Intelligent method and system for project all-element management
Through the intelligent engineering full factor management methods and systems, the onlineization and automation of project acceptance has been achieved, and the problems of low efficiency and serious fraud in the existing technology have been solved, the quality and efficiency of the project have been improved, and the costs have been reduced.
Patent Information
- Application Number
- PCT/CN2025/072545
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-11-22
- Filing Date
- 2025-01-15
- Publication Date
- 2025-05-30
AI Technical Summary
The existing project acceptance is inefficient and serious falsification, especially in the construction industry. The manual model leads to low construction and management efficiency, frequent errors and accidents, and high costs and difficult to guarantee quality.
Provide an intelligent engineering full-factor management method and system. Through the management personnel editing inspection point information in the background, the front-line acceptance personnel view the project acceptance drawings on the terminal equipment, check the inspection points one by one, and realize online quality acceptance. The system automatically saves and manages inspection point information, generates project data file packages, and conducts automatic settlement and approval processes.
It improves the efficiency of project acceptance, reduces acceptance omissions and fraud, improves the efficiency and quality of construction and operation and maintenance, reduces costs, and achieves the quality, efficiency and cost reduction of engineering enterprises.
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Figure CN2025072545_30052025_PF_FP_ABST
Abstract
Description
A method and system for managing all factors of intelligent engineering Technical Field
[0001] The present invention relates to the technical field of intelligent engineering acceptance, and in particular to an intelligent engineering full-factor management method and system. Background Art
[0002] With the development of basic technologies such as computer technology, mathematical algorithms, and deep learning, the entire society is currently in the era of the Internet and digitalization. The characteristic of this era is that everything is interconnected, with a rich and complete database as the core, that is, "people and people, machines and machines, machines and people are connected as one." Therefore, digital technology and artificial intelligence technology are specifically used in mobile payments, unmanned driving, intelligent navigation and other aspects, which greatly improves work and life efficiency.
[0003] On the other hand, the entire construction industry is still in a manual mode in terms of project acceptance, which is far behind the times.
[0004] (1) Standards: The engineering industry is strictly regulated by technical specifications. There are many specifications, and they all rely on human memory. Therefore, the number of errors in the entire engineering process is unimaginable. For example, there are more than 300 technical specifications for construction technology at the national and industry levels, and there are many supporting detailed technical regulations.
[0005] (2) Quality: Because of the above problems with the standards, the industry’s “design, construction, and maintenance” have long been: 1) The one-time quality delivery often has a very low pass rate, and the quality is maintained at a level that just meets the target and is unstable. For example, everyone in the industry knows that construction projects are implemented according to national standards, that is, the minimum standards, and the total one-time pass rate is often less than 50%; 2) It is impossible to achieve the goal of quality implementation, let alone the need for responsibility traceability.
[0006] (3) Efficiency: The manual mode is the lowest mode, especially in the construction industry, which is an industry with a large number of employees and a low cultural threshold. The core factors of manual work such as "large differences in cognitive understanding ability, limited time and energy costs, and unstable work processes and results" have caused the construction industry's engineering construction and management efficiency to be low for a long time, and errors and accidents to occur frequently.
[0007] (4) Cost management: Given the two uncertainties of the construction and engineering industry, namely, the “numerous tasks and manual mode”, the uncertain combination of multiple participating elements naturally leads to high costs, which has been the case for a long time and in all countries.
[0008] (5) Operation and maintenance management: A large proportion of incorrect and missing information makes property maintenance inconvenient. For example, when maintaining and replacing doors, windows, and exterior wall materials, it is impossible to understand the background of materials and processes, as well as replacement products.
[0009] (6) Supervision: "Engineering data and documents", one of the core elements of supervision, have long been out of control. Except for a small portion of data and documents related to the safety of the main structure, which are still qualified, a large proportion of information is wrong or missing, making it very difficult to trace and hold people accountable. For example, batches of handwritten documents are common.
[0010] The inventor has been in the industry for nearly 30 years and has rich experience in the whole industry business such as "design, review, construction, quality inspection", etc. He has deeply understood and recognized the above-mentioned pain points in the construction industry and established a working mode of "design guidance, design, construction, operation and maintenance integrated industry closed loop". (1) First, solve the problem of architectural design, sort out and organize the experience and research results over the years, and edit and publish professional books such as "Fine Design", "General Specifications for Master Plan Design", "General Specifications for Underground Garage Design", "General Specifications for Residential Building Design", "General Specifications for Community Commercial Design", "General Specifications for Nursery Elderly Care and Ancillary Design", and "General Specifications for Mandatory Clauses of Real Estate Building Design Code", in order to reduce the workload of designers in searching for specifications and minimize the probability of readers misunderstanding the clauses. (2) Patents: Two authorized invention patents have been obtained, namely "Automatic Design Calculation Method and System for Architectural Design" and "Intelligent Screening and Determination Method and System for Architectural Specifications", and the patent "Engineering Design Pre-Information Generation Method, Information Display Method and Drawing Review Method" is under review. These patents can greatly assist and automatically realize the execution of many work contents of architectural design, and promote construction and advance the gradual realization of "digital design, construction, operation and maintenance integration"; (3) Based on these accumulations and patents, developing a set of intelligent engineering full-factor management methods and systems has become the applicant's work goal, in order to improve the quality and efficiency of the construction industry and completely change the backward situation of the industry. Summary of the Invention
[0011] The purpose of the present invention is to overcome the above technical deficiencies and provide an intelligent engineering full-factor management method and system to solve the current technical problems of low efficiency and serious fraud in engineering acceptance.
[0012] In order to achieve the above technical objectives, the present invention adopts the following technical solutions:
[0013] According to a first aspect of the present invention, there is provided a method for managing all elements of an intelligent engineering project, comprising:
[0014] When it is detected that a manager has logged into the system, the project resources are read from the database and, based on the project information, the engineering tasks to be accepted are displayed so that the manager can mark checkpoints on the engineering tasks to be accepted;
[0015] When the system detects the administrator's editing operation on the inspection point, it saves the inspection point information edited by the administrator and stores the project data saved after the administrator's editing as a project acceptance drawing;
[0016] When it is detected that the first-line acceptance personnel inquires about the engineering tasks to be accepted through the terminal device, the engineering acceptance drawings are sent to the terminal device of the first-line acceptance personnel, so that the first-line acceptance personnel can check and accept the engineering tasks one by one according to the inspection points recorded on the engineering acceptance drawings.
[0017] Preferably, the front-line acceptance personnel check and accept the project tasks one by one according to the inspection points recorded on the project acceptance drawings, including:
[0018] First-line acceptance personnel check the construction condition information of each inspection point on the project acceptance drawings. The construction condition information at least includes: various construction specification clauses, material and equipment information;
[0019] First-line acceptance personnel check the construction acceptance specification clauses corresponding to each inspection point on the project acceptance drawings and fill out the quality acceptance record form online.
[0020] Preferably, the method further comprises:
[0021] When the quality acceptance record form submitted by the front-line acceptance personnel is detected, the relevant project leader is notified to check the quality acceptance record form according to the engineering acceptance drawings. After the relevant project leader reviews and approves it, the engineering data file package is generated: If the review fails, the quality acceptance record form is returned and the system marks that re-acceptance is required. After receiving the notification, the acceptance personnel need to complete the acceptance process again;
[0022] The engineering data file package stores all engineering data files of the current engineering project and is marked with the database to which each engineering data file belongs.
[0023] Preferably, the method further comprises:
[0024] Configure different approval permissions for different project acceptance and approval personnel;
[0025] Send the engineering data file package to the acceptance and approval personnel of each engineering project for acceptance and approval according to the preset approval process nodes;
[0026] Connect with the approval system of the regulatory department and submit the engineering document packages that have completed internal acceptance and approval to the regulatory department online.
[0027] Preferably, the method further comprises:
[0028] Automatically settle the project cost based on the project, unit price, and project quantity in the project data file. At the same time, automatically complete the project settlement results based on the project economic cost data stored in the system, and synchronize the settlement results to the management personnel;
[0029] and / or,
[0030] The engineering data package shall be handed over to the relevant project departments for review or filing.
[0031] Preferably, when detecting that a manager has logged into the system, reading the project resources from the database includes:
[0032] When it is detected that the management personnel logs into the system, it checks whether the acceptance drawings already exist in the database. If so, the existing acceptance drawings are directly obtained. If not, acceptance drawings are created based on the user design drawings and industry acceptance standards, and the association between the acceptance drawings and the original design drawings is saved.
[0033] Preferably, the method further comprises:
[0034] When it is detected that the first-line acceptance personnel are inquiring about the engineering tasks to be accepted through the terminal equipment, if the system already has the engineering acceptance drawings with the inspection points edited by the management personnel, the system enters the drawing acceptance state. In the drawing acceptance state, the first-line acceptance personnel cannot edit the inspection point information on the engineering acceptance drawings and can only view the information and perform acceptance operations; the system saves the one-to-one correspondence between each inspection point and the formatted acceptance record table.
[0035] Preferably, the checkpoint is generated according to the following steps, including:
[0036] Managers create inspection points for engineering tasks to be accepted. The system generates an inspection point list based on the inspection points created by the managers. Managers can add new inspection points, or modify or delete existing inspection points.
[0037] The system generates a classification data identifier for each inspection point based on the inspection point type selected by the manager when creating the inspection point.
[0038] Preferably, when the system detects an administrator's editing operation on the checkpoint, the system saves the checkpoint information edited by the administrator, including:
[0039] Add a marker component to the point selected by the administrator, and set the checkpoint type of this component to the checkpoint type selected by the user; call the system interface, pass in the layer or model coordinate information and checkpoint type of the current marker point, and the system server saves the checkpoint data; or,
[0040] After the manager selects the inspection point type, he can click multiple locations in the drawing or model to directly add inspection points of the same type in batches. The system will automatically save the added inspection point data.
[0041] Preferably, the detecting manager's editing operation on the checkpoint and saving the checkpoint information edited by the manager include:
[0042] When the administrator clicks on a drawing to trigger a checkpoint, the system retrieves the stored checkpoint types and displays them as a list. The system assigns the checkpoint type selected by the administrator to the corresponding checkpoint. The administrator can delete or modify the checkpoint type of an existing checkpoint by clicking on it.
[0043] If any marked inspection point is deleted, delete the inspection point component on the project acceptance drawing and save the deleted project acceptance drawing. Then call the system server interface to mark the inspection point as deleted.
[0044] If any marked inspection point information is modified, adjust the corresponding inspection point component information on the project acceptance drawing and save the modified project acceptance drawing, call the system server interface, and synchronously modify the inspection point information.
[0045] Preferably, the front-line acceptance personnel check and accept the project tasks one by one according to the inspection points recorded on the project acceptance drawings, including:
[0046] When the system detects that a front-line acceptance staff clicks on an inspection point, it obtains the inspection point type and displays the inspection help menu and acceptance record menu next to the inspection point;
[0047] The inspection help menu is used for the system to obtain the inspection point type and drawing information when the user clicks the inspection help menu, call the interface to obtain the corresponding construction condition information, and display it on the page.
[0048] Preferably, the method further comprises:
[0049] When it is detected that the front-line acceptance personnel clicks the acceptance record menu, the quality acceptance record table read from the database pops up;
[0050] If there is no acceptance record for the inspection point, there will be no data on the pop-up quality acceptance record table, and the page will show that the table content is blank. After the user operates the acceptance item and clicks the Acceptance button, the system will save the acceptance record in the quality acceptance record table;
[0051] If there is an acceptance record for this inspection point, there will be data on the pop-up quality acceptance record form. The front-line acceptance personnel can modify or supplement the form content. After the user's operation, the system automatically saves the information in the quality acceptance record form.
[0052] Preferably, the method further comprises:
[0053] For any inspection point, if all the acceptance items on the quality acceptance record sheet have been inspected, it will be shown that the inspection point has been accepted;
[0054] If all inspection points are completed, all inspection points will be marked as completed on the project acceptance drawing page. When the system verifies that all inspection points are completed, the Acceptance Complete button will appear;
[0055] When the user clicks the Acceptance Complete button, the system marks the project acceptance drawing as completed and saves the drawing information.
[0056] Preferably, the generating of the engineering data file package includes:
[0057] Systematically classify all quality acceptance record sheets under the project acceptance drawings, and establish the relationship between the project acceptance drawings and quality acceptance record sheets, and the relationship between the project acceptance drawings and units and projects;
[0058] All project acceptance materials and early project construction materials are compiled and packaged to form a project data file package. After the relevant project leader completes the confirmation and electronic signature process, the system archives the project data file package. The data can only be viewed and cannot be modified.
[0059] According to a second aspect of the present invention, there is provided an intelligent engineering full-factor management system, comprising:
[0060] A processor, and a memory connected to the processor;
[0061] The memory is used to store computer programs;
[0062] The processor is configured to call and execute the computer program in the memory to perform the above method.
[0063] According to a third aspect of the present invention, there is provided a non-transitory computer-readable storage medium storing computer instructions, wherein the computer instructions are used to cause a computer to execute the above method.
[0064] The technical solutions provided by the embodiments of the present invention may have the following beneficial effects:
[0065] By assigning different permissions to management personnel and frontline acceptance personnel, management personnel can edit the inspection point information for the project tasks to be accepted in the background. Frontline acceptance personnel can query the project tasks to be accepted using their portable terminal devices at the construction site. They can then check the inspection points recorded on the project acceptance drawings one by one and verify the acceptance of the project tasks. By reviewing the inspection point information, they can clarify the content, objects, and inspection standards to be inspected, prevent inspection omissions, and improve the efficiency of project acceptance. In addition, since the inspection is online, the need for manual supplementation of acceptance data after the fact is eliminated, solving the technical problems of manual project acceptance in related technologies, such as low efficiency and serious fraud.
[0066] Furthermore, the technical solution provided in this embodiment, by assigning different system permissions to different personnel, can help front-line acceptance personnel understand construction process standards before construction and make records after construction, greatly improving the work efficiency of engineering personnel. At the same time, it also standardizes the operating specifications of the entire process of construction, acceptance, review, and reporting supervision of engineering personnel, providing strong technical support for engineering companies to improve quality, increase efficiency, and reduce costs. It can greatly improve the quality of engineering construction, improve the convenience and efficiency of construction and operation and maintenance, and significantly increase the benefits of construction, operation and maintenance and related companies and individuals.
[0067] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0068] FIG1 is a flow chart of a method for managing all elements of an intelligent engineering project according to an exemplary embodiment;
[0069] FIG2 is a flow chart of a method for managing all elements of an intelligent engineering project according to another exemplary embodiment;
[0070] 3 to 8 are diagrams showing application examples of a method for managing all elements of an intelligent engineering project according to an exemplary embodiment;
[0071] FIG9 is a schematic diagram showing a menu entry for a user to edit a checkpoint according to an exemplary embodiment;
[0072] FIG10 is a schematic diagram of an interface when a user clicks on a check help menu according to an exemplary embodiment;
[0073] FIG11 is a schematic diagram of an interface when a user clicks on an acceptance record menu according to an exemplary embodiment;
[0074] 12A-12B are schematic diagrams showing a quality acceptance record sheet according to an exemplary embodiment;
[0075] FIG13 is a schematic diagram of automatic settlement of construction costs according to an exemplary embodiment. DETAILED DESCRIPTION
[0076] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0077] As described in the previous background technology, the related art manually performs project acceptance, which has the technical problems of low efficiency and serious fraud.
[0078] In order to effectively solve the problems in the related art, the present invention provides an intelligent engineering full-factor management method and system, which are described in detail below.
[0079] Example 1
[0080] FIG1 is a flow chart of a method for managing all elements of an intelligent project according to an exemplary embodiment. As shown in FIG1 , the method includes:
[0081] Step S11: When it is detected that a manager has logged into the system, the project resources are read from the database, and the engineering tasks to be accepted are displayed based on the project information, so that the manager can mark checkpoints on the engineering tasks to be accepted;
[0082] Step S12: When the system detects that the administrator has edited the inspection point, it saves the inspection point information edited by the administrator and stores the project data saved after the administrator edits it as a project acceptance drawing;
[0083] Step S13: When it is detected that the front-line acceptance personnel inquires about the project tasks to be accepted through the terminal device, the project acceptance drawings are sent to the terminal device of the front-line acceptance personnel, so that the front-line acceptance personnel can check and accept the project tasks one by one according to the inspection points recorded on the project acceptance drawings.
[0084] In practice, the front-line acceptance personnel check and accept the project tasks one by one according to the inspection points recorded on the project acceptance drawings, including:
[0085] First-line acceptance personnel check the construction condition information of each inspection point on the project acceptance drawings. The construction condition information at least includes: various construction specification clauses, material and equipment information;
[0086] First-line acceptance personnel check the construction acceptance specification clauses corresponding to each inspection point on the project acceptance drawings and fill out the quality acceptance record form online.
[0087] It should be noted that the technical solution provided in this embodiment provides a system that displays project acceptance drawings via a web page or app. These project acceptance drawings are based on design software, including but not limited to CAD, BIM, CAXA, Autodesk, Catia, Solidwork, and other software. Preferably, the design software is CAD or BIM.
[0088] The project resources include but are not limited to: digital project resources required for construction, including "drawings with engineering inspection point markings, unit engineering level sub-project and sub-item division and inspection batch lists, engineering progress charts carrying all information links of the project, and material and equipment lists" based on "cost standards, social productivity levels", etc.
[0089] It should be noted that the inspection points can be the inspection points that the front-line construction personnel need to check when accepting the project after the construction is completed, or they can be the inspection points that the operation and maintenance personnel (for example, property) need to inspect daily during the daily maintenance and operation management process after the project is completed and delivered.
[0090] The first-line acceptance personnel include but are not limited to: first-line construction personnel of construction and related enterprises, property management personnel of property management and related enterprises, and other first-line employees who need to verify acceptance inspection points.
[0091] The construction condition information at least includes: various construction specification clauses, material and equipment information;
[0092] 1) Various construction specification clauses include "relevant specification clauses, industry best practice clauses, project-related construction organization design, design instructions, technical briefing and design changes" in many aspects such as "construction technology and construction acceptance"; 2) Material and equipment information includes certification information such as "materials, equipment and specific inspections" used in this inspection point under the conditions that meet technical standards.
[0093] When users click on a checkpoint, both types of information are immediately displayed on the terminal device, and users can freely switch between viewing details. This allows frontline acceptance personnel to easily obtain acceptance operation guidance information without having to memorize regulatory clauses, preventing missed acceptances and incorrect acceptances.
[0094] After clicking on an inspection point, frontline inspectors can review the relevant content and clauses in technical standards and documents while completing the "select and confirm" process in the quality acceptance record form. This allows them to meticulously document every detail of construction acceptance without having to memorize regulatory clauses and clauses, effectively preventing omissions and irregularities in acceptance.
[0095] It should be noted that in the quality acceptance record form (see Figures 12A-12B):
[0096] 1) Basic information is automatically filled in by the system; 2) Various technical options are selected by the user in accordance with the technical standards for acceptance; 3) Material and equipment information can be reviewed and compared; 4) According to technical specifications, some inspection points require photo or video capture, and the user performs operations and saves them here; 5) The operator signs and the routine is completed; 6) The upload task to the cloud is completed.
[0097] It is understood that the technical solution provided by this embodiment assigns different permissions to management personnel and frontline acceptance personnel. Management personnel edit the inspection point information for the project tasks to be accepted in the background. Frontline acceptance personnel use their portable terminal devices to query the project tasks to be accepted at the construction site. They use the terminal devices to view the inspection points recorded on the project acceptance drawings and verify the acceptance of the project tasks one by one. By viewing the inspection point information of the inspection points, they clarify the content, objects, and inspection standards to be inspected, prevent inspection omissions, and improve the efficiency of project acceptance. In addition, because the inspection is online, the phenomenon of manual supplementation of acceptance data after the fact is avoided, solving the technical problems of manual project acceptance in related technologies, such as low efficiency and serious fraud.
[0098] Referring to FIG2 , preferably, the method further includes:
[0099] When the quality acceptance record form submitted by the front-line acceptance personnel is detected, the relevant project leader is notified to check the quality acceptance record form according to the engineering acceptance drawings. After the relevant project leader reviews and approves it, the engineering data file package is generated: If the review fails, the quality acceptance record form is returned and the system marks that re-acceptance is required. After receiving the notification, the acceptance personnel need to complete the acceptance process again;
[0100] The engineering data file package stores all engineering data files of the current engineering project and is marked with the database to which each engineering data file belongs.
[0101] It is understandable that the benefit of such a setting is that the secondary verification can ensure the authenticity and accuracy of the acceptance information, and ensure that the acceptance process of the front-line acceptance personnel is compliant and the records are detailed.
[0102] Preferably, the method further comprises:
[0103] Configure different approval permissions for different project acceptance and approval personnel;
[0104] Send the engineering data file package to the acceptance and approval personnel of each engineering project for acceptance and approval according to the preset approval process nodes;
[0105] Connect with the approval system of the regulatory department and submit the engineering document packages that have completed internal acceptance and approval to the regulatory department online.
[0106] Preferably, the method further comprises:
[0107] Automatically settle the project cost based on the project, unit price, and project quantity in the project data file. At the same time, automatically complete the project settlement results based on the project economic cost data stored in the system, and synchronize the settlement results to the management personnel;
[0108] and / or,
[0109] The engineering data package shall be handed over to the relevant project departments for review or filing.
[0110] It can be understood that the system uses the "input of engineering quantity data" to automatically "calculate, synthesize, and combine" the existing "construction drawing budget and engineering quantity list" to complete the "automatic production and delivery" of the settlement of engineering costs at all levels of business projects and the final accounting documents.
[0111] For the automatic settlement of project costs, in a possible implementation method of "linking drawings or models, construction conditions, and cost lists", see Figure 13, the user can select any area on the project drawing (for example, the user selects the bathroom, or the wall of the living room, etc.), and the calculated project cost will be automatically displayed on the page (the system automatically settles according to the area of the selected area and the construction cost, decoration cost, etc. of the selected area); or, the user selects any detail in the project settlement list, and the system automatically selects the corresponding area on the project acceptance drawing (including the building model) and displays it prominently in a highlighted or other color for the user to view.
[0112] According to legal provisions, after the above documents are officially confirmed by the regulatory authorities, the system will transmit the digitized file volumes (books) including the project's "engineering data files, material lists, instructions for use, etc." to the project-related digital urban construction archives and property management companies in accordance with the national standards for digital archives and property management, so that they can be used digitally in the system (related subsystems).
[0113] Preferably, when detecting that a manager has logged into the system, reading the project resources from the database includes:
[0114] When it is detected that the management personnel logs into the system, it checks whether the acceptance drawings already exist in the database. If so, the existing acceptance drawings are directly obtained. If not, acceptance drawings are created based on the user design drawings and industry acceptance standards, and the association between the acceptance drawings and the original design drawings is saved.
[0115] Preferably, the method further comprises:
[0116] When it is detected that the first-line acceptance personnel are inquiring about the engineering tasks to be accepted through the terminal equipment, if the system already has the engineering acceptance drawings with the inspection points edited by the management personnel, the system enters the drawing acceptance state. In the drawing acceptance state, the first-line acceptance personnel cannot edit the inspection point information on the engineering acceptance drawings and can only view the information and perform acceptance operations; the system saves the one-to-one correspondence between each inspection point and the formatted acceptance record table.
[0117] Preferably, the checkpoint is generated according to the following steps, including:
[0118] The manager creates checkpoints for the project task to be accepted. The system generates a checkpoint list based on the checkpoints created by the manager. The manager can add new checkpoints, or modify or delete existing checkpoints (see FIG9 , in one example, the user can select the task edit menu in the function module to enter the interface for creating checkpoints, adding new checkpoints, or modifying or deleting existing checkpoints).
[0119] The system generates a classification data identifier for each inspection point based on the inspection point type selected by the manager when creating the inspection point.
[0120] It should be noted that in actual practice, users can select inspection points by various methods such as clicking and framing. The system will give classified data marks at all inspection point locations according to thematic and professional classification methods, manual or automatic modes, and display them in the drawing or model interface, such as B01, D03, A02, etc. shown in Figure 3.
[0121] Preferably, when the system detects an administrator's editing operation on the checkpoint, the system saves the checkpoint information edited by the administrator, including:
[0122] Add a marker component to the point selected by the administrator, and set the checkpoint type of this component to the checkpoint type selected by the user; call the system interface, pass in the layer or model coordinate information and checkpoint type of the current marker point, and the system server saves the checkpoint data; or,
[0123] After the manager selects the inspection point type, he can click multiple locations in the drawing or model to directly add inspection points of the same type in batches. The system will automatically save the added inspection point data.
[0124] Preferably, the detecting manager's editing operation on the checkpoint and saving the checkpoint information edited by the manager include:
[0125] When the administrator clicks on a drawing to trigger a checkpoint, the system retrieves the stored checkpoint types and displays them as a list. The system assigns the checkpoint type selected by the administrator to the corresponding checkpoint. The administrator can delete or modify the checkpoint type of an existing checkpoint by clicking on it.
[0126] If any marked inspection point is deleted, delete the inspection point component on the project acceptance drawing and save the deleted project acceptance drawing. Then call the system server interface to mark the inspection point as deleted.
[0127] If any marked inspection point information is modified, adjust the corresponding inspection point component information on the project acceptance drawing and save the modified project acceptance drawing, call the system server interface, and synchronously modify the inspection point information.
[0128] Preferably, the front-line acceptance personnel check and accept the project tasks one by one according to the inspection points recorded on the project acceptance drawings, including:
[0129] When the system detects that a front-line acceptance staff clicks on an inspection point, it obtains the inspection point type and displays the inspection help menu and acceptance record menu next to the inspection point;
[0130] The inspection help menu is used for the system to obtain the inspection point type and drawing information when the user clicks the inspection help menu, call the interface to obtain the corresponding construction condition information, and display it on the page (see Figure 10).
[0131] Preferably, the method further comprises:
[0132] When it is detected that the front-line acceptance personnel clicks the acceptance record menu, a quality acceptance record table read from the database pops up (see Figure 11);
[0133] If there is no acceptance record for the inspection point, there will be no data on the pop-up quality acceptance record table, and the page will show that the table content is blank. After the user operates the acceptance item and clicks the Acceptance button, the system will save the acceptance record in the quality acceptance record table;
[0134] If there is an acceptance record for this inspection point, there will be data on the pop-up quality acceptance record form. The front-line acceptance personnel can modify or supplement the form content. After the user's operation, the system automatically saves the information in the quality acceptance record form.
[0135] Preferably, the method further comprises:
[0136] For any inspection point, if all the acceptance items on the quality acceptance record sheet have been inspected, it will be shown that the inspection point has been accepted;
[0137] If all inspection points are completed, all inspection points will be marked as completed on the project acceptance drawing page. When the system verifies that all inspection points are completed, the Acceptance Complete button will appear;
[0138] When the user clicks the Acceptance Complete button, the system marks the project acceptance drawing as completed and saves the drawing information.
[0139] Preferably, the generating of the engineering data file package includes:
[0140] Systematically classify all quality acceptance record sheets under the project acceptance drawings, and establish the relationship between the project acceptance drawings and quality acceptance record sheets, and the relationship between the project acceptance drawings and units and projects;
[0141] All project acceptance materials and early project construction materials are compiled and packaged to form a project data file package. After the relevant project leader completes the confirmation and electronic signature process, the system archives the project data file package. The data can only be viewed and cannot be modified.
[0142] To facilitate understanding of the technical solution provided by this embodiment, several examples are given below for explanation:
[0143] Example 1: CAD drawing mode displays "waterproof layer" related information and operation form
[0144] Assume that the task of the front-line acceptance personnel is to lay the waterproof layer material numbered as the inspection point B01 in Figure 3. He needs to do two things: understand the construction process standards before construction and make acceptance records after construction.
[0145] (1) Understand the construction process standards before construction:
[0146] In this embodiment, users, namely construction personnel including "front-line workers, team leaders, construction workers, technicians, quality inspectors", etc. enter the system and after authorization, can "view project information, view project CAD drawings and corresponding design instructions, view corresponding related material and equipment information, view assigned work tasks", etc. and perform corresponding operations.
[0147] The technical staff of the construction company opens the CAD drawing "including waterproof layer design" in the system, and according to the "division of sub-projects and sub-items" and the information of design points and inspection points in the relevant bill of quantities, adopts the method of selecting topics, layers, etc., selects the two functional topics of "Construction-Review, Construction-Acceptance", makes a list of inspection points, gives the classified data mark B01 at all inspection point positions, and displays it in the CAD drawing interface.
[0148] The user clicks on the inspection point numbered B01, selects the "Construction - View" function module, and then clicks on the inspection point. 1. The relevant technical specifications for design and construction, relevant design description sections and sentence tables, technical briefings, design changes, material and equipment information library, and other information can be seen; 2. Click on the "Material and Equipment Information Library" to see the list of materials related to the inspection point. Click on each one to further view detailed information including "specifications, origin, material, performance, safety license, etc."
[0149] (2) Make acceptance records after construction:
[0150] Refer to Figure 4. On the tablet, 1) click to open the CAD drawing corresponding to the task. The inspection point numbered B01 will be visible on the layer. In the quality acceptance record form, click "Select, Photo, Video" and other steps one by one according to the specification terms displayed on the left (press the "Upload Management" button in the upper right corner of the interface during this period), and continuously improve the form content until the entire inspection batch is completed. Finally, press the "Upload Management" button in the upper right corner of the interface to complete the inspection batch.
[0151] After all the most basic inspection batch work on the front line is completed, the basic information such as "project management information, materials, equipment" is collected, and the system automatically completes the production and delivery of engineering data file packages according to the project engineering classification and level.
[0152] Example 2: BIM model displays information and operation forms related to "evacuation elements"
[0153] Assume that the task of the front-line acceptance personnel is to "install the fire door numbered as inspection point C04 in Figure 5". He needs to do two things: understand the construction process standards before construction and make acceptance records after construction.
[0154] (1) Understand the construction process standards before construction:
[0155] In this embodiment, users, namely construction personnel including "front-line workers, team leaders, construction workers, technicians, quality inspectors", etc., register and enter the system. After authorization, they can "view project information, view project BIM models and corresponding design instructions, view corresponding related material and equipment information, view assigned work tasks", etc. and perform corresponding operations.
[0156] The technical staff of the construction company opens the BIM model "including evacuation elements" in the system, and adopts methods such as selecting the family library, selecting the two functional topics of "Fire Protection - Review, Fire Protection - Acceptance" and the list of inspection points included in the profession, and adopts the family selection method. The system automatically gives the classification data mark C04 at all inspection point positions according to the classification method of these two topics and architectural professions, and displays it in the BIM model interface.
[0157] The user clicks on the inspection point numbered C04, selects the "Fire Protection - View" function module, and then clicks on the C04 inspection point. 1. Information such as the technical specifications for design and construction related to the inspection point, and the related design instructions, can be seen. 2. Click on the "Material and Equipment Information Library" to see the list of materials related to the inspection point. Click on each one to further view detailed information including "specifications, origin, material, performance, safety license, etc."
[0158] (2) Make acceptance records after construction:
[0159] Referring to Figure 6, on a tablet, 1) click to open the BIM model corresponding to the task. The inspection point represented by C04, which constitutes the corresponding work task, can be seen in the diagram family. 2) After selecting the "Fire Protection - Acceptance" function module, the user clicks on the C04 inspection point. 1) The relevant technical specifications for construction quality acceptance and the relevant design description section and sentence table can be seen. 2) In the quality acceptance record form, the user clicks on the "Select, Photo, Video" steps one by one according to the specifications displayed on the left (during this process, press the "Upload Management" button in the upper right corner of the interface), continuously improving the form content until the entire inspection batch is completed. Finally, press the "Upload Management" button in the upper right corner of the interface to complete the inspection batch.
[0160] After all the most basic inspection batch work on the front line is completed, the basic information such as "project management information, materials, equipment" is collected, and the system automatically completes the production and delivery of engineering data file packages according to the project engineering classification and level.
[0161] Example 3: CAD displays the relevant "safety control point" review mode
[0162] Assume that the task of the front-line acceptance personnel is to "find and mark the safety control point A01 in the general construction plan 7 according to the specifications, and check it according to the inspection form". That is, they need to do two things: find and mark the safety control point, and check it according to the inspection form.
[0163] (1) Identify and mark safety control points:
[0164] In this embodiment, the user, i.e. the safety officer, registers and enters the system. After authorization, he can "view project information, view project drawings, models and corresponding design instructions, view corresponding related material and equipment information, view assigned work tasks" and perform corresponding operations.
[0165] The technical staff of the construction company opens the CAD drawing of "including the general construction plan" in the system, selects the layers and other methods, selects the two functional topics of "safety-point layout, safety-inspection" and the list of inspection points included in the profession, and adopts the box selection method. The system automatically gives the classification data mark A01 at all inspection point positions according to the classification method of these two topics and the architectural profession, and displays it in the CAD drawing interface.
[0166] On a tablet, the user 1) clicks to open the CAD master plan corresponding to the safety task; 2) selects the "Safety - Layout" function module, where 1) the relevant safety technical specifications, construction organization design instructions on construction safety, and a list of safety control points are visible; 2) the user clicks on each "safety control point" in the master plan layout, classifies and numbers them, and uploads them to the system to form a data link between the "control points and related clauses, and inspection forms."
[0167] (2) Check according to the inspection table:
[0168] Referring to Figure 8, the user 1) clicks on the A01 checkpoint on the tablet. 1. This displays the relevant safety technical specifications and construction safety instructions for the construction organization design. 2. In the "Safety Inspection Record Form," the user completes the "Select, Photo, Video" and other steps one by one, comparing the specifications displayed on the left (pressing the "Upload Management" button in the upper right corner of the interface during this process). The user continuously completes the form until the project is complete, completing each inspection by pressing the "Upload Management" button in the upper right corner of the interface.
[0169] After all the most basic inspection batch work on the front line is completed, the basic information such as "project management information, materials, equipment" is collected, and the system automatically completes the production and delivery of engineering data file packages according to the project engineering classification and level.
[0170] It can be understood that the technical solution provided in this embodiment, by assigning different system permissions to different personnel, can help front-line acceptance personnel understand construction process standards before construction and make records after construction, greatly improving the work efficiency of engineering personnel. At the same time, it also standardizes the operational specifications of the entire process of construction, acceptance, review, and reporting supervision of engineering personnel, providing strong technical support for engineering companies to improve quality, increase efficiency, and reduce costs. It can greatly improve the quality of engineering construction, improve the convenience and efficiency of construction and operation and maintenance, and significantly increase the benefits of construction, operation and maintenance and related companies and individuals.
[0171] Example 2
[0172] According to an exemplary embodiment, an intelligent engineering full-factor management system is shown, including:
[0173] A processor, and a memory connected to the processor;
[0174] The memory is used to store computer programs;
[0175] The processor is configured to call and execute the computer program in the memory to perform the above method.
[0176] It is understood that the technical solution provided by this embodiment assigns different permissions to management personnel and frontline acceptance personnel. Management personnel edit the inspection point information for the project tasks to be accepted in the background. Frontline acceptance personnel use their portable terminal devices to query the project tasks to be accepted at the construction site. They use the terminal devices to view the inspection points recorded on the project acceptance drawings and verify the acceptance of the project tasks one by one. By viewing the inspection point information of the inspection points, they clarify the content, objects, and inspection standards to be inspected, prevent inspection omissions, and improve the efficiency of project acceptance. In addition, because the inspection is online, the phenomenon of manual supplementation of acceptance data after the fact is avoided, solving the technical problems of manual project acceptance in related technologies, such as low efficiency and serious fraud.
[0177] Furthermore, the technical solution provided in this embodiment, by assigning different system permissions to different personnel, can help front-line acceptance personnel understand construction process standards before construction and make records after construction, greatly improving the work efficiency of engineering personnel. At the same time, it also standardizes the operating specifications of the entire process of construction, acceptance, review, and reporting supervision of engineering personnel, providing strong technical support for engineering companies to improve quality, increase efficiency, and reduce costs. It can greatly improve the quality of engineering construction, improve the convenience and efficiency of construction and operation and maintenance, and significantly increase the benefits of construction, operation and maintenance and related companies and individuals.
[0178] Example 3
[0179] According to an exemplary embodiment, a non-transitory computer-readable storage medium storing computer instructions is shown, where the computer instructions are used to enable a computer to execute the above method.
[0180] It is understood that the technical solution provided by this embodiment assigns different permissions to management personnel and frontline acceptance personnel. Management personnel edit the inspection point information for the project tasks to be accepted in the background. Frontline acceptance personnel use their portable terminal devices to query the project tasks to be accepted at the construction site. They use the terminal devices to view the inspection points recorded on the project acceptance drawings and verify the acceptance of the project tasks one by one. By viewing the inspection point information of the inspection points, they clarify the content, objects, and inspection standards to be inspected, prevent inspection omissions, and improve the efficiency of project acceptance. In addition, because the inspection is online, the phenomenon of manual supplementation of acceptance data after the fact is avoided, solving the technical problems of manual project acceptance in related technologies, such as low efficiency and serious fraud.
[0181] Furthermore, the technical solution provided in this embodiment, by assigning different system permissions to different personnel, can help front-line acceptance personnel understand construction process standards before construction and make records after construction, greatly improving the work efficiency of engineering personnel. At the same time, it also standardizes the operating specifications of the entire process of construction, acceptance, review, and reporting supervision of engineering personnel, providing strong technical support for engineering companies to improve quality, increase efficiency, and reduce costs. It can greatly improve the quality of engineering construction, improve the convenience and efficiency of construction and operation and maintenance, and significantly increase the benefits of construction, operation and maintenance and related companies and individuals.
[0182] Of course, those skilled in the art will appreciate that all or part of the processes in the above-described method embodiments can be implemented by instructing related hardware (such as a processor, controller, etc.) through a computer program. The program can be stored in a computer-readable storage medium, and when executed, the program can include the processes in the above-described method embodiments. The storage medium can be a memory, a magnetic disk, an optical disk, etc.
[0183] The specific embodiments of the present invention described above do not limit the scope of protection of the present invention. Any other corresponding changes and modifications made based on the technical concept of the present invention should be included in the scope of protection of the claims of the present invention.
Claims
1. A method for managing all elements of intelligent engineering, characterized in that: include: When it is detected that a manager has logged into the system, the project resources are read from the database, and the engineering tasks to be accepted are displayed according to the project information, so that the manager can mark the inspection points on the engineering tasks to be accepted; When the system detects the editing operation of the management personnel on the inspection point, it saves the inspection point information edited by the management personnel, and stores the project data saved after the management personnel edits as the project acceptance drawing; When it is detected that the first-line acceptance personnel inquire about the engineering tasks to be accepted through the terminal device, the engineering acceptance drawings are sent to the terminal devices of the first-line acceptance personnel, so that the first-line acceptance personnel can check and accept the engineering tasks one by one according to the inspection points recorded on the engineering acceptance drawings.
2. The method according to claim 1, characterized in that The first-line acceptance personnel shall check and accept the engineering tasks one by one according to the inspection points recorded on the engineering acceptance drawings, including: The front-line acceptance personnel check the construction condition information of each inspection point on the project acceptance drawing, and the construction condition information at least includes: various construction specification clauses, material and equipment information; First-line acceptance personnel check the construction acceptance specification clauses corresponding to each inspection point on the project acceptance drawings and fill in the quality acceptance record form online.
3. The method according to claim 2, characterized in that Also includes: When the quality acceptance record form submitted by the front-line acceptance personnel is detected, the relevant project leader is notified to check the quality acceptance record form according to the engineering acceptance drawing, and after the relevant project leader reviews and approves it, the engineering data package is generated: if the review fails, the quality acceptance record form is returned, and the system marks that re-acceptance is required. After receiving the notification, the acceptance personnel need to complete the acceptance process again; The engineering data file package stores all engineering data files of the current engineering project and is marked with the database to which each engineering data file belongs.
4. The method according to claim 3, characterized in that Also includes: Configure different approval permissions for different project acceptance and approval personnel; Send the engineering data file package to the acceptance and approval personnel of each engineering project for acceptance and approval according to the preset approval process nodes; Connect with the approval system of the regulatory department and submit the engineering document packages that have completed internal acceptance and approval to the regulatory department online.
5. The method according to claim 3, characterized in that: Also includes: Automatically settle the project cost according to the project, unit price and project quantity in the project data file. At the same time, automatically complete the project settlement results according to the project economic cost data stored in the system, and synchronize the settlement results to the management personnel; and / or, The engineering data package shall be handed over to the relevant project departments for review or filing.
6. The method according to claim 1, characterized in that When it is detected that the manager logs into the system, the project resources are read from the database, including: When it is detected that the management personnel logs into the system, it verifies whether the acceptance drawings already exist in the database. If so, the existing acceptance drawings are directly obtained. If not, acceptance drawings are created based on the user design drawings and industry acceptance standards, and the relationship between the acceptance drawings and the original design drawings is saved.
7. The method according to claim 6, characterized in that Also includes: When it is detected that the first-line acceptance personnel inquire about the engineering tasks to be accepted through the terminal equipment, if the system already has the engineering acceptance drawings with the inspection points edited by the management personnel, the system enters the drawing acceptance state. In the drawing acceptance state, the first-line acceptance personnel cannot edit the inspection point information on the engineering acceptance drawings, and can only view the information and perform acceptance operations; the system saves the one-to-one correspondence between each inspection point and the formatted acceptance record sheet.
8. The method according to claim 1, characterized in that The checkpoint is generated according to the following steps, including: Managers create inspection points on the engineering tasks to be accepted. The system generates an inspection point list based on the inspection points created by the managers. Managers can add new inspection points, or change or delete existing inspection points. The system generates a classification data identifier for each inspection point based on the inspection point type selected by the manager when creating the inspection point.
9. The method according to claim 8, characterized in that When the system detects the administrator's editing operation on the checkpoint, the system saves the checkpoint information edited by the administrator, including: Add a marking point component to the point selected by the administrator, and set the inspection point type of this component to the inspection point type selected by the user; call the system interface, pass in the layer or model coordinate information and inspection point type of the current marking point, and the system server saves the inspection point data; or, After the manager selects the inspection point type, he can click multiple locations in the drawing or model range to directly add inspection points of the same type in batches. The system automatically saves the added inspection point data.
10. The method according to claim 8, characterized in that The detection manager performs editing operations on the inspection points and saves the inspection point information edited by the manager, including: The manager clicks on the drawing to trigger the inspection point, and the system obtains the stored inspection point types and displays them as a list. The system assigns the inspection point type selected by the manager to the corresponding inspection point; the manager can delete or modify the inspection point type of an existing inspection point by clicking; If any marked inspection point is deleted, delete the inspection point component on the project acceptance drawing and save the deleted project acceptance drawing, call the system server interface, and mark the inspection point as deleted; If any marked inspection point information is modified, adjust the corresponding inspection point component information on the project acceptance drawing and save the modified project acceptance drawing, call the system server interface, and modify the inspection point information synchronously.
11. The method according to claim 1, characterized in that: The first-line acceptance personnel shall check and accept the engineering tasks one by one according to the inspection points recorded on the engineering acceptance drawings, including: When it is detected that the front-line acceptance personnel clicks on the inspection point, the system obtains the inspection point type and displays the inspection help menu and acceptance record menu next to the inspection point; The inspection help menu is used for the system to obtain the inspection point type and drawing information when the user clicks on the inspection help menu, call the interface to obtain the corresponding construction condition information, and display it on the page.
12. The method according to claim 11, characterized in that Also includes: When it is detected that the front-line acceptance personnel clicks the acceptance record menu, a quality acceptance record form read from the database pops up; If there is no acceptance record for the inspection point, there will be no data on the pop-up quality acceptance record table, and the page will show that the table content is blank. After the user operates the acceptance item and clicks the acceptance button, the system will save the acceptance record in the quality acceptance record table; If there is an acceptance record for the inspection point, there will be data on the pop-up quality acceptance record form. The front-line acceptance personnel can modify or supplement the form content. After the user's operation, the system automatically saves the information in the quality acceptance record form.
13. The method according to claim 12, characterized in that Also includes: For any inspection point, if all the acceptance items on the quality acceptance record sheet have been inspected, it will be shown that the inspection point has been accepted; If all inspection points are completed, all inspection points will be marked as completed on the project acceptance drawing page. When the system verifies that all inspection points are completed, the Acceptance Complete button will appear; When the user clicks the Acceptance Complete button, the system marks the project acceptance drawing as completed and saves the drawing information.
14. The method according to claim 3, characterized in that The generated engineering data file package includes: The system classifies all quality acceptance record sheets under the project acceptance drawings, and establishes the relationship between the project acceptance drawings and the quality acceptance record sheets, and the relationship between the project acceptance drawings and the units and projects; All project acceptance materials and early project construction materials are compiled and packaged to form a project data file package. After the relevant project leader completes the confirmation and electronic signature process, the system archives the project data file package. The data can only be viewed and cannot be modified.
15. An intelligent engineering full-factor management system, characterized in that: include: A processor, and a memory connected to the processor; The memory is used to store computer programs; The processor is used to call and execute the computer program in the memory to perform the method according to any one of claims 1 to 14.
16. A non-transitory computer-readable storage medium storing computer instructions, characterized in that: The computer instructions are used to make a computer execute the method according to any one of claims 1 to 14.
Citation Information
Patent Citations
Construction quality management and control method and system
CN106803155A
Project completion acceptance method and storage medium
CN108229912A
Process acceptance management method and storage medium
CN109345103A
Engineering design pre-information generation method, information display method and drawing checking method
CN117094663A
Intelligent engineering total factor management method and system
CN118071047A
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