A method for pre-project business cooperation of a key project
By constructing a single map of key projects, integrating multiple types of information and utilizing geographic information systems, the challenges of multi-departmental collaboration have been solved, the coordination and efficiency of early-stage project work have been improved, project lifecycle management has been supported, and rapid implementation has been facilitated.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHONGQING PLANNING & NATURAL RESOURCES INFORMATION CENT
- Filing Date
- 2025-09-08
- Publication Date
- 2026-05-29
AI Technical Summary
Existing technologies are insufficient to effectively coordinate the preliminary work of key projects involving multiple departments and stages, resulting in inefficient resource allocation and hindering project progress and implementation.
By constructing a single map of key projects, integrating basic project information, spatial geographic information, industrial layout information, supporting facility information, environmental impact information, and policy and regulatory information, and utilizing geographic information systems for data integration and visualization, the scientific and efficient planning, site selection, and approval of projects can be achieved.
It has enabled synergy and efficiency in the early stages of key projects, improved the efficiency of spatial resource allocation, supported the full life-cycle management of projects, and facilitated the rapid implementation of projects.
Smart Images

Figure CN122114424A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of project management, specifically a method for collaborative business operations in the early stages of key projects. Background Technology
[0002] To promote high-quality economic and social development, key projects serve as crucial levers for driving regional economic growth, optimizing industrial structure, and improving people's well-being. The scientific rigor, coordination, and efficiency of their preliminary work are paramount. With the deepening of new urbanization and industrial transformation and upgrading, the construction of key projects often involves multiple fields, departments, and stages.
[0003] In order to strengthen cross-departmental collaboration in the early stages of key projects and improve the efficiency of spatial resource allocation for key projects, it is necessary to provide a method for business collaboration in the early stages of key projects. Summary of the Invention
[0004] The purpose of this invention is to provide a method for early-stage business collaboration in key projects, comprising the following steps:
[0005] 1) Collect information on current key projects, including basic project information, spatial geographic information, industrial layout information, supporting facility information, environmental impact information, and policy and regulatory information;
[0006] 2) Based on current project information, construct a single map of key projects using a geographic information system;
[0007] 3) During the planning stage of key projects, a map of key projects is used to analyze regional resource endowment and industrial development direction, supporting various industry departments and platform companies in planning key projects that conform to the regional development strategy;
[0008] During the project site selection phase, based on a map of key projects, land use, transportation conditions, and environmental impact factors are considered to analyze and compare different site selection options.
[0009] During the project approval stage, the approving authority retrieves data such as project spatial information, land use planning, land management, and industry department spatial control from the key project map to conduct a joint review of the project site's compliance with planning and land use requirements and industry department access conditions.
[0010] Furthermore, the basic information of the project includes the project name, construction location, construction content, investment scale, and construction period;
[0011] The spatial geographic information includes the intended scope of the project, land ownership, land use nature, and planning control lines;
[0012] The industrial layout information includes the industry category and the upstream and downstream industrial chain connections;
[0013] The supporting facilities information includes the current status and planning of infrastructure such as transportation, energy, and water conservancy;
[0014] The environmental impact information includes ecological red lines and environmental carrying capacity;
[0015] The policy and regulatory information includes land policy, industrial policy, and environmental policy.
[0016] Furthermore, the aforementioned key project map is used to display the spatial distribution, supporting facilities, construction progress, and resource requirements of key projects.
[0017] Furthermore, the aforementioned key project map displays a basic base layer, a project layer, and a supporting resource layer in a layered manner. It also enables thematic map creation to showcase key projects by theme, achieving classified management and dynamic supervision of key projects in different regions and of different types.
[0018] Furthermore, the key project map provides spatial query and visualization, online statistics and results interaction, spatial analysis and decision support functions.
[0019] The technical effects of this invention are undeniable. This invention establishes a collaborative working mechanism for the early-stage business of key projects, which guides project generation through planning and facilitates collaborative work in the early stages of key projects. This provides a guarantee for the management of spatial resource elements of key projects, realizes full life-cycle management of key projects, and can accelerate the implementation of key projects. Attached Figure Description
[0020] Figure 1 This is a flowchart of the method. Detailed Implementation
[0021] The present invention will be further described below with reference to embodiments, but it should not be construed that the scope of the present invention is limited to the following embodiments. Various substitutions and modifications made based on ordinary technical knowledge and common practices in the art without departing from the above-described technical concept of the present invention should be included within the scope of protection of the present invention.
[0022] Example 1:
[0023] See Figure 1 A method for early-stage business collaboration in key projects includes the following steps:
[0024] 1) Collect information on key projects currently released by the National Development and Reform Commission, including basic project information, spatial geographic information, industrial layout information, supporting facility information, environmental impact information, and policy and regulatory information;
[0025] 2) Based on current project information, construct a single map of key projects using a geographic information system;
[0026] 3) During the planning stage of key projects, a map of key projects is used to analyze regional resource endowment and industrial development direction, supporting various industry departments and platform companies in planning key projects that conform to the regional development strategy;
[0027] During the project site selection phase, based on a map of key projects, land use, transportation conditions, and environmental impact factors are considered to analyze and compare different site selection options.
[0028] During the project approval stage, the approving authority retrieves data such as project spatial information, land use planning, land management, and industry department spatial control from the key project map to conduct a joint review of the project site's compliance with planning and land use requirements and industry department access conditions.
[0029] The basic information of the project includes the project name, construction location, construction content, investment scale, and construction period;
[0030] The spatial geographic information includes the intended scope of the project, land ownership, land use nature, and planning control lines;
[0031] The industrial layout information includes the industry category and the upstream and downstream industrial chain connections;
[0032] The supporting facilities information includes the current status and planning of infrastructure such as transportation, energy, and water conservancy;
[0033] The environmental impact information includes ecological red lines and environmental carrying capacity;
[0034] The policy and regulatory information includes land policy, industrial policy, and environmental policy.
[0035] The map of key projects is used to display the spatial distribution, supporting facilities, construction progress, and resource requirements of key projects.
[0036] The key project map is presented in layers: a base layer, a project layer, and a supporting resource layer. Thematic maps are used to focus on specific topics, enabling classified management and dynamic supervision of key projects in different regions and of different types.
[0037] The key projects are presented on a single map, providing spatial query and visualization, online statistics and results interaction, spatial analysis and decision support functions.
[0038] Example 2:
[0039] See Figure 1 A method for early-stage business collaboration in key projects includes the following steps:
[0040] 1) Collect information on key projects currently released by the National Development and Reform Commission, including basic project information, spatial geographic information, industrial layout information, supporting facility information, environmental impact information, and policy and regulatory information;
[0041] 2) Based on current project information, construct a single map of key projects using a geographic information system;
[0042] 3) During the planning stage of key projects, a map of key projects is used to analyze regional resource endowment and industrial development direction, supporting various industry departments and platform companies in planning key projects that conform to the regional development strategy;
[0043] During the project site selection phase, based on a map of key projects, land use, transportation conditions, and environmental impact factors are considered to analyze and compare different site selection options.
[0044] During the project approval stage, the approving authority retrieves data such as project spatial information, land use planning, land management, and industry department spatial control from the key project map to conduct a joint review of the project site's compliance with planning and land use requirements and industry department access conditions.
[0045] Example 3:
[0046] A method for early-stage business collaboration in key projects, with the same technical content as in Embodiment 2, further wherein the basic project information includes project name, construction location, construction content, investment scale, and construction period;
[0047] The spatial geographic information includes the intended scope of the project, land ownership, land use nature, and planning control lines;
[0048] The industrial layout information includes the industry category and the upstream and downstream industrial chain connections;
[0049] The supporting facilities information includes the current status and planning of infrastructure such as transportation, energy, and water conservancy;
[0050] The environmental impact information includes ecological red lines and environmental carrying capacity;
[0051] The policy and regulatory information includes land policy, industrial policy, and environmental policy.
[0052] Example 4:
[0053] A method for early-stage business coordination of key projects, with technical content the same as any one of embodiments 2-3. Furthermore, the key project map is used to display the spatial distribution, supporting facilities, construction progress, and resource requirements of the key project.
[0054] Example 5:
[0055] A method for early-stage business collaboration of key projects, with technical content the same as any one of embodiments 2-4. Further, the key project map is displayed in layers: a base layer, a project layer, and a supporting resource layer. Thematic maps are used to achieve focused display by theme, enabling classified management and dynamic supervision of key projects in different regions and of different types.
[0056] Example 6:
[0057] A method for early-stage business collaboration of key projects, with technical content the same as any one of embodiments 2-5, further wherein the key project map provides spatial query and visualization display, online statistics and result interaction, spatial analysis and decision support functions.
[0058] Example 7:
[0059] A method for early-stage business collaboration in key projects, comprising the following steps:
[0060] (I) Establish a map of key projects
[0061] 1. Data Integration and Collection. Comprehensive collection of various data related to key projects, including basic project information (such as project name, construction location, construction content, investment scale, construction period, etc.), spatial geographic information (such as intended project scope, land ownership, land use nature, planning control lines, etc.), industrial layout information (such as industry category, upstream and downstream industrial chain connections, etc.), supporting facility information (such as the current status and planning of infrastructure such as transportation, energy, and water conservancy), environmental impact information (such as ecological red lines, environmental carrying capacity, etc.), and policy and regulatory information (such as land policies, industrial policies, environmental protection policies, etc.). A data sharing mechanism will be established among departments such as natural resources, development and reform, industry and information technology, and ecology and environment to ensure the accuracy, timeliness, and completeness of the data.
[0062] 2. Single Map Construction. Utilizing Geographic Information Systems (GIS), big data analytics, and other technologies, a single map is constructed for key projects. The integrated data undergoes standardized processing and spatial mapping, using an electronic map to intuitively display the spatial distribution, supporting facilities, construction progress, and resource requirements of key projects. Through layered display and thematic map creation functions, categorized management and dynamic monitoring of key projects in different regions and of different types are achieved. Simultaneously, query, statistical, and analysis functions provide convenient data services to various departments, facilitating timely understanding of project dynamics and coordination to resolve issues encountered in the early stages of project preparation.
[0063] 3. Application of a Single Map. A single map for key projects is applied to early-stage business processes such as planning, site selection, and approval, with a dynamic data update mechanism established. A red-line intelligent inspection tool is provided to intelligently analyze the compliance of project land use planning and spatial control during the planning and site selection stages, and to demonstrate the optimal relationship between project layout and spatial resource utilization, assisting in project site selection implementation. In the project planning stage, the single map analyzes regional resource endowments and industrial development directions to accurately plan key projects that align with regional development strategies. In the project site selection stage, the spatial analysis function of the single map is used to scientifically compare and select project site options by comprehensively considering factors such as land use, transportation conditions, and environmental impact. In the project approval stage, spatial information and related data support are provided to approval departments to improve approval efficiency and scientific rigor.
[0064] (II) Conducting Spatial Collaboration Demonstration for Key Projects
[0065] 1. Establish a spatial collaborative demonstration mechanism. Establish a collaborative working mechanism for the preliminary work of key projects, comprising departments such as natural resources, development and reform, housing and urban-rural development, ecology and environment, transportation, and water resources. Clarify the division of responsibilities among departments to achieve "joint planning, joint demonstration, and joint decision-making" for major projects, optimize approval processes, and accelerate the implementation of key projects.
[0066] 2. Content and Methodology of the Demonstration. Focusing on whether the land use for key projects complies with planning and land use conditions, spatial baseline control requirements, and relevant control requirements of industry authorities such as ecology and environment, housing and construction, transportation, water resources, and urban management, a list of suggested preliminary work items for ensuring spatial resources for the projects is proposed. This list is intelligently pushed to the relevant industry authorities for review. The results of the preliminary spatial collaborative demonstration of key projects are pushed to the key project management system through an interface, promoting the optimization and simplification of the approval process, helping construction units to deepen and solidify preliminary work, and accelerating the implementation of major projects.
[0067] (III) Establishing a digital cockpit for collaborative work in the early stages of key projects
[0068] 1. Establish a collaborative scheduling center for key projects. This center, designed for management personnel, will include modules for project listing, progress management, and command and dispatch. It will visually display the progress of key projects, the responsible departments, processing status, current stage, and any bottlenecks or obstacles encountered during project implementation. The center will be linked to relevant business approval processes to dynamically track the progress of land use approvals for key projects. Warnings will be issued and notifications pushed to relevant department heads for any abnormal situations such as overdue land use approvals or failed approvals, reminding them of the next approval stage and required documentation.
[0069] 2. Construct a digital dashboard for key projects. Develop a digital dashboard for leadership decision-making and scheduling of key projects. This dashboard will empower the entire lifecycle supervision of key projects through digitalization, integrating multi-dimensional charts and real-time dashboards to dynamically display core indicators such as the overall situation, processing status, and bottlenecks of key projects across the district. This will achieve digital, visual, refined, and full-process supervision of key projects throughout their entire lifecycle.
Claims
1. A method for project pre-operation business cooperation, characterized in that, Includes the following steps: 1) Collect information on current key projects, including basic project information, spatial geographic information, industrial layout information, supporting facility information, environmental impact information, and policy and regulatory information; 2) Based on current project information, construct a single map of key projects using a geographic information system; 3) During the planning stage of key projects, analyze the region's resource endowment and industrial development direction through a map of key projects, and plan key projects that conform to the regional development strategy; During the project site selection phase, based on a map of key projects, land use, transportation conditions, and environmental impact factors are considered to analyze and compare different site selection options. During the project approval stage, the approving authority retrieves data such as project spatial information, land use planning, land management, and industry department spatial control from the key project map to conduct a joint review of the project site's compliance with planning and land use requirements and industry department access conditions.
2. The method for collaborative business operations in the early stages of a key project according to claim 1, characterized in that, The basic information of the project includes the project name, construction location, construction content, investment scale, and construction period; The spatial geographic information includes the intended scope of the project, land ownership, land use, and planning control lines; The industrial layout information includes the industry category and the upstream and downstream industrial chain connections; The supporting facilities information includes the current status and planning of infrastructure such as transportation, energy, and water conservancy; The environmental impact information includes ecological red lines and environmental carrying capacity; The policy and regulatory information includes land policy, industrial policy, and environmental protection policy.
3. The method for collaborative business operations in the early stages of a key project according to claim 1, characterized in that, The map of key projects is used to display the spatial distribution, supporting facilities, construction progress, and resource requirements of key projects.
4. The method for early-stage business collaboration in key projects according to claim 3, characterized in that, The key project map is presented in layers: a base layer, a project layer, and a supporting resource layer. Thematic maps are used to focus on specific topics, enabling classified management and dynamic supervision of key projects in different regions and of different types.
5. The method for collaborative business operations in the early stages of a key project according to claim 3, characterized in that, The key projects are presented on a single map, providing spatial query and visualization, online statistics and results interaction, spatial analysis and decision support functions.