Employee full-scene interaction method and device, equipment and medium

By integrating the work and life data of corporate employees and dynamically displaying the timeline and processing modules, the management complexity problem caused by data dispersion is solved, and an efficient and intelligent interactive experience is achieved.

CN120653158APending Publication Date: 2025-09-16SHENZHEN XINDELA INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510609789.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

The work and life data of corporate employees are scattered across different systems and difficult to integrate, resulting in complex data management, inefficient user operations, and poor interactive experience. Traditional tools lack intelligent features and cannot provide personalized services.

Method used

By integrating work and life data, dynamically displaying the timeline and processing module, adjusting and updating in response to operation instructions, introducing an intelligent adjustment mechanism, optimizing the positional relationship between the processing module and the time interval unit, and providing personalized services.

Benefits of technology

It improves the efficiency of employees' work and life management, simplifies the operating process, increases the flexibility and intuitiveness of the interface, proactively responds to user needs, effectively utilizes data, and improves the interactive experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The method is mainly applied to the technical field of electronic information. The invention discloses an employee full-scene interaction method and device, equipment and a medium, and the method comprises the steps: responding to a first request containing employee information, displaying a first interface, and displaying a time axis which is composed of a plurality of time interval units; acquiring processing item data from the schedule of the employees, converting the processing item data into modules and distributing the modules to a target time interval unit; adjusting the processing item module according to the operation instruction and updating the time shaft; and if the module which does not accord with the preset rule is detected, adjusting the position relationship between the module and the time interval unit based on the rule, and determining the optimized time axis. By integrating work and life data, the interaction experience is optimized, and the overall management efficiency of the user is improved.
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Description

Technical Field

[0001] The present invention relates to the field of electronic information technology, and in particular to a method, device, equipment and medium for full-scenario employee interaction. Background Art

[0002] With the advancement of technology, employees generate vast amounts of data in their work and personal lives, including attendance time, payroll cycles, work schedules, meeting arrangements, and travel plans. However, this data is currently scattered across disparate systems and platforms, creating data silos. For example, attendance records from a timekeeping system, payroll cycles from payroll software, and work schedules in employees' personal electronic calendars are all independent and difficult to integrate and leverage effectively. This fragmented data not only increases the complexity of enterprise data management but also makes it difficult for employees to gain a comprehensive and systematic understanding of their work and life. Consequently, companies are unable to tap into the potential value of this data, provide employees with accurate work scheduling recommendations, or optimize their human resources management processes.

[0003] However, traditional enterprise employee work and life management tools have significant limitations in interactive design. They feature fixed interface layouts and cumbersome workflows. Routine operations like adjusting schedules and adding tasks are complex, requiring employees to spend significant time and effort learning and adapting, significantly limiting user efficiency and convenience. Furthermore, most of these tools can only execute simple, pre-set commands and lack intelligent features. They are unable to analyze user behavior patterns and historical data to provide personalized services, making it difficult to proactively respond to user needs. This results in ineffective data utilization, low user operation efficiency, and a poor interactive experience. Summary of the Invention

[0004] The present invention provides an employee full-scenario interaction method, device, equipment and medium, which improves the user's overall work and life management efficiency by integrating work and life data and optimizing the interaction experience.

[0005] The present invention provides an employee full-scenario interaction method, the method comprising: In response to a first request including employee information, displaying a first interface and presenting a timeline in the first interface, the timeline including a plurality of time interval units at time intervals; After acquiring the processing item data from each schedule table corresponding to the employee information and converting them into processing item modules, each processing item module is assigned to a target time interval unit; In response to an operation instruction for the processing item module, adjusting the target processing item module and updating the timeline; When it is detected that the updated timeline has a processing item module that does not comply with the preset adjustment rules, the positional relationship between the target processing item module and the time interval unit to which it belongs is adjusted based on the preset adjustment rules to determine the optimized timeline.

[0006] Optionally, the employee full-scenario interaction method further includes: In response to the second request for triggering a new item, displaying a second interface, the second interface including at least a first information input area and a second information input area; In response to an input instruction to the first information input area, determining a type of processing matter; In response to an input instruction to the second information input area, the input information is acquired through the second information input area and saved as the matter information of the processing matter, and then the first interface is displayed; Based on the type of the processing matter and the matter information, a new processing matter module is generated and displayed on the first interface.

[0007] Optionally, the first interface includes a first area for displaying the timeline, and a second area for displaying the processing matter module; The step of adjusting the target processing item module and updating the timeline in response to the operation instruction for the processing item module includes: In response to an edit operation instruction for a target processing item module in the second area, displaying a first page in the first interface, the first page including at least a first information display area and a second information display area; In response to an edit instruction for the first information display area, modify the information in the first information display area, and use the modified information in the first information display area as the type of the processing matter, or, In response to an edit instruction for the second information display area, modify the information in the second information display area, and use the modified information in the second information display area as the matter information of the processing matter; Based on the type of the processing item and the item information, the target processing item module is updated.

[0008] Optionally, the time interval unit is a card-type information container, and the processing item module is a draggable information card; The step of adjusting the target processing item module and updating the timeline in response to the operation instruction for the processing item module includes: In response to a move operation instruction for the processing item module, the selected information card is moved to a target card-type information container or the second area; When the target card-type information container contains multiple information cards, all the information cards in the target card-type information container are folded, and a label corresponding to each of the information cards is generated and then each of the labels is displayed in the target card-type information container; When a selection operation instruction for a target tag is detected, an information card corresponding to the target tag is displayed.

[0009] Optionally, the time axis is a one-dimensional coordinate axis, and the one-dimensional coordinate axis is divided into a plurality of time interval units of the same length, and each of the time interval units corresponds to a unique time interval; The employee full-scenario interaction method further includes: In response to an operation instruction for a cursor movable on the one-dimensional coordinate axis, moving the cursor to a target time interval; Taking the current coordinate point of the cursor as the first interval point of a new time interval, expanding and generating a new time interval unit, and updating the scale range of the one-dimensional coordinate axis; Reassign the processing item modules to the corresponding time interval units according to the updated scale range of the one-dimensional coordinate axis.

[0010] Optionally, the preset adjustment rule includes a priority matching rule; When it is detected that the updated timeline has a processing item module that does not comply with the preset adjustment rule, adjusting the positional relationship between the target processing item module and the time interval unit to which it belongs based on the preset adjustment rule to determine the optimized timeline, including: When it is detected that the priority of the target processing item module does not match the time interval unit to which it belongs, the target processing item module is reallocated to the corresponding time interval unit in descending order of priority, and the target processing item module with higher priority occupies the time interval unit of the earlier time interval.

[0011] Optionally, the employee full-scenario interaction method further includes: When it is detected that there are multiple identical processing item modules within the time interval unit, a second page is displayed in the first interface; On the second page, all repeated processing modules are displayed, and the number of repetitions and conflict types are marked; A control for merging or deleting the duplicate processing item modules is displayed on the second page, and the number of processing item modules within the time interval unit is updated in response to an operation instruction for the control.

[0012] The present invention also provides an employee full-scenario interaction device, the device comprising: A first response module is configured to respond to a first request containing employee information by displaying a first interface and presenting a timeline in the first interface, the timeline comprising a plurality of time interval units at time intervals; an allocation module, configured to obtain the processing item data from each schedule table corresponding to the employee information, convert the data into processing item modules, and allocate each processing item module to a target time interval unit; a second response module, configured to adjust the target processing item module and update the timeline in response to an operation instruction directed to the processing item module; The optimization module is used to adjust the positional relationship between the target processing item module and the time interval unit to which it belongs based on the preset adjustment rules when it is detected that the updated timeline contains a processing item module that does not comply with the preset adjustment rules to determine the optimized timeline.

[0013] The present invention also provides an electronic device, comprising a memory and a processor, wherein the memory stores a computer program, and when the processor executes the computer program, the employee full-scenario interaction method as described in any one of the above items is implemented.

[0014] The present invention also provides a computer-readable storage medium, which stores a computer program. When the computer program is executed by a processor, it implements the employee full-scenario interaction method as described in any one of the above items.

[0015] The present invention has at least the following beneficial effects: First, the technical solution of this application breaks the limitations of the fixed layout of traditional tool interfaces by dynamically displaying the timeline and the processing module, making the interface more flexible and intuitive. Secondly, by responding to operating instructions to adjust the processing module and updating the timeline in real time, the operational process of adjusting schedules and adding tasks is simplified, reducing employees' learning costs and operation time, and improving operational efficiency. In addition, the solution also introduces an intelligent adjustment mechanism to automatically optimize the positional relationship between the processing module and the time interval unit based on preset rules, making up for the lack of intelligent features in traditional tools. At the same time, by integrating work and life data and analyzing them, it can provide personalized services, actively respond to user needs, effectively utilize data, and improve the interactive experience, thereby solving the problems of insufficient data utilization and poor user experience of traditional tools. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The accompanying drawings are used to provide a further understanding of the technical solution of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the technical solution of the present invention and do not constitute a limitation to the technical solution of the present invention.

[0017] Figure 1It is a step-by-step flow chart of the employee full-scenario interaction method; Figure 2 It is a schematic diagram of the second interface in the employee full-scenario interaction method; Figure 3 It is a schematic diagram of the first interface in the full-scenario employee interaction method; Figure 4 It is a schematic diagram of a card-type information container and draggable information cards in an employee full-scenario interaction method; Figure 5 It is a schematic diagram of a one-dimensional coordinate axis in the full-scenario interaction method for employees; Figure 6 It is a structural diagram of a full-scenario employee interaction device; Figure 7 It is a schematic diagram of the structure of an electronic device; Among them, 100, first interface; 110, first area; 120, second area; 111, timeline; 112, matter processing module; 113, card-type information container; 114, cursor; 200, second interface; 201, first information input area; 202, second information input area. DETAILED DESCRIPTION

[0018] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0019] Please refer to Figure 1 , Figure 1 It is a step-by-step flowchart of the employee full-scenario interaction method.

[0020] This embodiment provides an employee full-scenario interaction method including: S101. In response to a first request containing employee information, display a first interface and present a timeline in the first interface, where the timeline includes a plurality of time interval units separated by time intervals.

[0021] S102: Acquire processing item data from each schedule table corresponding to the employee information, convert the data into processing item modules, and then assign each processing item module to a target time interval unit.

[0022] S103: In response to the operation instruction for the processing item module, adjust the target processing item module and update the timeline.

[0023] S104. When it is detected that the updated timeline has a processing item module that does not comply with the preset adjustment rules, the positional relationship between the target processing item module and the time interval unit to which it belongs is adjusted based on the preset adjustment rules to determine the optimized timeline.

[0024] It can be understood that, firstly, the technical solution of the present application breaks the limitation of the fixed layout of the traditional tool interface by dynamically displaying the timeline and the processing module, making the interface more flexible and intuitive. Secondly, by responding to operating instructions to adjust the processing module and update the timeline in real time, the operational process of adjusting schedules and adding tasks is simplified, the learning cost and operation time of employees are reduced, and the operational efficiency is improved. In addition, the solution also introduces an intelligent adjustment mechanism, which automatically optimizes the positional relationship between the processing module and the time interval unit based on preset rules, making up for the lack of intelligent features in traditional tools. At the same time, by integrating work and life data and analyzing them, it can provide personalized services, actively respond to user needs, effectively use data, and improve the interactive experience, thereby solving the problems of insufficient data utilization and poor user experience of traditional tools.

[0025] In a specific embodiment, after an employee logs into the enterprise system on a device and initiates a request containing personal employee information, the system responds to the request and displays a first interface that displays a timeline composed of time interval units divided at fixed time intervals.

[0026] The system obtains processing matter data (such as attendance shifts, personal appointments, travel itineraries, salary payment dates, training course schedules, etc.) from five different schedules: the attendance scheduling system, the employee's personal calendar, the travel management system, the salary payment system, and the training planning system, and converts this data into a processing matter module.

[0027] The system assigns each module to a target time interval on the timeline based on its time attributes. For example, the attendance and scheduling module is assigned to the corresponding weekday time interval, the travel itinerary module is assigned to the corresponding travel date interval, and the salary payment date module is assigned to the fixed monthly payment date interval.

[0028] When viewing the first interface, the employee discovered that a certain processing module (such as a training course) conflicts with the processing module of the existing attendance scheduling, so he issued an operation instruction for the training processing module, hoping to adjust the training time.

[0029] The system responds to the operation instructions, adjusts the target processing module (training course), such as modifying the training time, and synchronously updates the timeline.

[0030] If the system detects that the new position of the training processing module on the updated timeline matches the position of the time interval unit to which it belongs (for example, training scheduled during working hours does not exceed the specified duration), it will determine the optimized timeline. If it does not meet the rules, the system will automatically make further adjustments based on the preset adjustment rules until the optimized timeline is determined.

[0031] This technical solution enables employees to intuitively view and manage their schedules across various systems on a unified interface, making operations more convenient, the interactive experience more optimized, and improving work-life management efficiency. For example, employees can easily adjust training plans to accommodate attendance schedules, and simultaneously plan travel and financial arrangements related to payroll in advance, eliminating the need to repeatedly switch between multiple disparate tools and systems.

[0032] Please refer to Figure 2 , Figure 2 It is a schematic diagram of the second interface in the employee full-scenario interaction method.

[0033] In some embodiments, based on the above-mentioned employee full-scenario interaction method, the following is also included: In response to the second request for triggering a new item, the second interface 200 is displayed. The second interface 200 includes at least a first information input area 201 and a second information input area 202 .

[0034] In response to an input instruction to the first information input area 201, the type of processing matter is determined.

[0035] In response to an input instruction to the second information input area 202 , the input information is acquired through the second information input area 202 and saved as the matter information of the processing matter, and then the first interface is displayed.

[0036] Based on the type of the matter to be processed and the matter information, a new matter processing module is generated and displayed on the first interface.

[0037] In one embodiment of a scenario, the employee needs to add a temporary task to his daily work, such as scheduling a cross-departmental meeting. He wants to add this task to the system and integrate it with other schedules.

[0038] The employee's operation process is as follows: Step 1: The employee triggers a second request for adding a new item on the device, and the system responds by displaying a second interface 200 , which includes a first information input area 201 and a second information input area 202 .

[0039] Step 2: The employee enters the word "meeting" in the first information input area 201. In response to the input instruction in the first information input area 201, the system determines that the type of the matter to be handled is "meeting" through the built-in type recognition algorithm.

[0040] Step 3: The employee enters the specific information of the meeting in the second information input area 202, including the meeting theme "cross-departmental project coordination meeting", the meeting time "May 15, 2025 14:00-16:00", the participants "marketing department manager, technical department director, finance department representative" and other details.

[0041] Step 4: The system responds to the input instruction for the second information input area 202, saves the input information as the matter information of the processing matter, and automatically returns to display the first interface.

[0042] Step 5: Based on the item type (meeting) and item information (meeting topic, time, attendees, etc.), the system generates a new item module on the timeline of the first interface and displays it in the corresponding time interval unit. For example, the meeting module is placed in the time interval unit of 2:00 PM to 4:00 PM on May 15, 2025.

[0043] Step 6: When viewing the timeline on the first screen, the employee will see that the newly added meeting processing module has been integrated with other schedules (such as attendance scheduling and travel plans). If the employee finds that the meeting conflicts with the existing schedule, he can continue to adjust the meeting module through operation instructions, and the system will optimize it according to the preset rules.

[0044] Understandably, the employee can easily add new tasks to the system, which automatically identifies the task type, saves the task information, and integrates it into the timeline. This further enhances the system's flexibility and practicality, allowing employees to more efficiently manage their dynamically changing work and life schedules. It also ensures that new tasks seamlessly integrate with other existing schedules, optimizing the overall interactive experience.

[0045] Please refer to Figure 3 , Figure 3 It is a schematic diagram of the first interface in the employee full-scenario interaction method.

[0046] In some embodiments, the first interface includes a first area 110 for displaying a timeline 111 , and a second area 120 for displaying a processing item module 112 .

[0047] In some embodiments, step S103 includes: In response to the editing operation instruction for the target processing item module 112 in the second area 120, a first page is displayed in the first interface, and the first page includes at least a first information display area and a second information display area.

[0048] In response to an editing instruction for the first information display area, the information in the first information display area is modified, and the modified information in the first information display area is used as the type of processing matter, or, in response to an editing instruction for the second information display area, the information in the second information display area is modified, and the modified information in the second information display area is used as the matter information of the processing matter.

[0049] The target processing item module 112 is updated based on the type of the processing item and the item information.

[0050] In the same scenario, the employee needs to adjust an existing meeting processing item module 112 in daily work, such as modifying the meeting time or the information of the participants.

[0051] The employee's operation process is as follows: Step 1: The employee views the first interface on the device, which is divided into two areas: a first area 110 for displaying a timeline 111 and a second area 120 for displaying a task module 112. The employee finds the previously added "Cross-department Project Coordination Meeting" task module 112 in the second area 120.

[0052] Step 2: The employee executes an edit operation command on the "Inter-departmental Project Coordination Meeting" processing item module 112 in the second area 120. In response to the command, the system displays the first page in the first interface. The first page includes a first information display area and a second information display area.

[0053] Step 3: The employee sees in the first information display area that the type of the current matter being handled is "meeting", and in the second information display area sees the specific information of the meeting, including the meeting theme "cross-departmental project coordination meeting", the meeting time "May 15, 2025 14:00-16:00", and the participants "Marketing Department Manager, Technology Department Director, Finance Department Representative", etc.

[0054] Step 4: The employee finds that the meeting time needs to be adjusted, so he does not make any changes in the first information display area (because the type does not need to be changed). Instead, he edits the meeting time in the second information display area and changes the time to "May 16, 2025 10:00-12:00".

[0055] Step 5: After the employee completes the editing, the system responds to the editing instruction for the second information display area and saves the modified information (new meeting time) as the matter information of the processing matter.

[0056] Step 6: Based on the type of the processing item (still "meeting") and the updated item information (new meeting time), the system updates the target processing item module 112, and re-places the updated module into the time interval unit corresponding to the time axis 111 (10:00-12:00, May 16, 2025).

[0057] Step 7: The system automatically returns to display the first interface. The employee can see that the updated "Cross-departmental Project Coordination Meeting" processing item module 112 has been adjusted to the new time position, and the timeline 111 is also updated synchronously to ensure that the display of all schedules is accurate and up-to-date.

[0058] It is understandable that the employee can easily edit and update the existing task module 112. The system's regional display and step-by-step editing make operations more intuitive and flexible. The employee can easily modify the task type or task information, and the system automatically synchronizes the updated information to the timeline 111, ensuring the accuracy and consistency of the schedule. This further enhances the system's interactive experience, allowing employees to more efficiently manage their dynamically changing work and life schedules, reducing the errors and tedious operations caused by manual adjustments.

[0059] Please refer to Figure 4 , Figure 4 It is a schematic diagram of a card-type information container and draggable information cards in an employee full-scenario interaction method.

[0060] In some embodiments, the time interval unit is a card-type information container 113, and the processing item module 112 is a draggable information card.

[0061] In some embodiments, step S103 includes: In response to the move operation instruction to the processing item module 112 , the selected information card is moved to the target card-type information container 113 or the second area 120 .

[0062] When the target card-type information container 113 contains multiple information cards, all the information cards in the target card-type information container 113 are folded, and a label corresponding to each information card is generated and then each label is displayed in the target card-type information container 113 .

[0063] When a selection operation instruction for a target tag is detected, the information card corresponding to the target tag is displayed.

[0064] In the same scenario, the employee needs to adjust the existing schedule in daily work, such as moving a task from the current time interval to another time interval, and needs to view the detailed information of multiple tasks in a certain time interval.

[0065] The employee's operation process is as follows: Step 1: The employee views the first interface on the device. The timeline 111 is composed of multiple card-type information containers 113. Each time interval unit is a card-type information container 113. The processing item module 112 is displayed on the timeline 111 or the second area 120 in the form of a draggable information card.

[0066] Step 2: The employee discovers that a task (e.g., "Project Report Writing") needs to be adjusted from the current time interval (May 15, 2025) to another time interval (May 17, 2025). The employee drags the task's information card from the current card-style information container 113 to the card-style information container 113 of the target time interval (May 17, 2025).

[0067] Step 3: The system responds to the move operation instruction for the processing task module 112, moves the selected information card to the target card-type information container 113, and updates the timeline 111. At this time, the target card-type information container 113 (May 17, 2025) may already contain information cards for other tasks.

[0068] Step 4: If the target card-type information container 113 contains multiple information cards, the system automatically collapses all the information cards within the container and generates a corresponding label for each information card. The label displays key task information (such as the task name and brief description), and the label is displayed within the target card-type information container 113.

[0069] Step 5: The employee needs to view detailed information about a specific task. He clicks the target label (for example, the label of the "Project Report Writing" task) to trigger the selected action instruction.

[0070] Step 6: After the system detects the selected operation instruction for the target tag, it immediately displays the information card corresponding to the tag, showing the complete details of the task, including task description, time schedule, responsible person, etc.

[0071] Step 7: After viewing the detailed information, the employee can choose to continue adjusting the task schedule, or close the information card and return to view the overall layout of timeline 111.

[0072] Understandably, the employee was able to quickly adjust the task schedule through intuitive drag-and-drop operations. The system also effectively addressed the interface congestion caused by excessive tasks within a time interval through folding and tabbing. The employee could easily manage and view multiple tasks within each time interval, improving interaction flexibility and efficiency. This design not only streamlines the interface but also enhances the user experience when managing complex schedules, further optimizing the convenience of work-life management.

[0073] Please refer to Figure 5 , Figure 5 It is a schematic diagram of a one-dimensional coordinate axis in the full-scenario interaction method for employees.

[0074] In some embodiments, the time axis 111 is a one-dimensional coordinate axis, which is divided into a plurality of time interval units of the same length, and each time interval unit corresponds to a unique time interval.

[0075] In some embodiments, based on the above-mentioned employee full-scenario interaction method, the following is also included: In response to an operation instruction on a cursor 114 movable on the one-dimensional coordinate axis, the cursor 114 is moved to a target time interval.

[0076] The current coordinate point where the cursor 114 is located is used as the first interval point of the new time interval, a new time interval unit is generated by expansion, and the scale range of the one-dimensional coordinate axis is updated.

[0077] The processing event modules 112 are reallocated to corresponding time interval units according to the updated scale range of the one-dimensional coordinate axis.

[0078] Specifically, in response to an operation instruction for the cursor 114, the cursor 114 is moved to a target time interval; the new time interval is determined by taking the current coordinate point of the cursor 114 as the first interval point of the new time interval and a target interval point of the target time interval as the second interval point of the new time interval; the first interval point of the new time interval is used as one end of the one-dimensional coordinate axis and the second interval point of the new time interval is used as the other end of the one-dimensional coordinate axis to extend the length of the new time interval to the length of the one-dimensional coordinate axis, and each coordinate point of the one-dimensional coordinate axis is updated according to the time point in the new time interval.

[0079] Let's use a specific example to illustrate: suppose an employee is using a task scheduling system and needs to adjust the time schedule of a task, such as modifying the start and end time of the task, or rescheduling the duration of the task.

[0080] Initially, the time axis 111 is a one-dimensional coordinate axis that represents the planned time of the task, from the first day the task starts to the last day the task ends. For example, the task is scheduled to start on May 1, 2025 (Monday) and end on May 14, 2025 (Tuesday), for a total of two weeks.

[0081] The time axis 111 is divided into multiple time intervals of equal length, each of which represents a storage unit. Assuming that each time interval is one day long, there are 14 time intervals (14 days) on the time axis 111.

[0082] A cursor 114 is provided on the time axis 111 and can be moved along the time axis 111 for selecting and manipulating a time interval. The cursor 114 is initially positioned on the time axis 111 at May 1, 2025 (Monday).

[0083] The employee's operation process is as follows: Assume that you need to adjust the time period from May 5, 2025 (Monday) to May 8, 2025 (Thursday) in the task. You use an operation command (such as dragging the mouse or typing on the keyboard) to move cursor 114 to the target time period, that is, the time period from May 5, 2025 (Monday) to May 6, 2025 (Tuesday).

[0084] After cursor 114 moves to the target time interval, the current coordinate point is May 5, 2025 (Monday) (the location of cursor 114).

[0085] Select a target interval point in the target time interval as the second interval point of the new time interval. Suppose May 8, 2025 (Thursday) is selected as the target interval point.

[0086] Therefore, the new time period is from Monday, May 5, 2025 to Thursday, May 8, 2025.

[0087] The first interval point of the new time interval (Monday, May 5, 2025) is used as one end of the one-dimensional coordinate axis, and the second interval point of the new time interval (Thursday, May 8, 2025) is used as the other end of the one-dimensional coordinate axis.

[0088] In this way, the length of the time axis 111 is extended to from May 5, 2025 (Monday) to May 8, 2025 (Thursday), and the original 14-day time axis 111 now only focuses on this 4-day period.

[0089] Next, each coordinate point on time axis 111 is updated based on the time points within the new time interval (from May 5, 2025 to May 8, 2025). For example, time axis 111 now has only 4 days × 24 hours = 96 coordinate points, each representing 1 hour.

[0090] As you can see, timeline 111 has been redefined as the period from May 5, 2025 (Monday) to May 8, 2025 (Thursday). Within this period, you can perform more detailed operations, such as adjusting the start and end times of tasks or reallocating resources. This allows users to focus on a specific time period of a task while ignoring other irrelevant parts, improving task scheduling efficiency.

[0091] In some embodiments, the preset adjustment rules include priority matching rules.

[0092] In some embodiments, when it is detected that the updated timeline contains a processing item module that does not comply with a preset adjustment rule, the positional relationship between the target processing item module and the time interval unit to which it belongs is adjusted based on the preset adjustment rule to determine an optimized timeline, including: When it is detected that the priority of the target processing item module does not match the time interval unit to which it belongs, the target processing item module is reallocated to the corresponding time interval unit in descending order of priority, and the target processing item module with higher priority occupies the time interval unit of the earlier time interval.

[0093] In another scenario, a project manager is responsible for scheduling and assigning tasks across multiple projects. He needs to arrange tasks of varying priorities on a timeline, such as urgent tasks, important tasks, and routine tasks. The existing task schedule may have mismatches between priorities and timeframes, requiring automatic system optimization.

[0094] The employee's operation process is as follows: Step 1: The employee views the first screen on their device. The timeline is a one-dimensional coordinate axis divided into multiple time intervals of equal length. Multiple task processing modules are displayed on the timeline, each with a corresponding priority (e.g., high priority, medium priority, low priority).

[0095] Step 2: The employee adjusts the tasks on the timeline, such as moving a routine task (low priority) to an earlier time interval unit (such as May 15, 2025), which was originally scheduled for an urgent task (high priority).

[0096] Step 3: After updating the timeline, the system automatically detects whether there are any processing modules that do not comply with the preset adjustment rules. The system finds that low-priority routine tasks are scheduled within the time interval unit of high-priority tasks, which does not comply with the preset priority matching rules.

[0097] Step 4: Based on the preset adjustment rules, the system adjusts the position relationship between the target processing module and the time interval unit to which it belongs. The system reallocates the task modules in descending order of priority: High-priority urgent tasks are assigned to earlier time interval units (for example, May 15, 2025).

[0098] The low-priority routine tasks originally scheduled for this time interval are automatically moved to the next available time interval (for example, May 16, 2025).

[0099] Step 5: After the system completes the position adjustment, it determines the optimized timeline and updates the display. On the first screen, the employee sees that the task modules on the timeline have been re-arranged according to priority, with urgent tasks prioritized in earlier time intervals, ensuring that task priorities match the schedule.

[0100] Step 6: The employee continues to check and adjust other task modules. The system will detect and optimize the task arrangements that do not comply with the rules in real time to ensure that the task modules on the timeline always comply with the priority matching rules.

[0101] Understandably, this employee is now able to manage project tasks more efficiently, ensuring that high-priority tasks are consistently scheduled in earlier time intervals. The system automatically detects and optimizes task modules that don't meet priority matching rules, reducing the need for tedious manual adjustments and improving the efficiency and accuracy of task management. This design further enhances the system's intelligence, allowing users to focus more on the tasks themselves when navigating complex scheduling, rather than wasting time adjusting their order.

[0102] In some embodiments, based on the above-mentioned employee full-scenario interaction method, the following is also included: When it is detected that there are multiple identical processing item modules within the time interval unit, the second page is displayed in the first interface.

[0103] All repeated processing modules are displayed on the second page, and the number of repetitions and conflict types are marked.

[0104] A control for merging or deleting duplicate processing item modules is displayed on the second page, and the number of processing item modules within the time interval unit is updated in response to an operation instruction for the control.

[0105] In another scenario, an employee is an administrator in a company, responsible for the company's material procurement and inventory management. He needs to schedule multiple procurement tasks on a timeline, but some materials may be purchased repeatedly, and he needs the system to help him identify and handle these duplicate tasks.

[0106] The employee's operation process is as follows: Step 1: The employee views the first screen on their device. The timeline is a one-dimensional coordinate axis divided into multiple time intervals of equal length. Multiple procurement task processing modules are displayed on the timeline. Each module contains information such as the name, quantity, and supplier of the purchased material.

[0107] Step 2: The employee schedules a new purchase task on the timeline, such as purchasing "Office Supplies A." However, the system detects that another identical purchase task (purchasing "Office Supplies A") already exists within the same time interval (e.g., May 20, 2025).

[0108] Step 3: If the system detects multiple identical processing modules within a time interval, it automatically displays a second page within the first interface. The second page displays all duplicate processing modules, along with the number of duplicates (e.g., 2) and the conflict type (e.g., "Duplicate Purchase").

[0109] Step 4: On the second page, the system also displays controls for merging or deleting duplicate processing modules. The employee selects an action based on the actual situation: If he decides that two purchase tasks are necessary, he can select the "Merge" control to combine the purchase quantities of the two tasks into one. For example, he can combine the two "Purchase Office Supplies A" tasks into one task, and the quantity will be increased from "100 pieces + 50 pieces" to "150 pieces".

[0110] If he thinks one of the tasks is redundant, he can select the "Delete" control to delete one of the duplicate task modules.

[0111] Step 5: The system responds to the employee's control instructions and updates the number of task modules within the time interval unit. If the employee selects the Merge action, the system merges the two duplicate task modules into one and updates the task information. If the employee selects the Delete action, the system deletes the selected task module.

[0112] Step 6: After the system completes the update, the user returns to the first screen. The number of task modules on the timeline has been updated based on the employee's operation. The employee can see that there are no longer duplicate task modules within the time interval, making task management clearer and more efficient.

[0113] As you can see, the employee was able to quickly identify and address the repeated task modules within the time interval. The system displayed a second page, clearly displaying detailed information about the repeated tasks and providing options to merge or delete them, allowing the employee to flexibly handle them based on the actual situation. This design not only avoids the waste of resources and management confusion caused by repeated tasks, but also improves the efficiency and accuracy of material procurement and inventory management, further optimizing workflow and interactive experience.

[0114] Please refer to Figure 6 , Figure 6 It is a structural diagram of a full-scenario employee interaction device.

[0115] This embodiment also provides an employee full-scenario interaction device including: The first response module 601 is configured to respond to a first request containing employee information, display a first interface, and present a timeline in the first interface, where the timeline includes a plurality of time interval units separated by time intervals.

[0116] The allocation module 602 is configured to obtain the processing item data from each schedule table corresponding to the employee information, convert the data into processing item modules, and allocate each processing item module to a target time interval unit.

[0117] The second response module 603 is used to respond to the operation instruction for the processing item module, adjust the target processing item module, and update the timeline.

[0118] The optimization module 604 is used to adjust the positional relationship between the target processing item module and the time interval unit to which it belongs based on the preset adjustment rules when it is detected that the updated timeline has a processing item module that does not comply with the preset adjustment rules to determine the optimized timeline.

[0119] Those skilled in the art will appreciate that all or some of the steps and devices in the methods disclosed above can be implemented as software, firmware, hardware, or any suitable combination thereof. Some or all of the physical components may be implemented as software executed by a processor, such as a central processing unit, digital signal processor, or microprocessor, or as hardware, or as an integrated circuit, such as an application-specific integrated circuit. Such software may be distributed on computer-readable media, which may include computer storage media (or non-transitory media) and communication media (or transient media). As is well known to those skilled in the art, the term computer storage media includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Computer storage media includes, but is not limited to, RAM, ROM, EEPROM, flash memory or other memory technologies, CD-ROM, digital versatile disks (DVDs) or other optical disk storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other medium that can be used to store the desired information and can be accessed by a computer. As is well known to those skilled in the art, communication media typically embodies computer-readable instructions, data structures, program modules, or other data in a modulated data signal such as a carrier wave or other transport mechanism, and may include any information delivery media.

[0120] It can be understood that the contents of the above method embodiments are all applicable to the present device embodiments, the functions specifically implemented by the present device embodiments are the same as those of the above method embodiments, and the beneficial effects achieved are also the same as those achieved by the above method embodiments.

[0121] An embodiment of the present application also provides an electronic device, which includes a memory and a processor. The memory stores a computer program, and when the processor executes the computer program, it implements any of the above employee full-scenario interaction methods.

[0122] refer to Figure 7 , Figure 7 The hardware structure of an electronic device according to another embodiment is shown. The electronic device includes: The processor 701 may be implemented as a general-purpose CPU (Central Processing Unit), a microprocessor, an application-specific integrated circuit (ASIC), or one or more integrated circuits, and is configured to execute relevant programs to implement the technical solutions provided in the embodiments of the present application. The memory 702 can be implemented in the form of a read-only memory (ROM), a static storage device, a dynamic storage device, or a random access memory (RAM). The memory 702 can store operating devices and other applications. When the technical solutions provided in the embodiments of this specification are implemented through software or firmware, the relevant program code is stored in the memory 702 and is called by the processor 701 to execute the employee full-scenario interaction method of the embodiments of this application. Input / output interface 703, used to implement information input and output; Communication interface 704, used to implement communication interaction between this device and other devices, which can be achieved through wired means (such as USB, network cable, etc.) or wireless means (such as mobile network, WiFi, Bluetooth, etc.); Bus 705 , which transmits information between various components of the device (e.g., processor 701 , memory 702 , input / output interface 703 , and communication interface 704 ); The processor 701 , the memory 702 , the input / output interface 703 and the communication interface 704 are connected to each other in communication within the device via a bus 705 .

[0123] It can be understood that the contents of the above method embodiments are all applicable to the electronic device embodiment. The functions specifically implemented by the electronic device embodiment are the same as those of the above method embodiments, and the beneficial effects achieved are also the same as those achieved by the above method embodiments.

[0124] An embodiment of the present application also provides a computer-readable storage medium, which stores a program executable by a processor. When the program executable by the processor is executed by the processor, it is used to implement the employee full-scenario interaction method as described in any one of the above specific embodiments.

[0125] An embodiment of the present application also discloses a computer program product, including a computer program or computer instructions, which are stored in a computer-readable storage medium. A processor of a computer device reads the computer program or computer instructions from the computer-readable storage medium, and the processor executes the computer program or computer instructions, so that the computer device executes the employee full-scenario interaction method described in any of the previous embodiments.

[0126] It can be understood that the contents of the above method embodiments are all applicable to the present storage medium embodiment, the functions specifically implemented by the present storage medium embodiment are the same as those of the above method embodiments, and the beneficial effects achieved are also the same as those achieved by the above method embodiments.

[0127] The terms "first", "second", "third", "fourth" etc. (if any) in the specification of the present application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequential order. It should be understood that the data used in this way can be interchangeable where appropriate, so that the embodiments of the present application described herein can, for example, be implemented in an order other than those illustrated or described herein. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions, for example, a process, method, device, product or device comprising a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices. It should be understood that in the present application, "at least one (item)" refers to one or more, and "a plurality of" refers to two or more.

[0128] In the several embodiments provided in this application, it should be understood that the disclosed devices, apparatuses and methods can be implemented in other ways. For example, the device embodiments described above are merely schematic. For example, the division of the units is merely a logical function division. In actual implementation, there may be other division methods, such as multiple units or components can be combined or integrated into another device, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be an indirect coupling or communication connection through some interfaces, devices or units, which can be electrical, mechanical or other forms.

[0129] The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected to achieve the purpose of this embodiment according to actual needs.

[0130] In addition, the functional units in the various embodiments of the present application may be integrated into a single processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or software functional units.

[0131] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present application, or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product, which is stored in a storage medium and includes several instructions for enabling a computer device (which can be a personal computer, a server or a network device, etc.) to execute all or part of the steps of the method described in each embodiment of the present application. The aforementioned storage medium includes: various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.

[0132] Although the description of the present application has been quite detailed and specifically describes several embodiments, it is not intended to be limited to any of these details or embodiments or any particular embodiment, but should be considered to provide a broad possible interpretation of these claims by reference to the appended claims, taking into account the prior art, so as to effectively cover the intended scope of the present application. In addition, the above description of the present application is based on the embodiments foreseen by the inventors, which is intended to provide a useful description, and those non-substantial changes to the present application that have not yet been foreseen may still represent equivalent changes to the present application.

Claims

1. A full-scenario employee interaction method, characterized in that: The method comprises: In response to a first request including employee information, displaying a first interface and presenting a timeline in the first interface, the timeline including a plurality of time interval units at time intervals; After acquiring the processing item data from each schedule table corresponding to the employee information and converting them into processing item modules, each processing item module is assigned to a target time interval unit; In response to an operation instruction for the processing item module, adjusting the target processing item module and updating the timeline; When it is detected that the updated timeline has a processing item module that does not comply with the preset adjustment rules, the positional relationship between the target processing item module and the time interval unit to which it belongs is adjusted based on the preset adjustment rules to determine the optimized timeline.

2. The employee full-scenario interaction method according to claim 1, characterized in that: The method further comprises: In response to the second request for triggering a new item, displaying a second interface, the second interface including at least a first information input area and a second information input area; In response to an input instruction to the first information input area, determining a type of processing matter; In response to an input instruction to the second information input area, the input information is acquired through the second information input area and saved as the matter information of the processing matter, and then the first interface is displayed; Based on the type of the processing matter and the matter information, a new processing matter module is generated and displayed on the first interface.

3. The employee full-scenario interaction method according to claim 2, characterized in that: The first interface includes a first area for displaying the timeline, and a second area for displaying the processing matter module; The step of adjusting the target processing item module and updating the timeline in response to the operation instruction for the processing item module includes: In response to an edit operation instruction for a target processing item module in the second area, displaying a first page in the first interface, the first page including at least a first information display area and a second information display area; In response to an edit instruction for the first information display area, modify the information in the first information display area, and use the modified information in the first information display area as the type of the processing matter, or, In response to an edit instruction for the second information display area, modify the information in the second information display area, and use the modified information in the second information display area as the matter information of the processing matter; Based on the type of the processing item and the item information, the target processing item module is updated.

4. The employee full-scenario interaction method according to claim 3 is characterized in that: The time interval unit is a card-type information container, and the processing item module is a draggable information card; The step of adjusting the target processing item module and updating the timeline in response to the operation instruction for the processing item module includes: In response to a move operation instruction for the processing item module, the selected information card is moved to a target card-type information container or the second area; When the target card-type information container contains multiple information cards, all the information cards in the target card-type information container are folded, and a label corresponding to each of the information cards is generated and then each of the labels is displayed in the target card-type information container; When a selection operation instruction for a target tag is detected, an information card corresponding to the target tag is displayed.

5. The employee full-scenario interaction method according to claim 1, characterized in that: The time axis is a one-dimensional coordinate axis, which is divided into a plurality of time interval units of the same length, and each of the time interval units corresponds to a unique time interval; The method further comprises: In response to an operation instruction for a cursor movable on the one-dimensional coordinate axis, moving the cursor to a target time interval; Taking the current coordinate point of the cursor as the first interval point of a new time interval, expanding and generating a new time interval unit, and updating the scale range of the one-dimensional coordinate axis; Reassign the processing item modules to the corresponding time interval units according to the updated scale range of the one-dimensional coordinate axis.

6. The employee full-scenario interaction method according to claim 1, characterized in that: The preset adjustment rules include priority matching rules; When it is detected that the updated timeline has a processing item module that does not comply with the preset adjustment rule, adjusting the positional relationship between the target processing item module and the time interval unit to which it belongs based on the preset adjustment rule to determine the optimized timeline, including: When it is detected that the priority of the target processing item module does not match the time interval unit to which it belongs, the target processing item module is reallocated to the corresponding time interval unit in descending order of priority, and the target processing item module with higher priority occupies the time interval unit of the earlier time interval.

7. The employee full-scenario interaction method according to claim 1, characterized in that: The method further comprises: When it is detected that there are multiple identical processing item modules within the time interval unit, a second page is displayed in the first interface; On the second page, all repeated processing modules are displayed, and the number of repetitions and conflict types are marked; A control for merging or deleting the duplicate processing item modules is displayed on the second page, and the number of processing item modules within the time interval unit is updated in response to an operation instruction for the control.

8. A full-scenario employee interaction device, characterized in that: The device comprises: A first response module is configured to respond to a first request containing employee information by displaying a first interface and presenting a timeline in the first interface, the timeline comprising a plurality of time interval units at time intervals; an allocation module, configured to obtain the processing item data from each schedule table corresponding to the employee information, convert the data into processing item modules, and allocate each processing item module to a target time interval unit; a second response module, configured to adjust the target processing item module and update the timeline in response to an operation instruction directed to the processing item module; The optimization module is used to adjust the positional relationship between the target processing item module and the time interval unit to which it belongs based on the preset adjustment rules when it is detected that the updated timeline contains a processing item module that does not comply with the preset adjustment rules to determine the optimized timeline.

9. An electronic device, characterized in that: The electronic device includes a memory and a processor, the memory stores a computer program, and the processor implements the employee full-scenario interaction method described in any one of claims 1 to 7 when executing the computer program.

10. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the employee full-scenario interaction method according to any one of claims 1 to 7 is implemented.