Production management and control system and method
Through the production management and control system, the engineering projects are refined and decomposed and data visualized display are solved, and the problems of data dispersion and island phenomena in traditional engineering project management are realized, refined management and control are improved, and the management efficiency and quality of engineering projects are improved.
Patent Information
- Application Number
- CN202510506185.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2025-08-12
AI Technical Summary
Traditional engineering project management systems have data dispersion and serious island phenomena in data collection, analysis and decision-making support, and cannot achieve refined management and control, resulting in low efficiency, high costs and difficult to guarantee quality.
It provides a production management and control system, including engineering decomposition module, initialization module, plan reporting module, progress reporting module, data acquisition module, data processing module, data visualization module and user permission management module. By refinely decomposing, data initialization, plan reporting, progress tracking and visual display of engineering projects, it realizes refined management of the entire process.
It improves the management efficiency and data visibility of engineering projects, enhances the scientific nature of decision-making, ensures the accuracy of project progress and resource allocation, and provides technical support and guarantees.
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Figure CN120471575A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of data management, and in particular to a production control system and method. Background Art
[0002] In today's digital age, the construction industry is undergoing profound changes. Traditional construction methods face numerous challenges, including inefficiency, high costs, difficulty ensuring quality, and wasted resources. To adapt to market demands and industry trends, leveraging technology to achieve digital transformation, enhance project management, reduce costs, improve quality, shorten construction schedules, achieve sustainable development, and enhance the core competitiveness of construction companies has become an inevitable choice.
[0003] During the process of enterprise digitalization, it was found that traditional engineering project management systems have many shortcomings in data collection, analysis, and decision support. These include: scattered data sources and lack of effective integration, serious data silos between different systems, etc., making it impossible to achieve refined control over engineering project management.
[0004] In the face of the above problems, there is an urgent need for a production control system and method that can achieve refined control of engineering project management. Summary of the Invention
[0005] One of the objectives of the present invention is to provide a production control system that can achieve refined control of engineering project management.
[0006] In order to solve the above technical problems, this application provides the following technical solutions:
[0007] A production control system, comprising:
[0008] The project decomposition module is used to decompose the started but unfinished unit projects;
[0009] The initialization module is used to initialize the progress report of the selected unit project, including receiving the contract cost and cumulative completed output value of the corresponding unit project; receiving the input of the actual quantity and cumulative quantity of the corresponding unit project; submitting the input data for review; receiving review status information and locking the data that has passed the review;
[0010] The plan reporting module is used to create a plan output value reporting record corresponding to a unit project at a preset time; it is also used to receive the plan data corresponding to the plan output value reporting record, submit the plan data for review, and receive the plan data after review and adjustment;
[0011] The progress reporting module is used to select a unit project and determine whether the planned output value reporting record of the unit project is complete. If it is complete, it creates a daily report reporting record; it is also used to receive the reporting data of the daily report reporting record and submit it for review.
[0012] Furthermore, it also includes a data acquisition module for obtaining the original business data of each unit project, including progress reports, planned output value reporting records, and daily report filling records;
[0013] The data processing module is used to process the original business data and convert it into usable analytical data;
[0014] The data visualization module is pre-installed with a visualization library that provides visualization components. It is used to receive user selection and editing operations on visualization components and form a personalized display interface based on user operations.
[0015] The display module is used to present the processed analysis data in the form of visual components in the personalized display interface settings.
[0016] Furthermore, it also includes a user authority management module for verifying user identity and providing different analysis data based on user identity and preset role permissions; and for recording the user's personalized display interface settings.
[0017] Furthermore, the decomposed unit projects include: roadbed projects, culvert projects, tunnel projects, track projects, bridge projects, building projects, and temporary construction projects.
[0018] Furthermore, the planned output value reporting records include annual planned output value reporting records, quarterly planned output value reporting records, monthly planned output value reporting records, and weekly planned output value reporting records.
[0019] Furthermore, the visualization components include bar charts, line charts, pie charts, heat maps, and dashboards.
[0020] Furthermore, the data processing module is also used to analyze the pre-processed data, including trend analysis and anomaly detection.
[0021] A second object of the present invention is to provide a production control method using the above system, including the following contents:
[0022] Project decomposition steps: Create unit names for completed unit projects; decompose the parts of the started but unfinished unit projects;
[0023] Initialization step: Initialize the progress report of the selected unit project, including receiving the contract price and cumulative completed output value of the corresponding unit project; also receiving the input of the actual quantity and cumulative quantity of the corresponding unit project, submitting the entered data for review; receiving the review status information, and locking the data that has passed the review;
[0024] Plan reporting steps: Create the planned output value reporting records corresponding to the unit project at the preset time; the planned output value reporting records include annual planned output value reporting records, quarterly planned output value reporting records, monthly planned output value reporting records, and weekly planned output value reporting records;
[0025] Receive the plan data corresponding to the planned output value report, submit it to the designated object for review, and receive the adjusted plan data;
[0026] Progress reporting step: Select a unit project and determine whether the planned output value reporting record for the unit project is complete. If complete, create a daily report reporting record; receive the reported data in the daily report reporting record and submit it to the designated party for review;
[0027] Work inspection and pricing steps: Create a work team, enter data to form the owner's work inspection and pricing ledger, and enter data to form the work team's work inspection and pricing ledger.
[0028] Furthermore, it also includes:
[0029] Data collection steps: Collect original business data, including progress reports, planned output value reporting records, daily report filling records, owner's work inspection and pricing ledgers, and team work inspection and pricing ledgers;
[0030] Data processing steps: Process the original business data and convert it into usable analytical data;
[0031] Data visualization design steps: receiving user selection and editing operations on visualization components, and forming a personalized display interface based on user operations;
[0032] In the data display step, the processed analysis data is presented in the form of visual components in the display interface, and the display interface is displayed on a digital large screen.
[0033] This solution integrates different data, pushes them and displays them in real time. It can realize the whole process and refined management in multiple links such as data collection, processing, analysis and display. It not only improves the management and control efficiency of engineering projects, but also enhances the visibility of data, and provides strong technical support and guarantee for the successful implementation of engineering projects. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 This is a logic block diagram of a production control system according to Example 1;
[0035] Figure 2 The present invention is a flowchart of a production control method according to embodiment 1. DETAILED DESCRIPTION
[0036] The following is further described in detail through specific implementation methods:
[0037] Example 1
[0038] like Figure 1 As shown, a production control system of this embodiment includes:
[0039] The project decomposition module is used to create unit names for completed unit projects; it is also used to decompose the parts of the started but unfinished unit projects. The decomposed unit projects include: roadbed projects, culvert projects, tunnel projects, track projects, bridge projects, building projects, temporary construction projects, etc.
[0040] The initialization module is used to initialize the progress report for the selected unit project. This includes receiving input of the contract cost and cumulative completed output value for the corresponding unit project; the number of units and cumulative completed output for the corresponding unit project; submitting the entered data for review; and receiving review status information and locking approved data. In this embodiment, initialization can be performed multiple times, but data that has already been initialized and approved will be locked and cannot be modified. Review and feedback are provided by a pre-designated account, such as a relevant management personnel.
[0041] The plan reporting module is used to create the planned output value reporting records corresponding to the unit project at the preset time; the planned output value reporting records include annual planned output value reporting records, quarterly planned output value reporting records, monthly planned output value reporting records, and weekly planned output value reporting records;
[0042] In this embodiment, a record of the planned output value reporting for next year is automatically created on the last day of each year, a record of the planned output value reporting for next quarter is automatically created on the last day of each quarter, a record of the planned output value reporting for next month is automatically created on the last day of each month, and a record of the planned output value reporting for next week is automatically created on the last day of each week.
[0043] It is also used to receive the plan data corresponding to the planned output value reporting record, submit it to the designated object for review, and receive the adjusted plan data.
[0044] For example, after selecting the planned output value report for next year in the list, click the "Report Plan" button. In the pop-up interface, enter the next year's output value plan, along with the milestone durations and notes. The previous year's data will be automatically retrieved from the system. Once completed, submit the report to the company for review. The company will make appropriate adjustments based on the project's reported plan data and the company's production needs before issuing it.
[0045] After selecting the planned output value report for the next quarter / month in the list, click the "Plan Report" button. In the pop-up interface, fill in the planned output value, along with the quantity and schedule requirements of major projects, and the node construction period plan by quarter / month. You must also fill in the node construction period completion status of the previous quarter / month, the completion status of key projects, and an analysis of the reasons for non-completion. Once completed, submit the report to the company for review. The company will make appropriate adjustments to the plan data based on the project's reported data and the company's production needs before issuing it.
[0046] The progress reporting module is used to select a unit project and determine whether the planned output value reporting records of the unit project are complete (annual planned output value reporting records, quarterly planned output value reporting records, monthly planned output value reporting records, and weekly planned output value reporting records are all indispensable). If they are complete, a daily report reporting record is created; if they are incomplete, the missing planned output value reporting records need to be completed before they can be created.
[0047] It is also used to receive the reporting data of daily report filling records and submit them to designated objects for review.
[0048] For example, fill in the planned output value, completed output value of the unit project, as well as the planned quantity and completed quantity of the main image projects. After entering, submit it to the company's engineering department for review.
[0049] The Work Inspection and Pricing module is used to create teams and enter data to form the owner's work inspection and pricing ledger, as well as the team's work inspection and pricing ledger. In this embodiment, the team is a labor team. Click the "Add" button, select the labor company in the pop-up interface, then select the team name and save. If the required labor company is not found in the system, add it in the labor supplier management. The labor supplier must be reviewed by the company before it takes effect.
[0050] The owner's acceptance and pricing ledger includes information such as unit project, total construction cost, cumulative completed output value, cumulative pricing amount, current pricing amount, and completed but uninspected output value.
[0051] The team acceptance and pricing record includes information such as the acceptance team, labor company, cumulative pricing, current pricing amount, project unit, cumulative pricing amount, and accumulation after current pricing.
[0052] The data collection module is used to obtain the original business data of each unit project, including progress reports, planned output value reporting records, daily report filling records, owner's work inspection and pricing ledgers, and team work inspection and pricing ledgers;
[0053] The data processing module is used to process the original business data and convert it into usable analytical data. Specifically:
[0054] The data processing module preprocesses the original business data, including: data cleaning, removing redundant data, repairing missing values, and standardizing data formats; data aggregation, classifying and summarizing data according to dimensions such as time, space, and projects; and data conversion, converting raw data into structured analysis data.
[0055] The data visualization module has a pre-installed visualization library, which provides visualization components such as bar charts, line charts, pie charts, heat maps, and dashboards.
[0056] It is used to receive user selections and edit operations on visual components and form a personalized display interface based on the user's operations. In this embodiment, a drag-and-drop interface interaction method is provided, allowing users to freely combine components. For example, drag a visual component to adjust its position; drag the edge of a visual component to scale it to adjust its size; drag a new visual component into the display interface to add it; drag an existing visual component out of the display area to delete it, etc.
[0057] The user rights management module is used to verify user identity and provide different analytical data based on user identity and preset role permissions. It is also used to record the user's personalized display interface settings, so that different users can customize their own interface layout to meet management needs.
[0058] The display module is used to present the processed analysis data in the form of visual components in the display interface, and display the display interface on the digital large screen. For example, the display is presented in the form of a bar chart or a line chart on the digital large screen.
[0059] It is also used to provide interactive functions and receive user operations such as viewing detailed information, switching data perspectives, and refreshing data.
[0060] Based on the above system, this embodiment also provides a production control method, such as Figure 2 As shown, including the following:
[0061] Project decomposition steps: Create unit names for completed unit projects; decompose the started but unfinished unit projects. The decomposed unit projects include: roadbed projects, culvert projects, tunnel projects, track projects, bridge projects, building projects, temporary construction projects, etc.
[0062] Initialization step: Initialize the progress report of the selected unit project, including receiving the contract price and cumulative completed output value of the corresponding unit project; also receiving the input of the actual quantity and cumulative quantity of the corresponding unit project, submitting the entered data for review; receiving the review status information, and locking the data that has passed the review;
[0063] Plan reporting steps: Create the planned output value reporting records corresponding to the unit project at the preset time; the planned output value reporting records include annual planned output value reporting records, quarterly planned output value reporting records, monthly planned output value reporting records, and weekly planned output value reporting records;
[0064] Receive the planned data corresponding to the planned output value reporting record, submit it to the designated object for review, and receive the adjusted planned data.
[0065] Progress reporting steps: Select a unit project and determine whether the planned output value reporting records of the unit project are complete (annual planned output value reporting records, quarterly planned output value reporting records, monthly planned output value reporting records, weekly planned output value reporting records, none of which can be missing). If they are complete, create a daily report reporting record; if they are incomplete, you need to complete the missing planned output value reporting records before you can create it.
[0066] Receive the data from daily report submissions and submit them to designated parties for review. For example, report the planned and completed output value of the unit project, as well as the planned and completed quantities of major image projects. Once completed, submit the data to the company's engineering department for review.
[0067] Work inspection and pricing steps: Create a team, enter data to form the owner's work inspection and pricing ledger, and enter data to form the team's work inspection and pricing ledger. In this example, the team is a labor team. Click the "Add" button, select the labor company in the pop-up interface, then select the team name, and save. If the required labor company is not found in the system, add it in the labor supplier management. The labor supplier must be reviewed by the company before it takes effect.
[0068] The owner's acceptance and pricing ledger includes information such as unit project, total construction cost, cumulative completed output value, cumulative pricing amount, current pricing amount, and completed but uninspected output value.
[0069] The team acceptance and pricing record includes information such as the acceptance team, labor company, cumulative pricing, current pricing amount, project unit, cumulative pricing amount, and accumulation after current pricing.
[0070] Data collection steps: Collect original business data, including progress reports, planned output value reporting records, daily report filling records, owner's work inspection and pricing ledgers, and team work inspection and pricing ledgers;
[0071] Data processing steps: Processing raw business data to convert it into usable analytical data; data preprocessing includes data cleaning, data aggregation, and data conversion; data analysis includes trend analysis, anomaly detection, and predictive analysis;
[0072] Data visualization design steps: Receive user selections and edits of visualization components, and create a personalized display interface based on the user's actions. This embodiment provides a drag-and-drop interface interaction method, allowing users to freely combine components. For example, drag a visualization component to adjust its position; drag the edge of a visualization component to resize it; drag a new visualization component into the display interface to add it; and drag an existing visualization component out of the display area to delete it.
[0073] The data display step presents the processed analysis data in the form of visual components in the display interface, and displays the display interface on the digital large screen. For example, the display may be in the form of a bar chart or a line chart.
[0074] The solution of this embodiment achieves refined, scientific, and efficient control over project management, significantly improving the quality and efficiency of project management. The system uses a project decomposition module to break down already started but unfinished unit projects, allowing each project unit to be effectively managed and ensuring the accuracy of project progress and resource allocation. The initialization module ensures the accuracy of basic data by entering and reviewing data such as contract cost, image quantity, and cumulative quantity. The plan reporting module implements multi-level annual, quarterly, monthly, and weekly planned output value reporting, and flexibly adjusts it according to the company's production needs, effectively ensuring the executability and controllability of the plan. The progress reporting module ensures the accurate connection between the actual progress of each unit project and the planned output value by creating and reviewing daily report reporting records, facilitating the timely identification and resolution of problems in the project progress. The work inspection and pricing module ensures the transparency of project pricing through the owner's work inspection and pricing ledger and the team's work inspection and pricing ledger.
[0075] With the support of the data visualization module, users can customize the interface design based on their needs. By dragging, scaling, adding, and removing visualization components, they can flexibly configure the data display interface, presenting project data in intuitive formats such as bar charts, line graphs, and pie charts, allowing managers to quickly obtain key information and make informed decisions. The display module further presents these data visualizations on a large digital screen, providing real-time interaction and perspective switching capabilities, making the overall status of the project clear at a glance.
[0076] In summary, this solution has achieved full-process automation and intelligence in multiple links such as data collection, processing, analysis and display, which not only improves the management and control efficiency of engineering projects, but also enhances data visibility and scientific decision-making, providing strong technical support and guarantee for the successful implementation of engineering projects.
[0077] Example 2
[0078] The difference between this embodiment and embodiment one is that the data acquisition module in this embodiment is also used to collect other business data from preset back-end channels. The other business data includes various types of data such as construction progress, safety management, material control, and labor management; the back-end channels include the company's business system, API interface, direct file import, etc.
[0079] The data collection module is also used to achieve real-time dynamic binding with the back-end channel data source to ensure real-time synchronization of the subsequently displayed data with the original business data. In this embodiment, push-type data updates are adopted to deliver the latest original business data to the front end with a delay of milliseconds.
[0080] The data processing module is also used to analyze the pre-processed data. The analysis includes:
[0081] Trend analysis uses a pre-set time series analysis model to predict future construction progress trends, helping management optimize construction plans. For example, a construction project's current progress is 60%, but the projected completion date is approaching. The system uses a time series analysis model to predict the construction completion rate trend over the next few days based on the amount of work completed and the efficiency of construction personnel. The output is a trend chart showing that progress may only reach 90%, and the system generates recommendations: increase construction personnel or adjust task priorities. For another example, a project is expected to require a large amount of concrete in the coming week, but inventory levels are unknown. The system uses a regression analysis forecasting model to predict concrete consumption for the coming week based on historical usage, project demand plans, and construction progress.
[0082] Anomaly detection uses cluster analysis and outlier detection algorithms to automatically identify abnormal data, including construction delays and surges in safety hazards. For example, the number of hazard reports submitted daily at a construction site typically ranges from 5 to 10, but suddenly increases to 50 on one day. The system uses a K-means clustering algorithm to identify data deviations from the normal range and, combined with historical data, identifies the source of the anomaly. Subsequently, management personnel can be notified and advised to conduct an immediate on-site inspection to identify the cause of the hazard.
[0083] The data processing module processes and analyzes the massive amount of raw business data collected to provide highly operational business insights and decision support.
[0084] This embodiment achieves comprehensive collection and integration of multi-dimensional business data such as construction progress, safety management, material control, and labor management through the deep integration of the data collection module and the back-end channels. Through the push-type data update mechanism, the system can transmit the latest business data to the front end with millisecond-level delay, ensuring the timeliness of managers in data decision-making.
[0085] In terms of data processing, this embodiment further enhances the depth and breadth of data analysis. The system uses a time series analysis model to predict construction progress trends, helping managers identify potential delays and providing optimization suggestions, such as increasing human resources or adjusting task priorities, to ensure timely project completion. Furthermore, based on a regression analysis forecasting model, the system accurately estimates material consumption needs for the coming week, helping management plan resource allocation in advance and avoid material shortages that could impact construction progress.
[0086] In summary, this embodiment achieves efficient processing and analysis of massive amounts of raw business data, and can also convert data into highly actionable business insights, providing managers with more accurate decision support.
[0087] The above are only embodiments of the present invention. The invention is not limited to the fields involved in this implementation case. Common knowledge such as the known specific structures and characteristics in the scheme is not described in detail here. Ordinary technicians in the relevant field are aware of all common technical knowledge in the technical field to which the invention belongs before the application date or priority date, can obtain all existing technologies in the field, and have the ability to apply conventional experimental means before that date. Ordinary technicians in the relevant field can improve and implement this scheme in combination with their own abilities under the inspiration given by this application. Some typical known structures or known methods should not become obstacles for ordinary technicians in the relevant field to implement this application. It should be pointed out that for those skilled in the art, without departing from the structure of the present invention, several variations and improvements can be made, which should also be regarded as the scope of protection of the present invention. These will not affect the effect of the implementation of the present invention and the practicality of the patent. The scope of protection required by this application shall be based on the content of its claims, and the specific implementation methods and other records in the specification can be used to interpret the content of the claims.
Claims
1. A production control system, characterized in that: include: The project decomposition module is used to decompose the started but unfinished unit projects; The initialization module is used to initialize the progress report of the selected unit project, including receiving the contract cost and cumulative completed output value of the corresponding unit project; receiving the input of the actual quantity and cumulative quantity of the corresponding unit project; submitting the input data for review; receiving review status information and locking the data that has passed the review; The plan reporting module is used to create the planned output value reporting records corresponding to the unit project at the preset time; It is also used to receive the plan data corresponding to the planned output value reporting record, submit the plan data for review, and receive the plan data after review and adjustment; The progress reporting module is used to select a unit project and determine whether the planned output value reporting record of the unit project is complete. If complete, it creates a daily report reporting record; It is also used to receive the reporting data of daily report filling records and submit them for review.
2. The production control system according to claim 1, characterized in that: It also includes a data acquisition module for obtaining the original business data of each unit project, including progress reports, planned output value reporting records, and daily report reporting records; The data processing module is used to process the original business data and convert it into usable analytical data; The data visualization module has a pre-installed visualization library that provides visualization components. Used to receive user selection and editing operations on visual components, and form a personalized display interface based on the user's operations; The display module is used to present the processed analysis data in the form of visual components in the personalized display interface settings.
3. The production control system according to claim 2, characterized in that: It also includes a user rights management module for verifying user identity and providing different analysis data based on user identity and preset role permissions; it is also used to record the user's personalized display interface settings.
4. The production control system according to claim 3, characterized in that: The decomposed unit projects include: roadbed projects, culvert projects, tunnel projects, track projects, bridge projects, building projects, and temporary construction projects.
5. A production control system and method according to claim 4, characterized in that: The planned output value reporting records include annual planned output value reporting records, quarterly planned output value reporting records, monthly planned output value reporting records, and weekly planned output value reporting records.
6. The production control system according to claim 5, characterized in that: The visualization components include bar charts, line charts, pie charts, heat maps, and dashboards.
7. The production control system according to claim 6, characterized in that: The data processing module is also used to analyze the pre-processed data, including trend analysis and anomaly detection.
8. A production control method, using the system according to any one of claims 1 to 7, characterized in that: Includes the following: Project decomposition steps: Create unit names for completed unit projects; decompose the parts of the started but unfinished unit projects; Initialization step: Initialize the progress report of the selected unit project, including receiving the contract cost and cumulative completed output value of the corresponding unit project; also receiving the input of the actual quantity and cumulative quantity of the corresponding unit project, and submitting the entered data for review; Receive audit status information and lock the data that has passed the audit; Plan reporting steps: Create the planned output value reporting records corresponding to the unit project at the preset time; the planned output value reporting records include annual planned output value reporting records, quarterly planned output value reporting records, monthly planned output value reporting records, and weekly planned output value reporting records; Receive the plan data corresponding to the planned output value report, submit it to the designated object for review, and receive the adjusted plan data; Progress reporting step: Select a unit project and determine whether the planned output value reporting record for the unit project is complete. If complete, create a daily report reporting record; receive the reported data in the daily report reporting record and submit it to the designated party for review; Work inspection and pricing steps: Create a work team, enter data to form the owner's work inspection and pricing ledger, and enter data to form the work team's work inspection and pricing ledger.
9. The production control method according to claim 8, characterized in that: Also includes: Data collection steps: Collect original business data, including progress reports, planned output value reporting records, daily report filling records, owner's work inspection and pricing ledgers, and team work inspection and pricing ledgers; Data processing steps: Process the original business data and convert it into usable analytical data; Data visualization design steps: receiving user selection and editing operations on visualization components, and forming a personalized display interface based on user operations; In the data display step, the processed analysis data is presented in the form of visual components in the display interface, and the display interface is displayed on a digital large screen.