Offshore wind power project management system based on project implementation progress
By setting up project resource nodes and user permissions through the offshore wind power project management system, analyzing the relationships between project resource nodes, and combining meteorological forecast data for project planning, the problems of data security and resource waste in traditional project management methods have been solved, and more efficient project management has been achieved.
Patent Information
- Application Number
- PCT/CN2025/092481
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-08-28
- Filing Date
- 2025-04-30
- Publication Date
- 2026-03-05
AI Technical Summary
Traditional project management methods cannot meet the management needs of modern offshore wind power projects, cannot ensure the security of project data and information, and cannot effectively coordinate the supply and demand relationship between multiple process sequences, resulting in resource waste.
A project management system for offshore wind power based on project implementation progress was designed, including a project management center, a project data acquisition module, an offshore data acquisition module, a project resource management module, a project progress analysis module, a project collaboration and sharing module, and a project early warning management module. By setting project resource nodes, obtaining user permission data, analyzing the correlation between project resource nodes, and combining meteorological forecast data, project planning and coordination are carried out.
It improves data security and resource utilization efficiency in project management, reduces resource waste, and enhances the timeliness and collaboration of project planning.
Smart Images

Figure CN2025092481_05032026_PF_FP_ABST
Abstract
Description
A project management system for offshore wind power based on project implementation schedule Technical Field
[0001] This invention relates to the field of project management, specifically a project management system for offshore wind power based on project implementation schedule. Background Technology
[0002] As the impact of global climate change intensifies, governments and businesses around the world are actively seeking ways to reduce carbon emissions. Among these efforts, offshore wind power, as a clean and renewable energy source, has seen rapid development and application in recent years. The implementation of offshore wind power projects typically involves multiple stages, including preliminary investigation, design, procurement, construction, commissioning, and operation. Each stage requires meticulous management and control to ensure the smooth progress and successful delivery of the project.
[0003] However, due to the wide range of fields involved in offshore wind power projects, the large number of parties requiring coordination, and the different needs and interests of these parties, traditional project management methods can no longer meet the management requirements of modern offshore wind power projects. Furthermore, the security of project data and information cannot be guaranteed during the management process of offshore wind power projects. In addition, the supply and demand relationships between multiple process sequences cannot be effectively coordinated, leading to a certain degree of resource waste. Therefore, how to improve the security of the project management process and reduce resource waste is a problem we need to solve. To this end, we now provide a project management system for offshore wind power based on project implementation schedule. Summary of the Invention
[0004] To address the aforementioned technical problems, the present invention aims to provide a project management system for offshore wind power based on project implementation schedule.
[0005] The objective of this invention can be achieved through the following technical solution: a project management system for offshore wind power based on project implementation progress, comprising a project management center, wherein the project management center is communicatively connected to a project data acquisition module, an offshore data acquisition module, a project resource management module, a project progress analysis module, a project collaboration and sharing module, and a project early warning management module;
[0006] The project data acquisition module is used to collect project data information and project personnel data information corresponding to the corresponding offshore wind power project;
[0007] The marine data acquisition module is used to collect implementation project data and meteorological forecast data corresponding to the corresponding offshore wind power projects;
[0008] The project resource management module is used to break down the process of offshore wind power projects based on project data information, set project resource nodes according to the breakdown results, match project personnel data information with the corresponding project resource nodes, and set corresponding user permission data according to the matching results.
[0009] The project progress analysis module is used to split the implementation project data according to the project resource nodes, and obtain the real-time project progress data corresponding to the corresponding project resource nodes based on the splitting results.
[0010] The project collaboration and sharing module is used to set project planning data within the corresponding project resource nodes based on real-time project progress data and weather forecast data, and send it to the corresponding project personnel accounts to perform project collaboration and sharing based on user permission data.
[0011] The project early warning management module is used to compare and analyze the project planning data and the implemented project data at the corresponding time, generate project early warning information based on the comparison and analysis results, and coordinate and manage the project based on the project early warning information.
[0012] Furthermore, the process by which the project data acquisition module collects project data information and project personnel data information corresponding to the offshore wind power project includes:
[0013] The project data acquisition module includes a project acquisition unit and a personnel acquisition unit.
[0014] The project data collection unit is used to collect project data information corresponding to the corresponding offshore wind power project. The project data information includes project name, project address, project process data and project qualification data. The project qualification data in the obtained project data information is verified. If it passes the verification, access permissions are set for the corresponding project data information.
[0015] The personnel collection unit is used to collect project personnel data information corresponding to the offshore wind power project. The project personnel data includes personnel organizational structure information, personnel identity and qualification information, and personnel job responsibility information, and project personnel accounts are set up accordingly.
[0016] Furthermore, the process by which the marine data acquisition module collects implementation project data and meteorological forecast data corresponding to the relevant offshore wind power project includes:
[0017] The marine data acquisition module is equipped with a project monitoring unit and a meteorological forecasting unit.
[0018] The project monitoring unit is equipped with project monitoring equipment, which is used to acquire the corresponding implementation project data during the implementation of the offshore wind power project.
[0019] The weather forecasting unit obtains the corresponding weather station based on the project address, associates it with the obtained weather station, and obtains the weather forecast data for the location of the project address based on the weather station.
[0020] Furthermore, the process of setting up project resource nodes in the project resource management module includes:
[0021] The project resource management module includes a resource management unit.
[0022] The resource management unit is used to acquire project process data included in the project data information. The project process data is the construction process data and resource management data in the implementation process of the corresponding offshore wind power project.
[0023] Feature extraction is performed on the project process data to obtain the characteristics of the project process flow. The project process data is then split according to the characteristics of the project process flow to obtain the corresponding process sequence. Project resource nodes are set according to the process sequence. The process sequence corresponding to the project process data is matched. Based on the matching result, project process evaluation indicators are set for the project process data within the process sequence corresponding to the project resource node.
[0024] Furthermore, the process of setting user permission data in the project resource management module includes:
[0025] The project resource management module includes an access control unit.
[0026] The permission management unit obtains the process sequence and project personnel data information corresponding to each project resource node, matches and analyzes the personnel job responsibility information contained in the project personnel data information with the process sequence corresponding to each project resource node, obtains the personnel identity and qualification information corresponding to the corresponding project resource node based on the matching analysis results, and sets user permission data based on the personnel identity and qualification information.
[0027] Obtain the personnel identity and qualification information contained in the corresponding project resource node; set up an identity queue matrix of corresponding size according to the number of personnel identity and qualification information; serialize the personnel identity and qualification information to obtain the byte sequence corresponding to the personnel identity and qualification information; input the obtained byte sequence into the corresponding identity queue matrix according to the row arrangement to obtain the permission queue matrix;
[0028] The byte sequence corresponding to the personnel's identity and qualification information is analyzed and processed to obtain the corresponding sparse matrix. The obtained sparse matrix is then multiplied with the permission queue matrix to obtain the user permission data of the corresponding project personnel account.
[0029] Furthermore, the project progress analysis module is used to acquire the corresponding implementation project data, split the acquired implementation project data according to the project process characteristics corresponding to the corresponding project resource nodes, and send the corresponding implementation project data to the corresponding project resource nodes according to the splitting results; the implementation project data corresponding to the splitting results obtained by the project resource nodes is marked as real-time project progress data.
[0030] Furthermore, the process by which the project collaboration and sharing module sets the project planning data within the corresponding project resource nodes based on real-time project progress data and weather forecast data includes:
[0031] The project collaboration and sharing module includes project collaboration units and process collaboration units.
[0032] The project collaboration unit obtains the process sequence corresponding to each project resource node, analyzes and processes it according to the characteristics of the project process flow corresponding to the process sequence, and obtains the relationship between each project resource node. The relationship includes three types: guiding relationship, reverse relationship and independent relationship. The project resource nodes are collaboratively managed according to the different types of relationship.
[0033] The process coordination unit is used to acquire real-time project progress data and weather forecast data corresponding to the project resource nodes, as well as other project resource nodes corresponding to the guiding and reverse relationships of the project resource nodes; and to set early warning weather data according to the project resource nodes.
[0034] The obtained meteorological forecast data is compared and analyzed with the early warning meteorological data, and the corresponding meteorological planning time for the project is obtained based on the comparison and analysis results;
[0035] A project planning cycle is preset. Based on the project planning cycle, the real-time project progress data corresponding to the project resource nodes corresponding to the guiding and reverse relationships of the project resource nodes is obtained. The guiding project change data and reverse project change data corresponding to the real-time project progress data within the project planning cycle are obtained respectively.
[0036] The obtained guiding project change data and reverse change data are combined with the project meteorological planning time for analysis and processing to generate the project planning data corresponding to the project resource nodes.
[0037] The obtained project planning data is sent to the corresponding project personnel account within the project resource node. Project personnel can then access the project planning data within their account based on user permission data for collaborative sharing of the project.
[0038] Furthermore, the project early warning management module is used for each project resource node to obtain corresponding real-time project progress data, extract features from the obtained real-time project progress data to obtain real-time project evaluation data, and match and analyze the obtained real-time project evaluation data against the corresponding project process evaluation indicators within the project resource node. If it does not meet the standards corresponding to the project process evaluation indicators, an evaluation project early warning information is generated.
[0039] If the project meets the standards corresponding to the project process evaluation indicators, the real-time project progress data will be compared and analyzed with the project planning data to obtain the progress deviation value. A deviation value threshold will be preset, and the obtained progress deviation value and the deviation value threshold will be compared and analyzed.
[0040] When the schedule deviation value is greater than the deviation value threshold, a schedule project warning message is generated; otherwise, it is normal. Coordination and management are carried out based on the obtained project warning message.
[0041] Compared with the prior art, the beneficial effects of the present invention are:
[0042] 1. By setting up project resource nodes, project personnel are associated with corresponding project resource nodes based on their job responsibilities. A corresponding identity queue matrix and sparse matrix are set up to obtain the user permission data corresponding to the project personnel. By setting the corresponding user permission data for the project personnel accounts within the project resource nodes, the security of project data information during project management is improved to a certain extent.
[0043] 2. By analyzing and processing the real-time project progress data within the project resource nodes through the correlation between them, the coordination in setting project planning data for each project resource node is improved to a certain extent, thereby avoiding resource waste. In addition, by acquiring meteorological forecast data and obtaining the corresponding project meteorological planning time based on the forecast data, and then setting the corresponding project planning data in combination with the meteorological planning time, the timeliness of the project planning process is improved to a certain extent. Attached Figure Description
[0044] Figure 1 is a schematic diagram of a project management system for offshore wind power based on project implementation schedule according to an embodiment of this application. Detailed Implementation
[0045] As shown in Figure 1, an offshore wind power project management system based on project implementation schedule includes a project management center, which is communicatively connected to a project data acquisition module, an offshore data acquisition module, a project resource management module, a project progress analysis module, a project collaboration and sharing module, and a project early warning management module.
[0046] The project data acquisition module is used to collect project data and personnel data corresponding to the offshore wind power project, and send the acquired data to the project resource management module. The specific implementation process includes:
[0047] The project data acquisition module includes a project acquisition unit and a personnel acquisition unit.
[0048] The project acquisition unit is used to collect project data information corresponding to offshore wind power projects. It is equipped with a project entry window, which is used by relevant staff to enter the corresponding project data information. The project data information includes project name, project location, project design data, project process data and project qualification data.
[0049] The collected project data information is analyzed and processed, and the project name, project location and project qualification data contained in the project data information are verified and reviewed. The project qualification data includes project company qualification information, design unit qualification information, construction qualification information and legal compliance qualification information.
[0050] The obtained project qualification data is analyzed and processed to determine whether the obtained project data information meets the building standards. If it meets the standards, the project data information is verified and the corresponding access permissions are set for it.
[0051] The personnel collection unit is used to collect project personnel data information corresponding to the offshore wind power project. The project personnel data includes personnel organizational structure information, personnel identity and qualification information, and personnel job responsibility information.
[0052] The personnel organizational structure information includes the project's organizational chart and job division chart. The organizational chart includes the management department corresponding to the enterprise to which the project is located, and the job division chart includes the main responsibilities, tasks, and functional areas of different positions.
[0053] The personnel identity and qualification information includes the identity data information and qualification identity information corresponding to the project personnel. The identity data information includes name, age, gender, ID card number and real-name authenticated mobile phone number. The qualification identity information includes relevant qualification certificates or employment data, etc.
[0054] The personnel job responsibility information includes the work data that the corresponding project personnel need to perform in the corresponding project process.
[0055] The offshore data acquisition module is used to collect implementation project data and meteorological forecast data corresponding to the offshore wind power project, and sends the acquired data to the project progress analysis module. The specific implementation process includes:
[0056] The marine data acquisition module is equipped with a project monitoring unit and a meteorological forecasting unit.
[0057] The project monitoring unit is equipped with project monitoring equipment, which is used to acquire the corresponding implementation project data during the implementation of the offshore wind power project. The implementation project data includes construction equipment data, material update data, and construction progress data.
[0058] The meteorological forecasting unit is equipped with meteorological monitoring equipment, which is used to collect real-time meteorological data during the project implementation process.
[0059] The meteorological forecasting unit is associated with the meteorological station corresponding to the project address, and obtains meteorological forecast data for the location of the project address based on the meteorological station.
[0060] The project resource management module is used to break down the offshore wind power project process based on project data, set project resource nodes based on the breakdown results, match project personnel data with corresponding project resource nodes, and set corresponding user permission data based on the matching results. Its specific implementation process includes:
[0061] The project resource management module includes a resource management unit and a permission management unit.
[0062] The resource management unit is used to acquire project process data included in the project data information. The project process data is the construction process data and resource management data in the implementation process of the corresponding offshore wind power project.
[0063] Feature extraction is performed on the project process data to obtain the characteristics of the project process flow. The project process data is then split according to the characteristics of the project process flow to obtain the corresponding process sequence. Project resource nodes are set according to the process sequence. The resource management data is matched with the process sequence corresponding to the project process data, and the matching result is marked as process sequence data.
[0064] The process sequence data and corresponding data evaluation results included in the corresponding project resource node are obtained, a process sequence dataset is generated, the obtained process sequence dataset is analyzed and processed, and the project process evaluation index corresponding to the corresponding project resource node is generated based on the analysis and processing results. The project process evaluation index includes construction process evaluation index and resource process evaluation index.
[0065] The permission management unit obtains the process sequence and project personnel data information corresponding to each project resource node, matches and analyzes the personnel job responsibility information contained in the project personnel data information with the process sequence corresponding to each project resource node, obtains the personnel identity and qualification information corresponding to the corresponding project resource node based on the matching analysis results, and sets user permission data based on the personnel identity and qualification information.
[0066] Obtain the personnel identity and qualification information contained in the corresponding project resource node; set up a corresponding identity queue matrix of size N according to the number of personnel identity and qualification information; serialize the personnel identity and qualification information to obtain the byte sequence corresponding to the personnel identity and qualification information, and the number of bits corresponding to the byte sequence is also N; input the obtained byte sequence into the identity queue matrix of size N according to the row arrangement to obtain the permission queue matrix;
[0067] The byte sequence corresponding to the personnel identity and qualification information is analyzed and processed to obtain the corresponding sparse matrix. The obtained sparse matrix is multiplied with the permission queue matrix to obtain the user permission data corresponding to the personnel of the corresponding project.
[0068] It should be further explained that, in the specific implementation process, the user permission data refers to the data used by the corresponding project personnel to verify their identity by obtaining the corresponding data information within the corresponding project resource node through their project personnel account, which improves the security of the project management process to a certain extent.
[0069] The project progress analysis module is used to split the implementation project data according to the project resource nodes, and obtain the real-time project progress data corresponding to the respective project resource nodes based on the splitting results. Its specific implementation process includes:
[0070] The project progress analysis module is used to obtain the corresponding implementation project data, split the obtained implementation project data according to the project process characteristics corresponding to the corresponding project resource nodes, and send the corresponding implementation project data to the corresponding project resource nodes according to the split results; the implementation project data corresponding to the split results obtained by the project resource nodes is marked as real-time project progress data.
[0071] The project collaboration and sharing module is used to set project planning data within corresponding project resource nodes based on real-time project progress data and weather forecast data, and send it to the corresponding user accounts according to user permission data for project collaboration and sharing. Its specific implementation process includes:
[0072] The project collaboration and sharing module includes project collaboration units and process collaboration units.
[0073] The project collaboration unit obtains the process sequence corresponding to each project resource node, analyzes and processes it according to the characteristics of the project process flow corresponding to the process sequence, and obtains the correlation between each project resource node. The correlation includes three types: guiding relationship, reverse relationship and independent relationship.
[0074] The guiding relationship refers to the relationship in which the process sequence within other project resource nodes affects the project resource node;
[0075] The inverse relationship refers to the relationship in which a process sequence within a corresponding project process sequence affects the resource results of other projects.
[0076] The independence relationship means that there is no influence relationship between the two project resource nodes;
[0077] Based on the different types of association relationships, collaborative management is carried out on the resource nodes of each project;
[0078] The process collaboration unit is used to obtain real-time project progress data, weather forecast data, and other project resource nodes corresponding to the project resource nodes and their guiding and reverse relationships.
[0079] Based on the project resource nodes, set early warning meteorological data, obtain real-time meteorological data and corresponding historical implementation project data within the project resource nodes, obtain the corresponding meteorological threshold data based on the corresponding results, and set the obtained meteorological threshold data as early warning meteorological data.
[0080] The obtained meteorological forecast data is compared and analyzed with the early warning meteorological data, and the corresponding meteorological planning time for the project is obtained based on the comparison and analysis results;
[0081] A project planning cycle is preset. Based on the project planning cycle, the real-time project progress data corresponding to the project resource nodes corresponding to the guiding and reverse relationships of the project resource nodes is obtained. The guiding project change data and reverse project change data corresponding to the real-time project progress data within the project planning cycle are obtained respectively.
[0082] The obtained guiding project change data and reverse change data are combined with the project meteorological planning time for analysis and processing to generate the project planning data corresponding to the project resource nodes.
[0083] The obtained project planning data is sent to the corresponding project personnel account within the project resource node. Project personnel can then access the project planning data within their account based on user permission data for collaborative sharing of the project.
[0084] The project early warning management module is used to compare and analyze the project planning data and the implemented project data at a given time, generate project early warning information based on the comparison and analysis results, and coordinate and manage the project based on the early warning information. Its specific implementation process includes:
[0085] The project early warning management module is used to obtain the corresponding real-time project progress data for each project resource node, extract features from the obtained real-time project progress data, obtain real-time project evaluation data, and match and analyze the obtained real-time project evaluation data with the corresponding project process evaluation indicators within the project resource node. If it does not meet the standard corresponding to the project process evaluation indicator, an evaluation project early warning information is generated.
[0086] If the project meets the standards corresponding to the project process evaluation indicators, the real-time project progress data will be compared and analyzed with the project planning data to obtain the progress deviation value. A deviation value threshold will be preset, and the obtained progress deviation value and the deviation value threshold will be compared and analyzed.
[0087] When the schedule deviation value is greater than the deviation value threshold, a schedule project warning message is generated; otherwise, it is normal. Coordination and management are carried out based on the obtained project warning message.
[0088] The above embodiments are only used to illustrate the technical methods of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical methods of the present invention without departing from the spirit and scope of the technical methods of the present invention.
Claims
1. A project management system for offshore wind power based on project implementation schedule, comprising a project management center, characterized in that, The project management center has communication connections to a project data acquisition module, a marine data acquisition module, a project resource management module, a project progress analysis module, a project collaboration and sharing module, and a project early warning management module. The project data acquisition module is used to collect project data information and project personnel data information corresponding to the corresponding offshore wind power project; The marine data acquisition module is used to collect implementation project data and meteorological forecast data corresponding to the corresponding offshore wind power projects; The project resource management module is used to break down the process of offshore wind power projects based on project data information, set project resource nodes according to the breakdown results, match project personnel data information with the corresponding project resource nodes, and set corresponding user permission data according to the matching results. The project progress analysis module is used to split the implementation project data according to the project resource nodes, and obtain the real-time project progress data corresponding to the corresponding project resource nodes based on the splitting results. The project collaboration and sharing module is used to set project planning data within the corresponding project resource nodes based on real-time project progress data and weather forecast data, and send it to the corresponding project personnel accounts to perform project collaboration and sharing based on user permission data. The project early warning management module is used to compare and analyze the project planning data and the implemented project data at the corresponding time, generate project early warning information based on the comparison and analysis results, and coordinate and manage the project based on the project early warning information.
2. The offshore wind power project management system based on project implementation schedule according to claim 1, characterized in that, The process by which the project data acquisition module collects project data and personnel data for the corresponding offshore wind power project includes: The project data acquisition module includes a project acquisition unit and a personnel acquisition unit. The project data collection unit is used to collect project data information corresponding to the corresponding offshore wind power project. The project data information includes project name, project address, project process data and project qualification data. The project qualification data in the obtained project data information is verified. If it passes the verification, access permissions are set for the corresponding project data information. The personnel collection unit is used to collect project personnel data information corresponding to the offshore wind power project. The project personnel data includes personnel organizational structure information, personnel identity and qualification information, and personnel job responsibility information, and project personnel accounts are set up accordingly.
3. The offshore wind power project management system based on project implementation schedule according to claim 2, characterized in that, The process by which the marine data acquisition module collects implementation project data and meteorological forecast data corresponding to the offshore wind power project includes: The marine data acquisition module is equipped with a project monitoring unit and a meteorological forecasting unit. The project monitoring unit is equipped with project monitoring equipment, which is used to acquire the corresponding implementation project data during the implementation of the offshore wind power project. The weather forecasting unit obtains the corresponding weather station based on the project address, associates it with the obtained weather station, and obtains the weather forecast data for the location of the project address based on the weather station.
4. The offshore wind power project management system based on project implementation schedule according to claim 3, characterized in that, The process of setting up project resource nodes in the project resource management module includes: The project resource management module includes a resource management unit. The resource management unit is used to acquire project process data included in the project data information. The project process data is the construction process data and resource management data in the implementation process of the corresponding offshore wind power project. Feature extraction is performed on the project process data to obtain the characteristics of the project process flow. The project process data is then split according to the characteristics of the project process flow to obtain the corresponding process sequence. Project resource nodes are set according to the process sequence. The process sequence corresponding to the project process data is matched. Based on the matching result, project process evaluation indicators are set for the project process data within the process sequence corresponding to the project resource node.
5. A project management system for offshore wind power based on project implementation schedule according to claim 4, characterized in that, The process of setting user permission data in the project resource management module includes: The project resource management module includes an access control unit. The permission management unit obtains the process sequence and project personnel data information corresponding to each project resource node, matches and analyzes the personnel job responsibility information contained in the project personnel data information with the process sequence corresponding to each project resource node, obtains the personnel identity and qualification information corresponding to the corresponding project resource node based on the matching analysis results, and sets user permission data based on the personnel identity and qualification information. Obtain the personnel identity and qualification information contained in the corresponding project resource node; set up an identity queue matrix of corresponding size according to the number of personnel identity and qualification information; serialize the personnel identity and qualification information to obtain the byte sequence corresponding to the personnel identity and qualification information; input the obtained byte sequence into the corresponding identity queue matrix according to the row arrangement to obtain the permission queue matrix; The byte sequence corresponding to the personnel's identity and qualification information is analyzed and processed to obtain the corresponding sparse matrix. The obtained sparse matrix is then multiplied with the permission queue matrix to obtain the user permission data of the corresponding project personnel account.
6. A project management system for offshore wind power based on project implementation schedule according to claim 5, characterized in that, The project progress analysis module is used to obtain the corresponding implementation project data, split the obtained implementation project data according to the project process characteristics corresponding to the corresponding project resource nodes, and send the corresponding implementation project data to the corresponding project resource nodes according to the split results; the implementation project data corresponding to the split results obtained by the project resource nodes is marked as real-time project progress data.
7. A project management system for offshore wind power based on project implementation schedule according to claim 6, characterized in that, The process by which the project collaboration and sharing module sets the project planning data within the corresponding project resource nodes based on real-time project progress data and weather forecast data includes: The project collaboration and sharing module includes project collaboration units and process collaboration units. The project collaboration unit obtains the process sequence corresponding to each project resource node, analyzes and processes it according to the characteristics of the project process flow corresponding to the process sequence, and obtains the relationship between each project resource node. The relationship includes three types: guiding relationship, reverse relationship and independent relationship. The project resource nodes are collaboratively managed according to the different types of relationship. The process coordination unit is used to acquire real-time project progress data and weather forecast data corresponding to the project resource nodes, as well as other project resource nodes corresponding to the guiding and reverse relationships of the project resource nodes; and to set early warning weather data according to the project resource nodes. The obtained meteorological forecast data is compared and analyzed with the early warning meteorological data, and the corresponding meteorological planning time for the project is obtained based on the comparison and analysis results. A project planning cycle is preset. Based on the project planning cycle, the real-time project progress data corresponding to the project resource nodes corresponding to the guiding and reverse relationships of the project resource nodes is obtained. The guiding project change data and reverse project change data corresponding to the real-time project progress data within the project planning cycle are obtained respectively. The obtained guiding project change data and reverse change data are combined with the project meteorological planning time for analysis and processing to generate the project planning data corresponding to the project resource nodes. The obtained project planning data is sent to the corresponding project personnel account within the project resource node. Project personnel can then access the project planning data within their account based on user permission data for collaborative sharing of the project.
8. A project management system for offshore wind power based on project implementation schedule according to claim 7, characterized in that, The project early warning management module is used to obtain the corresponding real-time project progress data for each project resource node, extract features from the obtained real-time project progress data, obtain real-time project evaluation data, and match and analyze the obtained real-time project evaluation data with the corresponding project process evaluation indicators within the project resource node. If it does not meet the standard corresponding to the project process evaluation indicator, an evaluation project early warning information is generated. If the project meets the standards corresponding to the project process evaluation indicators, the real-time project progress data will be compared and analyzed with the project planning data to obtain the progress deviation value. A deviation value threshold will be preset, and the obtained progress deviation value and the deviation value threshold will be compared and analyzed. When the schedule deviation value is greater than the deviation value threshold, a schedule project warning message is generated; otherwise, it is normal. Coordination and management are carried out based on the obtained project warning message.
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