Construction organization whole-process management system

The construction organization full-process management system has solved the problems of low information sharing efficiency and insufficient supervision, realized information sharing and abnormal supervision in railway construction, improved construction efficiency and quality, provided data traceability function, and improved customer satisfaction.

CN117611086BActive Publication Date: 2026-02-24INST OF COMPUTING TECH CHINA ACAD OF RAILWAY SCI +4
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Patent Information

Application Number
CN202311604215.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-28
Publication Date
2026-02-24
Estimated Expiration
2043-11-28

AI Technical Summary

Technical Problem

The existing construction organization process management system suffers from low information sharing efficiency and insufficient supervision capabilities of clients and management, leading to delays in construction progress and untimely guidance. Furthermore, the lack of an evaluation mechanism after construction is completed makes it impossible to provide lessons learned and improvement measures.

Method used

This invention provides a full-process management system for construction organization, including an interactive sharing platform, a pre-construction management module, an execution phase management module, a completion phase management module, and a traceability module. It enables information exchange and data sharing, monitors construction process anomalies, conducts pre-construction analysis, supervises construction execution, summarizes the results after completion, generates project delivery reports, and stores data in categories.

Benefits of technology

It has enabled information sharing and anomaly monitoring throughout the entire railway construction process, improved the experience for customers and managers, enhanced project completion capabilities and customer satisfaction, and strengthened data traceability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a construction organization whole-process management system, which is suitable for a railway construction process and comprises an interactive sharing platform, a preliminary management module, an execution period management module and a completion period management module, wherein the interactive sharing platform is a center for information sharing and data exchange of construction participants and is used for monitoring abnormal construction processes; the preliminary management module performs preliminary analysis according to shared data and uploads the preliminary analysis to the interactive sharing platform in real time; the execution period management module supervises progress and quality in a construction execution process, generates efficiency and quality analysis results and uploads the efficiency and quality analysis results to the interactive sharing platform; the completion period management module acquires customer internal acceptance information after completion, analyzes differences between the acceptance information, summarizes the differences, generates a project delivery report and uploads the project delivery report to the interactive sharing platform; and the tracing module is used for storing data of various construction projects in categories; the whole-process management system realizes information sharing of the railway construction process, supervision and early warning of abnormal construction, increases experiences of customer parties and railway management parties, improves project completion capability and customer satisfaction and realizes data tracing.
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Description

Technical Field

[0001] This invention relates to the field of railway construction technology, and more specifically to a full-process management system for construction organization. Background Technology

[0002] Railway construction is a complex engineering project involving multiple stages, including preliminary planning, construction preparation, implementation, acceptance, and delivery. A full-process construction organization management system can manage and coordinate all aspects of the construction process, including project planning, schedule control, resource management, quality inspection, safety management, and cost control, thereby improving the efficiency and quality of the construction process.

[0003] The entire process of construction organization management can include the following stages: preliminary preparation stage, construction organization preparation stage, construction preparation stage, construction execution stage, construction monitoring stage, construction completion stage, and construction summary stage. Communication and coordination should be maintained throughout the entire railway construction process to ensure the effective implementation of the entire construction organization management process.

[0004] In the existing construction organization and management process, communication among the client, construction, and management parties regarding railway construction is usually conducted through group meetings, telephone calls, and fixed personnel liaison. This method greatly reduces the efficiency of information sharing, thereby slowing down the progress of railway construction. During construction, the railway construction party has absolute exclusive rights to information, reducing the supervision capabilities of the client and management parties, which often leads to untimely guidance and losses. At the same time, there are no evaluation criteria for the railway construction party after construction is completed, making it impossible to provide lessons learned and improvement measures for subsequent projects.

[0005] Therefore, this application provides a construction organization full-process management system to solve the above problems. Summary of the Invention

[0006] To address the above problems, the present invention provides the following technical solution:

[0007] A construction organization full-process management system, comprising:

[0008] An interactive sharing platform serves as a central hub for information exchange and data sharing among construction participants, and monitors anomalies in the construction process.

[0009] The preliminary management module is connected to the interactive sharing platform and is used to perform preliminary analysis based on the shared construction data. The preliminary analysis includes model building, cost estimation, and resource planning. The preliminary analysis results are generated and uploaded to the interactive sharing platform in real time.

[0010] The execution period management module is connected to the interactive sharing platform and is used to monitor the progress and quality during the construction execution process, compare and judge the results with the previous analysis results, generate efficiency analysis results and quality analysis results, and upload them to the interactive sharing platform in real time.

[0011] The completion period management module, which is connected to the interactive sharing platform, is used to obtain customer acceptance information and internal acceptance information after completion, analyze the differences between the acceptance information, summarize the analysis results, generate a project delivery report and upload it to the interactive sharing platform.

[0012] The traceability module, which is connected to the interactive sharing platform, is used to classify and store data for each construction project.

[0013] Preferably, in the above-mentioned construction organization full-process management system, the interactive sharing platform includes:

[0014] The data receiving unit is used to create a schedule based on the project name, receive shared data, and classify and store the data according to preset characteristics.

[0015] The display unit, which is connected to the data receiving unit, is used to classify and display the progress table and the received data.

[0016] An access setting unit is connected to the display unit and the terminal devices of the construction participants. It is used to set access permissions for the terminal devices of the construction participants. Terminal devices with access permissions can view and download the displayed data from the display unit.

[0017] A sharing setting unit is connected to the data receiving unit, the display unit, and the terminal devices of the construction participants. It is used to set sharing permissions for the terminal devices of the construction participants. Terminal devices with sharing permissions can upload data to the data receiving unit and can view and download the data displayed by the display unit.

[0018] A security restriction unit, connected to the access setting unit and the sharing setting unit, is used to acquire the access records, download records and upload records of the terminal device in real time, and insert a verification pop-up during the access process of the terminal device. If the verification fails, the access process of the terminal device is restricted, and the restriction is lifted when the verification is successful.

[0019] Preferably, in the above-mentioned construction organization full-process management system, the interactive sharing platform further includes:

[0020] The construction participants are divided into three categories: the client, the executor, and the remote management party.

[0021] When the construction participants upload data to the data receiving unit, they need to insert an identifier corresponding to the project and the construction participants into the data; the data receiving unit classifies and stores the data according to the identifier.

[0022] The display unit categorizes and displays data based on identifiers.

[0023] Preferably, in the above-mentioned construction organization full-process management system, the pre-management module includes:

[0024] The project establishment unit, which is connected to the data receiving unit, is used to obtain the construction project name proposed by the remote management party and the client after negotiation, establish a project schedule through the data receiving unit based on the name, and formulate a data identifier based on the name, and the data identifiers of each project are different.

[0025] The modeling and estimation unit is connected to the display unit and the data receiving unit. After the client uploads the requirement data to the data receiving unit, the remote manager obtains the requirement data of the construction project through the display unit, builds a three-dimensional model of the project using BIM tools, and estimates the construction cost and completion time based on the three-dimensional model, generating preliminary analysis data. The remote manager uploads the preliminary analysis data to the data receiving unit, which displays it in the schedule through the display unit.

[0026] Approval Unit 1, which is connected to the modeling and estimation unit and the data receiving unit, is used to obtain the preliminary approval results obtained by the client based on the preliminary analysis data, and upload them to the data receiving unit, and display them in the progress table through the display unit;

[0027] The preparation unit is connected to the modeling and estimation unit, the approval unit, the data receiving unit, and the display unit. When the preliminary approval result displayed on the display unit is "agree," the remote manager obtains the preliminary analysis data from the display unit, performs resource planning based on the 3D model drawings, construction cost estimates, and completion time estimates in the data, including a list of executors, a list of responsibilities, and process instructions. The resource planning results are uploaded to the data receiving unit and displayed in the schedule through the display unit.

[0028] Approval Unit 2, which is connected to the preparation unit and the data receiving unit, is used to obtain the preparation approval results obtained by the client based on the resource planning results, and upload them to the data receiving unit, and display them in the progress table through the display unit.

[0029] Preferably, in the above-mentioned construction organization full-process management system, the execution period management module includes:

[0030] The execution confirmation unit is connected to the display unit, the data receiving unit, and the approval unit. The executor can view the preparation approval result through the display unit. When the preparation approval result displayed by the display unit is "agree", the executor confirms the start of construction and uploads the execution confirmation information to the data receiving unit.

[0031] An execution monitoring unit is connected to the data receiving unit. The executor carries out construction based on the resource planning results displayed by the display unit, and uploads on-site pictures or video data to the data receiving unit, which then displays them in the progress table through the display unit.

[0032] An execution analysis unit is connected to the display unit and the data receiving unit. The remote manager performs safety analysis, quality analysis, and progress analysis based on the on-site images or video data displayed by the display unit and the resource planning results. Correspondingly, efficiency analysis results and quality analysis results are generated and uploaded to the data receiving unit, and displayed in the progress table through the display unit.

[0033] Approval Unit 3, which is connected to the display unit and the data receiving unit, is used to obtain the approval results of the execution process derived by the client based on on-site pictures or video data, efficiency analysis results and quality analysis results, and upload them to the data receiving unit, which then displays them in the progress table through the display unit.

[0034] Preferably, in the above-mentioned construction organization full-process management system, the execution period management module further includes:

[0035] The execution analysis unit generates efficiency analysis results and quality analysis results based on the conclusions obtained from the periodic on-site inspections by the remote management party and the resource planning results.

[0036] The approval unit three sets an approval cycle, and the client provides the approval results of the execution process periodically according to the approval cycle.

[0037] Preferably, in the above-mentioned construction organization full-process management system, the completion period management module includes:

[0038] The completion confirmation unit is connected to the data receiving unit and is used to upload the completion confirmation information to the data receiving unit after the executor completes the construction project, and display it in the progress table through the display unit.

[0039] The acceptance result uploading unit is connected to the data receiving unit and the completion confirmation unit. It is used to inspect the construction project on-site after the customer and the remote management party have learned of the completion confirmation. It uploads customer acceptance information and internal acceptance information to the data receiving unit according to the specific construction situation, and displays them in the progress table through the display unit.

[0040] The summary evaluation unit, connected to the acceptance result upload unit and the data receiving unit, is used to analyze the differences between customer acceptance information and internal acceptance information after the acceptance information is uploaded, and generate a project delivery report for the construction project based on the analysis results; the project delivery report is used to evaluate the project completion capabilities of the executor and the remote management party.

[0041] Preferably, in the above-mentioned construction organization full-process management system, the summary and evaluation unit further includes:

[0042] The overall efficiency evaluation unit, connected to the execution confirmation unit and the completion confirmation unit, is used to record the interval between the upload time of the execution confirmation information and the upload time of the completion confirmation information, and generate execution time data; calculate the ratio of the estimated completion time to the execution time data, and generate overall efficiency data; and insert the overall efficiency data into the project delivery report.

[0043] Preferably, in the above-mentioned construction organization full-process management system, the traceability module includes:

[0044] An archiving unit, connected to the data receiving unit, is used to archive the progress schedule and its data after the project delivery report is uploaded; the progress schedule and its data for this project are integrated into a dataset carrying an identifier and stored, and are no longer displayed through the display unit;

[0045] The traceability request unit, which is connected to the sealing unit, is used to request data from the sealing unit and attach a matching identifier when construction participants need to view historical project data. After the management personnel receive the request, they can retrieve the dataset corresponding to the project identifier.

[0046] The detailed data distribution unit, which is connected to the traceability request unit, is used to send the dataset to the construction participant who provided the application.

[0047] Preferably, in the above-mentioned construction organization full-process management system, the interactive sharing platform further includes:

[0048] A highlighting unit, connected to the display unit, is used to highlight the preliminary approval results, preparation approval results, execution confirmation information, execution process approval results, completion confirmation information, and project delivery report in the schedule by using color.

[0049] As can be seen from the above technical solution, the beneficial effects of this application compared with the prior art are as follows:

[0050] This invention discloses a full-process management system for construction organization, applicable to railway construction, comprising: an interactive sharing platform, which serves as the center for information sharing and data exchange among construction participants and monitors anomalies in the construction process; a pre-construction management module, which performs preliminary analysis based on shared data and uploads it to the interactive sharing platform in real time; an execution phase management module, which monitors the progress and quality during construction execution, generates efficiency and quality analysis results, and uploads them to the interactive sharing platform; a completion phase management module, which obtains internal acceptance information from clients after completion, analyzes and summarizes differences between acceptance information, generates a project delivery report, and uploads it to the interactive sharing platform; and a traceability module, which stores data for each construction project in a categorized manner. This invention achieves information sharing throughout the entire railway construction process, provides early warning and monitoring of abnormal construction, enhances the experience for clients and railway management, improves project completion capabilities and customer satisfaction, and enables data traceability. Attached Figure Description

[0051] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0052] Figure 1 This is a system structure diagram of the present invention;

[0053] Figure 2 This is a system flowchart of the present invention. Detailed Implementation

[0054] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0055] In this invention, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance; the term "multiple" refers to two or more unless otherwise explicitly defined. The terms "install," "connect," "link," and "fix" should be interpreted broadly. For example, "connect" can be a fixed connection, a detachable connection, or an integral connection; "link" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0056] In the description of this invention, it should be understood that the terms "upper," "lower," "left," "right," "front," "rear," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or unit referred to must have a specific orientation or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0057] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0058] In one embodiment, see Figure 1-2 A construction organization full-process management system, comprising:

[0059] An interactive sharing platform serves as a central hub for information exchange and data sharing among construction participants, and monitors anomalies in the construction process.

[0060] The preliminary management module is connected to the interactive sharing platform and is used to conduct preliminary analysis based on the shared construction data. The preliminary analysis includes model building, cost estimation and resource planning, and generates preliminary analysis results which are uploaded to the interactive sharing platform in real time.

[0061] The execution phase management module is connected to the interactive sharing platform to monitor the progress and quality during the construction execution process, compare and judge the results with the previous analysis results, generate efficiency analysis results and quality analysis results, and upload them to the interactive sharing platform in real time.

[0062] The completion management module is connected to the interactive sharing platform. It is used to obtain customer acceptance information and internal acceptance information after completion, analyze the differences between the acceptance information, summarize the analysis results, generate a project delivery report and upload it to the interactive sharing platform.

[0063] The traceability module, which connects to the interactive sharing platform, is used to classify and store data for various construction projects.

[0064] The principle of the above embodiment is as follows: by building an interactive sharing platform and corresponding management modules, information exchange, data sharing, and anomaly monitoring among railway construction participants are realized; the preliminary management module analyzes the shared railway construction data to conduct preliminary analysis and resource planning, providing basic support for subsequent railway construction; the execution management module monitors the progress and quality during the construction execution process and compares it with the preliminary analysis results to generate efficiency and quality analysis results; the completion management module analyzes the differences between customer acceptance information and internal acceptance information, summarizes the project completion status, and generates a project delivery report.

[0065] The beneficial effects of the above embodiments are as follows: providing an integrated information platform and data management method can improve the collaborative efficiency and communication quality of construction organization, and reduce information asymmetry and communication barriers; real-time monitoring of abnormal situations in the railway construction process can provide timely warnings and take corresponding measures to reduce construction risks and delays; through early management and resource planning, problems can be identified in advance and resources can be rationally planned to improve the efficiency and quality of railway construction; at the same time, during the construction execution phase, the system's monitoring and analysis functions help to grasp the construction progress in a timely manner, identify problems and take measures to ensure that construction proceeds according to plan; the completion period management module can summarize the project completion status by analyzing acceptance information and provide accurate data support for project delivery; the traceability module can classify, store and manage the data of each railway construction project, facilitating the review and retrieval of historical projects.

[0066] To further optimize the above technical solution, please refer to Figure 1-2 The interactive sharing platform includes:

[0067] The data receiving unit is used to create a schedule based on the project name, receive shared data, and classify and store the data according to preset characteristics.

[0068] The display unit, which is connected to the data receiving unit, is used to classify and display the progress table and the received data;

[0069] Access setting unit, which is connected to display unit and terminal equipment of construction participants, is used to set access permissions for terminal equipment of construction participants. Terminal equipment with access permissions can view and download the displayed data from display unit.

[0070] The shared setting unit is connected to the data receiving unit, the display unit, and the terminal equipment of the construction participants. It is used to set sharing permissions for the terminal equipment of the construction participants. Terminal equipment with sharing permissions can upload data to the data receiving unit and can view and download the data displayed by the display unit.

[0071] The security restriction unit, connected to the access setting unit and the sharing setting unit, is used to obtain the access records, download records and upload records of the terminal device in real time, and insert a verification pop-up during the access process of the terminal device. If the verification fails, the access process of the terminal device is restricted, and the restriction is lifted when the verification is successful.

[0072] It should be noted that the construction participants are divided into three categories: the client, the executor, and the remote manager; the executor is the railway construction organization, and the remote manager is the railway construction management organization.

[0073] When construction participants upload data to the data receiving unit, they need to insert identifiers corresponding to the project and the construction participants into the data; the data receiving unit will then classify and store the data according to the identifiers.

[0074] The display unit categorizes and displays data based on identifiers;

[0075] The principle for setting the identifier is not unique. It can be generated by combining the abbreviation of the railway construction project name with the code of the railway construction participants. The specific setting depends on the actual application and should be easy to distinguish. In some embodiments, blockchain technology can be applied to the access setting unit, sharing setting unit, and data receiving unit to ensure that the information is not tampered with. This embodiment provides a unified data receiving and display unit. By setting access and sharing permissions, railway construction participants can easily share, view, and download data. The data includes construction plan and progress data: including the railway construction schedule, construction plan, and period management data, used for real-time monitoring and management of construction progress; construction quality data: including engineering quality acceptance standards, inspection records during the quality control process, and tracking and recording of quality problem handling data, used to ensure that the construction quality meets the requirements; and construction personnel data: including personnel configuration at each stage of railway construction. Data such as the qualifications and identity information of construction personnel are used to manage the allocation and management of construction personnel; data on construction materials and equipment includes suppliers, specifications, quantities, and quality inspection records of various railway construction materials and equipment used for material management and equipment allocation during railway construction; safety and environmental data includes safety management measures and relevant records and data on environmental protection during railway construction to ensure that safety and environmental protection requirements for railway construction are met; and project delivery information includes customer acceptance information, internal acceptance information, and completion reports to evaluate project completion and delivery results. This enhances communication and collaboration, improves construction efficiency, and makes information management and retrieval more efficient and convenient by setting identifiers, saving time and effort. Access setting units and security restriction units provide mechanisms for setting and verifying terminal device access permissions, protecting data security, restricting unauthorized access and downloads, and ensuring data confidentiality and integrity.

[0076] To further optimize the above technical solution, please refer to Figure 1-2 The initial management module includes:

[0077] The project establishment unit, which is connected to the data receiving unit, is used to obtain the construction project name proposed by the remote management party and the client after negotiation. Based on the name, the project schedule is established through the data receiving unit, and a data identifier is formulated based on the name. The data identifiers of each project are different.

[0078] The modeling and estimation unit is connected to the display unit and the data receiving unit. After the client uploads the requirement data to the data receiving unit, the remote management party obtains the requirement data of the construction project through the display unit, builds a three-dimensional model of the project using BIM tools, estimates the construction cost and completion time based on the three-dimensional model, and generates preliminary analysis data. The remote management party uploads the preliminary analysis data to the data receiving unit, which is then displayed in the schedule through the display unit.

[0079] Approval Unit 1, which is connected to the modeling and estimation unit and the data receiving unit, is used to obtain the preliminary approval results obtained by the client based on the preliminary analysis data, and upload them to the data receiving unit, which then displays them in the progress table through the display unit.

[0080] The preparation unit is connected to the modeling and estimation unit, approval unit 1, data receiving unit, and display unit. When the preliminary approval result displayed in the display unit is "agree," the remote management party obtains the preliminary analysis data from the display unit and performs resource planning based on the 3D model drawings, construction cost estimates, and completion time estimates in the data, including the list of implementing parties, the list of responsibilities, and process instructions. The resource planning results are then uploaded to the data receiving unit and displayed in the schedule through the display unit.

[0081] Approval Unit 2, which is connected to the preparation unit and the data receiving unit, is used to obtain the preparation approval results obtained by the client based on the resource planning results, and upload them to the data receiving unit, which then displays them in the progress table through the display unit.

[0082] It should be noted that the setting of preliminary analysis data and resource planning results is not unique. Preliminary analysis data can cover construction objectives, construction plans, resource confirmation, and management plans. Resource planning results can cover confirming the construction organization or structure, confirming the responsibilities of the organization or structure, formulating organizational plans, establishing guidelines, and specifying process flows, etc. The principle of using BIM tools is based on existing technology and does not require much explanation. This embodiment can ensure the accurate positioning and planning of railway construction projects, helping clients and remote railway construction management parties to conduct preliminary assessments and planning of projects, identify problems and make decisions in advance. The results of preliminary approvals can provide support and basis for subsequent decisions on railway construction projects. The results are displayed in the schedule through display units, providing preparation and guidance for subsequent construction. The formulation of preparation and approval results helps in further project control and preparation work.

[0083] To further optimize the above technical solution, please refer to Figure 1-2 The execution period management module includes:

[0084] The execution confirmation unit is connected to the display unit, the data receiving unit, and the approval unit. The executor can view the preparation approval result through the display unit. When the preparation approval result displayed by the display unit is "agree", the executor confirms the start of construction and uploads the execution confirmation information to the data receiving unit.

[0085] The execution monitoring unit is connected to the data receiving unit. The executor carries out construction based on the resource planning results displayed by the display unit, and uploads on-site pictures or video data to the data receiving unit, which then displays them in the schedule through the display unit.

[0086] The execution analysis unit is connected to the display unit and the data receiving unit. The remote manager performs safety analysis, quality analysis and progress analysis based on the on-site pictures or video data displayed by the display unit and the resource planning results. Correspondingly, efficiency analysis results and quality analysis results are generated and uploaded to the data receiving unit, and displayed in the progress table through the display unit.

[0087] Approval Unit 3, connected to the display unit and the data receiving unit, is used to obtain the approval results of the execution process derived by the client based on on-site pictures or video data, efficiency analysis results, and quality analysis results, and upload them to the data receiving unit, which then displays them in the progress table through the display unit.

[0088] It should be noted that the execution analysis unit generates efficiency and quality analysis results based on the conclusions obtained from the remote management party's regular on-site inspections and the resource planning results; the approval unit sets an approval cycle, and the client provides the execution process approval results periodically according to the approval cycle; this embodiment can ensure the formal start of the construction process, and the execution monitoring unit provides uploaded pictures or video data of the construction site, which helps the remote management party to understand the railway construction progress in real time and strengthen the control over railway construction; the remote management party can conduct safety, quality, and schedule assessments based on these analysis results, promptly identify problems and take measures to improve construction efficiency and quality; the client provides approval results periodically according to the approval cycle, which helps ensure that the construction meets the client's requirements and expectations, improves the degree of information sharing, and improves the information access of both the client and the remote management party.

[0089] To further optimize the above technical solution, please refer to Figure 1-2 The completion period management module includes:

[0090] The completion confirmation unit, which is connected to the data receiving unit, is used to upload completion confirmation information to the data receiving unit after the executor completes the construction project, and display it in the progress table through the display unit.

[0091] The acceptance result uploading unit is connected to the data receiving unit and the completion confirmation unit. It is used to inspect the construction project on-site after the customer and remote management have learned of the completion confirmation. It uploads customer acceptance information and internal acceptance information to the data receiving unit according to the specific construction situation, and displays them in the progress table through the display unit.

[0092] The summary evaluation unit, connected to the acceptance result upload unit and the data receiving unit, is used by the remote management party to analyze the differences between the customer's acceptance information and the internal acceptance information after the acceptance information is uploaded, and to generate a project delivery report for the construction project based on the analysis results. The project delivery report is used to evaluate the project completion capabilities of the executor and the remote management party.

[0093] It should be noted that the summary evaluation unit also includes an overall efficiency evaluation unit, which is connected to the execution confirmation unit and the completion confirmation unit. This unit records the interval between the upload time of the execution confirmation information and the upload time of the completion confirmation information, generating execution time data; calculates the ratio of the estimated completion time to the execution time data, generating overall efficiency data; and inserts the overall efficiency data into the project delivery report. This embodiment evaluates the performance and capabilities of the executor and remote management party in project completion through the project delivery report, providing a basis for subsequent project improvement and decision-making. Calculating the ratio of the estimated completion time to the execution time data, generating overall efficiency data, and inserting it into the project delivery report helps assess the project's execution efficiency and is used for efficiency improvement and optimization in subsequent projects.

[0094] To further optimize the above technical solution, please refer to Figure 1-2 The traceability module includes:

[0095] The sealing unit, connected to the data receiving unit, is used to seal the schedule and its data after the project delivery report is uploaded; the schedule and its data of this project are integrated into a dataset with identifiers and stored, and are no longer displayed through the display unit;

[0096] The traceability request unit, which is connected to the archive unit, is used to request data from the archive unit and attach a matching identifier when construction participants need to view historical project data. After the manager approves the request, the data set corresponding to the project identifier is retrieved.

[0097] The detailed data distribution unit, which is connected to the traceability request unit, is used to send the dataset to the construction participants who provided the application.

[0098] It should be noted that this embodiment can ensure the retention and integrity of historical project data, and facilitate subsequent data management and traceability; it meets the needs of railway construction participants to view historical project data, and helps to improve data traceability and management efficiency; through data distribution, railway construction participants can obtain detailed data of historical projects, which helps them understand the situation of the railway construction project, provides reference and guidance, and can promote information sharing and cooperation, thereby improving the overall construction level.

[0099] To further optimize the above technical solution, please refer to Figure 1-2 The interactive sharing platform also includes:

[0100] The highlighting unit, connected to the display unit, is used to highlight the preliminary approval results, preparation approval results, execution confirmation information, execution process approval results, completion confirmation information, and project delivery report in the schedule through color.

[0101] It should be noted that this embodiment uses a highlighting unit to mark different types of information with different colors, which allows users to more intuitively identify and distinguish various information in the progress chart. This helps improve the efficiency of information presentation, allowing users to quickly obtain the information they need and reduce the time spent searching and interpreting. Users can more easily notice key information and important progress results, reducing the risk of omissions and misunderstandings. Whether it is the executor, the remote manager, or the customer, they can obtain the information they need more quickly and make corresponding decisions and actions based on it, thereby improving overall work efficiency and decision-making quality.

[0102] It should be noted that the system provided in the above embodiments is only illustrated by the division of the above functional modules. In practical applications, the above functions can be assigned to different functional modules as needed, that is, the modules or steps in the embodiments of the present invention can be further decomposed or combined. For example, the modules in the above embodiments can be merged into one module, or further divided into multiple sub-modules to complete all or part of the functions described above. The names of the modules and steps involved in the embodiments of the present invention are only for distinguishing the various modules or steps and are not considered as an improper limitation of the present invention.

[0103] The term "comprising" or any other similar term is intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus / device that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent in such process, method, article, or apparatus / device.

[0104] The technical solution of the present invention has been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of the present invention is obviously not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the scope of protection of the present invention.

[0105] Obviously, those skilled in the art can make various modifications and variations to this invention without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims and their equivalents, this invention is also intended to include these modifications and variations in the above description of the disclosed embodiments, enabling those skilled in the art to implement or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention. Therefore, this invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A construction organization full-process management system, characterized in that, include: An interactive sharing platform serves as a central hub for information exchange and data sharing among construction participants, and monitors anomalies in the construction process. The preliminary management module is connected to the interactive sharing platform and is used to perform preliminary analysis based on the shared construction data. The preliminary analysis includes model building, cost estimation, and resource planning. The preliminary analysis results are generated and uploaded to the interactive sharing platform in real time. The execution period management module is connected to the interactive sharing platform and is used to monitor the progress and quality during the construction execution process, compare and judge the results with the previous analysis results, generate efficiency analysis results and quality analysis results, and upload them to the interactive sharing platform in real time. The completion period management module, which is connected to the interactive sharing platform, is used to obtain customer acceptance information and internal acceptance information after completion, analyze the differences between the acceptance information, summarize the analysis results, generate a project delivery report and upload it to the interactive sharing platform. The traceability module, which is connected to the interactive sharing platform, is used to classify and store data for each construction project; The interactive sharing platform includes: a data receiving unit, which is used to create a schedule based on the project name, receive shared data, and classify and store the data according to preset characteristics; The display unit, which is connected to the data receiving unit, is used to classify and display the progress table and the received data. An access setting unit is connected to the display unit and the terminal devices of the construction participants. It is used to set access permissions for the terminal devices of the construction participants. Terminal devices with access permissions can view and download the displayed data from the display unit. A sharing setting unit is connected to the data receiving unit, the display unit, and the terminal devices of the construction participants. It is used to set sharing permissions for the terminal devices of the construction participants. Terminal devices with sharing permissions can upload data to the data receiving unit and can view and download the data displayed by the display unit. A security restriction unit, which is connected to the access setting unit and the sharing setting unit, is used to obtain the access records, download records and upload records of the terminal device in real time, and insert a verification pop-up during the access process of the terminal device. If the verification fails, the access process of the terminal device is restricted, and the restriction is lifted when the verification is successful. The interactive sharing platform also includes: the construction participants are divided into three categories, namely the client, the executor, and the remote management party; When the construction participants upload data to the data receiving unit, they need to insert an identifier corresponding to the project and the construction participants into the data; the data receiving unit classifies and stores the data according to the identifier. The display unit categorizes and displays data according to identifiers; The preliminary management module includes: a project establishment unit, which is connected to the data receiving unit, for obtaining the construction project name proposed after negotiation between the remote management party and the client party, establishing a project schedule through the data receiving unit based on the name, and formulating a data identifier based on the name, wherein the data identifiers of each project are different; The modeling and estimation unit is connected to the display unit and the data receiving unit. After the client uploads the requirement data to the data receiving unit, the remote manager obtains the requirement data of the construction project through the display unit, builds a three-dimensional model of the project using BIM tools, and estimates the construction cost and completion time based on the three-dimensional model, generating preliminary analysis data. The remote manager uploads the preliminary analysis data to the data receiving unit, which displays it in the schedule through the display unit. Approval Unit 1, which is connected to the modeling and estimation unit and the data receiving unit, is used to obtain the preliminary approval results obtained by the client based on the preliminary analysis data, and upload them to the data receiving unit, and display them in the progress table through the display unit; The preparation unit is connected to the modeling and estimation unit, the approval unit, the data receiving unit, and the display unit. When the preliminary approval result displayed on the display unit is "agree," the remote manager obtains the preliminary analysis data from the display unit, performs resource planning based on the 3D model drawings, construction cost estimates, and completion time estimates in the data, including a list of executors, a list of responsibilities, and process instructions. The resource planning results are uploaded to the data receiving unit and displayed in the schedule through the display unit. Approval Unit 2, which is connected to the preparation unit and the data receiving unit, is used to obtain the preparation approval results obtained by the client based on the resource planning results, and upload them to the data receiving unit, and display them in the progress table through the display unit; The execution period management module includes an execution confirmation unit, which is connected to the display unit, the data receiving unit, and the approval unit. The executor can view the preparation approval result through the display unit. When the preparation approval result displayed by the display unit is "agree", the executor confirms the start of construction and uploads the execution confirmation information to the data receiving unit. An execution monitoring unit is connected to the data receiving unit. The executor carries out construction based on the resource planning results displayed by the display unit, and uploads on-site pictures or video data to the data receiving unit, which then displays them in the progress table through the display unit. An execution analysis unit is connected to the display unit and the data receiving unit. The remote manager performs safety analysis, quality analysis and progress analysis based on the on-site pictures or video data displayed by the display unit and the resource planning results. Correspondingly, efficiency analysis results and quality analysis results are generated and uploaded to the data receiving unit, and displayed in the progress table through the display unit. Approval Unit 3, which is connected to the display unit and the data receiving unit, is used to obtain the approval results of the execution process derived by the client based on on-site pictures or video data, efficiency analysis results and quality analysis results, and upload them to the data receiving unit, which then displays them in the progress table through the display unit.

2. The construction organization full-process management system according to claim 1, characterized in that, The execution period management module also includes: the execution analysis unit generates efficiency analysis results and quality analysis results based on the conclusions obtained from the periodic on-site inspections by the remote management party and the resource planning results; The approval unit three sets an approval cycle, and the client provides the approval results of the execution process periodically according to the approval cycle.

3. The construction organization full-process management system according to claim 2, characterized in that, The completion period management module includes: a completion confirmation unit, which is connected to the data receiving unit, and is used to upload the completion confirmation information to the data receiving unit after the executor completes the construction project, and display it in the progress table through the display unit; The acceptance result uploading unit is connected to the data receiving unit and the completion confirmation unit. It is used to inspect the construction project on-site after the customer and the remote management party have learned of the completion confirmation. It uploads customer acceptance information and internal acceptance information to the data receiving unit according to the specific construction situation, and displays them in the progress table through the display unit. The summary evaluation unit, connected to the acceptance result upload unit and the data receiving unit, is used to analyze the differences between customer acceptance information and internal acceptance information after the acceptance information is uploaded, and generate a project delivery report for the construction project based on the analysis results; the project delivery report is used to evaluate the project completion capabilities of the executor and the remote management party.

4. The construction organization full-process management system according to claim 3, characterized in that, The summary evaluation unit further includes: an overall efficiency evaluation unit, which is connected to the execution confirmation unit and the completion confirmation unit, for recording the interval between the execution confirmation information upload time and the completion confirmation information upload time, generating execution time data; calculating the ratio of the estimated completion time to the execution time data, generating overall efficiency data; and inserting the overall efficiency data into the project delivery report.

5. The construction organization full-process management system according to claim 4, characterized in that, The traceability module includes: an archiving unit, which is connected to the data receiving unit, for archiving the progress table and its data after the project delivery report is uploaded; integrating the progress table and its data of this project into a dataset carrying an identifier and storing it, and no longer displaying it through the display unit; The traceability request unit, which is connected to the sealing unit, is used to request data from the sealing unit and attach a project identifier when construction participants need to view historical project data. After the manager receives the request, he can retrieve the dataset corresponding to the project identifier. The detailed data distribution unit, which is connected to the traceability request unit, is used to send the dataset to the construction participant who provided the application.

6. The construction organization full-process management system according to claim 3, characterized in that, The interactive sharing platform also includes a highlighting unit, which is connected to the display unit and is used to highlight the preliminary approval results, preparation approval results, execution confirmation information, execution process approval results, completion confirmation information and project delivery report in the progress schedule through color.

Citation Information

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