A method for processing data from ecological protection red line demarcation

By combining the map segmentation module and the geographic information system, and using algorithms to extract and modify the coordinates of ecological protection red line boundary demarcation points, and creating QR code physical boundary markers, the problem of low data processing efficiency in ecological protection red line boundary demarcation in existing technologies is solved, and efficient internal data processing and automated management are achieved.

CN115934986BActive Publication Date: 2025-10-31SHAANXI ECOLOGICAL ENVIRONMENT PLANNING & DESIGN INST CO LTD
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Patent Information

Application Number
CN202111109410.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-22
Publication Date
2025-10-31
Estimated Expiration
2041-09-22

AI Technical Summary

Technical Problem

The existing methods for demarcating ecological protection red lines mainly rely on manual processing, which involves large amounts of data, is inefficient, and makes it difficult to achieve efficient data processing.

Method used

The map sheet module generates map sheet frames, presets administrative region border annotations, extracts the coordinates of pre-surveyed boundary points using the POINT_REMOVE or BEND_SIMPLIFY algorithm, modifies and encodes the coordinates using the geographic information subsystem, creates physical boundary markers with QR codes, and stores the data in the database. Mobile terminals are then used for field and office data processing.

Benefits of technology

It has improved the digitalization and automation of internal data processing, significantly enhanced the efficiency of surveying and demarcation, reduced manual operations, and improved the convenience and accuracy of data processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a method for processing ecological protection red line boundary demarcation data, comprising the following steps: Step 10, generating map frame segments using a map segmentation module; Step 20, pre-setting administrative region border annotations in the map segmentation module; Step 30, batch printing ecological protection red line base maps into multiple annotated base maps using the map segmentation module; Step 40, extracting the coordinates of the pre-demarcation points using an extraction module; Step 50, obtaining the coordinates of preliminary boundary markers; Step 60, creating a construction base map based on the preliminary boundary marker coordinates, the boundary marker numbers, and the geographic information data of the ecological protection red line base map; Step 70, generating boundary marker result information. This invention also provides an ecological protection red line boundary demarcation system. The data processing method of this invention has a high degree of digitization and automation, making data processing very convenient and fast, further improving the efficiency of boundary demarcation and marking work.
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Description

Technical Field

[0001] This invention belongs to the field of geographic information technology, specifically relating to a method for processing data from the demarcation of ecological protection red lines. Background Technology

[0002] Ecological protection red lines refer to areas within ecological spaces that possess exceptionally important ecological functions and require mandatory and strict protection. They represent the bottom line and lifeline for safeguarding and maintaining national ecological security. These areas typically include ecologically important regions with functions such as water conservation, biodiversity maintenance, soil and water conservation, windbreak and sand fixation, and coastal ecological stability, as well as ecologically sensitive and vulnerable areas prone to soil erosion, desertification, rocky desertification, and salinization. The purpose of ecological protection red lines is to establish the strictest ecological protection system, imposing higher regulatory requirements on ecological function protection, environmental quality safety, and natural resource utilization, thereby promoting a balanced distribution of population, resources, and environment, and a unified economic, social, and ecological benefit.

[0003] The work of demarcating the boundaries of ecological protection red line areas mainly includes surveying and periodic measurement of the boundaries of the designated ecological protection red line areas. The existing demarcation method mainly involves determining the points to be measured using remote sensing image base maps and ecological protection red line maps, and then conducting field surveys at the points to be measured by personnel carrying GIS data acquisition devices or other image and location acquisition devices. After that, boundary markers are installed on-site, and finally, a resurvey is conducted. Throughout the process, the amount of data that needs to be processed is enormous, and it is mainly done manually, resulting in low efficiency in data processing. Summary of the Invention

[0004] To address the aforementioned problems in existing technologies, this invention provides a method for processing data from ecological protection red line demarcation. The technical problem to be solved by this invention is achieved through the following technical solution:

[0005] A method for processing data from ecological protection red line demarcation includes the following steps:

[0006] Step 10: Generate a page layout frame based on the target paper size and margins using the page layout module;

[0007] Step 20: Preset administrative region border annotations in the map segmentation module;

[0008] Step 30: Using the map slicing module, print the ecological protection red line base map into multiple labeled base maps in batches according to the storage location of the map slicing frame;

[0009] Step 40: Extract the coordinates of the pre-survey boundary points from the marked base map using the extraction module based on the POINT_REMOVE algorithm or the BEND_SIMPLIFY algorithm;

[0010] Step 50: The geographic information subsystem modifies and replaces the coordinates to be replaced on the secondary reconnaissance base map according to the reconnaissance information and replacement coordinates to obtain the preliminary boundary marker coordinates, and encodes the preliminary boundary marker coordinates to obtain the corresponding boundary marker number; wherein, the reconnaissance information and the boundary marker replacement coordinates are obtained by conducting field surveys and reconnaissance on the red line range on the ecological protection red line base map and the coordinates of the preliminary boundary markers;

[0011] Step 60: Based on the preliminary boundary marker coordinates, the boundary marker numbers, and the geographic information data of the ecological protection red line base map, a construction base map is created, and physical boundary markers with QR codes corresponding to the boundary marker numbers are created; the QR codes indicate the reconnaissance information and the attribute information of the ecological protection red line in the corresponding area.

[0012] Step 70: Store the coordinates of the completed boundary markers, their attribute information, and images into the database, and generate the boundary marker result information.

[0013] The coordinates of the completed boundary markers, the attribute information of the completed boundary markers, and the images of the boundary markers are obtained through as-built measurements after the physical boundary markers are erected.

[0014] In one embodiment of the present invention, step 70 specifically includes the following steps:

[0015] Step 701: Number the multiple boundary marker images according to the boundary marker number in the completed boundary marker attribute information using the numbering module;

[0016] Step 702: The results processing module generates corresponding boundary marker result information for each physical boundary marker based on the updated preliminary boundary marker coordinates, the updated reconnaissance information, the boundary marker number, and the boundary marker image with the number.

[0017] In one embodiment of the present invention, step 701 specifically includes the following steps:

[0018] Step 7011: In the display interface of the numbering module, add the boundary marker images in the folder to be numbered to the renaming queue; wherein, the folder stores multiple boundary marker images of a single physical boundary marker;

[0019] Step 7012: Preset renaming conditions, preset deletion conditions, preset red line code, preset boundary marker number, and preset end sequence code conditions;

[0020] Step 7013: Trigger the rename button on the display interface of the numbering module;

[0021] Step 7014: The numbering module renumbers the multiple boundary marker images in the folder and displays the numbering results on the display interface of the numbering module.

[0022] In one embodiment of the present invention, step 702 specifically includes the following steps:

[0023] Step 7021: The results processing module extracts the corresponding boundary marker data from the database based on the boundary marker number. The boundary marker data includes: the updated coordinates of the preliminary boundary marker location and the updated reconnaissance information.

[0024] Step 7022: Generate a boundary marker information table based on the boundary marker data;

[0025] Step 7033: Extract the corresponding boundary marker image according to the boundary marker number, and insert the boundary marker image into the boundary marker information table to generate the boundary marker result information.

[0026] The beneficial effects of this invention are:

[0027] The data processing method of this invention has a high degree of digitization and automation, making data processing very convenient and fast, and further improving the efficiency of surveying and demarcation.

[0028] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments. Attached Figure Description

[0029] Figure 1 This is a schematic diagram of the settings interface of the slicing module provided in an embodiment of the present invention;

[0030] Figure 2 This is a schematic diagram of the frame of the diagram provided in the embodiment of the present invention.

[0031] Figure 3 This is a schematic diagram of the administrative region border annotation setting interface of the map segmentation module provided in this embodiment of the invention.

[0032] Figure 4 This is a schematic diagram of the batch printing settings interface of the sheet division module provided in an embodiment of the present invention;

[0033] Figure 5 This is a schematic diagram of the structure of a physical boundary marker provided in an embodiment of the present invention.

[0034] Figure 6 This is a schematic diagram of the structure of a physical boundary marker provided in an embodiment of the present invention;

[0035] Figure 7 This is a schematic diagram of the display interface of the numbering module provided in an embodiment of the present invention;

[0036] Figure 8This is a schematic diagram of the deletion condition setting interface of the numbering module provided in an embodiment of the present invention;

[0037] Figure 9 This is a schematic diagram of the numbering module's numbering condition setting interface provided in an embodiment of the present invention;

[0038] Figure 10 This is a schematic diagram of the end sequence code condition setting interface of the numbering module provided in the embodiment of the present invention;

[0039] Figure 11 This is a schematic diagram of the end sequence code condition setting interface of the numbering module provided in the embodiment of the present invention;

[0040] Figure 12 This is a schematic diagram of the boundary marker information table provided in an embodiment of the present invention. Detailed Implementation

[0041] The present invention will be further described in detail below with reference to specific embodiments, but the implementation of the present invention is not limited thereto.

[0042] Example 1

[0043] This embodiment provides a method for processing data from the demarcation of ecological protection red lines, including the following steps:

[0044] Step 10: Generate a page layout frame based on the target paper size and margins using the page layout module;

[0045] Step 20: Preset administrative region border annotations in the map segmentation module.

[0046] Step 30: Using the map slicing module, print the ecological protection red line base map in batches as multiple labeled base maps according to the storage location of the map slicing frame.

[0047] Step 40: Extract the coordinates of the pre-survey boundary points from the marked base map using the extraction module based on the POINT_REMOVE algorithm or the BEND_SIMPLIFY algorithm;

[0048] Step 50: The geographic information subsystem modifies and replaces the coordinates to be replaced on the secondary reconnaissance base map according to the reconnaissance information and replacement coordinates to obtain the preliminary boundary marker coordinates, and encodes the preliminary boundary marker coordinates to obtain the corresponding boundary marker number; wherein, the reconnaissance information and the boundary marker replacement coordinates are obtained by conducting field surveys and reconnaissance on the red line range on the ecological protection red line base map and the coordinates of the preliminary boundary markers;

[0049] Step 60: Based on the preliminary boundary marker coordinates, the boundary marker numbers, and the geographic information data of the ecological protection red line base map, a construction base map is created, and physical boundary markers with QR codes corresponding to the boundary marker numbers are created; the QR codes indicate the reconnaissance information and the attribute information of the ecological protection red line in the corresponding area.

[0050] Step 70: Store the coordinates of the completed boundary markers, their attribute information, and images into the database, and generate the boundary marker result information.

[0051] The coordinates of the completed boundary markers, the attribute information of the completed boundary markers, and the images of the boundary markers are obtained through as-built measurements after the physical boundary markers are erected.

[0052] In this embodiment, the data processing is based on an ecological protection red line base map, high-resolution digital orthophoto maps, supplemented by digital elevation models, large-scale land use data, and other data. Each working base map uses the 2000 National Geodetic Coordinate System and the 1985 National Elevation Datum, with a basic scale of 1:10000. The digital orthophoto maps should use the latest temporal data, with a spatial resolution better than 2m, and a planar position error (on-site) of no more than 10 meters for flat and hilly areas, and no more than 15 meters for mountainous and high-mountainous areas.

[0053] The method for demarcating and marking ecological protection red lines can be divided into fieldwork and office work. Typically, after the fieldwork is completed, office data processing is carried out, followed by another field resurvey and other operations. Then, feedback is given to the office for data modification and processing, and finally, construction is carried out. After the construction is completed, as-built measurement and office data processing are performed.

[0054] In this embodiment, the internal data processing method has a high degree of digitization and automation, making internal data processing very convenient and fast, and further improving the efficiency of surveying and demarcation.

[0055] Example 2

[0056] This embodiment describes in detail the data processing method for ecological protection redline demarcation, combining fieldwork methods. This embodiment provides a method for ecological protection redline demarcation, including: fieldwork and officework.

[0057] Step 201: The sheet division module generates sheet frames based on the target paper size and margins. After setting the target paper size, margins, and sheet name in the sheet division module, it can generate sheet frames of the corresponding size. For example... Figure 1 and Figure 2 As shown.

[0058] Step 202: Preset administrative region border annotations in the map segmentation module. Information regarding these annotations is stored in the database set of the combined chart. Specifically, this involves setting the combined chart's layer, the administrative region layer, the distance of the annotations from the border, the distance of the annotations from the intersection point, and the annotation font size. For example... Figure 3 As shown.

[0059] Step 203: Using the map sheet division module, batch print the ecological protection red line base map into multiple labeled base maps based on the storage location of the map sheet frames. During batch printing, administrative region border annotations are generated on the labeled base maps. For standard map sheet divisions, fixed paper can be selected for batch printing. After setting the output path, batch printing begins, as follows... Figure 4 As shown. Before batch printing, each figure after being divided into sheets can automatically match its name, legend, and related information.

[0060] In this embodiment, the boundary demarcation and marking work needs to be carried out by region. The ecological protection red line base map is divided into sheets as needed, increasing the scale of the divided map to facilitate subsequent work. During the boundary demarcation process, the corresponding marked base map can be used. The ecological protection red line base map is based on a high-resolution digital orthophoto map, supplemented by digital elevation data.

[0061] Prepare a digital map of the "red line-image" area at a scale of 1:100,000 or 1:50,000.

[0062] Step 204: Extract the coordinates of the pre-survey boundary points from the marked base map using the extraction module based on either the POINT_REMOVE algorithm or the BEND_SIMPLIFY algorithm. The coordinates of the pre-survey boundary points are the location coordinates of preset boundary markers extracted from the ecological protection red line vector data in the marked base map.

[0063] In this embodiment, the method of obtaining the coordinates of the pre-surveyed boundary points by using a graphical method during the office processing is too time-consuming. However, after converting the area data of the ecological protection red line into point elements, the number of point data is very large. It is necessary to filter the points according to the corresponding algorithm to determine the location of the preset boundary markers and signs of key sections and important turning points of the ecological protection red line.

[0064] (1) POINT_REMOV Algorithm: This algorithm simplifies data by identifying and removing relatively redundant vertices so they can be displayed at a smaller scale. It's a convenient algorithm for simplifying lines. It retains the key points that make up the basic shape of the line while removing all other points. The algorithm starts by connecting the endpoints of the line features using trend lines. First, it measures the vertical distance from each vertex to the trend line. Vertexes whose distance from the trend line is less than the tolerance are deleted. The line feature breaks first at the vertex farthest from the trend line, creating two new trend lines. Then, it measures the vertical distance from the remaining vertexes to these two lines, continuing until all vertexes whose distance from the trend line is less than the tolerance are deleted. This is the fastest simplification algorithm in this tool. This algorithm is very effective for data compression and eliminating redundant details, but the generated lines may contain unnecessary sharp corners and edges, reducing the quality of the lines. It is typically used for data compression or coarse simplification. As the tolerance increases, the number of angular parts in the generated lines will increase significantly. This algorithm is based on the Douglas-Puk (1973) algorithm.

[0065] For the POINT_REMOVE algorithm, the tolerance represents the maximum permissible vertical distance between each inflection point and the newly created line.

[0066] (2) BEND_SIMPLIFY Algorithm: This algorithm identifies and eliminates relatively unimportant bends, retaining key bends in the line to simplify the data for display at a smaller scale. Linear features can be viewed as a series of bends (Wang, 1996), where each bend has the same corner sign at its consecutive folds. Several geometric properties of each bend can be compared to their corresponding properties of a reference semicircle with a diameter equal to a specified simplification tolerance. These measurements are used to determine whether to retain or eliminate the bend, i.e., replace it with a baseline (the line connecting the bend's endpoints). This simplification is iterative; therefore, smaller bends may "disappear" in earlier iterations, resulting in larger bends. This results in a line that more closely resembles the original line in general shape, with higher cartographic quality than point removal. This option is based on the algorithm defined by Wang and Müller (1998). Compared to the POINT_REMOVE algorithm, this algorithm produces results closer to the input geometry but may require more processing time. This method is slower but generally produces results closer to the original features.

[0067] For the BEND_SIMPLIFY algorithm, the tolerance is represented by the diameter of the circle that is approximately effectively bent.

[0068] Step 205: Input the coordinates of the pre-survey boundary points and the outline of the red line range of the annotation base map into the survey boundary marking management subsystem in the mobile terminal. The annotation base map is the base map after the ecological protection red line base map has been divided into sheets.

[0069] Step 206: The boundary demarcation and marking management subsystem generates a preliminary reconnaissance base map based on the coordinates of the pre-demarcation boundary points and the outline of the red line range on the marked base map. The preliminary reconnaissance base map displays the coordinates of the pre-demarcation boundary points and the outline of the red line range on the marked base map. The boundary demarcation and marking management subsystem has three commonly used maps pre-set: satellite imagery, standard map, and topographic map. The coordinates of the pre-demarcation boundary points and the outline of the red line range on the marked base map can be displayed on these three maps respectively to generate the preliminary reconnaissance base map for use in preliminary reconnaissance.

[0070] Step 207: Conduct the first reconnaissance based on the preliminary reconnaissance map and the first current location coordinates displayed by the demarcation and marker management subsystem to determine the modified locations of the pre-survey boundary point coordinates, and input the modified locations into the demarcation and marker management subsystem. In this embodiment, field workers can use a mobile terminal equipped with the demarcation and marker management subsystem to conduct the first field reconnaissance. The positioning module of the demarcation and marker management subsystem can locate the current location of the field workers. For example, if the demarcation and marker management subsystem displays the location as covered by the red line, but the actual situation is a village with a large population, and this area is not at the red line boundary, and there are no pre-survey boundary points in the demarcation and marker management subsystem, then this location is incorrect and needs to be modified and supplemented. During modification, first store the current location in the recording module of the demarcation and marker management subsystem, then upload photos through the image acquisition module of the demarcation and marker management subsystem, and enter relevant information. Locations with correct information that do not need modification do not require operation. The main task of the first reconnaissance is to identify areas that are disputed, difficult to demarcate, or that should be protected but are not adequately protected during the demarcation and marker work. The current location information in the recording module is latitude and longitude, and the current location information in the recording module can be extracted for use by the geographic information subsystem.

[0071] Step 208: Perform a secondary reconnaissance survey based on the secondary reconnaissance base map generated from the modified location to obtain reconnaissance information and replacement coordinates of boundary marker points. The secondary reconnaissance base map displays the modified coordinates of the pre-survey boundary points and the outline of the red line range of the modified marked base map.

[0072] In this embodiment, step 208 includes the following steps: step 2081-step 2082.

[0073] Step 2081: The geographic information system modifies the coordinates of the pre-survey boundary points and the outline of the red line on the ecological protection red line base map according to the modified location, generating a secondary reconnaissance base map. The geographic information system acquires the latest remote sensing image of the area where the modified location is located, modifies the point coordinates based on the remote sensing image, and then generates the secondary reconnaissance base map.

[0074] Step 2082: Conduct a secondary reconnaissance survey based on the secondary reconnaissance base map to obtain reconnaissance information and replacement coordinates for boundary marker points. The secondary reconnaissance survey uses a total station and a paper-based secondary reconnaissance base map to conduct a comprehensive, point-by-point survey. The modified and unmodified coordinates of the pre-surveyed boundary marker points from the first reconnaissance are measured on-site to obtain replacement coordinates for the boundary marker points, and the reconnaissance information is stored. The replacement coordinates are the actual measured coordinates. The reconnaissance information includes preliminary boundary marker attribute information and relevant explanatory information. Preliminary boundary marker attribute information includes the boundary marker number (marking), boundary marker latitude and longitude coordinates, boundary marker location, ownership unit, whether a sign is attached, location and name of landmarks, and distance from landmarks. Relevant explanatory information may include descriptions of unresolved issues encountered during the secondary reconnaissance survey. The reconnaissance information can be stored electronically on devices such as mobile terminals.

[0075] The working base map used in the secondary reconnaissance survey is the working base map after being divided into sections. The specific method for dividing the secondary reconnaissance base map into sections is the same as steps 201-203 above.

[0076] Step 209: Using the geographic information subsystem, the coordinates to be replaced on the secondary reconnaissance base map are modified and replaced based on the reconnaissance information and replacement coordinates to obtain the preliminary boundary marker coordinates. These preliminary boundary marker coordinates are then coded to obtain corresponding boundary marker numbers. After the secondary survey and reconnaissance, inaccurate coordinates on the secondary reconnaissance base map are replaced with replacement coordinates. The coordinates that have not been changed and those that have been changed are used as the preliminary boundary marker coordinates. After the preliminary boundary marker coordinates are determined, they are coded in a clockwise order, starting from the northernmost point. Each point corresponds to a unique boundary marker number. These boundary marker numbers are then collected and transferred to the subsequent physical boundary marker production.

[0077] Step 210: Update the coordinates of the pre-surveyed boundary points in the boundary demarcation and marker management subsystem to the coordinates of the preliminary boundary markers. Import the boundary marker numbers and reconnaissance information into the boundary demarcation and marker management subsystem. The boundary demarcation and marker management subsystem then updates the preliminary reconnaissance base map to the boundary marker base map based on the preliminary boundary marker coordinates. The reconnaissance information, including preliminary boundary marker attribute information and related explanatory information, can be viewed in the query module of the boundary demarcation and marker management subsystem.

[0078] Step 211: Based on the boundary marker location map and the second current location coordinates displayed by the boundary marker management subsystem, erect a marker on-site. The positioning module of the boundary marker management subsystem locates the second current location of the field staff. The second current location is displayed on the boundary marker location map. When the second current location coincides with the coordinates of the preliminary boundary marker location, check whether a marker is attached in the preliminary boundary marker attribute information. If so, erect a marker at the second current location.

[0079] In steps 201-211 above, the surveying and mapping marker management subsystem is used for relevant field processing and data storage, which reduces the use of paper maps and facilitates data storage and data processing in the office.

[0080] Step 212: Based on the geographic information data of the preliminary boundary marker coordinates, boundary marker numbers, and the ecological protection red line base map, a construction base map is created, and physical boundary markers with QR codes corresponding to the boundary marker numbers are produced. The QR codes indicate the reconnaissance information and the attribute information of the corresponding ecological protection red line. The attribute information of the corresponding ecological protection red line includes the administrative region, ecological protection type, whether there is a nature reserve, and the ownership unit. The preliminary boundary marker coordinates indicate the location of the physical boundary markers. The preliminary boundary marker coordinates include X, Y, and Z coordinates. One set of X, Y, and Z coordinates corresponds to one physical boundary marker. X represents longitude, Y represents latitude, and Z represents altitude. In this embodiment, the construction base map is created using the geographic information subsystem based on basic data such as high-definition imagery, land survey data, and digital elevation data. The preliminary boundary marker coordinates are marked on the construction base map. The boundary marker numbers are determined based on the coding of the preliminary boundary marker coordinates. After organizing the boundary marker numbers, physical boundary markers are produced. After marking the coordinates of the preliminary boundary markers on the construction base map, a final inspection and reconnaissance can be carried out to confirm the location of the points corresponding to the coordinates of the preliminary boundary markers, the construction base map, the construction location, and other information.

[0081] In this embodiment, a QR code is placed on the top of the physical boundary marker. Scanning the QR code allows access to the survey information of the physical boundary marker, including preliminary boundary marker attribute information and related explanatory information. The information indicated in the QR code may also include news about ecological protection red lines, methods for delineating ecological protection red lines, methods for surveying and marking ecological protection red lines, management methods for ecological protection red lines, and the surveying and marking management subsystem. After the physical boundary marker construction is completed, scanning the QR code using the "scan" function on a mobile device will redirect to the ecological protection red line webpage. Clicking the "Ecological Protection Red Line Boundary Marker Inquiry" icon on the page, turning on the phone's location function or selecting the administrative region, and then entering the physical boundary marker number to be queried will display the detailed completed boundary marker attribute information.

[0082] Step 213: Install physical boundary markers at the locations indicated by the coordinates of the preliminary boundary marker points according to the construction base map. Before construction, it is necessary to provide operational training to the construction personnel. The training content includes: (1) understanding the working base map; (2) using the boundary marker management subsystem; (3) construction techniques and key points; and (4) requirements for submitting construction results.

[0083] The specific steps of step 213 include: step 2131-step 2132.

[0084] Step 2131: Construction personnel conduct layout based on the construction base map and satellite images, standard maps, and topographic maps in the boundary demarcation and marking management subsystem. During layout and construction, the current construction location can be determined by the positioning module, and the current construction location can be displayed on the map in the boundary demarcation and marking management subsystem, ensuring the accuracy of the construction location.

[0085] The construction base map used during construction is a working base map after the construction base map has been divided into sections. The specific sectioning method is the same as steps 201-203.

[0086] Step 2132: Construction workers install physical boundary stakes at the designated layout points. This includes adjusting layout points where physical boundary stakes cannot be installed based on pre-defined conditions. For example... Figure 5 and Figure 6 As shown, during the installation of boundary markers, to ensure their stability, multiple installation holes can be drilled on the lower side wall of the physical boundary marker A. A reinforcing bar B can be inserted into each hole, and stones can be placed on top of the reinforcing bar B to firmly anchor the physical boundary marker in the ground. Alternatively, if construction encounters limitations due to the surrounding environment, uneven roads, or rocks after underground excavation, the junction between the physical boundary marker and the ground can be filled with soil, with the soil mound not exceeding 10cm above the ground surface.

[0087] During construction, layout points where it is impossible to install physical boundary markers are generally located in areas where construction is impossible. These areas are typically characterized by shallow underground features such as mountainsides or rocks that are difficult to excavate, or by human-caused obstructions. Construction sites may also be located on residential land or other areas not under state ownership. The specific adjustment method is to move the markers back and forth along the ecological protection red line boundary, not exceeding 100 meters.

[0088] Step 214: The as-built survey obtains the coordinates and attribute information of the completed boundary markers, and acquires multiple images of the erected boundary markers. The attribute information of the completed boundary markers includes the boundary marker number (marking), the latitude and longitude coordinates of the boundary marker, the location of the boundary marker, the ownership unit, whether a signboard is attached, the location and name of the landmark, and the distance to the landmark.

[0089] Due to factors such as the influence of natural boundary lines and adjustments to the final construction point locations, the construction point locations in the as-built survey may deviate slightly from the initial construction base map data. Therefore, the red line boundary lines need to be fine-tuned to ensure consistency with the final demarcation and marking results. The office staff first create the adjusted ecological red line range. Simultaneously, compared to the original ecological protection red line, they create an "imported" map patch layer and an "exported" map patch layer. An erasing operation is then performed based on the original ecological red line range and the adjusted range to obtain the adjusted map patches. Imported map patch = "Adjusted" erased "Original". Exported map patch = "Original" erased "Adjusted".

[0090] During the construction process, the original construction process ((1) accurate layout and marking; (2) construction according to the marking; (3) feedback of internal adjustments for areas where construction cannot proceed smoothly; (4) re-layout, marking and construction until construction proceeds smoothly) was adjusted. For areas where construction cannot proceed smoothly, there is no need to provide feedback of internal adjustments, thus shortening the operation cycle.

[0091] Step 215: Update the preliminary boundary marker coordinates and reconnaissance information in the boundary marker management subsystem according to the coordinates and attribute information of the completed boundary markers. Store the boundary marker images in the database of the boundary marker management subsystem and generate boundary marker result information.

[0092] The specific steps of step 215 include:

[0093] Step 2151: Update the preliminary boundary marker coordinates and reconnaissance information in the boundary demarcation and marker management subsystem based on the completed boundary marker coordinates and attribute information. The completed boundary marker attribute information is used to update the preliminary boundary marker attribute information in the reconnaissance information. After the data in the boundary demarcation and marker management subsystem is updated, a base map of the actual boundary marker locations can be generated, and the coordinates of the completed boundary markers and the outline of the red line range can be displayed on satellite imagery, standard maps, and topographic maps, respectively. All data in the boundary demarcation and marker management subsystem is stored in its database.

[0094] Step 2152: Number multiple boundary marker images according to the boundary marker number in the attribute information of the completed boundary markers using the numbering module.

[0095] The specific steps of step 2152 include: steps 21521-21524.

[0096] Step 21521: In the display interface of the numbering module, add the boundary marker images from the folders to be numbered to the renaming queue; wherein, each folder stores multiple boundary marker images for a single physical boundary marker. The boundary marker image corresponding to each physical boundary marker is stored in a corresponding folder. For example... Figure 7 As shown.

[0097] Step 21522: Preset renaming conditions, preset deletion conditions, preset red line codes, preset boundary marker numbers, and preset end sequence code conditions. For example... Figure 8 , Figure 9 and Figure 10 As shown, in this step, the deletion condition is to clear the original filename of the boundary marker image before numbering. The preset red line code and boundary marker number are set to a uniform red line code and boundary marker number for the insertion numbering condition, and the sequence number at the end is set.

[0098] Step 21523 triggers the rename button on the display interface of the numbering module.

[0099] Step 21524: The numbering module renumbers the multiple boundary marker images in the folder and displays the numbering results on the numbering module's display interface. The numbering module's display interface can show two parts: one part is the content of the aforementioned preset conditions, and the other part is the numbering status, such as... Figure 11 As shown.

[0100] Step 2153: The results processing module generates corresponding boundary marker result information for each physical boundary marker based on the updated preliminary boundary marker coordinates, updated reconnaissance information, boundary marker numbers, and boundary marker images with numbers.

[0101] The specific steps of step 2153 include:

[0102] Step 21531: The results processing module extracts the corresponding boundary marker data from the database of the boundary marker management subsystem based on the boundary marker number. The boundary marker data includes: updated preliminary boundary marker coordinates and updated reconnaissance information. Each boundary marker number in the area is unique; relevant information is retrieved from the database based on the boundary marker number.

[0103] Step 21532: Generate a boundary marker information table based on the boundary marker data. The boundary marker information table includes information such as the ecological protection red line code, boundary marker number (engraved), distance between the boundary marker and the landmark, location of the landmark, coordinates (latitude and longitude), boundary marker image, simplified map of the boundary marker location, and remarks. Figure 12 As shown. The sketch map of the boundary marker locations is extracted from the actual boundary marker location base map.

[0104] Step 21533: Extract the corresponding boundary marker image based on the boundary marker number, and insert the boundary marker image into the boundary marker information table to generate boundary marker result information. The boundary marker result information is saved in document form, with each document being a boundary marker information table for one boundary marker.

[0105] In this embodiment, the process of demarcating and marking the ecological protection red line was completed through the above steps. Of course, the field processing method in this embodiment can also be implemented using other existing methods.

[0106] Example 3

[0107] This embodiment provides an ecological protection red line demarcation system, which is applied to the demarcation method in Embodiment 2. The ecological protection red line demarcation system includes: a mobile terminal, a demarcation marker management subsystem, a geographic information subsystem, an extraction module, a map segmentation module, a numbering module, a results processing module, a total station, and a GPS measuring instrument.

[0108] In one feasible implementation, an ecological protection red line demarcation system also includes a map segmentation module.

[0109] In one feasible implementation, the boundary demarcation and marker management subsystem includes: a positioning module, a recording module, an image acquisition module, and a query module. After all data is stored in the boundary demarcation and marker management subsystem, the data can be displayed in three map formats. For example, using satellite imagery, it can display satellite images of markers, physical boundary markers, and electronic boundary markers. In map display mode, clicking on a boundary marker location on the map can display the boundary marker number (engraving), its administrative division, patch type attributes, and a details button, a navigation button, and a report button in a small window. Clicking the details button displays the boundary marker attribute information in full screen. Clicking the report button jumps to the recording module to record relevant information, and the detailed content of the recording module is displayed in the "My Reports" section of the user's center.

[0110] In this embodiment, the functions of each part of the ecological protection red line demarcation system correspond to the functions of the corresponding steps in the demarcation method in Embodiment 2 above, and will not be repeated here.

[0111] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0112] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. In addition, those skilled in the art can combine and integrate the different embodiments or examples described in this specification.

[0113] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the scope of protection of the present invention.

Claims

1. A method for processing data from ecological protection red line demarcation, characterized in that, Includes the following steps: Step 10: Generate a page layout frame based on the target paper size and margins using the page layout module; Step 20: Preset administrative region border annotations in the map segmentation module; Step 30: Using the map slicing module, print the ecological protection red line base map into multiple labeled base maps in batches according to the storage location of the map slicing frame; Step 40: Extract the coordinates of the pre-survey boundary points from the marked base map using the extraction module based on the POINT_REMOVE algorithm or the BEND_SIMPLIFY algorithm; Step 50: The geographic information subsystem modifies and replaces the coordinates to be replaced on the secondary reconnaissance base map according to the reconnaissance information and replacement coordinates to obtain the preliminary boundary marker coordinates, and encodes the preliminary boundary marker coordinates to obtain the corresponding boundary marker number; wherein, the reconnaissance information and the boundary marker replacement coordinates are obtained by conducting field surveys and reconnaissance on the red line range on the ecological protection red line base map and the coordinates of the preliminary boundary markers; Step 60: Based on the preliminary boundary marker coordinates, the boundary marker numbers, and the geographic information data of the ecological protection red line base map, a construction base map is created, and physical boundary markers with QR codes corresponding to the boundary marker numbers are created; the QR codes indicate the reconnaissance information and the attribute information of the ecological protection red line in the corresponding area. Step 70: Store the coordinates of the completed boundary markers, their attribute information, and images into the database, and generate the boundary marker result information. The coordinates of the completed boundary markers, the attribute information of the completed boundary markers, and the images of the boundary markers are obtained through as-built measurements after the physical boundary markers are erected.

2. The method for processing ecological protection red line boundary survey data according to claim 1, characterized in that, The specific steps of step 70 include: Step 701: Number the multiple boundary marker images according to the boundary marker number in the completed boundary marker attribute information using the numbering module; Step 702: The results processing module generates corresponding boundary marker result information for each physical boundary marker based on the updated preliminary boundary marker coordinates, the updated reconnaissance information, the boundary marker number, and the boundary marker image with the number.

3. The method for processing ecological protection red line boundary survey data according to claim 2, characterized in that, The specific steps of step 701 include: Step 7011: In the display interface of the numbering module, add the boundary marker images in the folder to be numbered to the renaming queue; wherein, the folder stores multiple boundary marker images of a single physical boundary marker; Step 7012: Preset renaming conditions, preset deletion conditions, preset red line code, preset boundary marker number, and preset end sequence code conditions; Step 7013: Trigger the rename button on the display interface of the numbering module; Step 7014: The numbering module renumbers the multiple boundary marker images in the folder and displays the numbering results on the display interface of the numbering module.

4. The method for processing ecological protection red line boundary survey data according to claim 3, characterized in that, The specific steps of step 702 include: Step 7021: The results processing module extracts the corresponding boundary marker data from the database based on the boundary marker number. The boundary marker data includes: the updated coordinates of the preliminary boundary marker location and the updated reconnaissance information. Step 7022: Generate a boundary marker information table based on the boundary marker data; Step 7033: Extract the corresponding boundary marker image according to the boundary marker number, and insert the boundary marker image into the boundary marker information table to generate the boundary marker result information.

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