Intelligent interactive platform for power plant production operations

By designing an intelligent interactive platform for power plant production operations and using a mobile phone app to implement data analysis and information sharing, the problems of manual operation dependence and data lack in power plant production operations have been resolved, thereby improving business efficiency and security.

CN119788706BActive Publication Date: 2025-09-30EAST CHINA YIXING PUMPED STORAGE +1
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Patent Information

Application Number
CN202411722629.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-09-30
Estimated Expiration
2044-11-28

AI Technical Summary

Technical Problem

In existing technologies, power plant production processes rely on manual operations, data lacks intelligent analysis, scheduling and water level forecasting are inefficient, and there is a lack of a real-time data sharing platform, resulting in insufficient business processing capabilities.

Method used

Design an intelligent interactive platform for power plant production operations, use a mobile phone APP to implement data analysis functions, include a data exchange unit, a storage unit and a central control unit, integrate a duty schedule module, a water level measurement module, an image recognition module and a power module, establish a complete system from the server to the mobile terminal, and realize real-time information transmission and data sharing.

Benefits of technology

It improves the efficiency and safety of power plant production operations, reduces manual involvement, achieves accurate water level control and concise schedules, and enhances the real-time sharing and management capabilities of on-site information.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent interactive platform for power plant production operations, which relates to the field of intelligent interactive technology and includes a mobile phone APP. The mobile phone APP includes a data exchange unit, a storage unit, and a central control unit. The central control unit is respectively connected to a display unit, a storage unit, and a data interaction unit to receive relevant data information sent by each unit and adjust the corresponding operating parameters of each unit to corresponding values. The central control unit is provided with a duty table module, a water level measurement module, an image recognition module, a grounding module, and an electricity module to realize the functions of adjusting and generating duty tables, measuring water levels, identifying data on images, feeding back and updating line-related information, and generating electricity reports. The present invention utilizes existing intelligent technologies for functional development, specifically designs data analysis functions applicable to different power plants, and establishes a database, forming a complete system from the server to the mobile terminal.
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Description

Technical Field

[0001] The present invention belongs to the field of intelligent interaction technology, and in particular relates to an intelligent interaction platform for power plant production services. Background Art

[0002] While pumped storage has experienced rapid growth in recent years and entered a golden age, the advancement of intelligent business operations has been relatively slow. Monitoring data lacks self-analysis and diagnostic capabilities, and mobile platforms are largely undeveloped, leaving a critical need for mobile business processing capabilities. Current power plant operations primarily rely on Excel for scheduling, water level forecasting, and control. However, this traditional approach, with its low efficiency and lack of self-diagnosis capabilities, is gradually revealing its limitations.

[0003] First, from the perspective of shift management, Excel only provides basic functions, making it difficult to handle complex logic and automated scheduling. Power plant scheduling requires considering multiple factors, such as balanced workloads, rest schedules, and rapid response to emergencies. These complex logical relationships often require tedious manual operations and multi-layered nested formulas to implement in Excel, which is not only inefficient but also prone to errors.

[0004] Secondly, existing water level forecasts often suffer from errors. Water level control in power plants is directly related to their safe operation and power generation efficiency. However, traditional forecasting methods based on Excel spreadsheets cannot accurately capture the complex and nonlinear characteristics of water level fluctuations. This makes it impossible to meet the precise water level control requirements of power plants.

[0005] Finally, most of the current power plant production business processes are executed by humans, with large business volumes, frequent repeated calls to business data, and cumbersome processes. In addition, the data lacks intelligent analysis methods, and links related to production safety, such as water level calculations, require the participation of staff. At the same time, due to the limitations of the intranet, there is a lack of a real-time sharing platform for production business data.

[0006] Therefore, in order to solve the above problems and improve the efficiency of power plant business processes, it is necessary to design an intelligent interactive platform for power plant production business. Summary of the Invention

[0007] The technical problem to be solved by this invention is to address the deficiencies in the existing technology and design an intelligent interactive platform and system for power plant production operations. This intelligent interactive platform uses mobile devices such as mobile phones as a carrier, utilizes existing intelligent technologies for functional development, and specifically designs data analysis functions suitable for different power plants. It also establishes a database, forming a complete system from the server to the mobile terminal, enabling all kinds of on-site information to be transmitted to production personnel in real time, improving the safety of on-site work. This solves the problem that most of the current power plant production business processes are executed by humans, with large business volumes, frequent repeated calls to business data, and cumbersome processes.

[0008] The solution adopted by the present invention to solve the technical problem is:

[0009] Intelligent interactive platform for power plant production business,

[0010] It is characterized in that

[0011] Including mobile APP,

[0012] The mobile phone APP includes:

[0013] A data exchange unit, which is used for connecting the platform to the intranet, extranet and data scheduling network;

[0014] A storage unit, which is used to store data sent by the data transmission unit, data generated during the use of the platform, and send historical storage data to be called to the central control unit;

[0015] A central control unit, the central control unit being connected to the display unit, the storage unit and the data exchange unit respectively, for receiving relevant data information sent by each of the units and adjusting the corresponding operating parameters of each unit to corresponding values;

[0016] The central control unit is equipped with a duty table module, a water level measurement module, an image recognition module, a grounding module, and a power module.

[0017] The duty schedule module is used to adjust and generate the duty schedule.

[0018] The water level calculation module is used to calculate the water level.

[0019] The image recognition module is used to recognize data on the image.

[0020] The grounding module is used to feedback and update line related information.

[0021] The power module is used to generate power reports.

[0022] As a preferred embodiment of the present invention, the mobile APP includes at least a first-level page, a second-level page and a third-level page.

[0023] The first-level page is a login page, which contains at least an account input box, a password input box, and a login button. After the staff enters the account and password, they click the login button to enter the second-level page.

[0024] The secondary page at least includes on-duty personnel information, duty list button, water level measurement button, grounding line button and power button.

[0025] The three-level pages at least include a duty schedule page, a water level calculation page, a grounding line page, and a power page.

[0026] The staff clicks the duty roster button to enter the duty roster page and edit and view the duty roster through the duty roster module;

[0027] The staff clicks the water level calculation button to enter the water level calculation page, and uses the water level calculation module to calculate and display the water level;

[0028] The staff clicks the grounding line button to enter the grounding line page and updates and views the line-related data through the grounding line module;

[0029] The staff clicks the power button to enter the power page, and generates and displays the power report through the power module.

[0030] As a preferred embodiment of the present invention, the water level calculation page at least includes a current water level input box, a pumping point input box, a power generation point input box, a post-pumping display box, and a post-power generation display box;

[0031] Enter the current water level and the number of pumping points, and the display box after pumping will show the predicted water level after pumping. Enter the current water level and the number of power generation points, and the display box after power generation will show the predicted water level after power generation.

[0032] As a preferred embodiment of the present invention, the grounding line page at least includes a grounding line management page.

[0033] The grounding wire management page at least includes a grounding wire record list, a grounding wire selection button, an executor input box, an installation point input box, and a restorer input box.

[0034] The ground line selection button is used for the staff to select the line to be grounded;

[0035] The executor input box is used to input the staff who performs the grounding operation on the line;

[0036] The installation point input box is used to input the position of the line for grounding operation;

[0037] The restoration person input box is used to input the personnel who will perform the line grounding operation.

[0038] As a preferred embodiment of the present invention, the grounding line management page further includes at least a grounding line management button, a temporary measures button, a maintenance explanation button, and an operation note button.

[0039] The staff clicks the temporary measures button to enter the temporary measures page;

[0040] The staff clicks the maintenance explanation button to enter the maintenance explanation page;

[0041] The staff clicks the Run Note button to enter the Run Note page;

[0042] The staff clicks the grounding line management button on the non-grounding line management page to re-enter the grounding line management page.

[0043] The temporary measures page displays the operations performed by the staff on the line and the devices on the line;

[0044] The maintenance instruction page displays maintenance data of the staff;

[0045] The operation record page displays data related to the line operation process.

[0046] As a preferred embodiment of the present invention, the water level measurement module includes a calling module, and the calling module is used to call a third-party function curve tool.

[0047] As a preferred embodiment of the present invention, the duty roster page includes the date and duty schedule, and the duty status is displayed in different colors.

[0048] As a preferred embodiment of the present invention, the on-duty personnel information at least includes the on-duty personnel of the day shift, the on-duty personnel of the day mid-shift and the on-duty personnel of the day night shift.

[0049] As a preferred embodiment of the present invention, the central control unit is further provided with an audit alarm module. After the duty roster situation on the duty roster page is changed, it is audited by the audit alarm module. After the audit is passed, the shift is completed, and an automatic alarm is triggered for unreasonable shift changes.

[0050] As a preferred embodiment of the present invention, the water level measurement module is provided with a water level measurement program.

[0051] Compared with the prior art, the present invention has the following beneficial effects:

[0052] 1. The present invention provides an intelligent interactive platform for power station production operations. This hydropower station business interactive platform uses mobile phones and other mobile terminals as carriers. It utilizes existing intelligent technologies for functional development, specifically designs data analysis functions suitable for different power stations, and establishes a database, forming a complete system from the server to the mobile terminal. The establishment of a shared platform for business and production information reduces various paper-based manual processes, including shift handovers, and is energy-efficient and environmentally friendly. It enables the display of some process management processes on mobile phone apps, allowing various on-site information to be transmitted to production personnel in real time, improving the safety of on-site work.

[0053] 2. The present invention has independently developed and designed a water level measurement program based on the law of water level changes in power stations, and designed a water level calculation page on the mobile phone APP, which is specifically a window screen that is convenient for personnel to calculate. Users only need to input a small amount of data to clearly obtain the target value. The program collects a large amount of data based on the actual water level changes, and designs corresponding functions in different water level elevation ranges to make the calculation results closer to reality.

[0054] 3. The designed water level measurement program can accurately control the water level, greatly reducing the pressure on the on-duty personnel to control the power generation / pumping plan.

[0055] 4. The designed shift schedule is concise, convenient and easy to understand, and staff can check the duty status of the most recent working day in real time.

[0056] 5. The image recognition function of the image recognition module and the report generation software based on the image recognition function eliminate the need for manual processing of business data, greatly improving accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0057] Figure 1 This is a physical schematic diagram of the duty schedule page of the power plant production business intelligent interactive platform proposed by the present invention;

[0058] Figure 2 This is a physical schematic diagram of the water level measurement page of the power plant production business intelligent interactive platform proposed by the present invention;

[0059] Figure 3 This is a physical schematic diagram of the grounding line management page of the power plant production business intelligent interactive platform proposed by the present invention;

[0060] Figure 4 This is a physical schematic diagram of the temporary measures page of the power plant production business intelligent interactive platform proposed in the present invention;

[0061] Figure 5 This is a physical schematic diagram of the power generation page of the intelligent interactive platform for power plant production services proposed in the present invention;

[0062] Figure 6This is a physical schematic diagram of the material search page of the power plant production business intelligent interactive platform proposed by the present invention;

[0063] Figure 7 This is a physical schematic diagram of the first-level page of the power plant production business intelligent interactive platform proposed in the present invention. DETAILED DESCRIPTION

[0064] The specific implementation of the present invention is described below with reference to the accompanying drawings and embodiments:

[0065] It should be noted that the structures, colors, proportions, sizes, etc. illustrated in the drawings of this specification are only used to match the contents disclosed in the specification for people familiar with this technology to understand and read, and are not used to limit the conditions under which the present invention can be implemented. Any structural modification, change in proportional relationship or adjustment of size should still fall within the scope of the technical content disclosed in the present invention without affecting the efficacy and purpose that can be achieved by the present invention.

[0066] At the same time, in the description of the present invention, it should be understood that the terms "one end", "the other end", "middle", "upper", "one side", "top", "inside", "front", "center", "both ends", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0067] In addition, the terms "first", "second", "third" and "fourth" are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first", "second", "third" and "fourth" may explicitly or implicitly include at least one such feature.

[0068] In the present invention, unless otherwise clearly stipulated and limited, the terms "install", "set", "connect", "fix", "screw" and the like should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integrated connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal connection of two elements or the interaction relationship between two elements. Unless otherwise clearly defined, ordinary technicians in this field can understand the specific meanings of the above terms in the present invention according to the specific circumstances.

[0069] like Figure 1-Figure 7The intelligent interactive platform for power station production business of the present invention includes a mobile phone APP. It is a hydropower station business interactive platform based on mobile terminals such as mobile phones. It uses existing intelligent technologies such as crawlers, image recognition and voice recognition to develop functions, and specifically designs various data analysis functions suitable for different power stations. It also establishes a database, forming a complete system from the server to the mobile terminal.

[0070] A shared platform for business and production information has been established, reducing various paper-based manual processes including shift handovers, and realizing the simultaneous implementation of some process management on a mobile platform, so that various on-site information can be transmitted to production personnel in real time, improving the safety of on-site work.

[0071] Preferably, the intelligent interactive platform for power plant production business of the present invention can access the data of various equipment PLCs for summary analysis and various modeling, and truly realize the power plant in the palm of your hand on the mobile phone APP; in addition, the mobile phone itself is a powerful platform, and it is updated quickly and has more and more functions, and it is more convenient to develop various functions using mobile phone software.

[0072] The promotion of the mobile APP will enable the establishment of an independent Internet platform for power station business outside the scope of the intranet, which will provide a better ecosystem. At the same time, the mobile APP can also be implemented in the intranet, and its stored database can also be used as an interface for the Internet of Things after the mobile APP is promoted.

[0073] The mobile app consists of a data exchange unit, a storage unit, and a central control unit. The data exchange unit connects the mobile app to the power plant's network, while the storage unit stores data related to power plant lines, tools, and related operations. The central control unit enables the mobile app to adjust duty schedules, predict water levels, and other functions.

[0074] The data exchange unit is used to connect the platform to the intranet, extranet and data dispatch network to realize data transmission;

[0075] The storage is used to store data sent by the data transmission unit, data generated during the use of the platform, and send the historical storage data to be called to the central control unit; collect and organize large amounts of data and establish a database;

[0076] The central control unit is connected to the display unit, storage unit and data interaction unit respectively to receive relevant data information sent by each unit and adjust the corresponding operating parameters of each unit to the corresponding values; according to the instructions input by the staff, it mobilizes the internal modules, makes corresponding updates, realizes corresponding functions, and displays the corresponding page on the mobile phone.

[0077] The central control unit is equipped with a duty schedule module, a water level measurement module, an image recognition module, a grounding module, and a power module.

[0078] The duty roster module implements functions such as duty roster generation, duty roster adjustment, one-click shift change by dragging shifts, and automatic process review.

[0079] The water level calculation module calculates the expected water level based on the existing water level and the number of power generation or pumping points manually input by the staff, thereby realizing the water level measurement function.

[0080] The image recognition module recognizes images and converts them into reports.

[0081] The grounding wire module receives the relevant information input by the staff and organizes and displays it.

[0082] The power module processes the data detected by the energy meter and generates power reports.

[0083] The duty roster module is used to adjust and generate the duty roster, and make corresponding changes based on the operations performed on the duty roster by the staff.

[0084] The water level calculation module is used to measure water levels. Specifically, a water level measurement program was developed and designed based on the dynamics of power station water levels. A convenient window screen was also included on the mobile app to facilitate calculations. Users only need to enter a small amount of data to clearly determine the target value. The water level measurement program collects a large amount of data based on actual water level fluctuations and designs corresponding functions within different water level elevation ranges, making the calculation results closer to actual data.

[0085] The image recognition module is used to identify data within images and automatically generates reports. Specifically, based on the operational requirements of the mobile app, we designed report generation software based on image recognition data tables, reducing the need for manual data entry. The image recognition module's local identification function eliminates the need for manual processing of business data, significantly improving accuracy.

[0086] The grounding wire module is used to feedback and update line-related information. For example, before work, it will be displayed that a certain line was installed or removed by a certain staff member at a certain location during a certain period of time. The staff needs to enter relevant information when installing or removing the grounding wire of a certain line. The grounding wire module automatically captures the time and generates a new record to ensure that each grounding wire installation or removal work is recorded in the mobile APP for subsequent staff to view. The staff can check the current status of the line in time, ensure the real-time nature of the poem, and improve work efficiency.

[0087] The power module is used to generate power reports for staff to view.

[0088] The intelligent interactive platform for production business of the device of the present invention reduces a large number of manual participation links, realizes the precise real-time control of water level by operating personnel, greatly reduces the on-duty pressure of shift personnel, integrates daily operation, and integrates various types of information that should be shared in real time on the production line, establishes a production data and information sharing platform, reduces paper process links and manual procedures for shift handovers, and gives front-line employees the ability to grasp on-site information in real time. At the same time, the use of mobile phone APP implementation makes the software highly scalable, and in the later stage, functions such as personnel positioning, emergency alarm, and auxiliary material retrieval can be developed successively, which greatly improves the backward situation of the intelligent level of the production line business of pumped storage power stations and enriches the information sharing channels of pumped storage business.

[0089] like Figure 1-7 As shown, the mobile APP contains at least a first-level page, a second-level page, and a third-level page. You enter the second-level page through the first-level page, and click on the second-level page to jump to the corresponding third-level page. You perform operations according to the information displayed on the pages at each level. In addition, there are other technical secondary school pages, and the pages are designed according to the optimal process after actual testing.

[0090] like Figure 7 As shown, the first-level page is the login page, which contains at least an account input box, a password input box, and a login button. After entering their account and password, the staff member clicks the login button to enter the second-level page. Furthermore, a verification process or identity selection button can be configured, and the functions and permissions granted to field staff and back-end management personnel are also configured accordingly, ensuring that the mobile app is fully functional and sufficient to support power plant operations.

[0091] The secondary page contains at least the duty officer information, duty table button, water level calculation button, grounding line button, and power button. The duty officer information presents the current duty information of the day in an intuitive and concise manner. After completing the login process, the staff can see the current duty status and confirm the staff member currently on duty. The duty table button, water level calculation button, grounding line button, and power button allow the staff to jump to the corresponding page by clicking.

[0092] like Figure 1-5 As shown, the three-level page includes at least a duty schedule page, a water level measurement page, a grounding line page and a power page, and detailed operations are performed through the above pages.

[0093] Specifically:

[0094] The staff clicks the duty roster button to enter the duty roster page and edit and view the duty roster through the duty roster module;

[0095] The staff clicks the water level calculation button to enter the water level calculation page, and uses the water level calculation module to calculate and display the water level;

[0096] The staff clicks the grounding line button to enter the grounding line page and updates and views the line-related data through the grounding line module;

[0097] The staff clicks the power button to enter the power page, and generates and displays the power report through the power module.

[0098] The water level calculation page contains at least the current water level input box, the pumping point input box, the power generation point input box, the display box after pumping and the display box after power generation; input the current water level and the water level to be consumed to estimate the subsequent water level.

[0099] During specific operations, enter the current water level in the current water level input box, enter the number of pumping points in the pumping point number input box, and the display box after pumping will show the predicted water level after the corresponding number of pumping points. Enter the current water level in the current water level input box, enter the number of power generation points in the power generation point number input box, and the display box after power generation will show the predicted water level after the corresponding number of power generation points.

[0100] The specific calculation process is completed by the water level calculation program designed by the water level calculation module. The water level calculation program designed by the water level calculation module can accurately realize water level control, which greatly reduces the pressure on the on-duty personnel to control the power generation / pumping plan.

[0101] The grounding wire page at least includes a grounding wire management page, and specific operations are performed through the grounding wire management page.

[0102] The grounding wire management page includes at least a grounding wire record list, a grounding wire selection button, an executor input box, an installation point input box, and a restorer input box. The grounding wire record list is used to display the currently grounded line and its grounding-related information. The grounding wire selection button, the executor input box, the installation point input box, and the restorer input box are used to input new line grounding-related information to ensure that staff can view the line grounding status in real time.

[0103] These events are related to the safety of the entire plant's operation. All front-line personnel should be able to quickly check them at any time and be notified as soon as possible. This requires the use of mobile platforms. We cannot always emphasize that people should take the initiative to understand, but we must also simplify the ways to understand and mobilize people's enthusiasm. Before any work starts, it should not rely solely on the control of a few people, but also reduce the difficulty for the work leader to understand the on-site situation.

[0104] The Select Grounding Line button allows staff to select the line to be grounded. Line information is provided by the mobile app's connected network and can be directly imported. Staff can simply click the button to scroll through the selections. This scrolling selection method avoids input errors that can lead to a mismatch between the actual situation on site and the information displayed on the phone.

[0105] The Executor field is used to enter the personnel who performed the grounding operation on the line; the Restorer field is used to enter the personnel who disconnected the line from grounding. Ensuring that each grounding and restoration operation has a clear executor facilitates accountability in the event of problems and helps ensure operational accuracy and safety.

[0106] By recording the information of the executor and restorer, it is possible to clearly understand the executor and execution time of each operation, which increases the transparency of the operation. It helps supervisors and management to better understand the on-site operation situation and make timely decisions.

[0107] The Installation Point field is used to enter the location of the grounding operation performed on the line; ensuring that the location of each grounding operation is accurately recorded. This is crucial for subsequent maintenance, inspection, and troubleshooting, as knowing the exact location of the grounding point can significantly save time and resources.

[0108] The grounding wire management page also includes at least a grounding wire management button, a temporary measures button, a maintenance explanation button and an operation note button. By setting multiple buttons to set corresponding pages, the functions of the mobile APP are increased.

[0109] The staff clicks the temporary measures button to enter the temporary measures page and perform corresponding operations on the temporary measures page;

[0110] The staff clicks the maintenance explanation button to enter the maintenance explanation page and performs corresponding operations on the maintenance explanation page;

[0111] The staff clicks the Run Note button to enter the Run Note page and perform corresponding operations through the Run Note page.

[0112] The staff clicks the grounding wire management button on the non-grounding wire management page to re-enter the grounding wire management page.

[0113] The temporary measures page displays the operations performed by staff on the line and the devices on the line, facilitating subsequent maintenance and repair work.

[0114] The maintenance briefing page displays the staff's maintenance data, making it easy for staff to find maintenance-related matters from previous years.

[0115] The operation notes page displays data related to the line operation process, making it easier for staff to find line-related information.

[0116] The water level calculation module includes a calling module, which is used to call a third-party function curve tool to predict the water level.

[0117] The duty roster page includes the date and the shift schedule, visually displaying which shifts staff members are required to work on which day. This simple and convenient interface adapts to the intelligent interactivity of existing mobile phones. The schedule is an intelligent scrolling schedule, making it easy for staff to view their shifts. Staff members can swipe to view their duty status and directly drag to change shifts.

[0118] The duty status is displayed in different colors. The shifts that staff need to be on duty are indicated in green. When changing shifts, the shifts that need to be on duty can be dragged to other shifts. The shift changes color before changing shifts to indicate that the staff on the current shift do not need to be on duty.

[0119] The duty personnel information includes at least the day shift duty personnel, the mid-shift duty personnel and the night shift duty personnel of the day. According to the actual duty situation, the information of each shift is displayed in detail to facilitate the staff to search and modify.

[0120] When the night shift and the next day shift have the same staff on duty, the duty roster page will display the risk of consecutive shifts, reminding the scheduling staff to adjust the duty roster.

[0121] Managers can see the shifts and total number of all on-duty personnel, the number of adjustments, and make overall adjustments.

[0122] The central control unit is also equipped with an audit alarm module. When the duty roster on the duty roster page is changed, it will be audited through the audit alarm module. After the audit is passed, the shift change will be completed. If the shift change is unreasonable, an automatic alarm will be triggered to remind the scheduling personnel to make adjustments.

[0123] The water level measurement module sets up a water level measurement program, which collects a large amount of data based on the actual water level changes and designs corresponding functions in different water level elevation ranges to make the calculation results closer to reality.

[0124] like Figure 7 As shown, you can also set up a material search page and a corresponding material search module. There are many spare parts for front-line defect elimination, which are sorted into the warehouse. The staff can view the quantity and status of spare parts in real time for easy query.

[0125] The preferred embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the knowledge of ordinary technicians in this field without departing from the scope of the present invention.

[0126] Many other changes and modifications can be made without departing from the spirit and scope of the present invention. It should be understood that the present invention is not limited to the specific embodiments, and the scope of the present invention is defined by the appended claims.

Claims

1. Intelligent interactive platform for power plant production business, It is characterized by: Including mobile APP, The mobile APP contains at least one level page, two level pages and three level pages. The first-level page is a login page, which contains at least an account input box, a password input box, and a login button. After the staff enters the account and password, they click the login button to enter the second-level page. The secondary page at least includes on-duty personnel information, duty list button, water level measurement button, grounding line button and power button. The three-level pages at least include a duty schedule page, a water level calculation page, a grounding line page, and a power page. The staff clicks the duty roster button to enter the duty roster page and edit and view the duty roster through the duty roster module; The staff clicks the water level calculation button to enter the water level calculation page, and uses the water level calculation module to calculate and display the water level; The staff clicks the grounding line button to enter the grounding line page and updates and views the line-related data through the grounding line module; The staff clicks the power button to enter the power page, and generates and displays the power report through the power module; The mobile phone APP includes: A data exchange unit, which is used for connecting the platform to the intranet, extranet and data scheduling network; A storage unit, which is used to store data sent by the data exchange unit and data generated during the use of the platform, and save the data generated during the transmission process in a database for the central control unit to call; Display unit, which is used to display the first-level page, second-level page and third-level page of the mobile phone APP, A central control unit, the central control unit being connected to the display unit, the storage unit and the data exchange unit respectively, for receiving relevant data information sent by each of the units and adjusting the corresponding operating parameters of each unit to corresponding values. The central control unit sends and receives data to the intranet, the extranet and the data scheduling network via the data exchange unit, and then displays the received data on the display unit; The central control unit is equipped with a duty table module, a water level measurement module, an image recognition module, a grounding module and a power module. The duty schedule module is used to adjust and generate the duty schedule. The water level calculation module is used to calculate the water level. The image recognition module is used to recognize data on the image. The grounding module is used to feedback and update line related information. The power module is used to generate power reports.

2. The power plant production business intelligent interactive platform according to claim 1, It is characterized by: The water level calculation page at least includes a current water level input box, a pumping point input box, a power generation point input box, a display box after pumping, and a display box after power generation; Enter the current water level and the number of pumping points, and the display box after pumping will show the predicted water level after pumping. Enter the current water level and the number of power generation points, and the display box after power generation will show the predicted water level after power generation.

3. The power plant production business intelligent interactive platform according to claim 1, It is characterized by: The grounding line page at least includes a grounding line management page, The grounding wire management page at least includes a grounding wire record list, a grounding wire selection button, an executor input box, an installation point input box, and a restorer input box. The ground line selection button is used for the staff to select the line to be grounded; The executor input box is used to input the staff who performs the grounding operation on the line; The installation point input box is used to input the position of the line for grounding operation; The restoration person input box is used to input the personnel who will perform the line grounding operation.

4. The power plant production business intelligent interactive platform according to claim 3, It is characterized by: The grounding line management page also includes at least a grounding line management button, a temporary measures button, a maintenance explanation button, and an operation note button. The staff clicks the temporary measures button to enter the temporary measures page; The staff clicks the maintenance explanation button to enter the maintenance explanation page; The staff clicks the Run Note button to enter the Run Note page; The staff clicks the grounding line management button on the non-grounding line management page to re-enter the grounding line management page. The temporary measures page displays the operations performed by the staff on the line and the devices on the line; The maintenance explanation page displays the maintenance data of the staff; The operation record page displays data related to the line operation process.

5. The power plant production business intelligent interactive platform according to claim 1, It is characterized by: The water level measurement module includes a calling module, and the calling module is used to call a third-party function curve tool.

6. The power plant production business intelligent interactive platform according to claim 1, It is characterized by: The duty roster page includes the date and duty schedule, and the duty status is displayed in different colors.

7. The power plant production business intelligent interactive platform according to claim 1, It is characterized by: The duty personnel information at least includes the day shift duty personnel, the mid-shift duty personnel and the night shift duty personnel of the current day.

8. The power plant production business intelligent interactive platform according to claim 6, It is characterized by: The central control unit is also provided with an audit alarm module. After the duty roster situation on the duty roster page is changed, it is audited by the audit alarm module. After the audit is passed, the shift is completed, and an alarm is automatically triggered if the shift is unreasonable.

9. The power plant production business intelligent interactive platform according to claim 1, It is characterized by: The water level calculation module is provided with a water level calculation program.