Data processing method, apparatus, device, medium, and computer program product

By constructing a unified blueprint that integrates the planning and real-time data of engineering construction projects, the problem of site selection under the supervision of multiple departments has been solved, resulting in more accurate and efficient site selection.

CN114661850BActive Publication Date: 2025-10-21CHINA CONSTRUCTION BANK +1
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Patent Information

Application Number
CN202210300051.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-25
Publication Date
2025-10-21
Estimated Expiration
2042-03-25

AI Technical Summary

Technical Problem

During the site selection process for engineering construction projects, the separation of management and different requirements among multiple regulatory departments make it difficult for the site selection results to meet the requirements of each department, resulting in low efficiency and inaccuracy.

Method used

By constructing a unified blueprint within a pre-defined area, integrating project planning data, real-time development data, and basic geographic data, project attribute and suggestion data are obtained. Based on the unified blueprint, candidate addresses are selected and target addresses are determined, taking into account project attributes and suggestions from regulatory authorities.

Benefits of technology

It has improved the accuracy and efficiency of site selection for engineering construction projects, ensured that the site selection results meet the project attributes and the requirements of multiple regulatory departments, and accelerated the project implementation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a data processing method, device, equipment, medium and computer program product. The method comprises the following steps: obtaining project attribute data and project proposal data of a first project; the project proposal data is determined based on a blueprint and project attribute data, such as a project name, project land property and project land area, of a plurality of regulatory departments, wherein the blueprint is obtained by fusing project planning data and project development real-time data in a preset area with basic geographic data respectively; selecting a plurality of candidate addresses from the blueprint in the preset area based on the project attribute data; determining a target address from the plurality of candidate addresses based on the project proposal data; and wherein the target address is a planned address of the first project. According to the embodiment of the application, the plurality of regulatory departments perform project site selection based on the unified blueprint, so that the project proposal data is more accurate, and the project site selection is more accurate, the project site selection efficiency is improved, and the project landing process is accelerated.
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Description

Technical Field

[0001] The present application relates to the field of computer technology, and in particular to a data processing method, apparatus, device, medium, and computer program product. Background Art

[0002] Construction projects are primarily divided into four phases: pre-construction preparation, construction preparation, construction implementation, and final acceptance, filing, and warranty. Multiple regulatory authorities, including the National Development and Reform Commission, the Urban Planning Bureau, the National Land and Resources Bureau, the Environmental Protection Bureau, and the Earthquake Administration, participate in the decision-making, approval, and acceptance of each phase of construction preparation and results.

[0003] Among them, in the project generation stage, for the project site selection process, the project's pre-site selection results need to be sent to multiple regulatory departments in turn for layer-by-layer confirmation, or multiple regulatory departments need to confirm the project's pre-site selection results in the form of letters or conference consultations, that is, to judge whether the pre-site selection results meet the requirements of each department. Only when it is confirmed that the pre-site selection results meet the requirements can the project's pre-site selection results be determined as the project's planned land address, otherwise the project needs to be re-located. However, since the regulatory departments are responsible for different supervision contents, the requirements of each department are different, and there is management separation between each department, resulting in the project's pre-site selection results often being difficult to meet the requirements of each department, and thus there are problems such as difficulty in site selection and inaccurate project site selection results. In addition, multiple regulatory departments have multiple management, which leads to low site selection efficiency. Summary of the Invention

[0004] The embodiments of the present application provide a data processing method, apparatus, equipment, medium and computer program product, which can make the site selection of engineering construction projects more accurate, improve the site selection efficiency of engineering construction projects, and accelerate the implementation of engineering construction projects.

[0005] In a first aspect, an embodiment of the present application provides a data processing method, the method comprising:

[0006] Obtaining project attribute data and project proposal data for a first project; wherein the project proposal data is determined by multiple regulatory departments based on a blueprint within a preset area and the project attribute data; the project attribute data includes at least one of a project name, a project land nature, and a project land area; and the blueprint within the preset area is obtained by fusing project planning data and real-time project development data within the preset area with basic geographic data.

[0007] Based on the project attribute data, selecting a plurality of candidate addresses from a blueprint within the preset area;

[0008] Based on the project suggestion data, a target address is determined from the multiple candidate addresses; wherein the target address is a planned address for the first project.

[0009] In one possible implementation, before obtaining the project attribute data and project suggestion data of the first project, the method further includes:

[0010] Obtain project planning data, basic geographic data and real-time project development data within the preset area;

[0011] The project planning data and the project development real-time data are respectively fused with the basic geographic data to obtain a blueprint.

[0012] In one possible implementation, fusing the project planning data and the real-time project development data with the basic geographic data to obtain a blueprint includes:

[0013] Based on the attributes of the project planning data and the attributes of the project development real-time data, the project planning data and the project development real-time data are divided into a plurality of thematic data respectively;

[0014] Set corresponding layers for the multiple thematic data respectively;

[0015] Based on the layers corresponding to the multiple thematic data, the layers are fused with the basic geographic data to obtain a blueprint.

[0016] In one possible implementation, selecting a plurality of candidate addresses from a blueprint within the preset area based on the project attribute data includes:

[0017] Determining a location condition type for the first project based on the project attribute data; wherein the location condition type includes at least one of a landmark type, a point of interest type, and a control zone type;

[0018] Determining a set of site selection conditions for the first project according to the site selection condition type;

[0019] Based on the set of site selection conditions, multiple candidate addresses are selected from the blueprint within the preset area.

[0020] In one possible implementation, after determining the target address from the plurality of candidate addresses based on the project suggestion data, the method further includes:

[0021] Obtaining project scope data for the target address;

[0022] comparing the project scope data with the project planning data in the blueprint within the preset area;

[0023] Based on the comparison results, generate a compliance review report for the first project;

[0024] The compliance review report is sent to an approval department, so that the approval department approves the first project based on the compliance review report.

[0025] In one possible implementation, the compliance review report includes: project attribute data of the first project, and information on conflicts and contradictions between the first project and the project planning data.

[0026] In one possible implementation, before selecting a plurality of candidate addresses from the blueprint within the preset area based on the project attribute data, the method further includes:

[0027] Based on the project attribute data, a site selection range of the first project is selected from a blueprint within the preset area.

[0028] In one possible implementation, selecting a site selection range for the first project from a blueprint within the preset area based on the project attribute data includes:

[0029] Based on the project attribute data, selecting a target area in the blueprint within the preset area as the site selection range of the first project; or

[0030] Based on the project attribute data, selecting a target administrative district in the blueprint within the preset area as the site selection range of the first project; or

[0031] Based on the project attribute data, a target area is manually circled in the blueprint within the preset area as the site selection range of the first project.

[0032] In a second aspect, an embodiment of the present application provides a data processing device, the device comprising:

[0033] A first acquisition module is configured to acquire project attribute data and project proposal data for a first project; wherein the project proposal data is determined by multiple regulatory departments based on a unified blueprint of a preset area and the project attribute data; the project attribute data includes at least one of a project name, a nature of the project land, and an area of ​​the project land; and the blueprint of the preset area is obtained by fusing the project planning data and the real-time project development data within the preset area with the basic geographic data.

[0034] A first selection module is configured to select a plurality of candidate addresses from the blueprint within the preset area based on the project attribute data;

[0035] A determination module is used to determine a target address from the multiple candidate addresses based on the project suggestion data; wherein the target address is the planned address of the first project.

[0036] In one possible implementation, the device further includes:

[0037] The second acquisition module is used to obtain project planning data, basic geographic data and real-time project development data within a preset area;

[0038] A fusion module is used to fuse the project planning data and the project development real-time data with the basic geographic data to obtain a blueprint.

[0039] In one possible implementation, the fusion module includes:

[0040] a division submodule, configured to divide the project planning data and the project development real-time data into a plurality of thematic data based on the attributes of the project planning data and the attributes of the project development real-time data;

[0041] A setting submodule is used to set corresponding layers for the plurality of thematic data respectively;

[0042] The fusion submodule is used to fuse the layers corresponding to the multiple thematic data with the basic geographic data to obtain a blueprint.

[0043] In one possible implementation, the first selection module includes:

[0044] A first determining submodule is configured to determine a location condition type of the first project based on the project attribute data; wherein the location condition type includes at least one of a landmark type, a point of interest type, and a control area type;

[0045] A second determining submodule, configured to determine a set of site selection conditions for the first project according to the site selection condition type;

[0046] The first selection submodule is used to select multiple candidate addresses from the blueprint within the preset area based on the set of site selection conditions.

[0047] In one possible implementation, the device further includes:

[0048] A third acquisition module is used to obtain project range data of the target address;

[0049] a comparison module, configured to compare the project scope data with the project planning data in the blueprint within the preset area;

[0050] A generation module, configured to generate a compliance review report for the first project based on the comparison result;

[0051] A sending module is used to send the compliance review report to the approval department, so that the approval department approves the first project based on the compliance review report.

[0052] In one possible implementation, the compliance review report includes: project attribute data of the first project, and information on conflicts and contradictions between the first project and the project planning data.

[0053] In one possible implementation, the device further includes:

[0054] The second selection module is used to select the site selection range of the first project from the blueprint within the preset area based on the project attribute data.

[0055] In one possible implementation, the second selection module includes:

[0056] A second selection submodule is configured to select a target area as a site selection range for the first project in the blueprint within the preset area based on the project attribute data; or

[0057] Based on the project attribute data, selecting a target administrative district in the blueprint within the preset area as the site selection range of the first project; or

[0058] Based on the project attribute data, a target area is manually circled in the blueprint within the preset area as the site selection range of the first project.

[0059] In a third aspect, an embodiment of the present application provides a data processing device, the device comprising:

[0060] a processor and a memory storing computer program instructions;

[0061] When the processor executes the computer program instructions, it implements any data processing method provided in the embodiments of the present application.

[0062] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, on which computer program instructions are stored. When the computer program instructions are executed by a processor, any data processing method provided in the embodiment of the present application is implemented.

[0063] In a fifth aspect, an embodiment of the present application provides a computer program product. When the instructions in the computer program product are executed by a processor of an electronic device, the electronic device executes any one of the data processing methods provided in the embodiments of the present application.

[0064] A data processing method, apparatus, device, medium and computer program product of an embodiment of the present application obtains project attribute data and project suggestion data of a first project; wherein the project suggestion data is determined by multiple regulatory departments based on a unified blueprint and project attribute data within a preset area, and the project attribute data includes at least one of the project name, the nature of the project land, and the area of ​​the project land; the blueprint within the preset area is obtained by fusing the project planning data and the real-time project development data within the preset area with the basic geographic data; based on the project attribute data, multiple candidate addresses are selected from the blueprint, and then based on the project suggestion data, a target address is determined from the multiple candidate addresses; wherein the target address is the planned address of the first project; that is, before selecting a site for the first project, by constructing a unified blueprint within the preset area, multiple regulatory departments can make project suggestions for the first project based on the blueprint obtained by fusing the project planning data and the real-time project development data within the preset area with the basic geographic data, and the project attribute data of the first project, and summarize the project suggestions made by the multiple regulatory departments to obtain the project suggestion data of the first project. Due to the separation of management of multiple regulatory departments and the separation of management of multiple regulatory departments, multiple regulatory departments can also select multiple candidate addresses from the blueprint, and select multiple candidate addresses from the blueprint, and select multiple candidate addresses from the blueprint, and select multiple candidate addresses from the blueprint, and select multiple regulatory departments. The contents supervised by the departments are different. Therefore, based on the integrated blueprint, multiple regulatory departments share the blueprint data, which can make the obtained project suggestion data more accurate. Furthermore, when selecting the site for the engineering construction project, it is considered that the planned site of the project must be consistent with the project attribute data corresponding to the project itself, and must be consistent with the project suggestion data proposed by multiple regulatory departments. Among them, since the contents supervised by the regulatory departments are different, it is often more difficult for the planned site of the project to be consistent with the project suggestion data proposed by multiple regulatory departments. Therefore, based on the integrated unified blueprint, multiple sites that are consistent with the project attribute data are selected. candidate addresses, and then determine the address that matches the project suggestion data from multiple candidate addresses. That is, by providing multiple candidate addresses, when selecting a site for a project based on the project suggestion data, the probability that the project's planned site is consistent with the project suggestion data is increased, and the diversity of site selection is increased. Moreover, since the project suggestion data is obtained based on a unified blueprint after integration by multiple regulatory departments, the obtained project suggestion data is more accurate, and the selected planned site is also more accurate, that is, the site selection of the engineering construction project can be made more precise, the site selection efficiency of the engineering construction project is improved, and the implementation process of the engineering construction project is accelerated. BRIEF DESCRIPTION OF THE DRAWINGS

[0065] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0066] Figure 1This is a flow chart of a data processing method provided by one embodiment of the present application;

[0067] Figure 2 is a flowchart of a data processing method provided by yet another embodiment of the present application;

[0068] Figure 3 This is a schematic diagram of an interface of a data processing method provided by an embodiment of the present application;

[0069] Figure 4 is a flowchart of a data processing method provided by yet another embodiment of the present application;

[0070] Figure 5 is a structural diagram of a data processing device provided by yet another embodiment of the present application;

[0071] Figure 6 It is a structural diagram of a data processing device provided in yet another embodiment of the present application. DETAILED DESCRIPTION

[0072] The features and exemplary embodiments of various aspects of the present application will be described in detail below. In order to make the purpose, technical solutions and advantages of the present application clearer, the present application will be further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only intended to explain the present application, rather than to limit the present application. For those skilled in the art, the present application can be implemented without the need for some of these specific details. The following description of the embodiments is merely to provide a better understanding of the present application by illustrating the examples of the present application.

[0073] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, the elements defined by the phrase "comprising..." do not exclude the presence of other identical elements in the process, method, article, or device comprising the elements.

[0074] In order to solve the problems of the prior art, the embodiments of the present application provide a data processing method, apparatus, device, medium and computer program product. The data processing method provided by the embodiments of the present application is first introduced below.

[0075] In addition, the acquisition, storage, use, and processing of planning data, geographic data, project data, and other data in the technical solution of this application comply with the relevant provisions of national laws and regulations.

[0076] Figure 1 A flow chart of a data processing method provided by an embodiment of the present application is shown as follows: Figure 1 As shown, the data processing method provided in the embodiment of the present application may include the following steps:

[0077] Step 110: Obtain project attribute data and project proposal data for the first project. The project proposal data is determined by multiple regulatory authorities based on a blueprint and project attribute data within a preset area. The project attribute data includes at least one of a project name, project land nature, and project land area. The blueprint within the preset area is obtained by fusing project planning data and real-time project development data within the preset area with basic geographic data.

[0078] Step 120 , based on the project attribute data, select multiple candidate addresses from the blueprint within the preset area;

[0079] Step 130: Determine a target address from a plurality of candidate addresses based on the project suggestion data; wherein the target address is a planned address for the first project.

[0080] In an embodiment of the present application, before selecting a site for the first project, a blueprint within a preset area is constructed so that multiple regulatory departments can make project suggestions for the first project based on the blueprint obtained by fusing the project planning data and project development real-time data within the preset area with the basic geographic data, and the project attribute data of the first project, and summarize the project suggestions made by the multiple regulatory departments to obtain project suggestion data for the first project. Since the management of the multiple regulatory departments is separated and the contents supervised by the multiple regulatory departments are different, the multiple regulatory departments share the blueprint data on the basis of the fused blueprint, so that the obtained project suggestion data is more accurate. Furthermore, when selecting a site for an engineering construction project, it is considered that the planned site of the project must be consistent with the project attribute data corresponding to the project itself, and must be consistent with the project suggestions proposed by the multiple regulatory departments. The project suggestion data is consistent with the project suggestion data. Since the regulatory departments supervise different contents, the planned site of the project is often more difficult to be consistent with the project suggestion data proposed by multiple regulatory departments. Therefore, based on the unified blueprint after integration, multiple candidate addresses that are consistent with the project attribute data are selected, and then the address that is consistent with the project suggestion data is determined from the multiple candidate addresses. That is, by providing multiple candidate addresses, when the project is sited based on the project suggestion data, the probability that the planned site of the project is consistent with the project suggestion data is increased, and the diversity of site selection is increased. Moreover, since the project suggestion data is obtained by multiple regulatory departments based on the unified blueprint after integration, the obtained project suggestion data is more accurate, and the selected planned site is also more accurate, that is, the site selection of the engineering construction project can be made more precise, the site selection efficiency of the engineering construction project can be improved, and the implementation process of the engineering construction project can be accelerated.

[0081] Involving step 110, the above-mentioned first project can be an engineering construction project, for example, a railway engineering project, a water conservancy engineering project, a coal mining engineering project, a water transport engineering project, a construction engineering project and other engineering construction projects. Exemplarily, the first project can be a construction engineering project, such as a new nursing home project.

[0082] The above-mentioned project attribute data may include basic information of the project, such as the project name, nature of the project land, project land area, project construction location and other data related to the nature of the project itself. Taking the first project as a nursing home project as an example, the project attribute data may include: project name: Nursing Home, nature of the project land: public management and public service facilities land, project land area: XX-XXX cubic meters, project construction location: XX city and other project attribute data.

[0083] Among them, before the first project is put into construction, it is necessary to select a site for the first project in advance, and the site selection result of the first project needs to be consistent with the nature of the project itself, that is, the site selection result of the first project needs to be consistent with the project attribute data. Therefore, the site selection of the first project needs to be based on the project attribute data.

[0084] Furthermore, considering that after the project site is selected, the site selection results of the project must be sent to multiple regulatory departments so that multiple regulatory departments can judge whether the site selection results of the project meet their respective requirements and plans, however, since the contents supervised by each regulatory department are different, the requirements and plans of each regulatory department are different, resulting in the project site selection results often being difficult to meet the requirements and plans of each regulatory department. That is, although the site selection results are consistent with the project attribute data, they do not meet the requirements and plans of each regulatory department.

[0085] Based on this, this application obtains a blueprint by fusing the project planning data and project development real-time data within the preset area with the basic geographic data respectively, so that each regulatory department can make suggestions for the first project in advance based on the fused blueprint and the project attribute data of the first project, combined with their own requirements and plans, and summarize the project suggestions put forward by multiple regulatory departments for the first project to obtain the project suggestion data for the first project, that is, the project suggestion data is determined by multiple regulatory departments based on the blueprint and project attribute data within a unified preset area; in this way, even if the requirements and plans of multiple regulatory departments are different, and there is management separation, this application fuses the project planning data and the project real-time development data with the basic geographic data, and selects the site based on the fused blueprint, taking into account both the project planning data and the project real-time development data, which not only makes the project suggestion data proposed by multiple regulatory departments more accurate, but also makes the site selection results more precise.

[0086] Furthermore, considering that the requirements and plans of various regulatory departments are different, the site selection results of the project are often difficult to meet the requirements and plans of various regulatory departments, that is, the site selection results based on project attribute data are often difficult to match the project recommendation data. Therefore, in order to increase the probability that the project site selection results are consistent with the project recommendation data, the site selection of engineering construction projects is made more accurate.

[0087] Based on this, step 120 is executed to select multiple candidate addresses from the blueprint within the preset area based on the project attribute data. Furthermore, step 130 is executed to determine a target address from the multiple candidate addresses based on the project suggestion data; wherein the target address is the planned site of the first project. In this way, multiple candidate addresses that match the project attribute data are first selected from the fused blueprint, and then an address that matches the project suggestion data is determined from the multiple candidate addresses. In other words, by providing multiple candidate addresses, when selecting a site for a project based on the project suggestion data, the probability that the planned site of the project matches the project suggestion data is increased, thereby increasing the diversity of site selection. This in turn enables more accurate site selection for the construction project, improves site selection efficiency for the construction project, and accelerates the implementation of the construction project.

[0088] Involving step 130, based on the project suggestion data, a target address is determined from multiple candidate addresses, and the target address is the planned address for the first project; specifically, based on the project suggestion data, an address that best matches the project suggestion data is selected from multiple candidate addresses, for example, an address whose similarity to the project suggestion data is greater than or equal to a preset threshold, and the address is determined as the target address, that is, the address is determined as the planned address for the first project.

[0089] In some embodiments, in order to make the acquired project suggestion data more accurate and the site selection result more precise, it is necessary to integrate planning data and real-time development data of other projects on the basis of the integrated blueprint, that is, on the basis of basic geographic data, and then select a site for the project. Based on this, before obtaining the project attribute data and project suggestion data of the first project in the above step 110, the following steps are also included:

[0090] Obtain project planning data, basic geographic data and real-time project development data within the preset area;

[0091] The project planning data and the real-time data of project development are respectively fused with the basic geographic data to obtain a blueprint.

[0092] Among them, the above-mentioned project planning data are planning data proposed by multiple regulatory departments based on the above-mentioned basic geographic data, and the above-mentioned project development real-time data are geographic data corresponding to developed projects and real-time development projects.

[0093] The planning data proposed by multiple regulatory departments for the above basic geographic data and the geographic data corresponding to developed projects and real-time development projects are respectively integrated with the basic geographic data to obtain a blueprint, so that the blueprint covers three categories of blueprints: basic geographic data, project planning data and real-time project development data.

[0094] In this way, based on the integrated blueprint, that is, based on the basic geographic data, integrating planning data and real-time development data of other projects, and then selecting a site for the project, the obtained project proposal data can be more accurate, and the site selection results can be more precise.

[0095] In some embodiments, considering that the acquired project planning data and real-time project development data are of various types and large in volume, in order to make the fused blueprint clearer and more layered when displaying the above data, the project planning data and real-time project development data are fused with the basic geographic data to obtain the blueprint, which specifically includes:

[0096] Based on the attributes of the project planning data and the attributes of the project development real-time data, the project planning data and the project development real-time data are divided into multiple thematic data respectively;

[0097] Set corresponding layers for multiple thematic data respectively;

[0098] Based on the layers corresponding to multiple thematic data, the layers are fused with basic geographic data to obtain a blueprint.

[0099] Specifically, based on the attributes of project planning data and project development real-time data, project planning data and project development real-time data are divided into multiple thematic data respectively. For example, they can be divided into eleven categories and sixty-one thematic data, so that multiple regulatory departments can share a set of data to prevent information silos.

[0100] Among them, the thematic data corresponding to the above-mentioned project planning data include: three types of spatial data, three-line data, land use master plan data, urban master plan data, control detailed planning data, special planning data and other planning data.

[0101] The above-mentioned three-line data include urban development boundary data, ecological protection red line data, permanent basic farmland data, etc.; ecological protection red line data may include soil and water conservation data, biodiversity maintenance, water source conservation data, etc.; the above-mentioned urban master plan data may include cultural protection purple line data, road centerline data, road red line data, cultural protection planning data, land use planning data, planning scope data, etc.; the above-mentioned land use master plan data may include planning land classification map data, land use area data, construction land control area data, basic farmland in and out data, basic farmland adjustment data; planning land classification map data include cultivated land, orchards, forest land, grassland, other agricultural land, urban and rural construction land, transportation water utilization land, other construction land, water area, nature reserve and other data.

[0102] Among them, the thematic data corresponding to the real-time data of the above-mentioned project development include: current land use data, such as the current land use status in XX, which can include the current use data of cultivated land, garden land, forest land, grassland, transportation land, water area and water conservancy facilities land, urban and rural areas and industrial and mining land, etc.

[0103] In addition, the above basic geographic data can also be divided into: regional division data, electronic blueprints, image data and other basic geographic data.

[0104] Furthermore, corresponding layers are set for each of the multiple thematic data corresponding to the project planning data and each of the multiple thematic data corresponding to the project real-time development data.

[0105] Based on the layers corresponding to multiple thematic data, the layers corresponding to each thematic data in the multiple thematic data corresponding to the above-mentioned project planning data, and the layers corresponding to each thematic data in the multiple thematic data corresponding to the above-mentioned project real-time development data, are respectively integrated with the basic geographic data to obtain a blueprint.

[0106] In one example, a first layer is set for the urban development boundary data in the project planning data, a second layer is set for the ecological protection red line data in the project planning data, and a third layer is set for the data corresponding to the current status of cultivated land use in the real-time development data of the project. The above-mentioned first layer, second layer, and third layer are respectively integrated with the basic geographic data to obtain a blueprint. Furthermore, the above-mentioned three layers can be displayed separately in the integrated blueprint. For example, by clicking to check the urban development boundary data, the first layer can be displayed on the basis of the basic geographic data to display the urban development boundary data on the basic geographic data. The above-mentioned three layers can also be displayed at the same time. For example, by checking the urban development boundary data, the ecological protection red line data, and the current status of cultivated land use data at the same time, the first layer, the second layer, and the third layer can be displayed on the basis of the basic geographic data to display the urban development boundary data, the ecological protection red line data, and the current status of cultivated land use data on the basic geographic data.

[0107] In this way, in the integrated blueprint, the thematic data corresponding to the above-mentioned project planning data and project real-time development data can be displayed in the form of layers on the basic geographic data, making the data clearer and more layered when displayed, so that the project planning data and project real-time development data can be referred to in a targeted manner when selecting a site, thereby improving the site selection efficiency and making the site selection results more accurate.

[0108] In some embodiments, considering the complexity of the project attribute data of the first project, the site selection conditions of the project can be determined in advance. The site selection efficiency can be improved by selecting the site for the first project according to the site selection conditions. Based on this, Figure 2 As shown, the method of the embodiment of the present application may further include the following steps:

[0109] Step 210: Determine a location condition type of the first project based on the project attribute data of the first project; wherein the location condition type includes at least one of a landmark type, a point of interest type, and a control zone type;

[0110] Step 220: Determine a set of site selection conditions for the first project according to the site selection condition type;

[0111] Step 230 , based on the set of site selection conditions, select multiple candidate addresses from the blueprint within the preset area.

[0112] Among them, the above-mentioned site selection condition type is determined based on the project attribute data of the first project. Specifically, the nature of the first project and the specific needs of the project can be determined based on the project attribute data of the first project, such as the project name. Then, according to the nature and specific needs of the project, the site selection condition type of the first project can be determined, including A site selection type, B site selection type, C site selection type, etc.

[0113] Furthermore, each type may include multiple site selection conditions. For example, site selection type A includes site selection condition 1, site selection condition 2, site selection condition 3, etc.; site selection type B includes site selection condition 11, site selection condition 12, site selection condition 13, etc.; site selection type C includes site selection condition 21, site selection condition 22, site selection condition 23, etc. Then, according to the site selection condition type, the site selection conditions under each site selection condition type may be selected from the site selection conditions that are consistent with the attribute data of the first project, and the selected multiple site selection conditions may be determined as the site selection condition set for the first project.

[0114] Furthermore, based on the above-mentioned set of site selection conditions, the analysis function of GIS (Geographic Information System) is used to select multiple candidate addresses that meet the site selection conditions from the blueprint within the preset area. As an example, Figure 3 This is a schematic diagram of the interface of the data processing method provided by an embodiment of the present application. The schematic diagram of the interface is a site selection interface for the first project according to the site selection conditions, such as Figure 3 As shown, the site selection process for the first project is as follows:

[0115] First, enter the project attribute data of the first project in the interface, including project name: XXX, "XXX" can be a nursing home, project land nature: XXXXXX land, "XXXXXX land" can be public management and public service facilities land, project land area: XX-XXX cubic meters. After that, you can determine the nature of the project and the specific needs of the project, and determine the condition type of the project based on the nature of the project and the specific needs of the project, including: landmark type, point of interest type, and control area type, that is, based on the project attribute data, determine the site selection condition type of the first project.

[0116] Among them, the site selection conditions under the landmark type may include condition 1, condition 2, and condition 3; the site selection conditions under the point of interest type may include: condition 4, condition 5, and condition 6; the site selection conditions under the control area type may include: condition 7 and condition 8; further, according to the above-mentioned site selection condition types, select the site selection conditions that meet the project attribute data. For example, under the landmark type, select condition 1, where the first project is a nursing home. Considering the nature and specific needs of the project, the project should not be too close to the industrial area, so condition 1 can be more than 2,000 meters away from the industrial area; under the point of interest type, select condition 4, considering the nature and specific needs of the project, the project should not be too far from the supermarket, so condition 4 can be within 1,000 meters away from the supermarket; and under the control area type, select condition 7, which can be a covered construction area, and determine conditions 1, condition 4, and condition 7 as the site selection condition set for the first project.

[0117] Furthermore, after determining the site selection condition set for the first project, the first project is saved, and the Start Analysis button is clicked to enable the Start Analysis function. Using the GIS analysis function, multiple candidate addresses that meet the site selection condition set are selected from the blueprint within the preset area.

[0118] In this way, based on the project attribute data of the first project, the site selection conditions of the project are determined in advance, and the first project is sited according to the site selection conditions using GIS technology to select multiple candidate addresses from the blueprint within the preset area, thereby improving site selection efficiency.

[0119] In some embodiments, after the project site is selected, the site selection result of the project needs to be sent to the approval department so that the approval department can verify whether the site selection result of the project is consistent with the planning data. Based on this, Figure 4 As shown, the method of the embodiment of the present application may further include the following steps:

[0120] Step 410, obtaining project scope data of the target address;

[0121] Step 420 , comparing the project scope data with the project planning data in the blueprint within the preset area;

[0122] Step 430: Generate a compliance review report for the first project based on the comparison results.

[0123] Step 440: Send the compliance review report to the approval department, so that the approval department approves the first project based on the compliance review report.

[0124] Among them, the above-mentioned project scope data is the project scope data corresponding to the site selection conditions in the site selection condition set of the first project, and the project scope data is determined as the address information of the target address, and then the basic information of the project is generated. The basic information of the project includes the attribute data of the project and the address information of the project; for example, if the site selection condition 1 is beyond 2,000 meters from the industrial area, the site selection condition 2 is within 1,000 meters from the supermarket, and the project scope data 1 corresponding to the target address and site selection condition 1 is 3,000 meters from the industrial area, and the project scope data 1 corresponding to the site selection condition 2 is 500 meters from the supermarket, then the target address 3,000 meters from the industrial area and the target address 500 meters from the supermarket are determined as the address information in the basic information of the project.

[0125] Specifically, after obtaining the project scope data of the target address, a "one-click review" function can be provided, that is, the project scope data can be compared with the project planning data in the blueprint within the preset area, so as to verify the compliance and feasibility of the project, and verify whether the first project meets the requirements of the planning data, such as verifying whether the first project meets the requirements of the three-line control, the land use master plan, and the urban master plan, and based on the comparison results, generate a compliance review report for the first project, and then send the compliance review report to the approval department, so that the approval department can approve the first project based on the compliance review report.

[0126] In this way, the project site selection can be automatically analyzed and matched, and project information can be automatically generated, reducing manual workload, improving work efficiency, and making site selection more accurate. After the project site is selected, the "one-click review" function can be used to generate a project compliance review report, which can provide relevant departments with an intuitive basis for decision-making. Before approval, it can automatically check whether the project complies with the planning data, which can reduce the workload of subsequent approvals and speed up subsequent approvals.

[0127] In some embodiments, in order to be able to more intuitively display the comparison and verification results to the approval department, the above-mentioned compliance review report includes: project attribute data of the first project, and information on conflicts and contradictions between the first project and project planning data.

[0128] Specifically, the compliance review report records the basic information of the project, such as the project name, the project construction location, the surrounding environment of the project, such as the project's east to XX, west to XX, south to XX, north to XX, project nature, total project land, project construction land and other basic information, as well as the conflict and contradiction information between the project's address information and planning data, so as to intuitively display the information of conflicts and contradictions between the project and the plan. Among them, the compliance review report can view the conflict location and area between the project and various planning data in the form of graphs and tables.

[0129] In this way, the conflict information between the project and the plan will be automatically generated before the project is approved, and the conflict results between the project and various planning data can be intuitively displayed to the approval department, reducing the workload in the approval stage and speeding up subsequent approvals.

[0130] In some embodiments, to further improve site selection efficiency, before selecting multiple candidate addresses from a blueprint within a preset area based on the project attribute data in step 120, the following steps may be further included:

[0131] Based on the project attribute data, a site selection range for the first project is selected from the blueprint within the preset area.

[0132] In this way, the site selection range of the project can be selected in advance on the map based on the project's attribute data, and the project can be sited within the site selection range, which can further narrow the site selection range and thus improve the site selection efficiency.

[0133] In some embodiments, the selecting the site selection range of the first project from the blueprint map data within the preset area based on the project attribute data specifically includes: selecting the target area as the site selection range of the first project from the blueprint within the preset area based on the project attribute data; or

[0134] Based on the project attribute data, select the target administrative district in the blueprint within the preset area as the site selection range for the first project; or

[0135] Based on the project attribute data, the target area is manually circled in the blueprint within the preset area as the site selection range of the first project.

[0136] During specific implementation, a specific area can be selected from the blueprint within the preset area for project site selection. For example, based on the project attribute data of the first project, the target area or the target administrative district can be entered in the blueprint within the preset area as the site selection range of the first project, and the project can be sited within the target area or the target administrative district. Alternatively, after determining the target area, the target area can be manually circled on the blueprint within the preset area as the site selection range, and the project can be sited within the manually circled target area.

[0137] In this way, based on the project's attribute data, the project's site selection range is selected on the map in advance, and the project is sited within the site selection range. This can further narrow the site selection range, reduce the amount of data processing during site selection, and thus improve site selection efficiency. It also provides a variety of ways to select the site selection range, making site selection more diverse.

[0138] Furthermore, by building a "multi-plan integration" business collaboration platform, the blueprint can be integrated on the platform, so that the project site selection, compliance review, and full life cycle management can be realized on the platform.

[0139] Exemplarily, project recommendation data for the first project proposed by multiple regulatory departments based on their respective requirements and plans, combined with project planning data, project real-time development data, and basic geographic data, and based on project attribute data is obtained; based on the project attribute data, the site selection condition type of the first project is determined; then, according to the site selection condition type, the site selection condition set of the first project is determined, and then based on the site selection condition set, combined with the project planning data, project real-time development data, and basic geographic data, multiple candidate addresses are selected based on the basic geographic data, and then, based on the project recommendation data, the planned site of the first project is determined from the multiple candidate addresses, and then the project scope data of the planned site of the first project is obtained; the project scope data is compared with the project planning data in the blueprint within the preset area; based on the comparison results, a compliance review report for the first project is generated, and the compliance review report is sent to the approval department, so that the approval department approves the first project based on the compliance review report.

[0140] In this way, by utilizing GIS technology, distributed file technology, database management technology, and network technology, project planning data, real-time project development data, and basic geographic data are integrated together to construct a blueprint for a preset area. Based on this blueprint, multiple regulatory departments can share the blueprint for the preset area, avoiding the problem of information silos between departments. This can make the acquired project proposal data more accurate, and then conduct site selection and compliance review for the project. The site selection and compliance review results can be automatically generated, facilitating the site selection and compliance review, improving site selection efficiency, and making site selection results more accurate. Furthermore, based on GIS technology, GIS and BIM (Building Information Modeling) can be combined to display building information in a more three-dimensional and intuitive manner on the map. This can also be applied to scenarios such as urban and landscape planning, urban traffic analysis, urban microenvironment analysis, and residential community planning. This can produce better results than using GIS technology alone, making site selection results more accurate.

[0141] Furthermore, considering that project planning data and project compliance data obtained from the compliance review report may increase or be updated, new project planning data and project compliance data are added to the blueprint within the preset area in real time, so that the blueprint within the preset area is scalable, thereby making the site selection and one-click review of the project based on the blueprint within the preset area more and more accurate. In addition, this application also provides traceability, that is, each step of the process from project site selection to project completion acceptance will be recorded, which can realize the management of the entire life cycle of the project.

[0142] The data processing method provided in the embodiment of the present application can select multiple candidate addresses that are consistent with the project attribute data based on a unified, integrated unified map data blueprint, and then determine the address that is consistent with the project suggestion data from the multiple candidate addresses. That is, by providing multiple candidate addresses, when selecting a site for a project based on the project suggestion data, the probability that the planned site of the project is consistent with the project suggestion data is increased, thereby increasing the diversity of site selection. Moreover, since the project suggestion data is obtained by multiple regulatory departments based on the integrated unified blueprint, the acquired project suggestion data is more accurate, and the selected planned site is also more accurate, that is, the site selection of the engineering construction project can be made more precise, the site selection efficiency of the engineering construction project is improved, and the implementation process of the engineering construction project is accelerated.

[0143] Based on the data processing method provided in the above embodiment, the embodiment of the present application also provides a data processing device, such as Figure 5 As shown, the device includes:

[0144] A first acquisition module 510 is configured to acquire project attribute data and project proposal data for a first project; wherein the project proposal data is determined by multiple regulatory departments based on a unified blueprint of a preset area and the project attribute data; the project attribute data includes at least one of a project name, a project land nature, and a project land area; the blueprint of the preset area is obtained by fusing the project planning data and the real-time project development data within the preset area with the basic geographic data;

[0145] A first selection module 520 is configured to select a plurality of candidate addresses from the blueprint within the preset area based on the project attribute data;

[0146] The determination module 530 is configured to determine a target address from the plurality of candidate addresses based on the project suggestion data; wherein the target address is a planned address for the first project.

[0147] In the device of the embodiment of the present application, before selecting a site for the first project, a unified blueprint within a preset area is constructed, so that multiple regulatory departments can make project suggestions for the first project based on the blueprint obtained by fusing the project planning data and project development real-time data within the preset area with the basic geographic data, and the project attribute data of the first project, and summarize the project suggestions made by the multiple regulatory departments to obtain the project suggestion data for the first project. Since the management of the multiple regulatory departments is separated and the contents supervised by the multiple regulatory departments are different, the multiple regulatory departments share the blueprint data on the basis of the fused blueprint, so that the obtained project suggestion data is more accurate. Furthermore, when selecting a site for an engineering construction project, it is considered that the planned site of the project must be consistent with the project attribute data corresponding to the project itself, and must be consistent with the project suggestion data proposed by the multiple regulatory departments. The project suggestion data is consistent with the ones put forward by multiple regulatory departments. Since the regulatory departments supervise different contents, the planned site of the project is often more difficult to be consistent with the project suggestion data put forward by multiple regulatory departments. Therefore, based on the unified blueprint after integration, multiple candidate addresses that are consistent with the project attribute data are selected, and then the address that is consistent with the project suggestion data is determined from the multiple candidate addresses. That is, by providing multiple candidate addresses, when the project is sited based on the project suggestion data, the probability that the planned site of the project is consistent with the project suggestion data is increased, and the diversity of site selection is increased. Moreover, since the project suggestion data is obtained by multiple regulatory departments based on the unified blueprint after integration, the obtained project suggestion data is more accurate, and the selected planned site is also more accurate, that is, the site selection of the engineering construction project can be made more precise, the site selection efficiency of the engineering construction project can be improved, and the implementation process of the engineering construction project can be accelerated.

[0148] In an embodiment of the present application, the device further includes:

[0149] The second acquisition module is used to obtain project planning data, basic geographic data and real-time project development data within a preset area;

[0150] A fusion module is used to fuse the project planning data and the project development real-time data with the basic geographic data to obtain a blueprint.

[0151] In an embodiment of the present application, the fusion module includes:

[0152] a division submodule, configured to divide the project planning data and the project development real-time data into a plurality of thematic data based on the attributes of the project planning data and the attributes of the project development real-time data;

[0153] A setting submodule is used to set corresponding layers for the plurality of thematic data respectively;

[0154] The fusion submodule is used to fuse the layers corresponding to the multiple thematic data with the basic geographic data to obtain a blueprint.

[0155] In an embodiment of the present application, the first selection module 510 includes:

[0156] A first determining submodule is configured to determine a location condition type of the first project based on the project attribute data; wherein the location condition type includes at least one of a landmark type, a point of interest type, and a control area type;

[0157] A second determining submodule, configured to determine a set of site selection conditions for the first project according to the site selection condition type;

[0158] The first selection submodule is used to select multiple candidate addresses from the blueprint within the preset area based on the set of site selection conditions.

[0159] In an embodiment of the present application, the device further includes:

[0160] A third acquisition module is used to obtain project range data of the target address;

[0161] a comparison module, configured to compare the project scope data with the project planning data in the blueprint within the preset area;

[0162] A generation module, configured to generate a compliance review report for the first project based on the comparison result;

[0163] A sending module is used to send the compliance review report to the approval department, so that the approval department approves the first project based on the compliance review report.

[0164] In an embodiment of the present application, the compliance review report includes: project attribute data of the first project, and information on conflicts and contradictions between the first project and the project planning data.

[0165] In an embodiment of the present application, the device further includes:

[0166] The second selection module is used to select the site selection range of the first project from the blueprint within the preset area based on the project attribute data.

[0167] In an embodiment of the present application, the second selection module includes:

[0168] A second selection submodule is configured to select a target area as a site selection range for the first project in the blueprint within the preset area based on the project attribute data; or

[0169] Based on the project attribute data, selecting a target administrative district in the blueprint within the preset area as the site selection range of the first project; or

[0170] Based on the project attribute data, a target area is manually circled in the blueprint within the preset area as the site selection range of the first project.

[0171] In the device of the embodiment of the present application, before selecting a site for the first project, by constructing a unified blueprint within a preset area, multiple regulatory departments can make project suggestions for the first project based on the blueprint obtained by fusing the project planning data and project development real-time data within the preset area with the basic geographic data, and the project attribute data of the first project, and summarize the project suggestions made by the multiple regulatory departments to obtain the project suggestion data for the first project. Since the management of the multiple regulatory departments is separated and the contents supervised by the multiple regulatory departments are different, the multiple regulatory departments share the blueprint data on the basis of the fused blueprint, which can make the obtained project suggestion data more accurate. Furthermore, when selecting a site for an engineering construction project, it is considered that the planned site of the project must be consistent with the project attribute data corresponding to the project itself, and must be consistent with the project suggestion data proposed by the multiple regulatory departments. The project suggestion data is consistent with the ones put forward by multiple regulatory departments. Since the regulatory departments supervise different contents, the planned site of the project is often more difficult to be consistent with the project suggestion data put forward by multiple regulatory departments. Therefore, based on the unified blueprint after integration, multiple candidate addresses that are consistent with the project attribute data are selected, and then the address that is consistent with the project suggestion data is determined from the multiple candidate addresses. That is, by providing multiple candidate addresses, when the project is sited based on the project suggestion data, the probability that the planned site of the project is consistent with the project suggestion data is increased, and the diversity of site selection is increased. Moreover, since the project suggestion data is obtained by multiple regulatory departments based on the unified blueprint after integration, the obtained project suggestion data is more accurate, and the selected planned site is also more accurate, that is, the site selection of the engineering construction project can be made more precise, the site selection efficiency of the engineering construction project is improved, and the implementation process of the engineering construction project is accelerated.

[0172] Based on the method provided in the above embodiment, this application also provides a specific implementation of an electronic device for data processing. Figure 6 A schematic diagram of the structure of an electronic device for data processing provided in an embodiment of the present application is shown.

[0173] The data processing device 600 may include a processor 601 and a memory 602 storing computer program instructions.

[0174] Specifically, the processor 601 may include a central processing unit (CPU), or an application specific integrated circuit (ASIC), or may be configured to implement one or more integrated circuits of the embodiments of the present application.

[0175] The memory 602 may include a large capacity memory for data or instructions. By way of example and not limitation, the memory 602 may include a hard disk drive (HDD), a floppy disk drive, a flash memory, an optical disk, a magneto-optical disk, a magnetic tape, or a universal serial bus (USB) drive, or a combination of two or more of these. Where appropriate, the memory 602 may include removable or non-removable (or fixed) media. Where appropriate, the memory 602 may be inside or outside the integrated gateway disaster recovery device. In a specific embodiment, the memory 602 is a non-volatile solid-state memory.

[0176] The memory may include read-only memory (ROM), random access memory (RAM), magnetic disk storage media devices, optical storage media devices, flash memory devices, electrical, optical or other physical / tangible memory storage devices. Thus, generally, the memory includes one or more tangible (non-transitory) computer-readable storage media (e.g., memory devices) encoded with software including computer-executable instructions, and when the software is executed (e.g., by one or more processors), it is operable to perform the operations described with reference to the method according to an aspect of the present disclosure.

[0177] The processor 601 implements any one of the data processing methods in the above embodiments by reading and executing computer program instructions stored in the memory 602 .

[0178] In one example, the data processing device may further include a communication interface 603 and a bus 604. Figure 6 As shown, the processor 601 , the memory 602 , and the communication interface 603 are connected via a bus 604 and communicate with each other.

[0179] The communication interface 603 is mainly used to implement communication between various modules, devices, units and / or equipment in the embodiments of the present application.

[0180] Bus 604 includes hardware, software or both, and the parts of online data flow metering equipment are coupled to each other. For example, but not limitation, bus can include accelerated graphics port (AGP) or other graphics bus, enhanced industry standard architecture (EISA) bus, front side bus (FSB), hypertransport (HT) interconnection, industry standard architecture (ISA) bus, infinite bandwidth interconnection, low pin count (LPC) bus, memory bus, micro channel architecture (MCA) bus, peripheral component interconnection (PCI) bus, PCI-Express (PCI-X) bus, serial advanced technology attachment (SATA) bus, video electronics standard association local (VLB) bus or other suitable bus or two or more of these combinations. In appropriate cases, bus 604 can include one or more buses. Although the present application embodiment describes and shows specific bus, the application considers any suitable bus or interconnection.

[0181] In addition, in conjunction with the online data traffic billing method in the above embodiment, the present application embodiment can provide a computer storage medium for implementation. The computer storage medium stores computer program instructions; when the computer program instructions are executed by a processor, any one of the data processing methods in the above embodiment is implemented.

[0182] It should be understood that the present application is not limited to the specific configurations and processes described above and illustrated in the figures. For the sake of brevity, a detailed description of known methods is omitted here. In the above embodiments, several specific steps are described and illustrated as examples. However, the method process of the present application is not limited to the specific steps described and illustrated. Those skilled in the art can make various changes, modifications, and additions, or change the order of the steps after understanding the spirit of the present application.

[0183] The functional blocks shown in the above-described block diagram can be implemented as hardware, software, firmware or a combination thereof. When implemented in hardware, they can be, for example, electronic circuits, application specific integrated circuits (ASICs), appropriate firmware, plug-ins, function cards, etc. When implemented in software, the elements of the present application are programs or code segments that are used to perform the required tasks. The program or code segment can be stored in a machine-readable medium, or transmitted on a transmission medium or a communication link by a data signal carried in a carrier wave. "Machine-readable medium" can include any medium that can store or transmit information. Examples of machine-readable media include electronic circuits, semiconductor memory devices, ROMs, flash memories, erasable ROMs (EROMs), floppy disks, CD-ROMs, optical disks, hard disks, optical fiber media, radio frequency (RF) links, etc. The code segment can be downloaded via a computer network such as the Internet, an intranet, etc.

[0184] It should also be noted that the exemplary embodiments mentioned in this application describe some methods or systems based on a series of steps or devices. However, this application is not limited to the order of the above steps. In other words, the steps can be performed in the order mentioned in the embodiments, or in a different order, or several steps can be performed simultaneously.

[0185] Aspects of the present disclosure have been described above with reference to the flowcharts and / or block diagrams of the methods, devices (systems) and computer program products according to the embodiments of the present disclosure. It should be understood that each box in the flowchart and / or block diagram and the combination of each box in the flowchart and / or block diagram can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer or other programmable data processing device to produce a machine so that these instructions executed by the processor of the computer or other programmable data processing device enable the implementation of the function / action specified in one or more boxes of the flowchart and / or block diagram. Such a processor can be, but is not limited to, a general-purpose processor, a special-purpose processor, a special application processor or a field programmable logic circuit. It is also understood that each box in the block diagram and / or flowchart and the combination of the boxes in the block diagram and / or flowchart can also be implemented by dedicated hardware that performs the specified function or action, or can be implemented by a combination of dedicated hardware and computer instructions.

[0186] The above description is only a specific embodiment of the present application. Those skilled in the art will clearly understand that for the convenience and brevity of description, the specific working processes of the systems, modules and units described above can refer to the corresponding processes in the aforementioned method embodiments, and will not be repeated here. It should be understood that the scope of protection of the present application is not limited thereto. Any person skilled in the art can easily think of various equivalent modifications or replacements within the technical scope disclosed in the present application, and these modifications or replacements should be included in the scope of protection of the present application.

Claims

1. A data processing method, characterized in that: The method comprises: Obtaining project attribute data and project proposal data for a first project; wherein the project proposal data is determined by multiple regulatory departments based on a blueprint within a preset area and the project attribute data; the project attribute data includes at least one of a project name, a project land nature, and a project land area; and the blueprint within the preset area is obtained by fusing project planning data and real-time project development data within the preset area with basic geographic data. Based on the project attribute data, selecting a plurality of candidate addresses from a blueprint within the preset area; Determine, from the multiple candidate addresses, an address whose similarity to the project suggestion data is greater than or equal to a preset threshold, and determine the address as the target address; wherein the target address is the planned address of the first project; Before obtaining the project attribute data and project suggestion data of the first project, the method further includes: Obtain project planning data, basic geographic data and real-time project development data within the preset area; Based on the attributes of the project planning data and the attributes of the project development real-time data, the project planning data and the project development real-time data are divided into a plurality of thematic data respectively; Set corresponding layers for the multiple thematic data respectively; Based on the layers corresponding to the plurality of thematic data, the layers are merged with the basic geographic data to obtain a blueprint, wherein when the thematic data is checked, the layers corresponding to the checked thematic data can be displayed on the basic geographic data; The thematic data corresponding to the project planning data include: three types of spatial data, three-line data, land use master plan data, urban master plan data, control detailed plan data, and special plan data; the thematic data corresponding to the real-time project development data include: land use status data; The method further comprises: Adding new project planning data and project compliance data to the blueprint within the preset area in real time; Record every step of the process from project site selection to project completion acceptance.

2. The method according to claim 1, characterized in that The selecting a plurality of candidate addresses from a blueprint within the preset area based on the project attribute data includes: Determining a location condition type for the first project based on the project attribute data; wherein the location condition type includes at least one of a landmark type, a point of interest type, and a control zone type; Determining a set of site selection conditions for the first project according to the site selection condition type; Based on the set of site selection conditions, multiple candidate addresses are selected from the blueprint within the preset area.

3. The method according to claim 1, characterized in that After determining the target address from the plurality of candidate addresses based on the project suggestion data, the method further includes: Obtaining project scope data for the target address; comparing the project scope data with the project planning data in the blueprint within the preset area; Based on the comparison results, generate a compliance review report for the first project; The compliance review report is sent to an approval department, so that the approval department approves the first project based on the compliance review report.

4. The method according to claim 3, characterized in that The compliance review report includes: project attribute data of the first project, and information on conflicts and contradictions between the first project and the project planning data.

5. The method according to claim 1, wherein Before selecting a plurality of candidate addresses from the blueprint within the preset area based on the project attribute data, the method further includes: Based on the project attribute data, a site selection range of the first project is selected from a blueprint within the preset area.

6. The method according to claim 5, characterized in that The selecting, based on the project attribute data, a site selection range of the first project in a blueprint within the preset area includes: Based on the project attribute data, selecting a target area in the blueprint within the preset area as the site selection range of the first project; or Based on the project attribute data, selecting a target administrative district in the blueprint within the preset area as the site selection range of the first project; or Based on the project attribute data, a target area is manually circled in the blueprint within the preset area as the site selection range of the first project.

7. A data processing device, characterized in that: The device comprises: A first acquisition module is configured to acquire project attribute data and project proposal data for a first project; wherein the project proposal data is determined by multiple regulatory departments based on a blueprint within a preset area and the project attribute data; the project attribute data includes at least one of a project name, a project land nature, and a project land area; and the blueprint within the preset area is obtained by fusing project planning data and real-time project development data within the preset area with basic geographic data. A first selection module is configured to select a plurality of candidate addresses from the blueprint within the preset area based on the project attribute data; a determination module, configured to determine, from the plurality of candidate addresses, an address whose similarity to the project suggestion data is greater than or equal to a preset threshold, and determine the address as a target address; wherein the target address is a planned address for the first project; The device further comprises: The second acquisition module is used to obtain project planning data, basic geographic data and real-time project development data within a preset area; a division submodule, configured to divide the project planning data and the project development real-time data into a plurality of thematic data based on the attributes of the project planning data and the attributes of the project development real-time data; A setting submodule is used to set corresponding layers for the plurality of thematic data respectively; A fusion submodule is used to fuse the layers corresponding to the multiple thematic data with the basic geographic data to obtain a blueprint, wherein, by checking the thematic data, the layer corresponding to the checked thematic data can be displayed on the basic geographic data; The thematic data corresponding to the project planning data include: three types of spatial data, three-line data, land use master plan data, urban master plan data, control detailed plan data, and special plan data; the thematic data corresponding to the real-time project development data include: land use status data; The data processing device adds new project planning data and project compliance data to the blueprint within the preset area in real time; and records each step of the process from project site selection to project completion acceptance.

8. A data processing device, characterized in that: The device includes: a processor and a memory storing computer program instructions; When the processor executes the computer program instructions, the data processing method according to any one of claims 1 to 6 is implemented.

9. A computer-readable storage medium, characterized in that The computer-readable storage medium stores computer program instructions, and when the computer program instructions are executed by a processor, the data processing method according to any one of claims 1 to 6 is implemented.

10. A computer program product, characterized in that When the instructions in the computer program product are executed by a processor of an electronic device, the electronic device executes the data processing method according to any one of claims 1 to 6.

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