Construction cost control method and device for whole engineering process, electronic equipment and medium
Through the automated engineering cost control method, engineering project information is obtained and analyzed, and control instructions are generated and applied, and the problem of inability to deal with project changes in traditional methods is solved, and the emergency control of the cost list and the optimization of construction time is achieved.
Patent Information
- Application Number
- CN202510511685.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2025-05-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The traditional engineering full-process cost control method requires manual intervention and cannot effectively respond to project changes, resulting in the inability to achieve emergency control of the cost list.
By obtaining project information, analyzing and determining project change information, matching and preset project information, if the match is successful, a project drawing control instruction will be generated to modify it, an emergency construction plan will be formulated, and a cost list control instruction will be generated based on this to achieve emergency control.
Emergency control when the project changes is achieved, the impact of project changes on construction time is reduced, and the efficiency and accuracy of cost control is improved.
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Figure CN120047111A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of project planning, and particularly to a method, device, electronic device and medium for controlling the whole-process project cost. Background Art
[0002] With the rapid development of the construction industry, the scale and complexity of engineering projects show an increasing trend. These projects often involve huge capital investment, complex technological processes, multi-party cooperation and communication, and a changing market environment. Therefore, the control of project cost has become a crucial link in project management.
[0003] The traditional method for controlling the whole-process project cost mainly involves manual collection and manual analysis. Workers obtain conclusions by conducting on-site surveys or analyzing historical data of existing projects.
[0004] However, since the traditional method for controlling the whole-process project cost requires manual intervention and adjustment, when the project changes, it is necessary to recalculate, and it is impossible to achieve emergency control of the cost list. Summary of the Invention
[0005] In order to achieve emergency control when the project changes, the present application provides a method, device, electronic device and medium for controlling the whole-process project cost.
[0006] In a first aspect, the present application provides a method for controlling the whole-process project cost, adopting the following technical solution: A method for controlling the whole-process project cost includes: Obtain project information of the engineering project; Determine project change information according to the project information of the engineering project; If the project change information matches the preset project information successfully, then based on the project change information, determine the modified project information, where the modified project information is the modified project information of the engineering project; Generate an engineering drawing control instruction according to the modified project information and modify the engineering drawing to obtain a target engineering drawing; Determine an emergency construction plan according to the construction time of the construction team obtained; Generate a cost list control instruction based on the emergency construction plan and the target engineering drawing and feedback and display it.
[0007] By adopting the above technical solution, after obtaining the engineering project information, the engineering project information is analyzed and sorted according to the engineering project information to determine the project change information; then, the project change information is matched with the preset project information. If the project change information matches the preset project information successfully, it indicates that the project change information meets the project modification standard and can be modified. Based on the project change information, the modified engineering project information, that is, the modified project information, is determined, thereby realizing the verification of the project change information; according to the modified project information, the corresponding engineering drawing control instruction is generated and the engineering drawing is modified, thereby realizing the corresponding modification of the existing engineering drawing to obtain the target engineering drawing; then, according to the construction time of the construction team obtained, an emergency construction plan is formulated to reduce the impact of the project change on the construction time; then, according to the emergency construction plan and the target engineering drawing, the corresponding cost list control instruction is generated and fed back for display, thereby realizing the emergency regulation when the project changes.
[0008] In a possible implementation manner, after obtaining the engineering project information, it further includes: Determine the project score according to the engineering project information; If the project score is greater than the preset project score, determine the project type according to the engineering project information; Determine the cost plan according to the project type.
[0009] By adopting the above technical solution, the engineering project is scored according to the engineering project information to determine the project score, thereby evaluating the engineering project information; then, the project score is compared with the preset project score. If the project score is greater than the preset project score, it indicates that the engineering project information meets the standard. According to the engineering project information, the project type is determined, which helps to manage the project refinement more precisely; after determining the project type, the corresponding cost plan is determined according to the project type, which helps to modify the subsequent engineering project information.
[0010] In a possible implementation manner, determining the modified project information based on the project change information includes: Determine the project change node according to the project change information; Determine the modification plan based on the project change node; Determine the feasibility of the modification plan; If the feasibility is greater than the preset feasibility, determine the modified project information according to the modification plan.
[0011] By adopting the above technical solution, through the analysis and processing of project change information, the project change nodes are determined, so as to determine the project nodes that need to be modified; then, according to the project change nodes, the corresponding modification plan is determined, and the feasibility of the modification plan is determined; the feasibility is compared with the preset feasibility. If the feasibility is greater than the preset feasibility, according to the modification plan, the modified project information is determined, so as to screen out the truly feasible modification plan.
[0012] In a possible implementation manner, after determining the modified project information based on the project change information, it further includes: Determine the engineering material information according to the engineering project information; Draw the first cost chart according to the engineering material information; Draw the second cost chart according to the modified project information; Compare and process the first cost chart and the second cost chart to determine the duplicate cost chart; Determine the modified engineering quantity based on the duplicate cost chart.
[0013] By adopting the above technical solution, through the analysis and extraction of the engineering project information, the engineering material information is determined, providing accurate data for the subsequent drawing of the cost chart; then, according to the engineering material information, the corresponding first cost chart is drawn, and according to the modified project information, the corresponding second cost chart is drawn; then the first cost chart and the second cost chart are compared, and the repeated part is set as the duplicate cost chart, and then according to the duplicate cost chart, it is determined as the modified engineering quantity; thus, the part that does not need to be modified is determined, reducing the repeated workload.
[0014] In a possible implementation manner, after obtaining the target engineering drawing, it further includes: Determine the building 3D drawing according to the target engineering drawing; If the building 3D drawing is consistent with the preset building model, determine the verification result; If the verification result is consistent with the preset verification result, determine the revised drawing and feedback for display.
[0015] By adopting the above technical solution, after obtaining the target engineering drawing, according to the target engineering drawing, draw the building 3D drawing; then compare the building 3D drawing with the preset building model. If the building 3D drawing is consistent with the preset building model, it means that the building data corresponding to the drawing is correct, and then determine the verification result; if the verification result is consistent with the preset verification result, it means that the original engineering drawing can be modified according to the target engineering drawing, and then generate the revised drawing and feedback for display, so as to verify the target engineering drawing.
[0016] In a possible implementation manner, determining an emergency construction plan according to the obtained construction time of the construction team includes: Determine the working time and waiting time according to the construction time; Determine the construction priority according to the working time and the waiting time; Determine the construction schedule based on the construction priority; Determine the emergency construction plan according to the construction schedule.
[0017] By adopting the above technical solution, the working time and waiting time are determined according to the construction time, providing a basis for determining the subsequent construction priority; then, according to the working time and waiting time, the construction priority is determined, and the construction schedule is determined according to the construction priority, so as to ensure that the construction activities can be carried out according to the plan. Then, according to the construction schedule, the emergency construction plan is determined, so as to ensure that the construction can be quickly adjusted when changes occur in the engineering project.
[0018] In a possible implementation manner, generating a cost list control instruction and feeding it back for display based on the emergency construction plan and the target engineering drawing includes: Determine the project detail information according to the target engineering drawing; Determine the project material cost based on the project detail information; Determine the construction difficulty and construction duration according to the emergency construction plan; Determine the labor cost according to the construction difficulty and the construction duration; Generate a cost list control instruction and feed it back for display according to the project material cost and the labor cost.
[0019] By adopting the above technical solution, the project detail information is determined according to the target engineering drawing, so as to ensure a comprehensive understanding of the project requirements. The project material cost is determined according to the project detail information, so as to accurately control the material cost; then, according to the emergency construction plan, the construction difficulty and construction duration are determined, and the labor cost is calculated according to the construction difficulty and construction duration, ensuring effective control of the labor cost; then, the project material cost and labor cost are statistically analyzed, and a corresponding cost list control instruction is generated and fed back for display; thus, the cost list can be controlled and modified when changes occur in the project, reducing the workload.
[0020] In a second aspect, the present application provides a device for controlling the project cost throughout the whole process, adopting the following technical solution: An engineering whole-process cost control device, comprising: an engineering project information acquisition module, a project change information determination module, a modified project information determination module, a first control instruction generation module, an emergency construction plan determination module, and a second control instruction generation module, wherein, The engineering project information acquisition module is used to acquire engineering project information; The project change information determination module is used to determine project change information according to the engineering project information; The modified project information determination module is used to, if the project change information matches the preset project information successfully, determine the modified project information based on the project change information, and the modified project information is the modified engineering project information; The first control instruction generation module is used to generate an engineering drawing control instruction according to the modified project information and modify the engineering drawing to obtain a target engineering drawing; The emergency construction plan determination module is used to determine an emergency construction plan according to the construction time of the construction team obtained; The second control instruction generation module is used to generate a cost list control instruction based on the emergency construction plan and the target engineering drawing and feedback and display it.
[0021] By adopting the above technical solution, after the engineering project information acquisition module acquires the engineering project information, the project change information determination module analyzes and sorts out the engineering project information according to the engineering project information to determine the project change information; then, the modified project information determination module matches the project change information with the preset project information. If the project change information matches the preset project information successfully, it means that the project change information meets the project modification standard and can be modified. Then, based on the project change information, the modified engineering project information, that is, the modified project information, is determined, so as to realize the verification of the project change information; the first control instruction generation module generates a corresponding engineering drawing control instruction according to the modified project information and modifies the engineering drawing, so as to realize the corresponding modification of the existing engineering drawing to obtain a target engineering drawing; then the emergency construction plan determination module formulates an emergency construction plan according to the construction time of the construction team obtained to reduce the impact of the engineering project change on the construction time; then the second control instruction generation module generates a corresponding cost list control instruction according to the emergency construction plan and the target engineering drawing and feedback and displays it, so as to realize the emergency regulation when the project changes.
[0022] In a possible implementation manner, the engineering whole-process cost control device further comprises: a project score determination module, a project type determination module, and a cost plan determination module, wherein, The project score determination module is used to determine the project score according to the engineering project information; A project type determination module, configured to determine the project type according to the engineering project information if the project score is greater than a preset project score; A cost plan determination module, configured to determine a cost plan according to the project type.
[0023] In a possible implementation manner, the modified project information determination module includes: a project change node determination unit, a modification plan determination unit, a feasibility determination unit, and a modified project information determination unit, where The project change node determination unit is configured to determine a project change node according to the project change information; The modification plan determination unit is configured to determine a modification plan based on the project change node; The feasibility determination unit is configured to determine the feasibility of the modification plan; The modified project information determination unit is configured to determine the modified project information according to the modification plan if the feasibility is greater than a preset feasibility.
[0024] In a possible implementation manner, the whole-process engineering cost control device further includes: an engineering material information determination module, a first cost diagram drawing module, a second cost diagram drawing module, a duplicate cost diagram determination module, and a modified engineering quantity determination module, where The engineering material information determination module is configured to determine engineering material information according to the engineering project information; The first cost diagram drawing module is configured to draw a first cost diagram according to the engineering material information; The second cost diagram drawing module is configured to draw a second cost diagram according to the modified project information; The duplicate cost diagram determination module is configured to perform a comparison process on the first cost diagram and the second cost diagram to determine a duplicate cost diagram; The modified engineering quantity determination module is configured to determine a modified engineering quantity based on the duplicate cost diagram.
[0025] In a possible implementation manner, the whole-process engineering cost control device further includes: a building 3D drawing determination module, a verification result determination module, and a revised drawing determination module, where The building 3D drawing determination module is configured to determine a building 3D drawing according to the target engineering drawing; The verification result determination module is configured to determine a verification result if the building 3D drawing is consistent with a preset building model; The revised drawing determination module is configured to determine a revised drawing and feed it back for display if the verification result is consistent with a preset verification result.
[0026] In a possible implementation, the emergency construction plan determination module includes: a first information determination unit, a construction priority determination unit, a construction schedule determination unit, and an emergency construction plan determination unit, where, The first information determination unit is configured to determine the working time and the waiting time according to the construction time; The construction priority determination unit is configured to determine the construction priority according to the working time and the waiting time; The construction schedule determination unit is configured to determine the construction schedule based on the construction priority; The emergency construction plan determination unit is configured to determine the emergency construction plan according to the construction schedule.
[0027] In a possible implementation, the second control instruction generation module includes: a project detail information determination unit, a project material cost determination unit, a second information determination unit, a labor cost unit determination, and a cost list control instruction generation unit, where, The project detail information determination unit is configured to determine the project detail information according to the target engineering drawings; The project material cost determination unit is configured to determine the project material cost based on the project detail information; The second information determination unit is configured to determine the construction difficulty and the construction duration according to the emergency construction plan; The labor cost unit determination is configured to determine the labor cost according to the construction difficulty and the construction duration; The cost list control instruction generation unit is configured to generate a cost list control instruction and feedback it for display according to the project material cost and the labor cost.
[0028] In a third aspect, the present application provides an electronic device, adopting the following technical solution: An electronic device, the electronic device includes: At least one processor; A memory; At least one application program, where at least one application program is stored in the memory and is configured to be executed by at least one processor, and the at least one application program is configured to: execute the above-mentioned engineering whole-process cost control method.
[0029] In a fourth aspect, the present application provides a computer-readable storage medium, adopting the following technical solution: A computer-readable storage medium, including: a computer program stored with the ability to be loaded and executed by a processor to execute the above-mentioned engineering whole-process cost control method.
[0030] In summary, the present application includes the following beneficial technical effects: After obtaining the project information, analyze and sort out the project information according to the project information to determine the project change information. Immediately, match the project change information with the preset project information. If the project change information matches the preset project information successfully, it means that the project change information meets the criteria for project modification and can be modified. Then, based on the project change information, determine the modified project information, that is, determine the modified project information, so as to verify the project change information. Generate the corresponding engineering drawing control instruction according to the modified project information and modify the engineering drawing, so as to modify the existing engineering drawing accordingly to obtain the target engineering drawing. Immediately, formulate an emergency construction plan according to the construction time of the construction team obtained, so as to reduce the impact of project changes on the construction time. Then, generate the corresponding cost list control instruction according to the emergency construction plan and the target engineering drawing and feedback and display it, so as to achieve emergency regulation when the project changes. Description of the Drawings
[0031] Figure 1 is a schematic flowchart of the whole-process project cost control method of this application; Figure 2 is a schematic block diagram of the whole-process project cost control device of this application; Figure 3 is a schematic diagram of the electronic device in the embodiment of this application. Detailed Description of the Embodiment
[0032] The following combines the attached Figures 1-3 to further elaborate on this application.
[0033] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are some, but not all, of the embodiments of this application. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of this application.
[0034] The embodiment of this application provides a whole-process project cost control method, which is executed by an electronic device. The electronic device can be a server or a terminal device. Among them, the server can be an independent physical server, a server cluster or a distributed device composed of multiple physical servers, or a cloud server providing cloud computing services. The terminal device can be a smart phone, a tablet computer, a notebook computer, a desktop computer, etc., but is not limited thereto. The terminal device and the server can be directly or indirectly connected through wired or wireless communication methods, and this application does not make limitations here.
[0035] Reference Figure 1 , the method includes: step S101, step S102, step S103, step S104, step S105, and step S106, where: Step S101, obtain project engineering information.
[0036] In the embodiment of the present application, the project engineering information is all information related to the project during the process of the project engineering from establishment to implementation.
[0037] Specifically, the staff inputs the project engineering type and the title into the electronic device through a scanning device. Monitoring devices are installed on each relevant platform and website. After the electronic device obtains the project engineering type and the specific title of the project, while setting these two as keywords, it generates a project engineering information acquisition instruction and transmits it to the corresponding monitoring device; after the monitoring device obtains the project engineering information acquisition instruction, it transmits the project engineering information involved in the platform and website to the electronic device according to the keywords; after the electronic device obtains the project engineering information, immediately, the electronic device classifies and stores the project engineering information according to the project rules, and establishes a project engineering database. The project engineering database is classified and stored according to the time process from the start to the end of the project engineering, ensuring the whole process related to the project engineering.
[0038] Step S102, determine the project change information according to the project engineering information.
[0039] In the embodiment of the present application, the project change information is the project engineering information corresponding to the changed project caused by human factors.
[0040] Specifically, when the project engineering changes due to human factors, the staff needs to transmit the changed project information to the electronic device. After the electronic device receives this project information, while setting the project name as a keyword, the electronic device matches this keyword with the project engineering database and extracts the project engineering information that matches the keyword from the project engineering database; immediately, the electronic device sets the extracted project engineering information as the project change information.
[0041] Step S103, if the project change information matches the preset project information successfully, then determine the modified project information based on the project change information.
[0042] In the embodiment of the present application, the modified project information is the newly determined project engineering information after modification.
[0043] Specifically, after the electronic device obtains the project change information, the electronic device matches the project change information with the preset project information. If the project change information matches the preset project information successfully, it indicates that the project change information meets the engineering project standards and can be changed reasonably and meets the expectations. Immediately, after the electronic device obtains the project change information that is expected to be changed transmitted by the staff, the electronic device then formulates a corresponding modification plan according to the project change information. After formulating the modification plan, the electronic device immediately verifies the modification plan to ensure that when the modification is made according to the modification plan, the modification is correct and achieves the expected effect. Immediately, the electronic device modifies the engineering project information according to the modification plan and sets the modified engineering project information as the modified project information.
[0044] Further, if the project change information fails to match the preset project information, it indicates that the project change information does not meet the engineering project standards and cannot be changed or does not meet the expected requirements after the change. Immediately, the electronic device transmits the matching result to the display device and proposes a new solution to the project change information for the obtained modification request.
[0045] Among them, the establishment of the preset project information is specifically as follows: the electronic device counts the historical engineering project change standard details and determines the occupancy ratio corresponding to each detail; the electronic device determines the weight corresponding to each detail according to the occupancy ratio and determines the preset project information according to the weight.
[0046] Step S104: Generate an engineering drawing control instruction according to the modified project information and modify the engineering drawing to obtain the target engineering drawing.
[0047] In the embodiment of the present application, the engineering drawing is the engineering drawing before modification; the target engineering drawing is the engineering drawing after modification; the revised drawing is the engineering drawing corresponding to the modified project information.
[0048] Specifically, the electronic device simulates the modification of the engineering project according to the modified project information and draws the revised drawing corresponding to the modified engineering project. Immediately, the electronic device compares the engineering drawing with the revised drawing to determine the part of the drawing that needs to be modified on the engineering drawing. Immediately, the electronic device modifies the engineering drawing to obtain the target engineering drawing.
[0049] Step S105: Determine the emergency construction plan according to the construction time of the obtained construction team.
[0050] In the embodiment of the present application, the construction time distribution diagram is the time distribution diagram of the construction of the construction team for the engineering project, and the construction time includes the working time and the waiting time.
[0051] Specifically, after the electronic device receives the construction time of the construction team transmitted by the staff, the electronic device draws the construction time distribution diagram corresponding to each engineering project according to the construction time. Then, the electronic device matches the waiting time and the working time in each construction time distribution diagram. If the waiting time and the working time match successfully, it means that the working time of the project unrelated to the waiting time of the project is the same at this time. Then the electronic device determines the engineering project corresponding to the working time. Then, according to the matching situation between the working time and the waiting time, the electronic device arranges the construction schedule for the construction time and formulates a corresponding emergency construction plan according to the construction schedule.
[0052] Step S106: Generate a cost list control instruction based on the emergency construction plan and the target engineering drawing and feedback and display it.
[0053] Specifically, after the electronic device formulates the emergency construction plan, the electronic device divides the target engineering drawing according to the building function to obtain multiple sub-engineering drawings. Then, the electronic device matches the sub-engineering drawings with the emergency construction plan, determines the emergency construction plan corresponding to each sub-engineering drawing, and calculates the engineering quantity corresponding to each emergency construction plan. The electronic device calculates the corresponding project cost according to the engineering quantity corresponding to each emergency construction plan, generates a corresponding cost list control instruction according to the calculated project cost, and transmits it to the corresponding display device.
[0054] The embodiment of the present application provides a method for controlling the whole-process project cost. After obtaining the engineering project information, according to the engineering project information, analyze and sort out the engineering project information to determine the project change information. Then, match the project change information with the preset project information. If the project change information and the preset project information match successfully, it means that the project change information meets the standard of project modification and can be modified. Then, based on the project change information, determine the modified engineering project information, that is, determine the modified project information, so as to verify the project change information. Generate a corresponding engineering drawing control instruction according to the modified project information and modify the engineering drawing, so as to modify the existing engineering drawing accordingly to obtain the target engineering drawing. Then, according to the construction time of the construction team obtained, formulate an emergency construction plan to reduce the impact of project changes on the construction time. Then, generate a corresponding cost list control instruction based on the emergency construction plan and the target engineering drawing and feedback and display it, so as to realize the emergency regulation when the project changes.
[0055] After obtaining the engineering project information, it further includes: determining a project score according to the engineering project information; if the project score is greater than the preset project score, determining a project type according to the engineering project information; and determining a cost plan according to the project type.
[0056] Specifically, after the electronic device obtains the engineering project information, the electronic device immediately evaluates the engineering project information according to the historical project evaluation criteria, matches the engineering project information with the historical project evaluation criteria, and determines the project score corresponding to the engineering project information. Subsequently, the electronic device compares the project score with the preset project score. If the project score is greater than the preset project score, it indicates that the engineering project information meets the evaluation criteria. Subsequently, the electronic device extracts keywords for each engineering project information, determines the high-frequency keywords, and the electronic device matches the high-frequency keywords with the historical project types, and sets the historical project type with the highest matching degree as the project type corresponding to the engineering project information. Subsequently, the electronic device determines the influencing factors affecting the project cost according to the project type, such as material costs, labor costs, equipment costs, management costs, taxes, etc. The electronic device then determines the corresponding cost plan according to the influencing factors and the project type.
[0057] In step S103, based on the project change information, the modified project information is determined, specifically including: determining the project change node according to the project change information; determining the modification plan based on the project change node; determining the feasibility of the modification plan; if the feasibility is greater than the preset feasibility, then according to the modification plan, the modified project information is determined.
[0058] Specifically, the electronic device counts the high-frequency words that appear more frequently in each project change information, and compares the high-frequency words that appear in each project change information. The electronic device eliminates the repeated high-frequency words and determines the unique high-frequency word corresponding to each project change information. The electronic device sets the high-frequency word corresponding to each project change information as the keyword. Subsequently, the electronic device matches the keyword with the historical project node information, and sets the project node with the highest matching degree as the project change node. The electronic device evaluates each project change node to determine the specific impact of the project change node on the project objectives, tasks, and resources. Subsequently, the electronic device formulates a corresponding modification plan according to the evaluation result. The electronic device simulates the modification plan to obtain a simulation result, where the simulation result is reflected by a score value, and the better the simulation result, the higher the corresponding score value. The electronic device then determines the feasibility of the modification plan according to the score value, and the feasibility is in a proportional relationship with the score value. The electronic device compares the real-time feasibility with the preset feasibility. If the feasibility is greater than the preset feasibility, it indicates that modifying the engineering project information according to the modification plan has a greater feasibility for the project. Subsequently, the electronic device modifies the engineering project information according to the modification plan. The electronic device sets the modified engineering project information as the modified project information and marks it.
[0059] Based on the project change information, determine the modified project information, and then further include: determining engineering material information according to the engineering project information; drawing a first cost chart according to the engineering material information; drawing a second cost chart according to the modified project information; comparing the first cost chart with the second cost chart to determine the duplicate cost chart; and determining the modified engineering quantity based on the duplicate cost chart.
[0060] Specifically, after the electronic device determines the modified project information, it extracts the building information included in the modified project information, and the electronic device matches the building information with a preset material database to determine the engineering material information; then, the electronic device splits the engineering material information according to the material category to obtain multiple sub-engineering material information, and the electronic device calculates the cost corresponding to each sub-engineering material information. Then, the electronic device draws a first cost chart with the X-axis as the sub-engineering material information and the Y-axis as the cost; while drawing the first cost chart, the electronic device draws a second cost chart according to the method of drawing the first cost chart based on the modified project information, where the X-axes of the first cost chart and the second cost chart correspond one by one; then, the electronic device compares the first cost chart with the second cost chart, sets the overlapping part of the first cost chart and the second cost chart as the duplicate cost chart, and the electronic device analyzes and processes the duplicate cost chart to determine the engineering quantity corresponding to the modified project information and sets it as the modified engineering quantity.
[0061] Obtain the target engineering drawing, and then further include: determining the building 3D drawing according to the target engineering drawing; if the building 3D drawing is consistent with the preset building model, determine the verification result; if the verification result is consistent with the preset verification result, determine the revised drawing and feedback it for display.
[0062] Specifically, after the electronic device obtains the target engineering drawing, it draws a building 3D drawing based on the relevant information included in the target engineering drawing to obtain the building 3D drawing corresponding to the two-dimensional drawing; the electronic device inputs the building 3D drawing into the preset building model. If the building 3D drawing is consistent with the preset building model, it means that the target engineering drawing is correct. Then, the electronic device determines the verification result corresponding to the building 3D drawing according to the matching degree between the building 3D drawing and the preset building model; then, the electronic device matches the verification result with the preset verification result, which means that the building 3D drawing is normal and the modification of the building according to this drawing meets the project standards. Then, the electronic device sets the engineering drawing corresponding to the modified project information as the revised drawing and feedbacks it to the display device of the staff.
[0063] Determine an emergency construction plan according to the obtained construction time of the construction team, including: determine the working time and waiting time according to the construction time; determine the construction priority according to the working time and the waiting time; determine the construction schedule based on the construction priority; determine the emergency construction plan according to the construction schedule.
[0064] Specifically, the electronic device splits the construction time, sets the time when actual work is carried out during the construction period as the working time, and sets the time when work cannot be carried out due to various reasons, such as delayed material supply and waiting after the completion of the previous process, as the waiting time; then the electronic device divides the construction priority according to the length of the working time and the waiting time. The longer the working time and the shorter the waiting time, the higher the corresponding construction priority. And when the waiting time of the first engineering project is the same as the working time of the second project, the electronic device evaluates the engineering project according to the modified project information to determine whether there is a mutual connection between these two engineering projects. If the two engineering projects are not related, the electronic device sets the construction priority of the other project during the waiting time of this project; then the electronic device schedules the construction time of the project according to the construction priority and sets the scheduled project construction time as the construction schedule; the electronic device generates a corresponding emergency construction plan according to the construction schedule corresponding to each engineering project, determines the specific construction details of each project and the time adjustment of the construction team, and ensures that when the waiting time of the first engineering project is equal to the working time of the second project and there is no connection between the first engineering project and the second engineering project, the second engineering project starts construction during the waiting time of the first engineering project to reduce the construction cost.
[0065] In step S106, generate a cost list control instruction based on the emergency construction plan and the target engineering drawing and feedback and display it, specifically including: determine the project detail information according to the target engineering drawing; determine the project material cost based on the project detail information; determine the construction difficulty and construction duration according to the emergency construction plan; determine the labor cost according to the construction difficulty and the construction duration; generate a cost list control instruction based on the project material cost and the labor cost and feedback and display it.
[0066] Specifically, the electronic device analyzes and extracts the target engineering drawings to obtain project details information, verifies the project details information according to historical project details, retains the verified project details information, and re-extracts the project details information that has not passed the verification until the project details information passes the verification; then the electronic device lists the material list corresponding to the project details information according to the project details information, calculates the cost corresponding to each material, and sets it as the project material cost, and the electronic device classifies and stores the project material cost according to different materials; the electronic device analyzes the emergency construction plan, evaluates the technical difficulties and safety risks in the construction process, and sets the corresponding weight according to the impact of factors such as construction environment, equipment conditions, and personnel skills on the construction, and the electronic device calculates the corresponding construction difficulty and construction time according to the weight; then, the electronic device determines the type and number of personnel required according to the construction difficulty and construction time, and calculates the labor cost according to the local labor market price, taking into account factors such as skill level and working time arrangement; the electronic device summarizes the project material cost and labor cost, generates a detailed cost list, and generates a cost list control instruction, so as to control the automatic correction of the cost list and feedback to the display device of the staff.
[0067] Reference Figure 2 The whole process engineering cost control device 20 may specifically include: an engineering project information acquisition module 201, a project change information determination module 202, a modified project information determination module 203, a first control instruction generation module 204, an emergency construction plan determination module 205 and a second control instruction generation module 206, wherein: The project information acquisition module 201 is used to acquire project information; The project change information determination module 202 is used to determine the project change information according to the engineering project information; A modified project information determination module 203 is used to determine the modified project information based on the project change information if the project change information successfully matches the preset project information, and the modified project information is the modified engineering project information; The first control instruction generating module 204 is used to generate an engineering drawing control instruction and modify the engineering drawing according to the modified project information to obtain a target engineering drawing; The emergency construction plan determination module 205 is used to determine the emergency construction plan according to the construction time of the construction team obtained; The second control instruction generating module 206 is used to generate cost list control instructions and feedback display based on the emergency construction plan and the target engineering drawings.
[0068] A possible implementation of the embodiment of the present application, the whole-process project cost control device 20 further includes: a project score determination module, a project type determination module, and a cost plan determination module, where The project score determination module is used to determine the project score according to the project engineering information; The project type determination module is used to determine the project type according to the project engineering information if the project score is greater than the preset project score; The cost plan determination module is used to determine the cost plan according to the project type.
[0069] A possible implementation of the embodiment of the present application, the modified project information determination module 203 includes: a project change node determination unit, a modification plan determination unit, an implementability determination unit, and a modified project information determination unit, where The project change node determination unit is used to determine the project change node according to the project change information; The modification plan determination unit is used to determine the modification plan based on the project change node; The implementability determination unit is used to determine the implementability of the modification plan; The modified project information determination unit is used to determine the modified project information according to the modification plan if the implementability is greater than the preset implementability.
[0070] A possible implementation of the embodiment of the present application, the whole-process project cost control device 20 further includes: an engineering material information determination module, a first cost diagram drawing module, a second cost diagram drawing module, a duplicate cost diagram determination module, and a modified engineering quantity determination module, where The engineering material information determination module is used to determine the engineering material information according to the project engineering information; The first cost diagram drawing module is used to draw the first cost diagram according to the engineering material information; The second cost diagram drawing module is used to draw the second cost diagram according to the modified project information; The duplicate cost diagram determination module is used to compare the first cost diagram with the second cost diagram to determine the duplicate cost diagram; The modified engineering quantity determination module is used to determine the modified engineering quantity based on the duplicate cost diagram.
[0071] A possible implementation of the embodiment of the present application, the whole-process project cost control device 20 further includes: a building 3D drawing determination module, a verification result determination module, and a revised drawing determination module, where The building 3D drawing determination module is used to determine the building 3D drawing according to the target engineering drawing; A verification result determination module, configured to determine a verification result if the building 3D drawing is consistent with a preset building model; A revised drawing determination module, configured to determine a revised drawing and feed it back for display if the verification result is consistent with a preset verification result.
[0072] In a possible implementation manner of an embodiment of the present application, the emergency construction plan determination module 205 includes: a first information determination unit, a construction priority determination unit, a construction schedule determination unit, and an emergency construction plan determination unit, where The first information determination unit is configured to determine a working time and a waiting time according to a construction time; The construction priority determination unit is configured to determine a construction priority according to the working time and the waiting time; The construction schedule determination unit is configured to determine a construction schedule based on the construction priority; The emergency construction plan determination unit is configured to determine an emergency construction plan according to the construction schedule.
[0073] In a possible implementation manner of an embodiment of the present application, the second control instruction generation module 206 includes: a project detail information determination unit, a project material cost determination unit, a second information determination unit, a labor cost unit determination, and a cost list control instruction generation unit, where The project detail information determination unit is configured to determine project detail information according to a target engineering drawing; The project material cost determination unit is configured to determine a project material cost based on the project detail information; The second information determination unit is configured to determine a construction difficulty and a construction duration according to the emergency construction plan; The labor cost unit determination is configured to determine a labor cost according to the construction difficulty and the construction duration; The cost list control instruction generation unit is configured to generate a cost list control instruction and feed it back for display according to the project material cost and the labor cost.
[0074] Those skilled in the art can clearly understand that for the convenience and brevity of description, the specific working processes of the above-described systems, devices, and units can refer to the corresponding processes in the foregoing method embodiments and will not be described herein again.
[0075] An embodiment of the present application also introduces an electronic device from the perspective of an entity device, such as Figure 3 shown Figure 3The electronic device 30 shown includes: a processor 301 and a memory 303. Among them, the processor 301 and the memory 303 are connected, such as through a bus 302. Optionally, the electronic device 30 may further include a transceiver 304. It should be noted that in practical applications, the transceiver 304 is not limited to one, and the structure of the electronic device 30 does not constitute a limitation on the embodiments of the present application.
[0076] The processor 301 may be a CPU (Central Processing Unit), a general-purpose processor, a DSP (Digital Signal Processor), an ASIC (Application Specific Integrated Circuit), an FPGA (Field Programmable Gate Array), or other programmable logic devices, transistor logic devices, hardware components, or any combination thereof. It can implement or execute various exemplary logic blocks, modules, and circuits described in connection with the disclosure of the present application. The processor 301 may also be a combination that implements computing functions, such as a combination including one or more microprocessors, a combination of a DSP and a microprocessor, etc.
[0077] The bus 302 may include a path for transmitting information between the above components. The bus 302 may be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus, etc. The bus 302 may be divided into an address bus, a data bus, a control bus, etc. For ease of representation, Figure 3 only a thick line is used to represent it in the figure, but it does not mean that there is only one bus or one type of bus.
[0078] The memory 303 can be a ROM (Read Only Memory), or other types of static storage devices that can store static information and instructions, a RAM (Random Access Memory), or other types of dynamic storage devices that can store information and instructions. It can also be an EEPROM (Electrically Erasable Programmable Read Only Memory), a CD-ROM (Compact Disc Read Only Memory), or other optical disc storage, optical disc storage (including compact discs, laser discs, optical discs, digital versatile discs, Blu-ray discs, etc.), magnetic disk storage media, or other magnetic storage devices, or any other medium that can be used to carry or store the desired program code in the form of instructions or data structures and can be accessed by a computer, but is not limited thereto.
[0079] The memory 303 is used to store the application program code for implementing the solution of this application, and is controlled by the processor 301 for execution. The processor 301 is used to execute the application program code stored in the memory 303 to implement the content shown in the foregoing method embodiments.
[0080] Among them, the electronic device includes but is not limited to: mobile terminals such as mobile phones, laptop computers, digital broadcast receivers, PDAs (Personal Digital Assistants), PADs (Tablet Computers), PMPs (Portable Multimedia Players), in-vehicle terminals (such as in-vehicle navigation terminals), etc., and fixed terminals such as digital TVs, desktop computers, etc. It can also be a server, etc. Figure 3 The shown electronic device is only an example and should not impose any limitation on the functions and usage scope of the embodiments of this application.
[0081] It should be understood that although the steps in the flowchart of the accompanying drawings are shown in sequence according to the indication of the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless there is a clear indication in this article, the execution of these steps has no strict order limitation, and they can be executed in other orders. Moreover, at least a part of the steps in the flowchart of the accompanying drawings may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily executed at the same moment, but can be executed at different moments, and their execution order is not necessarily sequential, but can be executed alternately or in turn with at least a part of other steps or sub-steps or stages of other steps.
[0082] The above are only some implementation manners of the present application. It should be noted that for those of ordinary skill in the art, several improvements and refinements can be made without departing from the principle of the present application, and these improvements and refinements should also be regarded as the protection scope of the present application.
Claims
1. A method for controlling the cost of a project throughout the entire process, characterized in that: include: Obtain project information; Determine project change information based on the engineering project information; If the project change information matches the preset project information successfully, then based on the project change information, the modified project information is determined, where the modified project information is the modified engineering project information; Generate engineering drawing control instructions according to the modification project information and modify the engineering drawing to obtain the target engineering drawing; Determine the emergency construction plan based on the construction time of the construction team; Based on the emergency construction plan and the target engineering drawings, cost list control instructions are generated and displayed as feedback.
2. A method for controlling the cost of a project throughout the entire process according to claim 1, characterized in that: The obtaining of project information further includes: Determine the project score based on the project information; If the project score is greater than the preset project score, determining the project type according to the engineering project information; Determine the cost plan based on the type of project.
3. A method for controlling the cost of a project throughout the entire process according to claim 1, characterized in that: The step of determining to modify the project information based on the project change information includes: Determine the project change node according to the project change information; Determine a modification plan based on the project change nodes; Determining the feasibility of the proposed modification; If the feasibility is greater than the preset feasibility, the modification project information is determined according to the modification plan.
4. A method for controlling the cost of a project throughout the entire process according to claim 1, characterized in that: The step of determining to modify the project information based on the project change information further includes: Determine engineering material information according to the engineering project information; Draw a first cost diagram based on the engineering material information; Draw a second cost diagram according to the modified project information; Comparing the first cost map with the second cost map to determine a duplicate cost map; Based on the repeated cost chart, the modified project quantity is determined.
5. The method for controlling the cost of a project throughout the entire process according to claim 1, characterized in that: The method of obtaining the target engineering drawing further includes: Determine the building 3D drawing according to the target engineering drawing; If the building 3D drawing is consistent with the preset building model, a verification result is determined; If the verification result is consistent with the preset verification result, the revised drawing is determined and feedback is displayed.
6. A method for controlling the cost of a project throughout the entire process according to claim 1, characterized in that: Determining the emergency construction plan based on the construction time of the construction team obtained includes: Determine the working time and waiting time according to the construction time; Determine the construction priority according to the working time and the waiting time; Determine the construction schedule based on the construction priority; The emergency construction plan is determined according to the construction schedule.
7. A method for controlling the cost of a project throughout the entire process according to claim 1, characterized in that: The generating of cost list control instructions and feedback display based on the emergency construction plan and the target engineering drawings includes: Determine project details according to the target engineering drawings; Determine the material cost of the project based on the project details; Determine the construction difficulty and construction duration according to the emergency construction plan; Determine the labor cost according to the construction difficulty and the construction time; According to the material cost and the labor cost of the project, a cost list control instruction is generated and fed back for display.
8. A whole-process engineering cost control device, characterized in that: include: The engineering project information acquisition module is used to acquire engineering project information; A project change information determination module, used to determine the project change information according to the engineering project information; A modified project information determination module is used to determine the modified project information based on the project change information if the project change information successfully matches the preset project information, wherein the modified project information is the modified engineering project information; A first control instruction generating module is used to generate an engineering drawing control instruction and modify the engineering drawing according to the modification project information to obtain a target engineering drawing; The emergency construction plan determination module is used to determine the emergency construction plan according to the construction time of the construction team obtained; The second control instruction generating module is used to generate cost list control instructions and feedback display based on the emergency construction plan and the target engineering drawings.
9. An electronic device, characterized in that: The electronic device includes: at least one processor; Memory; At least one application, wherein the at least one application is stored in a memory and configured to be executed by at least one processor, and the at least one application is configured to: execute a method for controlling the cost of a whole project process as described in any one of claims 1 to 7.
10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed in a computer, the computer is caused to execute a method for controlling the cost of a whole project process as described in any one of claims 1 to 7.
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