Standardized drawing tool, method and product for territorial space detailed planning result
By using standardized mapping tools for detailed land and space planning results, standardized planning maps can be automatically generated, solving the problems of low efficiency, inconsistency, and difficulty in updating manual mapping, and improving the intelligence and digitalization level of planning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- TIANJIN URBAN PLANNING & DESIGN INST CO LTD
- Filing Date
- 2026-01-06
- Publication Date
- 2026-04-17
AI Technical Summary
In land spatial planning, manual map generation is inefficient, inconsistent, and difficult to update and maintain, which affects the quality and efficiency of planning results.
The standardized mapping tool for detailed land spatial planning results is adopted. By establishing standardized file modules, splitting modules, extraction modules, map table modules, and map modules, the standardized planning maps can be automatically generated, including plot drawing, information extraction, legend insertion, and batch export.
It improved mapping efficiency, reduced inconsistencies caused by human operation, and enhanced the intelligence level and digital transformation capabilities of planning.
Smart Images

Figure CN121879648A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of land spatial planning and mapping technology, and in particular relates to a standardized mapping tool, method and product for detailed land spatial planning results. Background Technology
[0002] The field of territorial spatial planning is accelerating its digital transformation to improve the intelligence level of planning preparation and management. However, in the process of standardizing the mapping of detailed territorial spatial planning results, research and application of relevant tools have not yet been carried out, and planning personnel still need to manually generate maps.
[0003] The manual method of generating images has the following drawbacks: 1. Low efficiency: Manual drawing requires planners to draw and edit each drawing individually, which is time-consuming and labor-intensive. This efficiency problem is even more prominent when the planning scope is large and the number of drawings is large.
[0004] 2. Consistency is difficult to guarantee: Manually generated maps are prone to inconsistencies due to human factors, such as inconsistent use of symbols or incorrect labeling, which affects the quality of planning results.
[0005] 3. Difficult to update and maintain: When planning data changes, manually generating maps requires modifying and updating each one individually, which is a huge workload and prone to errors.
[0006] Significance: By leveraging advanced, tool-based methods, we can achieve efficient and accurate standardized mapping of planning outcomes. Furthermore, the research and application of this tool will become a key driver in accelerating the digital transformation of planning, significantly enhancing the intelligence level of planning. Summary of the Invention
[0007] This invention proposes a standardized mapping tool, method, and product for detailed land spatial planning results, which can efficiently and accurately complete the standardized mapping of land spatial planning results, improve the intelligence level of planning preparation, and accelerate the digital transformation of planning preparation.
[0008] To achieve the above objectives, the technical solution of the present invention is implemented as follows: A standardized mapping tool for detailed land spatial planning results includes: Standardized Document Module: Establishes a standardized control plan outcome document layer system and generates standardized control plan outcome documents; Module splitting: The standardized control plan output documents are split according to the planning unit scope to obtain the split unit files; Extraction module: Automatically extracts information from the control planning results based on the split unit files; Map and Table Module: Generates maps and tables to present various indicators and information of the control plan results; Map module: Generates standardized planning maps in batches through automated processes.
[0009] Furthermore, the standardized document module includes: Plot drawing unit: Draws plots with standardized attributes to directly generate standardized layers; Adjustment and optimization unit: Adjust and optimize the completed control detailed planning results documents according to the layer naming rules; Generation Unit: Generates standardized control plan outcome documents.
[0010] Furthermore, the modules are split as follows: The standardized control plan output file is split into multiple unit files based on the planning unit scope. Each unit file contains only the unit scope and the elements within it. The elements include fill, polyline, text, and block reference.
[0011] Furthermore, the extraction module includes: Open the unit file, identify and read the information of plot filling and facility map stamps in the unit file.
[0012] Furthermore, the drawing table module includes: Setting unit: Sets and stores the numerical indicators required for planning, including names and specific numerical requirements; Matching unit: Matches the numerical indicators with the information in the control planning results extracted by the extraction module using the plot number and facility name; Table Unit: Generates a compliant drawing table based on the matching results.
[0013] Furthermore, the drawing module includes: Startup Unit: Automatically starts the drafting program, providing the operating environment for drawing creation; Create layout cells: Create a layout that conforms to the specifications and procedures according to the detailed layout requirements, and set the output and print properties; Viewport Display Unit: Insert a viewport to accurately display the cell range diagram of the split cell file; Feature insertion unit: Inserts standardized block reference features to improve the basic geographic information identification of the map; the standardized block reference features include wind rose, scale bar, and compass. Legend insertion unit: Based on the information extracted from the control planning results by the extraction module, insert land use legends and facility legends corresponding to the land parcel filling and facility map stamps; Text Insertion Unit: Insert various text content information required for drawings according to different detailed specifications, including drawing name, drawing number, drawing table, and text description.
[0014] Furthermore, it also includes: Export module: Based on actual needs, batch export the drawings generated by the drawing module into various commonly used file formats.
[0015] In another aspect, this invention also proposes a standardized mapping method for detailed land spatial planning results, comprising: S1. Establish a standardized control plan result document layer system and generate standardized control plan result documents; S2. Split the standardized control plan output documents according to the planning unit scope to obtain the split unit documents; S3. Automatically extract information from the control plan results based on the split unit files; S4. Generate maps and tables to present the various indicators and information of the control plan results; S5. Generate standardized planning maps in batches through automated processes.
[0016] Furthermore, step S1 specifically includes: S101. Draw plots with standardized attributes to directly generate standardized layers; S102. Adjust and optimize the completed control detailed planning documents according to the layer naming rules. S103. Generate standardized control plan outcome documents.
[0017] Furthermore, step S2 specifically includes: The standardized control plan output file is split into multiple unit files based on the planning unit scope. Each unit file contains only the unit scope and the elements within it. The elements include fill, polyline, text, and block reference.
[0018] Furthermore, step S3 specifically includes: Open the unit file, identify and read the information of plot filling and facility map stamps in the unit file.
[0019] Furthermore, step S4 specifically includes: S401. Set and store the numerical indicators required for planning, including their names and specific numerical requirements; S402. Match the numerical indicators with the information in the control plan results extracted in step S3 by using the plot number and facility name; S403. Generate a drawing table that conforms to the specifications based on the matching results.
[0020] Furthermore, step S5 specifically includes: S501: Automatically starts the drafting program, providing a runtime environment for drawing creation; S502. Create a layout that conforms to the specifications and procedures according to the detailed layout requirements, and set the output and printing attributes. S503. Insert a viewport to accurately display the cell range diagram of the split cell file; S504. Insert standardized block reference elements to improve the basic geographic information identification of the map; the standardized block reference elements include wind rose, scale bar, and compass. S505. Based on the information extracted from the control plan results in step S3, insert land use legends and facility legends corresponding to the land parcel filling and facility map stamps; S506. According to different detailed specifications, insert various textual information required for the drawings, including drawing name, drawing number, drawing table, and text description.
[0021] Furthermore, it also includes: S6. Based on actual needs, batch export the drawings generated in step S5 into various commonly used file formats.
[0022] The present invention also provides a computer-readable storage medium storing a computer program for executing the above-described method for standardizing mapping of detailed land spatial planning results.
[0023] The present invention also provides a computer program product, including a computer program that, when executed by a processor, implements the above-described method for standardizing mapping of detailed land spatial planning results.
[0024] Compared with the prior art, the present invention has the following beneficial effects: This invention provides a mapping tool that, based on the identification of regulatory planning map elements, automatically generates auxiliary map elements such as legends, compasses, scale bars, and map tables (e.g., indicator overview tables). It supports dynamic association of map elements and legend symbols, ensuring that legend content is synchronized with mapping data in real time. It enables modular decomposition from general plans to unit plans, has a built-in standardized map template library, and automatically generates unit plans that conform to specifications. It provides dedicated commands to support batch generation and formatted output of unit plans, thematic maps, and land parcel plans.
[0025] This invention simplifies the workflow of planners, greatly improving efficiency; reduces inconsistencies in maps caused by human operation; effectively addresses the needs of large-scale standardized mapping scenarios, and significantly enhances the intelligence level of planning. Attached Figure Description
[0026] Figure 1 This is a flowchart illustrating the technical implementation of Embodiment 1 of the present invention.
[0027] Figure 2 This is a structural diagram of Embodiment 2 of the present invention. Detailed Implementation
[0028] It should be noted that, unless otherwise specified, the embodiments and features described in the present invention can be combined with each other.
[0029] The core idea of this invention is to leverage advanced, tool-based methods to achieve efficient and accurate standardized mapping of planning outcomes. Furthermore, the research and application of this tool will become a key driver in accelerating the digital transformation of planning, significantly enhancing the intelligence level of planning.
[0030] To make the purpose and features of this invention patent more apparent and understandable, the invention will be further described below in conjunction with the accompanying drawings and specific embodiments.
[0031] Example 1: This embodiment illustrates the technical implementation process of the standardized mapping of detailed land spatial planning results proposed in this invention, such as... Figure 1 As shown, it includes: Step 1: Establish a standardized control plan result document layer system and generate standardized control plan result documents.
[0032] The standardized control plan outcome document refers to the standardized control detailed planning outcome document of the territorial spatial planning. The purpose of this step is to generate a standardized outcome document. The outcome document can be generated directly by a tool, or the completed control plan outcome document can be standardized and optimized.
[0033] The standardization and normalization mentioned therein may include the standardization and normalization of land parcels, unit ranges, road red lines, road center lines, coordinates, facility map stamps, development boundaries, urban five-line railways, expressways, land parcel entrances and exits, and road names in the control planning results documents.
[0034] Firstly, it can be generated directly using tools: Land parcels are the basic units of national land spatial planning, and are usually divided according to standards such as land use type and functional zoning. For example, different land types such as cultivated land, forest land, and residential land are classified and displayed through layers, with each layer corresponding to a specific type of spatial distribution.
[0035] In order to directly generate standardized control planning result documents, the mapping tool of this invention has a built-in drawing function to accurately draw plots with standardized attributes, thereby directly producing the standardized layers required for subsequent steps and ensuring the standardization of the data source. The specific operation is as follows: Use this tool to attach plot attributes (plot number, land use code, land use nature, plot ratio, etc.) to the filled XData (extended map data). Click draw, and the tool will draw plot fill in the standardized named layer according to the added plot attributes (the layer color is determined according to the land use nature code), and then delete the original fill.
[0036] Secondly, adjustments and optimizations: For the completed control detailed planning result documents, adjustments and optimizations are made according to the standardized layer naming rules required by the mapping tool of this invention. Based on the corresponding plot number labels, land use indicators are read from external files (Excel) and attached to the filled XData. The control planning result documents are then redrawn to ensure the compatibility of the existing control planning result layers with the tool, laying the foundation for the smooth execution of subsequent steps.
[0037] Through the two methods described above, a complete and standardized set of control planning outcome documents is finally generated, which are presented in dwg file format in this embodiment.
[0038] Step 2: Split the standardized control plan output documents according to the planning unit scope to obtain the split unit documents.
[0039] To meet the needs of refined management and unit-based application, this step will utilize the tool's unit-splitting function to split the standardized control plan output file generated in Step 1. Based on the planning unit scope, the graphic elements involved in the output (fills, polylines, text, block references) will be split into multiple DWG files. Each DWG file contains only the unit scope and its internal graphic elements. The splitting process strictly adheres to the preset planning unit scope, ensuring clear boundaries and complete data for each unit, facilitating subsequent individual information processing and application for different units. The split unit DWG files can also be referred to as the detailed planning unit standardized output files.
[0040] Step 3: Automatically extract information from the control plan results based on the split unit files.
[0041] This step aims to automatically extract key information from the regulatory planning results (detailed regulatory plan results) to provide data support for subsequent table generation and map production. The specific process is as follows: The tool automatically opens the single-unit dwg file generated in step 2, and then identifies and reads the relevant information of the plot filling and facility stamps in the file.
[0042] Regarding the land parcel filling, the XData property filled in step 1 already contains detailed land parcel information. In addition, the stored information can be reread from an external file (Excel) with the same land parcel number label based on the land parcel number label. Regarding facility map stamps, the block name of the map stamp (block reference) is used to identify information such as facility name, type, and level. The location of the map stamp (block reference) is used to identify information such as whether it is independently constructed, land area, and building area.
[0043] The plot filling layer is a standardized layer from which the tool can extract the land use control requirements for all plots within the unit, including but not limited to key data such as land use type, land area, and number of facilities, and automatically match the corresponding land use legend block reference. Similarly, the facility map stamps are standardized block references. The tool will identify all facility block references within the unit, extract the facility control requirements (such as land area and number of facilities) contained in each stamp, and match the corresponding facility legend block reference. Through this process, the core information of the planning control results can be extracted automatically and accurately.
[0044] Step 4: Generate maps and tables to present the various indicators and information of the control plan results.
[0045] To present the various indicators and information of the control plan results in a visual way, corresponding maps and tables need to be generated.
[0046] First, the tool pre-sets and stores a series of numerical indicators required for planning, including names and specific numerical requirements. Some indicators are compatible with both numerical and text input. The indicators cover key parameters such as plot ratio, green space ratio, building height limit, building density, and unit population.
[0047] Secondly, these numerical indicators are precisely matched with the corresponding plot numbers and facility names in the control plan results read in step 3 by using the plot number and facility name to ensure the accuracy of data association.
[0048] Subsequently, the system summarizes the land use and facility information extracted in step 3, combines it with pre-stored numerical indicators, and finally automatically generates standardized maps and tables, such as land use summary tables and public service facility control overview tables, providing clear data support for planning decisions and results presentation.
[0049] Step 5: Generate standardized planning maps in batches through automated processes.
[0050] This step involves generating standardized planning maps in batches through an automated process, and consists of six interconnected sub-steps: 5.1: The tool automatically starts the CAD program, providing a runtime environment for drawing creation.
[0051] 5.2: In accordance with the detailed layout requirements (margins, text size, content scale, etc.) contained in the specification (regulation) drawing templates of local detailed plans, create a layout in CAD that conforms to the specification (regulation), and set up and adjust the printing attributes, output file type, image size, DPI and other attributes according to the preset printing standards to ensure that the output format of the drawings is uniform.
[0052] The tool allows users to set up a standardized map template library (with required map styles) as the layout of the plan, including existing characteristic resource distribution maps, land use planning maps, public service facility planning maps, road traffic planning maps, green space and open space planning maps, comprehensive disaster prevention planning maps, public space system maps, etc. Each map has its own format style table requirements.
[0053] 5.3: Insert a viewport to accurately display the extent of the unit file after splitting in step 2, ensuring that the drawing displays the overall extent of a single unit.
[0054] 5.4: Insert standardized block reference elements such as wind roses, scale bars, and compasses to improve the basic geographic information identification of the map. For example, wind roses are preset at fixed locations on the map, while scale bars have multiple built-in block references that correspond to different display scales. The block references of the corresponding scale are inserted according to the display scale of the current unit file in the map.
[0055] 5.5: Based on the results of matching the land use legend and facility legend in step 3, insert the land use legend and facility legend corresponding to the plot filling and facility stamp.
[0056] The plot filling inserts the corresponding plot legend based on the standardized layer, while the facility stamp inserts the corresponding legend based on the block name of the facility stamp (block reference). Both the plot legend and the facility legend are pre-made block reference dwg files of plot legends. They are identified and matched by block name and finally inserted into the fixed position of the map.
[0057] 5.6: Based on the detailed planning requirements of different regions, insert various textual information required for the drawings, including drawing names, drawing numbers, drawing tables, and necessary textual descriptions. Simultaneously, modify the tool configuration to meet the different needs of various regions, ensuring the completeness and standardization of drawing information.
[0058] After completing the above six steps, the tool will activate the batch generation function to efficiently produce planning maps for each unit.
[0059] Step 6: Export the drawings generated in Step 5 in batches to various commonly used file formats, according to actual needs.
[0060] To adapt to application needs in different scenarios, the tool supports batch exporting the drawings generated in step 5 into various common file formats, including but not limited to DWG (for easy subsequent editing and modification), JPG, and PNG (suitable for presentations, reports, and other scenarios), thereby improving the applicability and sharing of the results. Typically, the created layout is exported as a DWG file (using the built-in CAD tool), and depending on the specific requirements, the CAD output device can output as a JPG or PNG image.
[0061] The above process simplifies the workflow for planners, greatly improving efficiency; reduces inconsistencies in maps caused by human intervention; effectively addresses the needs of large-scale standardized mapping scenarios; and significantly enhances the intelligence level of planning.
[0062] Example 2: This embodiment proposes a standardized mapping tool for detailed land spatial planning results, such as... Figure 2 As shown, it includes: Standardized Document Module: Establishes a standardized control plan outcome document layer system and generates standardized control plan outcome documents; Module splitting: The standardized control plan output documents are split according to the planning unit scope to obtain the split unit files; Extraction module: Automatically extracts information from the control planning results based on the split unit files; Map and Table Module: Generates maps and tables to present various indicators and information of the control plan results; Map module: Generates standardized planning maps in batches through automated processes.
[0063] The standardized document module includes: Plot drawing unit: Draws plots with standardized attributes to directly generate standardized layers; Adjustment and optimization unit: Adjust and optimize the completed control detailed planning results documents according to the layer naming rules; Generation Unit: Generates standardized control plan outcome documents.
[0064] The split modules include: The standardized control plan output file is split into multiple unit files based on the planning unit scope. Each unit file contains only the unit scope and the elements within it. The elements include fill, polyline, text, and block reference.
[0065] The extraction module includes: Open the unit file, identify and read the information of plot filling and facility map stamps in the unit file.
[0066] The chart / table module includes: Setting unit: Sets and stores the numerical indicators required for planning, including names and specific numerical requirements; Matching unit: Matches the numerical indicators with the information in the control planning results extracted by the extraction module using the plot number and facility name; Table Unit: Generates a compliant drawing table based on the matching results.
[0067] The drawing module includes: Startup Unit: Automatically starts the drafting program, providing the operating environment for drawing creation; Create layout cells: Create a layout that conforms to the specifications and procedures according to the detailed layout requirements, and set the output and print properties; Viewport Display Unit: Insert a viewport to accurately display the cell range diagram of the split cell file; Feature insertion unit: Inserts standardized block reference features to improve the basic geographic information identification of the map; the standardized block reference features include wind rose, scale bar, and compass. Legend insertion unit: Based on the information extracted from the control planning results by the extraction module, insert land use legends and facility legends corresponding to the land parcel filling and facility map stamps; Text Insertion Unit: Insert various text content information required for drawings according to different detailed specifications, including drawing name, drawing number, drawing table, and text description.
[0068] Also includes: Export module: Based on actual needs, batch export the drawings generated by the drawing module into various commonly used file formats.
[0069] The standardized mapping tool for detailed land spatial planning results proposed in this embodiment can realize the standardized mapping method for detailed land spatial planning results described in Embodiment 1, and has the same technical effect as Embodiment 1.
[0070] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A standardized mapping tool for detailed land spatial planning results, characterized in that, include: Standardized Document Module: Establishes a standardized control plan outcome document layer system and generates standardized control plan outcome documents; The splitting module splits the standardized control plan output file according to the planning unit scope to obtain the split unit files; it includes: splitting the standardized control plan output file, and according to the planning unit scope, splitting the involved graphic elements into multiple unit files, each unit file only contains the unit scope and the graphic elements within it; the graphic elements include fill, polyline, text, and block reference; Extraction module: Automatically extracts information from the control planning results based on the split unit files; Map and Table Module: Generates maps and tables to present various indicators and information of the control plan results; Map module: Generates standardized planning maps in batches through automated processes.
2. The standardized mapping tool for detailed land spatial planning results according to claim 1, characterized in that, The standardized document module includes: Plot drawing unit: Draws plots with standardized attributes to directly generate standardized layers; Adjustment and optimization unit: Adjust and optimize the completed control detailed planning results documents according to the layer naming rules; Generation Unit: Generates standardized control plan outcome documents.
3. The standardized mapping tool for detailed land spatial planning results according to claim 1, characterized in that, The extraction module includes: Open the unit file, identify and read the information of plot filling and facility map stamps in the unit file.
4. The standardized mapping tool for detailed land spatial planning results according to claim 1, characterized in that, The chart / table module includes: Setting unit: Sets and stores the numerical indicators required for planning, including names and specific numerical requirements; Matching unit: Matches the numerical indicators with the information in the control planning results extracted by the extraction module using the plot number and facility name; Table Unit: Generates a compliant drawing table based on the matching results.
5. The standardized mapping tool for detailed land spatial planning results according to claim 1, characterized in that, The drawing module includes: Startup Unit: Automatically starts the drafting program, providing the operating environment for drawing creation; Create layout cells: Create a layout that conforms to the specifications and procedures according to the detailed layout requirements, and set the output and print properties; Viewport Display Unit: Insert a viewport to accurately display the cell range diagram of the split cell file; Feature insertion unit: Inserts standardized block reference features to improve the basic geographic information identification of the map; the standardized block reference features include wind rose, scale bar, and compass. Legend insertion unit: Based on the information extracted from the control planning results by the extraction module, insert land use legends and facility legends corresponding to the land parcel filling and facility map stamps; Text Insertion Unit: Insert various text content information required for drawings according to different detailed specifications, including drawing name, drawing number, drawing table, and text description.
6. The standardized mapping tool for detailed land spatial planning results according to claim 1, characterized in that, Also includes: Export module: Based on actual needs, batch export the drawings generated by the drawing module into various commonly used file formats.
7. A standardized mapping method for detailed land spatial planning results, characterized in that, include: S1. Establish a standardized control plan result document layer system and generate standardized control plan result documents; S2. Split the standardized control plan output file according to the planning unit scope to obtain the split unit file; including: splitting the standardized control plan output file, according to the planning unit scope, splitting the involved graphic elements into multiple unit files, each unit file only contains the unit scope and the graphic elements within it; the graphic elements include fill, polyline, text, and block reference; S3. Automatically extract information from the control plan results based on the split unit files; S4. Generate maps and tables to present the various indicators and information of the control plan results; S5. Generate standardized planning maps in batches through automated processes.
8. A computer-readable storage medium storing a computer program, characterized in that, The computer program is used to execute the standardized mapping method for detailed land spatial planning results as described in any one of claims 1-6.
9. A computer program product, comprising a computer program, characterized in that, When the computer program is executed by the processor, it implements the standardized mapping method for detailed land spatial planning results as described in any one of claims 1-6.
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