A natural resource data management method and system
By entering and preloading the natural resource data and related data that users are concerned about in the natural resource data management system, the problem of slow query speed caused by large data volume is solved, and efficient data loading and excellent user experience are achieved.
Patent Information
- Application Number
- CN202411268235.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2044-09-11
AI Technical Summary
The amount of natural resource data is large, and the data query experience that users are concerned about is poor and the loading speed is slow.
The focus natural resource data and its related data are backed up and entered into the quick query database, stored in the same storage module, and preloaded after the user logs in to quickly respond to query requests.
It improves data loading speed, enhances user experience, and ensures the stability and efficiency of data management.
Smart Images

Figure CN119166650B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of natural resource asset management, and in particular to a natural resource data management method and system. Background Art
[0002] The construction of natural resource informatization promotes the implementation of the functions of natural resource institutions and ensures the full realization of the "two unified" management responsibilities. In the context of fully implementing the construction of ecological civilization for natural resource asset management, it is urgent to extend the content of natural resource informatization construction and build a natural resource big data base. In the industrial digital development of natural resource asset management, the main functions are to realize the collection, input, inventory, and query of natural resource data. Natural resource data has a huge amount of data. Whether in daily work such as quality inspection or in application scenarios such as query and display, the speed of presenting the data that users are interested in has a significant impact on the user experience. Therefore, how to ensure the loading speed of the data that users are interested in is an issue that needs to be solved in the construction of natural resource informatization. Summary of the Invention
[0003] The purpose of this application is to propose a natural resource data management method and system to solve the problem that the data of natural resource information is huge and the query experience of the data that users are concerned about needs to be improved.
[0004] The natural resource data management method of this application includes:
[0005] Entering natural resource data into the natural resource database;
[0006] According to the status of registered users in the system, determine the focus natural resource data corresponding to the registered users;
[0007] Backing up the focus natural resource data and its associated natural resource data into a quick query database, wherein the focus natural resource data and the associated natural resource data in each region are stored in the same storage module;
[0008] After the user logs into the system, the focus natural resource data corresponding to the logged-in user and the associated natural resource data in the same storage module are preloaded from the quick query database;
[0009] In response to a query request from the logged-in user, the preloaded data is displayed to the logged-in user.
[0010] Furthermore, the step of determining the focus natural resource data corresponding to the registered user according to the registered user status in the system includes:
[0011] Classify registered users in the system according to region and resource category;
[0012] The data of natural resources of corresponding categories within the geographical area where the registered user is located is determined as the focus natural resource data.
[0013] Furthermore, the step of determining the focus natural resource data corresponding to the registered user according to the registered user status in the system includes:
[0014] In response to a request for user registration or user information change, the corresponding focus natural resource data is determined based on the situation of the newly registered user or the user after the information change.
[0015] Furthermore, the step of backing up the focus natural resource data and its associated natural resource data into a quick query database includes:
[0016] The natural resource asset package information is obtained, and the remaining natural resource data in the natural resource asset package containing the focus natural resource data is determined as the associated natural resource data of the focus natural resource data.
[0017] Furthermore, the step of backing up the focus natural resource data and its associated natural resource data into a quick query database includes:
[0018] Calculating the correlation coefficient between the focus natural resource data and surrounding natural resources;
[0019] The natural resources whose correlation coefficients are above a first threshold are determined as the related natural resource data of the focus natural resource data.
[0020] Furthermore, the step of backing up the focus natural resource data and its associated natural resource data into a quick query database further includes the following steps:
[0021] Determining the query similarity between the currently entered focus natural resource data and the natural resource data already entered in the quick query database;
[0022] The associated natural resource data of each of the focus natural resource data whose query similarity is above a second threshold are merged and recorded into the same storage module.
[0023] Furthermore, the query similarity is the product of the region overlap coefficient and the correlation similarity coefficient;
[0024] The regional overlap coefficient indicates the degree of overlap between the currently entered focus natural resource data and the region where a certain natural resource data already entered in the quick query database is located;
[0025] The association similarity coefficient indicates the degree of overlap between the currently entered focus natural resource data and the natural resources associated with a certain natural resource data entered in the quick query database.
[0026] Furthermore, the step of displaying the preloaded data to the logged-in user in response to the query request of the logged-in user includes:
[0027] Determine the scale of the map based on the area covered by the preloaded data;
[0028] Displaying a graphic interface that fully reflects the preloaded data to the logged-in user according to the scale;
[0029] After the preloaded data is presented, the remaining data that needs to be displayed is loaded and presented step by step.
[0030] Furthermore, in the natural resource database, natural resource data is stored in different storage modules according to different categories.
[0031] On the other hand, the present application also provides a natural resource data management system, comprising:
[0032] A first entry module is used to enter natural resource data into a natural resource database;
[0033] A focus determination module is used to determine the focus natural resource data corresponding to the registered users according to the registered users in the system;
[0034] A second entry module is used to back up and enter the focus natural resource data and its associated natural resource data into a quick query database, wherein the focus natural resource data and the associated natural resource data in each region are stored in the same storage module;
[0035] A preloading module, configured to preload the focus natural resource data corresponding to the logged-in user and the associated natural resource data in the same storage module from the quick query database after the user logs in to the system;
[0036] The data display module is used to display the preloaded data to the logged-in user in response to the query request of the logged-in user.
[0037] The natural resource data management method provided by the present application determines the focus natural resource data corresponding to the registered user based on the registered user status in the system; backs up the focus natural resource data and its associated natural resource data into a quick query database, and the focus natural resource data and the associated natural resource data in each region are stored in the same storage module. This achieves the goal of copying the natural resource data that the user may be interested in from the natural resource database and storing them separately in the same storage module. Therefore, after the user logs in to the system, these data can be loaded more efficiently and quickly, ensuring the loading speed of the data that the user is interested in, thereby providing a better user experience. The use of a quick query database will not affect the original data structure in the natural resource database, ensuring the rationality and stability of the storage and management of large amounts of data. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] Figure 1 Schematic diagram of the basic flow of the natural resource data management method of this embodiment;
[0039] Figure 2 This is a detailed flow diagram of the natural resource data management method of this embodiment. Figure 1 ;
[0040] Figure 3 This is a detailed flow diagram of the natural resource data management method of this embodiment. Figure 2 ;
[0041] Figure 4 This is a detailed flow diagram of the natural resource data management method of this embodiment. Figure 3 ;
[0042] Figure 5 This is a detailed flow diagram of the natural resource data management method of this embodiment. Figure 4 ;
[0043] Figure 6 Schematic diagram of the structure of the natural resource data management system of this embodiment. DETAILED DESCRIPTION
[0044] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of the present invention.
[0045] It should be noted that the terms "first", "second", etc. in the description and claims of the present invention and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that the numbers used in this way can be interchanged where appropriate, so that the embodiments of the present invention described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0046] Example 1:
[0047] This embodiment provides a natural resource data management method, see Figure 1 The method of this embodiment includes but is not limited to the following steps:
[0048] S101. Entering natural resource data into a natural resource database;
[0049] The Natural Resources Database can record data on a variety of natural resource assets, creating a single, integrated record of all publicly owned land, minerals, oceans, forests, grasslands, and wetlands. Data can be collected from sources such as land change surveys, various special surveys, and supplementary field surveys. After data preprocessing, information extraction and cleaning, data alignment and processing, and data integration, data for natural resources such as land, minerals, forests, grasslands, and wetlands is entered into the Natural Resources Database.
[0050] The natural resource database in this application is the sum of storage units that fully store these natural resource data. In actual applications, different categories of natural resource data can be stored in different sub-databases or forms for easy management.
[0051] In this embodiment, natural resource data is stored by category in different storage modules (sub-databases or tables) within the natural resource database. However, when users need to use the data, different natural resource data within the system must be searched and loaded separately from different storage modules, which slows down data presentation. To address this, this embodiment will ensure that the natural resource data of interest to users can be loaded relatively efficiently in subsequent steps, thereby achieving more efficient and timely data presentation in some implementations.
[0052] S102: Determine the focus natural resource data corresponding to the registered user according to the registered user status in the system;
[0053] In this embodiment, in addition to the basic information required for login identity authentication, the user's information may also include, but is not limited to, the user's geographical location, user category, work unit, etc. The user's geographical location reflects the user's geographical location or the geographical location that the user is interested in (for example, the location of their work unit or current project).
[0054] User categories include, but are not limited to, internal auditors, field data entry personnel, resource demand personnel, and other personnel. Work units can be categorized based on the type of natural resources, such as forestry units, mining units, and agricultural units. Work unit information primarily identifies the type of natural resources that users are primarily interested in. Alternatively, work unit information can be replaced with a more specific department, directly identifying the type of natural resource, or other information that reflects the natural resource of primary interest to the user.
[0055] In this embodiment, the focus natural resource data can be understood as the natural resource data that the user will focus on. The focus natural resource data includes data of one or more natural resources in a certain area.
[0056] S103, backing up the focus natural resource data and its associated natural resource data into a quick query database;
[0057] It should be noted that the focus natural resource data and related natural resource data within each region are stored in the same storage module. This same storage module can be the same sub-database, or preferably, the same form. In existing natural resource databases, the natural resource data of interest to users is often fragmented, requiring searches within the vast data set based on user needs, often spanning multiple storage modules, which reduces query efficiency.
[0058] The quick query database, a separate storage unit from the natural resource database, is used in this embodiment to store a subset of data. It stores both user-related focus natural resource data and associated natural resource data in the same storage module. This data can be quickly loaded, making it more efficiently presented to users. This data is often of primary interest to the user, thus ensuring a superior user experience.
[0059] In practical applications, the quick query database can be deployed on the same server as the natural resource database, which can be the main server for the entire natural resource data management system. To further improve data presentation efficiency, the quick query database can also be deployed on an edge server closer to the user. Different edge servers will have different data stored in their quick query databases, depending on the users they serve.
[0060] S104: After the user logs into the system, the focus natural resource data corresponding to the logged-in user and the associated natural resource data in the same storage module are preloaded from the quick query database;
[0061] As you can understand, preloading occurs before the user actually queries the page. Thanks to our fast database query design, preloading is highly efficient and typically completes shortly after the user logs in. Preloading occurs in the background and is temporarily cached locally on the user's computer.
[0062] S105. In response to a query request from a logged-in user, display the preloaded data to the logged-in user.
[0063] The preloaded data can be efficiently displayed to the user, including but not limited to displaying in text form, marking on geographic images, etc.
[0064] In some applications, data can be presented directly to the user after logging in. In this case, the user's login request and query request can be considered to be issued simultaneously, and the preloaded natural resource data can be presented to the user directly after loading. While this natural resource data needs to be presented directly to the user without pre-loading time, the loading process is still efficient, providing a better user experience, as the user's focus natural resource data and its related natural resource data have been pre-backed up and recorded separately.
[0065] Alternatively, see Figure 2 , based on the status of registered users in the system, the steps of determining the focus natural resource data corresponding to the registered users include:
[0066] S201, classifying registered users in the system according to region and resource category;
[0067] Resource categories can be determined based on user categories, work units, project conditions and other information, which can reflect the natural resource assets that users are mainly concerned about.
[0068] For example, for staff members of a forestry unit, their corresponding resource category is forestry-related natural resources. For staff members of other units, if their unit purchases a natural resource asset, their corresponding resource category is the natural resources contained in the purchased natural resource asset.
[0069] S202: Determine the data of the corresponding category of natural resources within the geographical area where the registered user is located as the focus natural resource data;
[0070] The user's geographical scope refers to the user's geographic location or the geographic location of the user's work unit or project. The specific size of the scope can be determined based on the jurisdiction of the user's work unit or the scope of the project.
[0071] For example, if a registered user is a staff member of a forestry unit in a certain district or county, their corresponding focus natural resource data will be the forestry-related natural resources within that district or county. It is understandable that the focus natural resource data for different registered users may be the same or different. In practice, registered users in the same unit typically have the same region and resource categories, so these registered users can be classified into the same category and have the same focus natural resource data.
[0072] Optionally, based on the status of registered users in the system, the step of determining the focus natural resource data corresponding to the registered users includes:
[0073] S301, in response to a user registration or user information change request, determining corresponding focus natural resource data according to the newly registered user or the user after the information change;
[0074] In this embodiment, each user's focused natural resource data is determined upon user registration or when their information is changed. Before a user issues a query, their focused natural resource data is pre-determined, allowing for rapid pre-loading of relevant data and streamlining the process from querying data to determining the required data.
[0075] Optionally, the step of backing up the focus natural resource data and its associated natural resource data into the quick query database includes:
[0076] S401: Acquire natural resource asset package information, and determine the remaining natural resource data in the natural resource asset package containing the focus natural resource data as the associated natural resource data of the focus natural resource data;
[0077] A natural resource asset package is a collection of natural resource asset property rights that is formed within a specific national territory, by exploring the market trading potential of different natural resource assets and their rights and interests. The package's configuration can be pre-entered into the natural resource database, where each natural resource data item can include information about the natural resource asset package to which it belongs.
[0078] Other query methods require searching and loading data from multiple different natural resource storage modules based on the information in the natural resource asset package, which can easily affect efficiency. However, in this embodiment, the natural resource data within these natural resource asset packages is pre-entered into the quick query database as associated natural resource data with the focus natural resource data and stored in the same storage module. Once a user issues a query request, the natural resource data associated with the natural resource asset package can be quickly provided to the user, ensuring a superior user experience.
[0079] like Figure 3 As shown, as another association situation, the steps of backing up the focus natural resource data and its associated natural resource data into the quick query database include:
[0080] S501, calculating the correlation coefficient between the focus natural resource data and the surrounding natural resources;
[0081] S502: Determine the natural resources whose correlation coefficients are above a first threshold as the related natural resource data of the focus natural resource data;
[0082] The correlation coefficient in this embodiment reflects the correlation between natural resources in their natural state. For example, forest and grassland resources have a high correlation with their surrounding water resources. Correlation coefficients can be pre-set for different categories of natural resources. In practice, the actual correlation coefficient is determined based on the distance and area between these natural resources. It is understood that the greater the distance between natural resources or the smaller their area, the less impact they have on other natural resources, and the lower their correlation coefficient.
[0083] The first threshold in this embodiment can be set by system maintenance personnel. In practical applications, it can be adjusted based on the actual data query rate of the server. For servers with better performance, the first threshold can be appropriately lowered to enable preloading of larger amounts of data. Conversely, when server performance is limited, the first threshold can be appropriately raised to control the amount of preloaded data. Of course, the solution of this embodiment is intended for efficiently loading natural resource data that users are primarily interested in. Other data can be loaded gradually during subsequent use based on user query needs.
[0084] In order to reduce the resources occupied by the fast query database and achieve the goal at a lower cost, the storage modules in the fast query database can be merged. For example, sub-databases or forms with similar content can be merged.
[0085] See also Figure 4 In some implementation processes, the focus natural resource data and its associated natural resource data are backed up and entered into a quick query database, further comprising the steps of:
[0086] S601: Determine the query similarity between the currently entered focus natural resource data and the natural resource data already entered in the quick query database;
[0087] S602: Merge and record the associated natural resource data of each focus natural resource data whose query similarity is above a second threshold into the same storage module;
[0088] Query similarity represents the degree of overlap between the data in the sub-databases or tables ultimately formed by two different sets of focal natural resource data. Generally speaking, sub-databases or tables ultimately formed by two sets of focal natural resource data with high query similarity contain each other's data, and other related natural resource data also have a high degree of overlap.
[0089] In this embodiment, the query similarity is set as the product of the regional overlap coefficient and the association similarity coefficient. The regional overlap coefficient indicates the degree of overlap between the region of the currently entered focus natural resource data and a certain natural resource data already entered in the quick query database. The association similarity coefficient indicates the degree of overlap between the currently entered focus natural resource data and the natural resources associated with a certain natural resource data already entered in the quick query database.
[0090] In order to simplify the data comparison and calculation process, the correlation similarity coefficient can directly compare the overlap of the types of related natural resource data between two focus natural resource data, thereby eliminating the need to compare the data one by one.
[0091] The aforementioned similarity comparison method allows for determining the degree of data overlap without requiring a complete comparison. If the query similarity between the currently entered focus natural resource data and a previously entered natural resource data item in the quick query database exceeds a second threshold, the relevant data for the currently entered focus natural resource data can be directly merged and entered into the existing form or sub-database, reducing the number of forms or sub-databases and lowering resource usage. The second threshold can also be set by system maintenance personnel based on actual needs.
[0092] As a form of user presentation, this can be done through a "one map" interface. This interface is built on GIS (Geographic Information System) technology. It allows users to switch layers to view specific data and symbolize vector data according to industry standards. This interface typically displays geographic data at a fixed scale.
[0093] See Figure 5In some implementations of this embodiment, in response to a query request from a logged-in user, the step of displaying preloaded data to the logged-in user includes:
[0094] S701, determining the scale of the map based on the area covered by the preloaded data;
[0095] By using preloaded data, the scale of this embodiment is dynamically set based on actual conditions. When querying natural resource data, the default scale presented by the system can be personalized based on the preloaded data, tailored to the user. In some applications, the scale setting can ensure that the entire area corresponding to the preloaded data is fully presented within a single map interface, eliminating the need for users to manually zoom to the appropriate scale in some implementations.
[0096] S702: Displaying a map interface that can reflect natural resource data to the logged-in user according to the scale;
[0097] At this time, a map interface displays basic geographic information such as a map, as well as various natural resource data preloaded for the user.
[0098] S703: After the preloaded data is presented, the remaining data to be presented is loaded and presented step by step;
[0099] In actual applications, users may request to query other data, or a map interface may contain other data that needs to be displayed to the user. This data can be loaded and presented gradually after the preloaded data is presented. This embodiment ensures the timely presentation of some data by prioritizing the display of preloaded data, which can provide a better user experience.
[0100] This embodiment also provides a natural resource data management system 600, see Figure 6 As shown, the natural resource data management system 600 includes but is not limited to a first input module 601 , a focus determination module 602 , a second input module 603 , a preloading module 604 and a data display module 605 .
[0101] The first entry module 601 is used to enter natural resource data into the natural resource database.
[0102] The focus determination module 602 is used to determine the focus natural resource data corresponding to the registered users according to the registered users in the system.
[0103] The second entry module 603 is used to back up the focus natural resource data and its associated natural resource data into the quick query database. The focus natural resource data and associated natural resource data in each region are stored in the same storage module.
[0104] The preloading module 604 is used to preload the focus natural resource data corresponding to the logged-in user and the associated natural resource data in the same storage module from the quick query database after the user logs in to the system.
[0105] The data display module 605 is used to display the preloaded data to the logged-in user in response to a query request from the logged-in user.
[0106] The specific steps that can be executed by the modules in the natural resource data management system of this embodiment can also refer to the description of the natural resource data management method provided above in this embodiment, and will not be repeated in this embodiment.
[0107] In addition, although exemplary embodiments have been described herein, the scope includes any and all equivalent, modified, omitted, combined (e.g., solutions that intersect various embodiments), adapted, or altered embodiments based on the present disclosure. The present disclosure is not limited to the examples described in this specification or during the practice of this application, which examples are to be construed as non-exclusive.
[0108] The above description is intended to be illustrative rather than restrictive. For example, the above examples (or one or more of them) can be used in combination with each other. For example, those of ordinary skill in the art may use other embodiments when reading the above description.
[0109] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A natural resource data management method, characterized in that: include: Entering natural resource data into the natural resource database deployed on the main server; According to the status of registered users in the system, determine the focus natural resource data corresponding to the registered users; The focus natural resource data and its associated natural resource data are backed up and recorded in a quick query database deployed in an edge server. In different edge servers, the data recorded in the quick query database may be different for the users served. The focus natural resource data and the associated natural resource data in each region are stored in the same storage module, which is a table. When entering data, it also includes determining the query similarity between the currently entered focus natural resource data and the natural resource data already entered in the quick query database; merging the associated natural resource data of each focus natural resource data whose query similarity is above a second threshold value into the same storage module; the query similarity is the product of the regional overlap coefficient and the associated similarity coefficient; the regional overlap coefficient indicates the degree of overlap between the currently entered focus natural resource data and the region where a certain natural resource data already entered in the quick query database is located; the associated similarity coefficient indicates the degree of overlap between the currently entered focus natural resource data and the natural resources associated with a certain natural resource data already entered in the quick query database; After the user logs into the system and before the user queries data, the focus natural resource data corresponding to the logged-in user and the associated natural resource data in the same storage module are preloaded in the background from the quick query database, and the preloaded data are temporarily cached locally in the user; In response to a query request from the logged-in user, the preloaded data is displayed to the logged-in user.
2. The natural resource data management method according to claim 1, wherein: The step of determining the focus natural resource data corresponding to the registered user according to the registered user status in the system includes: Classify registered users in the system according to region and resource category; The data of natural resources of corresponding categories within the geographical area where the registered user is located is determined as the focus natural resource data.
3. The natural resource data management method according to claim 1, wherein: The step of determining the focus natural resource data corresponding to the registered user according to the registered user status in the system includes: In response to a request for user registration or user information change, the corresponding focus natural resource data is determined based on the situation of the newly registered user or the user after the information change.
4. The natural resource data management method according to claim 1, wherein: The step of backing up the focus natural resource data and its associated natural resource data into a quick query database includes: The natural resource asset package information is obtained, and the remaining natural resource data in the natural resource asset package containing the focus natural resource data is determined as the associated natural resource data of the focus natural resource data.
5. The natural resource data management method according to claim 1, wherein: The step of backing up the focus natural resource data and its associated natural resource data into a quick query database includes: Calculating the correlation coefficient between the focus natural resource data and surrounding natural resources; The natural resources whose correlation coefficients are above a first threshold are determined as the related natural resource data of the focus natural resource data.
6. The natural resource data management method according to claim 1, wherein: The step of displaying the preloaded data to the logged-in user in response to the query request of the logged-in user includes: Determine the scale of the map based on the area covered by the preloaded data; Displaying a graphic interface that fully reflects the preloaded data to the logged-in user according to the scale; After the preloaded data is presented, the remaining data that needs to be displayed is loaded and presented step by step.
7. The natural resource data management method according to any one of claims 1 to 6, characterized in that: In the natural resource database, natural resource data is stored in different storage modules according to different categories.
8. A natural resource data management system, characterized in that: include: A first entry module is used to enter the natural resource data into the natural resource database deployed on the main server; A focus determination module is used to determine the focus natural resource data corresponding to the registered users according to the registered users in the system; A second entry module is configured to back up the focus natural resource data and its associated natural resource data into a quick query database deployed in an edge server. The data entered into the quick query database in different edge servers may differ depending on the users they serve. The focus natural resource data and the associated natural resource data in each region are stored in the same storage module, which is a table. When entering data, it also includes determining the query similarity between the currently entered focus natural resource data and the natural resource data already entered in the quick query database; merging the associated natural resource data of each focus natural resource data whose query similarity is above a second threshold value into the same storage module; the query similarity is the product of the regional overlap coefficient and the associated similarity coefficient; the regional overlap coefficient indicates the degree of overlap between the currently entered focus natural resource data and the region where a certain natural resource data already entered in the quick query database is located; the associated similarity coefficient indicates the degree of overlap between the currently entered focus natural resource data and the natural resources associated with a certain natural resource data already entered in the quick query database; A preloading module is used to preload the focus natural resource data corresponding to the logged-in user and the associated natural resource data in the same storage module from the quick query database in the background after the user logs in to the system and before the user queries the data, and the preloaded data is temporarily cached locally in the user; The data display module is used to display the preloaded data to the logged-in user in response to the query request of the logged-in user.
Citation Information
Patent Citations
Organization scheduling method and device for natural resource scene data and storage medium
CN110516119A
Mobile query method for planning natural resources
CN112948421A
Land sample data management method and system for land management
CN117828148A