters are overlooked, enhanced the efficiency of risk monitoring and performance management, and built a more complete and efficient security management system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention provides a safety intelligent map display method and device, electronic equipment and a storage medium, and the method comprises the steps: responding to user login, and displaying a safety risk intelligent map interface; the security risk intelligent map interface at least comprises a today key module, a security check module and a security overview module; in response to a selection operation on the security check module, displaying a task point location and task information corresponding to the task point location; in response to a selection operation on a key module today, displaying a to-do list and item information; and in response to a selection operation on the security full-view module, displaying risk dynamic states corresponding to the at least two task types and role performance information corresponding to the user. Therefore, a plurality of modules are integrated on the security risk intelligent map interface, so that centralized management of security information is realized. According to the embodiment of the invention, the efficiency of information transmission and processing is improved, the risk monitoring and the performance management are enhanced, and the construction of a more perfect and efficient safety management system is facilitated.
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Description

Technical Field

[0001] This invention relates to the field of gas safety technology, and in particular to a method, apparatus, electronic device, and storage medium for displaying a smart safety map. Background Technology

[0002] With the increasingly widespread use of natural gas, gas safety risks are becoming more prominent, leading to higher demands for efficient risk notification and handling. However, traditional offline methods for gas safety risk notification have many drawbacks, resulting in low efficiency. Offline notifications often rely on manual delivery, such as paper documents or telephone communication. This method is not only time-consuming and labor-intensive but also prone to inaccurate or missed information. Furthermore, after receiving the notification, relevant personnel need to spend a significant amount of time organizing information and assigning tasks, making rapid response difficult.

[0003] Therefore, given the increasingly complex and volatile nature of gas safety risks, this inefficient approach is insufficient to meet actual needs. There is an urgent need for a more efficient and intelligent method for notifying and handling gas safety risks to improve efficiency and ensure the safe and stable use of gas. Summary of the Invention

[0004] To overcome the problems existing in related technologies, the present invention provides a method, device, electronic device and storage medium for displaying a secure intelligent map.

[0005] In a first aspect, the present invention provides a method for displaying a secure intelligent map, the method comprising:

[0006] In response to user login, a security risk intelligent map interface is displayed; the security risk intelligent map interface includes at least a today's key points module, a security check module, and a security overview module.

[0007] In response to the selection operation of the security inspection module, the task location and the task information corresponding to the task location are displayed;

[0008] In response to the selection of the "Today's Focus" module, the to-do list and its information are displayed.

[0009] In response to the selection of the security overview module, the system displays the risk dynamics corresponding to at least two task types and the user's corresponding role performance information.

[0010] Optionally, the display of task locations and corresponding task information includes:

[0011] The task map interface is displayed; the task map interface includes at least two task locations.

[0012] In response to the selection operation of the target point among the at least two task points, the task information corresponding to the task point is obtained based on the data source corresponding to the task type of the target point, and the task information is displayed in the form of a pop-up window.

[0013] Optionally, the display of to-do items and item information includes:

[0014] Displaying today's key screen;

[0015] Based on preset filtering rules, to-do items are filtered from the processing items corresponding to the user;

[0016] In response to the selection of any of the to-do items, the item information corresponding to the to-do item is displayed.

[0017] Optionally, displaying the risk dynamics corresponding to at least two task types and the user's corresponding role performance information includes:

[0018] Display a security overview interface; the security overview interface includes type controls corresponding to at least two task types and role performance controls;

[0019] In response to the selection of a type control corresponding to any of the task types, the risk dynamics corresponding to the task type are displayed; the risk dynamics include yesterday's sales items, near-expiration risk warnings, and high-risk items corresponding to the risk type.

[0020] In response to the selection of the role performance control, the role performance information corresponding to the role is displayed; the role performance information includes role points and personal ability radar chart.

[0021] Optionally, the method further includes:

[0022] In response to the creation of a security task, a list of recommended personnel is generated based on preset allocation rules;

[0023] Based on the list of recommended personnel, the task details and navigation information corresponding to the security task are displayed in a pop-up window on the task map interface of each recommended personnel.

[0024] Optionally, the method further includes:

[0025] In response to the selection operation of the target layer switching control among at least two layer switching controls in the task map interface, the target task point corresponding to the target layer switching control is displayed in the task map interface.

[0026] Secondly, the present invention provides a display device for a secure intelligent map, the device comprising:

[0027] The first display module is used to display a security risk intelligent map interface in response to user login; the security risk intelligent map interface includes at least a today's focus module, a security check module, and a security overview module.

[0028] The second display module is used to display the task location and the task information corresponding to the task location in response to the selection operation of the security inspection module.

[0029] The third display module is used to display the to-do items and item information in response to the selection operation of the "Today's Focus" module;

[0030] The fourth display module is used to display the risk dynamics corresponding to at least two task types and the user's corresponding role performance information in response to the selection operation of the security overview module.

[0031] Optionally, the second display module includes:

[0032] The first display submodule is used to display the task map interface; the task map interface includes at least two task points.

[0033] The second display submodule is used to respond to the selection operation of the target point among the at least two task points, obtain the task information corresponding to the task point based on the data source corresponding to the task type of the target point, and display the task information in the form of a pop-up window.

[0034] Optionally, the third display module includes:

[0035] The third display submodule is used to display today's key points.

[0036] The first filtering module is used to filter pending items from the user's corresponding processing items based on preset filtering rules;

[0037] The fourth display submodule is used to display the item information corresponding to any of the to-do items in response to the selection operation of any of the to-do items.

[0038] Optionally, the fourth display module includes:

[0039] The fifth display submodule is used to display the security overview interface; the security overview interface includes type controls corresponding to at least two task types and role performance controls;

[0040] The sixth display submodule is used to display the risk dynamics corresponding to the task type in response to the selection operation of the type control corresponding to any of the task types; the risk dynamics include yesterday's sales items, near-expiration risk warnings, and high-risk items corresponding to the risk type;

[0041] The seventh display submodule is used to display the role performance information corresponding to the role in response to the selection operation of the role performance control; the role performance information includes role points and personal ability radar chart.

[0042] Optionally, the device further includes:

[0043] The first generation module is used to generate a list of recommended personnel in response to the creation of security tasks, based on preset allocation rules.

[0044] The fifth display module is used to display the task details and navigation information corresponding to the security task in a pop-up window on the task map interface of each recommended person, based on the recommended personnel list.

[0045] Optionally, the device further includes:

[0046] The sixth display module is used to display the target task point corresponding to the target layer switching control in the task map interface in response to the selection operation of the target layer switching control among at least two layer switching controls in the task map interface.

[0047] Thirdly, the present invention provides an electronic device comprising: a processor, a memory, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the method for displaying a secure smart map as described in any of the first aspects above.

[0048] Fourthly, the present invention provides a readable storage medium that, when the instructions in the storage medium are executed by a processor of an electronic device, enables the electronic device to perform the steps of the method for displaying a secure smart map as described in any of the embodiments of the first aspect above.

[0049] In this embodiment of the invention, in response to user login, a smart security risk map interface is displayed. This interface includes at least a "Today's Focus" module, a "Security Inspection" module, and a "Security Overview" module. In response to selecting the "Security Inspection" module, task locations and corresponding task information are displayed. In response to selecting the "Today's Focus" module, pending tasks and their information are displayed. In response to selecting the "Security Overview" module, risk dynamics corresponding to at least two task types and the user's corresponding role performance information are displayed. Thus, by integrating the "Today's Focus" module, the "Security Inspection" module, and the "Security Overview" module into the smart security risk map interface, centralized management of security information is achieved. Simultaneously, selecting the "Security Inspection" module displays task locations and information, which helps to rationally allocate work routes and resources, improving the efficiency of security inspections. Selecting the "Today's Focus" module displays pending tasks and information, ensuring that important matters are not overlooked and guaranteeing the timeliness and effectiveness of security work. Selecting the "Security Overview" module presents risk dynamics for multiple task types and user role performance information, providing a comprehensive overview of the security situation. Furthermore, the embodiments of the present invention improve the efficiency of information transmission and processing, strengthen risk monitoring and performance management, and help to build a more complete and efficient security management system. Attached Figure Description

[0050] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0051] Figure 1 This is a flowchart of the steps of a method for displaying a secure intelligent map according to an embodiment of the present invention;

[0052] Figure 2 This is a schematic diagram of a task map interface provided in an embodiment of the present invention;

[0053] Figure 3 This is a schematic diagram of a "Today's Focus" interface provided in an embodiment of the present invention;

[0054] Figure 4 This is a schematic diagram of a security overview interface provided in an embodiment of the present invention;

[0055] Figure 5 This is a schematic diagram of an annual plan interface provided in an embodiment of the present invention;

[0056] Figure 6This is a structural diagram of a security intelligent map display device provided in an embodiment of the present invention;

[0057] Figure 7 This is a structural diagram of an electronic device provided in an embodiment of the present invention. Detailed Implementation

[0058] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0059] Figure 1 This is a flowchart illustrating the steps of a method for displaying a secure intelligent map according to an embodiment of the present invention, as shown below. Figure 1 As shown, the method may include:

[0060] Step 101: In response to user login, display the security risk intelligent map interface; the security risk intelligent map interface includes at least the Today's Focus module, the security check module, and the security overview module.

[0061] After a user starts the system and completes the login process, user authentication and authorization are performed first. Specifically, the user needs to accurately enter a pre-set username and password combination on the login interface. After receiving the input information, it is compared and verified with the user information stored in the backend database. Once the verification is successful, based on the user's role information, such as the top leader (usually referring to senior decision-makers in the enterprise, responsible for overall strategic planning and key decision-making) or ordinary employee (personnel performing specific business operations), the corresponding permissions and configuration data are loaded from the preset permission configuration library.

[0062] Subsequently, after the user logs in, the interface initialization phase begins, loading the basic framework of the security risk intelligent map interface. This framework contains multiple functional module entry points. These functional module entry points are displayed prominently on the interface as intuitive icons or buttons, covering three core modules: "Today's Highlights," "Security Check," and "Security Overview."

[0063] Step 102: In response to the selection operation of the security inspection module, display the task location and the task information corresponding to the task location.

[0064] In this embodiment of the invention, when a user clicks the "Security Check" module entry on the intelligent security risk map interface, a user interaction operation is triggered. A data request is sent to the backend, which includes key information such as the user's identity and request type. After receiving the request, the backend server retrieves the current user's security check task locations and corresponding task information from the database. Task location types may include engineering construction (such as foundation construction of new buildings, pipeline laying, etc.), third-party construction (construction activities carried out by external partners, such as line laying by telecommunications operators), pipeline network operations (maintenance, repair, and other operations for urban underground pipeline networks), etc.

[0065] After acquiring this data, the map is updated, and various task locations are marked with icons of different shapes and colors. The map display area can default to loading a map view of the company headquarters or the user's permanent residence. This view can be built based on Geographic Information System (GIS) technology and can accurately present geographical location information. During the data loading phase, security risk-related data for the current user is obtained from the backend database or by calling a specific application programming interface (API). This data is preprocessed and categorized for storage to ensure efficient and accurate system access. Finally, the interface is rendered based on the loaded data, visually displaying the distribution of security risks on the map through markers and area highlighting. For example, construction sites are marked with blue triangles, third-party construction sites with green circles, and pipeline work sites with yellow squares, allowing users to clearly distinguish between them.

[0066] When a user clicks on a task location, a pop-up window displays detailed task information for that location. For example, for third-party construction tasks, the pop-up would display the construction address (accurate to the specific street and house number), construction method (e.g., mechanical excavation, open-cut, pipe jacking), construction contact person (including name and phone number), and pipeline supervisor (information on the person responsible for on-site safety supervision). For engineering construction tasks, the pop-up would display information such as the project manager (the manager responsible for the project), construction content (e.g., earthwork excavation, PE welding, wall construction), and hazardous operations (e.g., high-risk operations such as high-altitude work, hot work, etc.). Task information can be obtained from construction plan documents, historical construction records, and real-time monitoring equipment feedback, ensuring the comprehensiveness and accuracy of the information.

[0067] Meanwhile, the pop-up window can also display other quick function controls, such as navigation to the site, on-site inspection, and live stream viewing. Clicking "Navigate to the Site" will directly display real-time route navigation from the user's current location to the task location; clicking "On-site Inspection" will allow users to view the real-time progress of the safety task at the task location; and clicking "View Live Stream" will allow users to view real-time footage from the corresponding real-time monitoring equipment at the task location.

[0068] Step 103: In response to the selection of the "Today's Focus" module, display the to-do items and item information.

[0069] In this embodiment of the invention, if a user selects and clicks the "Today's Focus" module entry on the intelligent security risk map interface, the corresponding data processing flow is initiated. First, a preset intelligent algorithm can be used to filter and analyze massive amounts of work tasks. This intelligent algorithm can comprehensively consider multiple factors, such as task priority (determined based on the task's impact on the company's strategic goals, urgency, etc.), urgency (such as the proximity of the task's deadline), historical data (the handling status and results of similar tasks in the past), etc., to accurately extract the tasks that require the most intervention from numerous tasks as to-do items. For example, for critical project tasks that are about to expire, due to their importance to the company's business progress, the algorithm will give them a higher priority and prioritize their inclusion in the to-do list. After obtaining the to-do data, the interface is updated, displaying the to-do items in a clear list format. Each task includes a brief description (such as "Complete the pipeline leak detection for Project A") and a status indicator (such as not started, in progress, and completed, represented by different colored icons: gray for not started, yellow for in progress, and green for completed).

[0070] When a user clicks on a task, detailed information about the task can be displayed in a pop-up window, a bottom drawer (sliding out), or a sidebar. This includes the specific requirements of the task, relevant attachments (such as reference documents), the person in charge of the task, and their contact information, making it easy for users to fully understand the task details and start working.

[0071] Step 104: In response to the selection operation of the security overview module, display the risk dynamics corresponding to at least two task types and the role performance information corresponding to the user.

[0072] In this embodiment of the invention, when a user clicks on the “Security Overview” module entry on the security risk intelligent map interface, a series of data processing and interface display processes will be triggered to present the risk dynamics corresponding to at least two task types and the user’s corresponding role performance information.

[0073] Specifically, when a user clicks or otherwise selects the "Security Overview" module, this action is captured by the front-end interface's event listener. The front-end then sends a request containing the user's identity information and the module identifier to the back-end server. Upon receiving the request, the back-end server first verifies the user's permissions based on their identity information to ensure the user has the right to access the module's content. For example, a regular employee might only be able to view risk dynamics and job performance information relevant to their work, while a security manager could view more comprehensive data.

[0074] After successful authorization, the backend collects relevant data from multiple data sources. For dynamic risk data, real-time risk information is obtained from the risk monitoring subsystem. This risk information covers different task types, such as indoor, pipeline, and engineering tasks. Taking indoor tasks as an example, data on the quantity and status changes of specific risk items such as "stoves without flameout protection" and "direct-vent water heaters" is collected. Simultaneously, for role performance information, data on the responsibilities of the user's position and the user's actual work performance, such as the number of tasks completed and processing time, are obtained from the personnel management subsystem.

[0075] These dynamic risk data are processed through data analysis algorithms to generate intuitive charts and statistics, such as bar charts showing the risk level distribution of different business segments and line charts showing the trend of the number of risk events over time.

[0076] The collected risk dynamic data for different task types are categorized and organized, and then displayed in an intuitive way on the front-end interface. For example, in the safety overview module, risk dynamics for different task types such as fire safety and equipment safety may be displayed in card format.

[0077] For example, taking indoor task types as an example, the card will display the number of tasks completed yesterday, such as "47 Level 1 hazards rectified," allowing users to understand the resolution status of fire safety risks over a period of time. It will also display information on expiring hazards, such as "555 hazards expiring in 1 day, 763 hazards expiring in 3 days," reminding users to pay attention to risk handling tasks that are about to expire. For high-risk items, specific risk points will be listed in detail, such as "3405 stoves without flameout protection (up 2 from yesterday)" and "2 direct-vent water heaters (no change from yesterday)," enabling users to clearly understand the current serious safety risks. Furthermore, risks can be dynamically color-coded according to their risk level, such as red for high risk, yellow for medium risk, and blue for low risk, allowing users to quickly identify the severity of the risk. Meanwhile, the card can also display risk information for urban residents corresponding to indoor scenarios. For example, basic data such as "550,915 urban residents and 150,416 rural users" are displayed in the usual colors, while specific risk quantities such as "0 unrectified gas mixing hazards" and "10,386 unrectified Level 1 hazards" will be distinguished by color according to the risk level. The number of unrectified Level 1 hazards may be highlighted in red to draw the user's attention.

[0078] Simultaneously, while displaying risk dynamics, the safety overview module will show corresponding role performance information based on the user's role information. User roles are predefined, with different roles corresponding to different responsibilities. For example, the responsibilities of a safety supervisor include overseeing the execution of various safety tasks and coordinating resources to handle major risks; while the responsibilities of a regular safety officer focus more on performing specific safety inspections and hazard rectification tasks. Based on the user's role, relevant information is filtered from the collected performance data for display. Taking a safety officer as an example, the interface may display information such as the type of tasks they are responsible for, task completion progress, and the number of risks handled. For example, "Number of tasks completed yesterday" and "Number of tasks pending today" allow users to clearly understand their work progress. Furthermore, by comparing the user's actual performance with the job requirements, if any deficiencies are found, such as overdue tasks, a prominent reminder (e.g., red font, warning icon) will be displayed to urge the user to fulfill their responsibilities promptly.

[0079] Understandably, this information can be displayed on the interface in appropriate formats such as charts, lists, or dashboards. Users can click on items in charts or lists to view further details. For example, clicking on a bar chart for a specific business segment will bring up risk details for each specific task type within that segment. Furthermore, filtering and sorting functions can be provided, allowing users to filter data based on time range, risk level, and other criteria, and sort by indicators such as task quantity and completion rate. This helps users browse and analyze data more efficiently, thereby gaining a comprehensive understanding of the security risk status and their own work performance across various business scenarios within the enterprise.

[0080] Understandably, risk dynamics and role performance information can be updated in real-time or periodically. For risk dynamic data, updates are made based on real-time feedback from the risk monitoring subsystem to ensure users receive the latest risk information. For role performance information, updates such as task completion status are made in real-time based on user work performance. For example, when a safety officer completes a hazard rectification task, their task completion quantity and status are updated to ensure the accuracy of performance information.

[0081] In summary, in this embodiment of the invention, in response to user login, a smart security risk map interface is displayed. This interface includes at least a "Today's Focus" module, a "Security Check" module, and a "Security Overview" module. In response to selecting the "Security Check" module, task locations and corresponding task information are displayed. In response to selecting the "Today's Focus" module, pending tasks and their information are displayed. In response to selecting the "Security Overview" module, risk dynamics corresponding to at least two task types and the user's corresponding role performance information are displayed. Thus, by integrating the "Today's Focus" module, the "Security Check" module, and the "Security Overview" module into the smart security risk map interface, centralized management of security information is achieved. Simultaneously, selecting the "Security Check" module displays task locations and information, which helps to rationally allocate work routes and resources, improving the efficiency of security checks. Selecting the "Today's Focus" module displays pending tasks and information, ensuring that important matters are not overlooked and guaranteeing the timeliness and effectiveness of security work. Selecting the "Security Overview" module presents risk dynamics for multiple task types and user role performance information, providing a comprehensive overview of the security situation. Furthermore, the embodiments of the present invention improve the efficiency of information transmission and processing, strengthen risk monitoring and performance management, and help to build a more complete and efficient security management system.

[0082] Optionally, step 102 may include the following steps:

[0083] Step 201: Display the task map interface; the task map interface includes at least two task locations.

[0084] In this embodiment of the invention, a task map interface is displayed in response to the selection of the security check module. The task map interface can be a virtual map display area generated based on Geographic Information System (GIS) technology, used to intuitively present geographical location information related to the security task.

[0085] Specifically, the system reads the coordinates and identifiers of at least two pre-configured task points from the database. These task points represent the specific locations of tasks such as engineering construction, third-party construction, and pipeline operations in the actual scenario. For example, in an engineering construction scenario, task points could be location markers for key areas such as various construction sites; in a pipeline operation scenario, task points might be location points for various pipeline maintenance and laying operations. These task points are then marked on the map interface using specific graphic symbols (such as circles and squares) to form a task map interface, allowing users to clearly see the geographical distribution of tasks.

[0086] Step 202: In response to the selection operation of the target point among the at least two task points, obtain the task information corresponding to the task point based on the data source corresponding to the task type of the target point, and display the task information in the form of a pop-up window.

[0087] In this embodiment of the invention, in response to a user's selection of a target point from at least two task points, the selection operation can be a trigger action by the user on a specific task point through mouse clicks, touchscreen touch, or other means. Based on the data source corresponding to the task type of the target point, the system obtains the task information corresponding to the task point. Different task types correspond to different data sources. Specifically, the data source corresponding to the third-party construction task type can be the pipeline network intelligent data system. When the target point is a third-party construction task point, the system obtains relevant information from the pipeline network intelligent data system. For example, the detailed information of the third-party construction may include the construction address, i.e., a description of the specific geographical location of the construction; the construction method, such as pipe jacking or excavation; the construction party's contact person, for easy communication and coordination when needed; and the guardian's information, indicating the guardian's responsibility for safety supervision during the construction process.

[0088] The data source for the types of engineering construction tasks can be the engineering digitalization system. If the target location is an engineering construction task location, task information is extracted from the engineering digitalization system, including project manager information (the project manager is responsible for the overall management and coordination of the project); construction content, such as "gas pipeline laying, valve installation, etc."; and hazardous operation information, such as whether there are hazardous operation types such as high-altitude operations and hot work, and related safety measures.

[0089] After obtaining the task information, it is displayed in a pop-up window. This pop-up window appears on the interface after the user selects a target location, typically positioned close to the selected location for easy viewing. The information within the pop-up is arranged according to a specific format and logic; for example, the task type is displayed first, followed by detailed information such as the construction address and construction method. This intuitive pop-up display allows users to quickly obtain comprehensive information about the target location without switching interfaces or performing complex operations, enabling timely decision-making and appropriate measures, effectively improving the efficiency and accuracy of safety management.

[0090] For example, a schematic diagram of the task map interface can be as follows: Figure 2 As shown.

[0091] In this embodiment of the invention, task locations are displayed intuitively through a task map interface. After the user selects a target location, detailed task information is obtained from the corresponding data source according to the task type and presented in a pop-up window. This enables the rapid acquisition and visualization of security task information, which helps to improve the timeliness and effectiveness of security management.

[0092] Optionally, step 103 may include the following steps:

[0093] Step 301: Display today's highlights.

[0094] In this embodiment of the invention, the "Today's Focus" interface can serve as a specific functional view, used to present users with an interactive window showcasing key security matters for the day.

[0095] Step 302: Based on preset filtering rules, filter pending items from the processing items corresponding to the user.

[0096] In this embodiment of the invention, pending tasks are filtered from the user's corresponding processing tasks based on preset filtering rules. These preset filtering rules are a set of logical conditions set according to the business needs and priorities of safety management. For example, preset filtering rules may include the urgency of the task (e.g., prioritizing high-urgency tasks), the task type (e.g., prioritizing tasks involving significant safety hazards), and time limits (e.g., prioritizing tasks nearing their deadline). The user's corresponding processing tasks refer to all safety tasks and affairs related to that user's responsibilities. These tasks are stored in a database and associated with the user's account. The processing tasks in the database are traversed and matched according to the preset filtering rules. Based on the urgency, task type, and time limit of the processing task, the processing task with the highest urgency, the task type being a significant safety risk, and the difference between the deadline and the current time being less than a preset difference can be selected as the displayed pending tasks. For example, taking a gas company's safety management system as an example, assuming the preset rule is "tasks with high urgency and less than 24 hours remaining processing time," tasks meeting this condition are filtered from all the user's (e.g., safety inspector's) processing tasks as pending tasks. For example, if a gas pipeline leak hazard needs to be rectified and its urgency level is marked as high, and there are only 12 hours left before the deadline for rectification, then this matter will be selected as a pending matter.

[0097] Step 303: In response to the selection operation of any of the to-do items, display the item information corresponding to the to-do item.

[0098] In this embodiment of the invention, in response to a user's selection of any to-do item (which can be a trigger action performed by the user through mouse click, touchscreen, or other means on an item in the to-do list), the system will display the item information corresponding to that to-do item after detecting the selection operation.

[0099] Item information refers to detailed data and descriptions related to pending tasks, including but not limited to the specific content of the task, its location, personnel involved, processing requirements, and relevant attachments. For example, for the aforementioned gas pipeline leak hazard rectification task, the item information might include the specific location of the leak (e.g., "gas pipeline valve at No. XX, XX Street"), preliminary leak detection data, information of the technical personnel responsible for rectification, specific rectification steps, and safety precautions. Item information can be displayed on the interface in various formats, such as text lists, tables, and images. For example, leak detection data can be displayed in table format, rectification steps can be described in text format, and download links for relevant detection reports can be provided. For instance, the "Today's Highlights" interface could look like this: Figure 3 As shown.

[0100] In this embodiment of the invention, a key task entry point is provided to the user by displaying a "Today's Focus" interface. Preset filtering rules are used to accurately filter tasks from the user's processing tasks. Finally, detailed task information is displayed when the user selects a task, thereby helping the user to efficiently handle important security tasks of the day and improve the timeliness and effectiveness of security management.

[0101] Optionally, step 104 may include the following steps:

[0102] Step 401: Display the security overview interface; the security overview interface includes type controls corresponding to at least two task types and role performance controls.

[0103] In this embodiment of the invention, the security overview interface can be a comprehensive display platform that allows users to fully grasp the security risk situation and their own role performance.

[0104] The safety overview interface includes type controls for at least two task types and role performance controls. Task types can be categorized according to the business scope of safety management. For example, in the field of gas safety management, task types can include indoor, pipeline, and engineering. The type control for each task type is an interactive element on the interface used to trigger the display of relevant information for that task type, usually in the form of a button, icon, or label. For example, the type control for the indoor task type might be a button with an indoor icon and the text "Indoor".

[0105] The role fulfillment control is an interactive element used to trigger the display of user role fulfillment information. User roles are predefined and divided according to the user's responsibilities and permissions in security management, such as Security Officer, Security Administrator, Inspector, Emergency Response Officer, etc. The role fulfillment control may be presented as a button with the words "Role Fulfillment".

[0106] Step 402: In response to the selection operation of the type control corresponding to any of the task types, display the risk dynamics corresponding to the task type; the risk dynamics include yesterday's sales items, near-expiration risk warnings, and high-risk items corresponding to the risk type.

[0107] In this embodiment of the invention, in response to a user's selection of a type control corresponding to any task type, an operation is performed to display the dynamic risk corresponding to the task type. The selection operation can be triggered by the user through mouse clicks, touchscreen touches, or other means.

[0108] Risk dynamics can include yesterday's completed items, near-expiration hazard warnings, and high-risk matters corresponding to risk types. Yesterday's completed items refer to safety risk projects that were rectified or handled the previous day. By displaying yesterday's completed items, users can understand the results of safety work over a period of time. For example, in the gas facility inspection task type, yesterday's completed items might include "Completed rectification of the gas pipeline valve leakage hazard in XX community".

[0109] A near-expiration hazard warning is a reminder of safety hazards that are approaching their rectification deadline but have not yet been addressed. The warning is based on the rectification deadline and the current time; hazards nearing their deadline are identified as nearing their expiration and warned accordingly. For example, a near-expiration hazard warning might display "555 near-expiration hazards, 743 nearing 3-day expiration."

[0110] High-risk items refer to those that pose a serious threat to safety. Various safety items can be assessed using a risk assessment model to determine their risk level, and high-risk items will be displayed separately. For example, a serious gas pipeline leak in a certain area, which could potentially lead to a major safety accident such as an explosion, would be classified as a high-risk item. For instance, high-risk items might display "3405 stoves without flameout protection (down 2 from yesterday), 2 direct-vent water heaters (no change from yesterday), 3576 rubber hoses (up 34 from yesterday), and 968 expired meters (no change from yesterday)."

[0111] For example, Figure 4 This diagram illustrates the dynamic risk profile corresponding to indoor task types within a comprehensive security overview interface.

[0112] Step 403: In response to the selection operation of the role performance control, display the role performance information corresponding to the role; the role performance information includes role points and personal ability radar chart.

[0113] In this embodiment of the invention, in response to the user's selection of the role performance control, the corresponding role performance information is displayed. The role performance information includes role points and a personal ability radar chart.

[0114] Role points are quantified scores based on a user's performance and task completion in safety management. For example, a user will earn points for successfully eliminating a hazard during a hazard inspection; timely completion of inspection tasks will also earn points. Conversely, points will be deducted for improper actions during a hazard inspection. Understandably, the point calculation rules can be set according to actual business needs, and role points can directly reflect a user's work enthusiasm and contribution.

[0115] A personal capability radar chart is a tool that graphically displays a user's multifaceted capabilities. Each dimension of the radar chart represents a different capability indicator, such as pipeline security, indoor security, legal and regulatory compliance, plant security, and general energy security. The value of each capability indicator is evaluated and assigned based on the user's performance in actual work. The radar chart clearly shows the user's strengths and weaknesses in different capabilities. For example, a security administrator might have a high pipeline security indicator value but a relatively low legal and regulatory compliance indicator value; the radar chart would visually represent this difference.

[0116] In this embodiment of the invention, a comprehensive security overview interface, along with its included task type controls and role performance controls, provides users with an entry point to fully access security risk information and their own performance status. By selecting different controls, users can accurately view corresponding risk dynamics and role performance information, helping them to promptly grasp the security situation, assess their own work performance, and thus improve the efficiency and level of security management.

[0117] Optionally, embodiments of the present invention may further include the following steps:

[0118] Step 501: In response to the creation of the security task, generate a list of recommended personnel according to the preset allocation rules.

[0119] In this embodiment of the invention, when a new safety task is created, this event triggers a task allocation process based on preset allocation rules. The creation of a safety task may stem from various situations, such as a hazard identification system detecting a new pipeline leak hazard, or a user reporting an equipment malfunction. The preset allocation rules can be a predefined logical system that comprehensively considers factors such as a quantitative assessment system for task difficulty / level and intelligent matching logic between personnel capabilities and tasks.

[0120] For example, in a quantitative assessment system for task difficulty / level, safety tasks are modeled using multi-dimensional indicators. For risk level, scores are assigned based on hazard type (e.g., pipeline leaks, equipment malfunctions), impact range (number of surrounding households, commercial density), and urgency (e.g., immediate rectification / rectification within a specified timeframe), combined with the "Gas Industry Risk Classification Standard." For instance, a major hazard is assigned 100 points, and a general hazard is assigned 30 points. Regarding technical complexity, the required professional skills (e.g., high-pressure operation qualifications for live-line welding), equipment requirements (e.g., drone inspections require operating certificates), and the number of collaborating departments (more than 3 departments indicate complexity) are considered. Time pressure is assessed by setting task deadlines (e.g., major hazard must be completed within 4 hours) and the ratio of remaining time to the standard deadline (e.g., urgency level is increased if remaining time < 50%). Machine learning models (e.g., random forest algorithms) integrate these indicators to automatically generate task level labels (urgent / important / general) and match them with corresponding personnel capability requirements. For example, red tasks (urgent and critical) such as pipeline rupture and leakage need to be matched with a repair team leader who has emergency response qualifications and more than 3 years of experience; yellow tasks (general hidden dangers) such as abnormal user safety inspections can be assigned to certified safety inspectors.

[0121] Based on preset allocation rules, a recommended personnel list is generated. This process is based on a personnel competency tagging system, which covers multiple aspects of information, including basic qualifications, experience, and real-time status. Basic qualifications include personnel certification status (e.g., high-voltage electrician certificate, confined space operation certificate), training records (e.g., number of emergency drill participations), and historical performance (task completion rate, overtime rate). The experience dimension uses historical task data to mark personnel's areas of expertise (e.g., pipeline maintenance, indoor safety inspection) and the risk levels they have handled (e.g., whether they have participated in the rectification of major hidden dangers). Real-time status is obtained by connecting to the attendance system to obtain personnel's on-duty status and current task saturation (e.g., number of assigned tasks / number of tasks available).

[0122] The intelligent matching algorithm performs hard-condition filtering, automatically comparing the required qualifications for the task (such as the requirement to hold a gas pipeline worker's certificate) with the qualifications of the personnel, and excluding those who do not meet the conditions. Then, it generates a recommended personnel list by weighting the results according to "qualification matching degree (60%) + experience matching degree (30%) + current saturation (10%)". For example, for a high-pressure pipeline repair task, it can prioritize recommending personnel who hold a high-pressure operation certificate, have experience in similar pipeline repairs, and currently have ≤2 tasks. At the same time, it also has a dynamic adjustment mechanism. If a recommended personnel refuses a task or fails to accept the order within the time limit, it automatically assigns the task to the next person in the ranking, and records the reason for refusal (such as the personnel is handling a more urgent task).

[0123] Step 502: Based on the list of recommended personnel, display the task details and navigation information corresponding to the security task in a pop-up window on the task map interface of each recommended personnel.

[0124] In this embodiment of the invention, after generating the list of recommended personnel, the task details and navigation information corresponding to the safety task can be displayed in a pop-up window on the task map interface of each recommended personnel. The task details can include the specific content, location, level, and technical requirements of the task. For example, for a task involving a pipeline leak hazard, the task details will clearly specify the exact location of the leak (e.g., the gas pipeline valve at No. XX, XX Street), the risk level (e.g., a major hazard), and the required professional skills (e.g., live welding). The navigation information provides route guidance from the recommended personnel's current location to the task's location, helping them quickly reach the task site.

[0125] Because the task map interface is a visualization platform built on a Geographic Information System (GIS), recommenders can intuitively see the distribution of task locations and related navigation routes on this interface. Pop-ups will appear prominently on the task map interface to ensure that recommenders can notice the emergence of new tasks in a timely manner. For example, when a certified security inspector views the task map interface, if a yellow task (user security check anomaly) under their responsibility is created, and the generated recommender list includes the security inspector, then the task details and navigation information will be displayed in a pop-up window on their task map interface, allowing them to understand the task status and proceed with the task promptly.

[0126] After accepting an order, the recommended personnel can update the task progress on the smart map in real time. The smart map interface provides an intuitive operation entry point, allowing recommended personnel to select different stages such as "Arrived on Site," "Started Processing," and "Completed" for updates based on the actual situation. Simultaneously, recommended personnel also need to upload real-time data, such as inspection reports and rectification photos. This data is crucial for task tracking and evaluation. For example, in a gas pipeline hazard rectification task, after the maintenance personnel arrive on site, they first update the status to "Arrived on Site" on the smart map, then begin maintenance work. During the maintenance process, they upload pipeline inspection data and photos of the maintenance process. After the maintenance is completed, they update the status to "Completed" and upload the final rectification report.

[0127] Understandably, for similar tasks, such as area security checks, batch processing can be performed according to area divisions. Based on preset area division rules, multiple security check tasks within the same area are automatically packaged and assigned to the corresponding teams, such as the XX Security Check Team.

[0128] After tasks are assigned, team leaders can operate on the smart map interface. The smart map interface displays each task location in an intuitive graphical way, and team leaders can flexibly adjust the division of labor among team members by dragging and dropping task points. For example, if a team leader finds that a task location is close to a team member, or that team member is more proficient in handling this type of security check task, the team leader can drag and drop the task location to assign it to that team member, improving task execution efficiency.

[0129] Meanwhile, administrators have the authority to manually intervene in task allocation. On the intelligent map interface, administrators can intuitively see the distribution of all tasks and the task allocation status of personnel. If a task times out, or if a more experienced person is deemed more suitable to handle the task, the administrator can manually reassign the task. For example, if a gas pipeline repair task is nearing its deadline, but the current person in charge cannot complete it on time due to unforeseen circumstances, the administrator can find a more suitable person on the map and assign the task to them. Simultaneously, this adjustment is automatically recorded in the task log for later querying and statistical analysis. The task log will record detailed information such as the time of the adjustment, the reason, the tasks involved, and the personnel.

[0130] When faced with complex tasks, such as cross-regional pipeline renovation, the system automatically initiates a temporary team formation process based on personnel competency tags. These tags encompass various abilities and characteristics of individuals. By analyzing these tags, suitable members from different departments are recommended based on the task requirements. According to the specific requirements of the task, personnel with relevant professional skills, rich experience, and low current workload are selected to form temporary collaborative teams. The areas each member is responsible for are marked on the intelligent map interface, facilitating understanding of each other's work scope and responsibilities and promoting collaborative communication. For example, in a cross-regional pipeline renovation task, personnel from the engineering, technical, and safety supervision departments are recommended to form temporary teams, and the pipeline renovation section each member is responsible for is clearly marked on the map.

[0131] In this embodiment of the invention, a list of recommended personnel is generated according to preset rules, and then the task details and navigation information are displayed in a pop-up window on the task map interface of the recommended personnel. This enables intelligent allocation and rapid notification of security tasks, which helps to improve the processing efficiency and timeliness of security tasks.

[0132] Optionally, embodiments of the present invention may further include the following steps:

[0133] Step 601: In response to the selection operation of the target layer switching control among at least two layer switching controls in the task map interface, display the target task point corresponding to the target layer switching control in the task map interface.

[0134] In this embodiment of the invention, at least two layer switching controls are provided in the task map interface. These layer switching controls are key elements for user interaction on the interface, and are typically presented as buttons, icons, or drop-down menus. Each layer switching control corresponds to a specific task scenario layer, covering different types of tasks such as engineering construction, third-party construction, and pipeline operations. For example, an engineering construction layer switching control might be represented by a button with a building icon and the text "Engineering Construction"; a third-party construction layer switching control might be a button with an excavator icon and the text "Third-Party Construction"; and a pipeline operation layer switching control might be identified by a pipe icon and the text "Pipeline Operation".

[0135] When a user selects a target layer using the switching control in the task map interface, this selection can be triggered by a mouse click, touchscreen, or other methods. The system identifies the selected target layer switching control and then determines the corresponding target task scene layer. For example, if the user clicks a layer switching control with the words "Third-Party Construction," the target layer is clearly the third-party construction layer. After determining the target task scene layer, the system retrieves the target task location data corresponding to that layer from the database. The database stores task location information for each task scene, including the geographical coordinates (latitude and longitude), a detailed description of the task, and the task status. For example, for a third-party construction task scene, the database records the coordinates of each third-party construction task location, as well as detailed information such as the construction address, construction method, and contact person for the construction party.

[0136] Based on the type of the target task scene layer, target task location data that meets the criteria is filtered from the database. During the filtering process, some preset rules may be used for filtering and sorting. For example, sorting may be based on the urgency of the task locations, creation time, etc., to make the data more organized when displayed on the map. At the same time, the acquired data is formatted to make it suitable for display on the task map interface.

[0137] After data processing, the target task locations are displayed on the task map interface. Target task locations are typically represented by specific icons or markers on the map, with different colors or shapes used to distinguish different task scenarios. For example, construction task locations are represented by red building icons, third-party construction task locations by blue excavator icons, and pipeline operation task locations by green pipe icons. When a user switches to a target layer, only the target task locations corresponding to that layer are displayed on the map; task locations from other layers are hidden, allowing the user to focus more on the task distribution within a specific task scenario. For example, in a gas safety management system, when a user selects the "Pipeline Operations" layer switch control, the task map interface displays all task locations related to pipeline operations, such as pipeline inspection points and pipeline maintenance points. Users can intuitively understand the distribution and progress of pipeline operations through these locations.

[0138] In this embodiment of the invention, the target task scene layer is determined by the user's selection operation of the layer switching control. Then, the corresponding target task point data is obtained from the database and processed. Finally, these target task points are displayed on the task map interface, enabling the user to flexibly view the task distribution under different task scenarios according to their needs, thereby improving the efficiency and relevance of information acquisition.

[0139] In one possible implementation, the security risk intelligent map interface may also include an annual plan interface, which can be triggered by clicking the annual plan space in the security overview module. The annual plan interface can be used to display annual tasks and may include filter tags such as "Year," "Progress," and "Extended," allowing users to filter and view tasks by clicking these tags. The task list area will detail the name, start and end dates, and completion progress of each annual task, visually displaying the completion percentage in the form of a progress bar. For example, a user's indoor security task will show that its progress bar has filled to the corresponding percentage, with a note indicating 100% completion (if completed). Data statistics will be presented in chart form, such as pie charts showing the distribution of planning categories, business types, and problem types. Users can scroll through the interface to view statistical charts from different dimensions.

[0140] Meanwhile, the bottom of the annual plan interface may display buttons such as "Data Design," "Project Planning," and "Relevant to Me." Clicking "Project Planning" may take users to a more detailed task planning interface, where they can view the specific planning content and timeline for each task. For example, the annual plan interface might look like this: Figure 5 As shown.

[0141] Furthermore, task completion progress data can be updated in real time or periodically. When the actual completion status of annual tasks changes, such as a task changing from in progress to completed, the progress bar and completion percentage are automatically updated, and relevant statistical charts are updated simultaneously. If some annual tasks are delayed, reminders are sent according to preset reminder rules. For example, for tasks nearing their end date but with low progress, a reminder notification is sent to the relevant person in charge. The notification can be sent via app push, SMS, etc., reminding the person in charge to handle the task in a timely manner and ensure that the annual plan is completed on time.

[0142] Figure 6 This is a schematic diagram of the structure of a security intelligent map display device provided in an embodiment of the present invention, as shown below. Figure 6 As shown, the device may specifically include:

[0143] The first display module 701 is used to display a security risk intelligent map interface in response to user login; the security risk intelligent map interface includes at least a today's focus module, a security check module, and a security overview module.

[0144] The second display module 702 is used to display the task location and the task information corresponding to the task location in response to the selection operation of the security inspection module.

[0145] The third display module 703 is used to display the to-do items and item information in response to the selection operation of the "Today's Focus" module;

[0146] The fourth display module 704 is used to display the risk dynamics corresponding to at least two task types and the role performance information corresponding to the user in response to the selection operation of the security overview module.

[0147] Optionally, the second display module 702 includes:

[0148] The first display submodule is used to display the task map interface; the task map interface includes at least two task points.

[0149] The second display submodule is used to respond to the selection operation of the target point among the at least two task points, obtain the task information corresponding to the task point based on the data source corresponding to the task type of the target point, and display the task information in the form of a pop-up window.

[0150] Optionally, the third display module 703 includes:

[0151] The third display submodule is used to display today's key points.

[0152] The first filtering module is used to filter pending items from the user's corresponding processing items based on preset filtering rules;

[0153] The fourth display submodule is used to display the item information corresponding to any of the to-do items in response to the selection operation of any of the to-do items.

[0154] Optionally, the fourth display module 704 includes:

[0155] The fifth display submodule is used to display the security overview interface; the security overview interface includes type controls corresponding to at least two task types and role performance controls;

[0156] The sixth display submodule is used to display the risk dynamics corresponding to the task type in response to the selection operation of the type control corresponding to any of the task types; the risk dynamics include yesterday's sales items, near-expiration risk warnings, and high-risk items corresponding to the risk type;

[0157] The seventh display submodule is used to display the role performance information corresponding to the role in response to the selection operation of the role performance control; the role performance information includes role points and personal ability radar chart.

[0158] Optionally, the device further includes:

[0159] The first generation module is used to generate a list of recommended personnel in response to the creation of security tasks, based on preset allocation rules.

[0160] The fifth display module is used to display the task details and navigation information corresponding to the security task in a pop-up window on the task map interface of each recommended person, based on the recommended personnel list.

[0161] Optionally, the device further includes:

[0162] The sixth display module is used to display the target task point corresponding to the target layer switching control in the task map interface in response to the selection operation of the target layer switching control among at least two layer switching controls in the task map interface.

[0163] The present invention also provides an electronic device, see [link to relevant documentation]. Figure 7 It includes: a processor 801, a memory 802, and a computer program 8021 stored in the memory and executable on the processor. When the processor executes the program, it implements the method for displaying the security smart map of the foregoing embodiment.

[0164] The present invention also provides a readable storage medium, wherein when the instructions in the storage medium are executed by the processor of an electronic device, the electronic device is able to execute the security smart map display method of the foregoing embodiments.

[0165] As the device embodiment is basically similar to the method embodiment, the description is relatively simple, and relevant parts can be found in the description of the method embodiment.

[0166] The algorithms and displays provided herein are not inherently related to any particular computer, virtual system, or other device. Various general-purpose systems can also be used in conjunction with the teachings herein. The required structure for constructing such systems is apparent from the above description. Furthermore, this invention is not directed to any particular programming language. It should be understood that the contents of the invention described herein can be implemented using various programming languages, and the above description of specific languages ​​is for the purpose of disclosing the best mode of implementation of the invention.

[0167] Numerous specific details are set forth in the specification provided herein. However, it will be understood that embodiments of the invention may be practiced without these specific details. In some instances, well-known methods, structures, and techniques have not been shown in detail so as not to obscure the understanding of this specification.

[0168] Similarly, it should be understood that, in order to simplify the invention and aid in understanding one or more of the various inventive aspects, in the above description of exemplary embodiments of the invention, various features of the invention are sometimes grouped together in a single embodiment, figure, or description thereof. However, this disclosure should not be construed as reflecting an intention that the claimed invention requires more features than are expressly recited in each claim. Rather, as reflected in the following claims, inventive aspects lie in fewer than all features of a single foregoing disclosed embodiment. Therefore, the claims following the detailed description are hereby expressly incorporated into this detailed description, wherein each claim itself is a separate embodiment of the invention.

[0169] Those skilled in the art will understand that modules in the device of the embodiments can be adaptively changed and placed in one or more devices different from that embodiment. Modules, units, or components in the embodiments can be combined into a single module, unit, or component, and further, they can be divided into multiple sub-modules, sub-units, or sub-components. Except where at least some of such features and / or processes or units are mutually exclusive, any combination can be used to combine all features disclosed in this specification (including the accompanying claims, abstract, and drawings) and all processes or units of any method or device so disclosed. Unless expressly stated otherwise, each feature disclosed in this specification (including the accompanying claims, abstract, and drawings) may be replaced by an alternative feature that serves the same, equivalent, or similar purpose.

[0170] The various component embodiments of the present invention can be implemented in hardware, or as software modules running on one or more processors, or a combination thereof. Those skilled in the art will understand that microprocessors or digital signal processors (DSPs) can be used in practice to implement some or all of the functions of some or all of the components in the sorting device according to the present invention. The present invention can also be implemented as a device or apparatus program for performing part or all of the methods described herein. Such a program implementing the present invention can be stored on a computer-readable medium, or can be in the form of one or more signals. Such signals can be downloaded from an Internet website, provided on a carrier signal, or provided in any other form.

[0171] It should be noted that the above embodiments are illustrative of the invention and not restrictive, and that those skilled in the art can devise alternative embodiments without departing from the scope of the appended claims. In the claims, any reference signs placed between parentheses should not be construed as limiting the claims. The word "comprising" does not exclude the presence of elements or steps not listed in the claims. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. The invention can be implemented by means of hardware comprising several different elements and by means of a suitably programmed computer. In the unit claims enumerating several means, several of these means may be embodied by the same item of hardware. The use of the words first, second, and third, etc., does not indicate any order. These words can be interpreted as names.

[0172] Those skilled in the art will understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0173] It should be noted that all actions involving the acquisition of signals, information, or data in this application are carried out in compliance with the relevant data protection laws and policies of the country where the application is located, and with the authorization granted by the owner of the relevant device.

[0174] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

[0175] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. A display method of a secure intelligent map, characterized by, The method comprises: in response to user login, displaying a security risk intelligent map interface; the security risk intelligent map interface comprises at least a daily focus module, a security check module and a security overview module; in response to a selection operation on the security check module, displaying a task point and task information corresponding to the task point; in response to a selection operation on the daily focus module, displaying a to-do list and item information; in response to a selection operation on the security overview module, displaying risk dynamics corresponding to at least two task types and role performance information corresponding to the user.

2. The method of claim 1, wherein, The display of the task point and the task information corresponding to the task point comprises: displaying a task map interface; the task map interface comprises at least two task points; in response to a selection operation on a target point in the at least two task points, based on a data source corresponding to a task type of the target point, obtaining task information corresponding to the task point, and displaying the task information in the form of a pop-up window.

3. The method of claim 1, wherein, The display of the to-do list and the item information comprises: displaying a daily focus interface; based on a preset filtering rule, filtering to-do items from the user's processing items; in response to a selection operation on any of the to-do items, displaying item information corresponding to the to-do item.

4. The method of claim 1, wherein, The display of the risk dynamics corresponding to the at least two task types and the role performance information corresponding to the user comprises: displaying a security overview interface; the security overview interface comprises at least two type controls corresponding to the task types and a role performance control; in response to a selection operation on a type control corresponding to any of the task types, displaying risk dynamics corresponding to the task type; the risk dynamics comprise yesterday's sales items, near-term hidden danger warnings and high-risk items corresponding to the risk type; in response to a selection operation on the role performance control, displaying role performance information corresponding to the role; the role performance information comprises role points and a personal ability radar chart.

5. The method of claim 4, wherein, The method further comprises: in response to the creation of a security task, generating a recommended personnel list according to a preset allocation rule; according to the recommended personnel list, displaying task details and navigation information corresponding to the security task in the form of a pop-up window on the task map interface of each recommended personnel.

6. The method of claim 2, wherein, The method further comprises: in response to a selection operation on a target layer switching control in at least two layer switching controls in the task map interface, displaying a target task point corresponding to the target layer switching control in the task map interface.

7. A display device for a secure intelligent map, characterized by The device comprises: a first display module for displaying a security risk intelligent map interface in response to user login; the security risk intelligent map interface comprises at least a daily focus module, a security check module and a security overview module; a second display module for displaying a task point and task information corresponding to the task point in response to a selection operation on the security check module; a third display module for displaying a to-do list and item information in response to a selection operation on the daily focus module; A fourth display module is configured to display risk dynamics corresponding to at least two task types and role performance information corresponding to the user in response to a selection operation on the security overview module.

8. The apparatus of claim 7, wherein, The second display module comprises: A first display sub-module is configured to display a task map interface; the task map interface comprises at least two task points; A second display sub-module is configured to acquire task information corresponding to a target point in response to a selection operation on the target point among the at least two task points, and display the task information in the form of a pop-up window based on a data source corresponding to a task type of the target point.

9. An electronic device, comprising: comprise: A processor, a memory, and a computer program stored in the memory and executable on the processor, and the processor executes the program to implement the display method of the security intelligent map according to any one of claims 1-6.

10. A readable storage medium, characterized by, When the instructions in the storage medium are executed by the processor of the electronic device, the electronic device can execute the display method of the security intelligent map according to any one of claims 1-6.