A method and system for identifying underground structures based on Beidou satellites

By using a BeiDou satellite-based method for identifying underground structures and leveraging geological structural data categories and processing methods, multiple processing steps are applied to underground structures, solving the accuracy problem in underground structure exploration and improving construction efficiency.

CN119377813BActive Publication Date: 2025-10-17SICHUAN PROVINCE JINHE GEOLOGY & EXPLORATION ENG CO
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Patent Information

Application Number
CN202411237403.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-04
Publication Date
2025-10-17
Estimated Expiration
2044-09-04

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to accurately explore underground structures, especially in areas inaccessible to equipment, resulting in incomplete information and low accuracy.

Method used

The method of identifying underground structures based on Beidou satellite is adopted. Through geological structure data processing instructions, geological structure data is identified and classified. The geological structure data to be identified is processed in multiple ways, including cleaning, analysis and optimization, using the geological structure data type catalog and processing methods, to generate target geological structure data.

Benefits of technology

It has realized the intelligent identification function of geological structure data to be identified, improved the identification accuracy of geological structure data, simplified the processing operation, and improved construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The underground structure identification method and system based on Beidou satellite provided in the application, when receiving a geological structure data processing instruction, first respond to the geological structure data processing instruction, obtain a geological structure data type directory of the to-be-identified geological structure data, then obtain a geological structure data processing mode corresponding to the geological structure data type directory, then perform multiple processing on the to-be-identified geological structure data according to a plurality of processing sub-modes in the geological structure data processing mode, and finally output the processed target geological structure data. Through the above mode, the intelligent identification function of the to-be-identified geological structure data can be realized, and multiple enhancement processing of the to-be-identified geological structure data can be realized only by inputting a geological structure data operation instruction, thereby simplifying the geological structure data processing operation, improving the accuracy of the geological structure data identification, thereby being able to provide a basis guarantee for subsequent construction and improving the construction efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of data evaluation, in particular to a method and system for identifying underground structure based on Beidou satellite. BACKGROUND

[0002] Underground structure is a relatively difficult field to accurately explore. In the prior art, drilling is generally used for exploration, which has great limitations. In some places where equipment cannot reach, underground structure information cannot be obtained, resulting in low accuracy. Therefore, there is an urgent need for a technical solution to solve the above problems. SUMMARY

[0003] To improve the technical problems in the related art, the present application provides a method and system for identifying underground structure based on Beidou satellite.

[0004] In a first aspect, a method for identifying underground structure based on Beidou satellite is provided, comprising:

[0005] Obtaining geological structure data processing instructions for geological structure data to be identified;

[0006] Performing geological structure data content identification on the geological structure data to be identified to obtain a geological structure data content identification result;

[0007] In response to the geological structure data processing instructions, obtaining X geological structure data category directories corresponding to the geological structure data to be identified through the geological structure data content identification result, wherein X is an integer greater than 1; the X geological structure data category directories include one important geological structure data category directory and no less than one secondary geological structure data category directory; the important geological structure data category directory is used to determine the global processing mode of geological structure data processing, and the secondary geological structure data category directory is used to determine the saliency processing mode of local content matters of geological structure factors.

[0008] In an independently implemented embodiment, the geological structure data content identification on the geological structure data to be identified to obtain a geological structure data content identification result comprises:

[0009] Obtaining no less than one key geological structure factor in the geological structure data to be identified;

[0010] Determining the total content matters of the no less than one key geological structure factor;

[0011] Determining one main content matter and no less than one secondary content matter in the total content matters through the number of influence factors occupied by the total content matters;

[0012] The X geological structure data category directories corresponding to the to-be-identified geological structure data are obtained through the geological structure data content identification result, and the X geological structure data category directories corresponding to the to-be-identified geological structure data are obtained through the geological structure data content identification result.

[0013] The geological structure data category corresponding to the main content matter is determined as the important geological structure data category directory, and the geological structure data category corresponding to the not less than one secondary content matter is determined as the not less than one secondary geological structure data category directory.

[0014] In an independently implemented embodiment, the geological structure data content identification of the to-be-identified geological structure data is performed to obtain a geological structure data content identification result, and the geological structure data content identification of the to-be-identified geological structure data is performed to obtain a geological structure data content identification result.

[0015] Not less than one key geological structure factor in the to-be-identified geological structure data is obtained.

[0016] The all content matters of the not less than one key geological structure factor are determined.

[0017] The content matter with the highest importance degree weight among the all content matters is determined as the main content matter through the importance degree weight corresponding to the all content matters, and not less than one secondary content matter is determined through the importance degree weight.

[0018] The X geological structure data category directories corresponding to the to-be-identified geological structure data are obtained through the geological structure data content identification result, and the X geological structure data category directories corresponding to the to-be-identified geological structure data are obtained through the geological structure data content identification result.

[0019] The geological structure data category corresponding to the main content matter is determined as the important geological structure data category directory, and the geological structure data category corresponding to the not less than one secondary content matter is determined as the not less than one secondary geological structure data category directory.

[0020] In an independently implemented embodiment, the X geological structure data category directories corresponding to the to-be-identified geological structure data are obtained through the geological structure data content identification result, and the X geological structure data category directories corresponding to the to-be-identified geological structure data are obtained through the geological structure data content identification result.

[0021] The to-be-identified geological structure data is loaded to a geological structure identification thread.

[0022] The X geological structure data category directories corresponding to the to-be-identified geological structure data are determined through the output of the geological structure identification thread.

[0023] In an independently implemented embodiment, the X geological structure data category directory includes a geological event category directory, the corresponding geological structure data processing mode of the geological event category directory includes not less than two of cleaning processing, analysis processing or data optimization; the processing of the to-be-identified geological structure data by using the X geological structure data processing mode includes:

[0024] determining a geological event content item in the to-be-identified geological structure data through the geological event category directory;

[0025] performing not less than two of cleaning processing, analysis processing or data optimization processing on the geological event content item.

[0026] In an independently implemented embodiment, the X geological structure data category directory includes a local geological event category directory, the corresponding geological structure data processing mode of the local geological event category directory includes not less than two of data optimization, data identification or data cleaning; the processing of the to-be-identified geological structure data by using the X geological structure data processing mode includes:

[0027] determining a rock content item in the to-be-identified geological structure data through the local geological event category directory;

[0028] performing not less than two of data optimization processing, data identification processing or data cleaning processing on the rock content item.

[0029] In an independently implemented embodiment, the X geological structure data category directory includes a geological structure layer category directory, the corresponding geological structure data processing mode of the geological structure layer category directory includes not less than two of preprocessing, data identification or filtering processing; the processing of the to-be-identified geological structure data by using the X geological structure data processing mode includes:

[0030] determining a plurality of geological layer structure factors in the to-be-identified geological structure data through the geological structure layer category directory;

[0031] performing not less than two of preprocessing processing, data identification processing or filtering processing on the plurality of geological layer structure factors.

[0032] In an independently implemented embodiment, the X geological structure data category directory includes a key category directory, the corresponding geological structure data processing mode of the key category directory includes not less than two of preprocessing, data identification or weight value optimization;

[0033] the processing of the to-be-identified geological structure data by using the X geological structure data processing mode includes:

[0034] Determining a plurality of key geological structure factors in the geological structure data to be identified through the key category catalog;

[0035] The several key geological structural factors are subjected to at least two of the following processes: pre-processing, data identification processing or weight value optimization processing.

[0036] In an independently implemented embodiment, the X geological structure data category directories include a hidden geological information category directory, and the geological structure data processing methods corresponding to the hidden geological information category directory include differential analysis and data cleaning; and processing the geological structure data to be identified using the X geological structure data processing methods includes:

[0037] Determining the hidden geological information content items in the geological structure data to be identified through the hidden geological information category catalog;

[0038] The hidden geological information content is subjected to differentiated analysis and data cleaning.

[0039] In an independently implemented embodiment, determining X geological structure data processing methods based on the X geological structure data category directories specifically includes: determining a primary geological structure data processing method based on the important geological structure data category directory; determining at least one secondary geological structure data processing method based on the at least one secondary geological structure data category directory; wherein the geological structure data processing methods correspond to the geological structure data category directories, and each geological structure data processing method includes at least two processing sub-methods, wherein each processing sub-method includes at least one of a key hidden content processing method and a hidden content processing method;

[0040] The X geological structure data processing methods are used to process the geological structure data to be identified to output target geological structure data, specifically including: using the primary geological structure data processing method to process all content items of geological structure factors in the geological structure data to be identified; using the secondary geological structure data processing method to analyze and process local content items of geological structure factors in the geological structure data to be identified; and obtaining the secondary geological structure data type directory based on the local content items.

[0041] In a second aspect, a Beidou satellite-based underground structure identification system is provided, comprising a processor and a memory that communicate with each other, wherein the processor is used to read a computer program from the memory and execute it to implement the above method.

[0042] The embodiment of the present application provides a Beidou satellite-based underground structure identification method and system. When receiving a geological structure data processing instruction, the method and system first respond to the geological structure data processing instruction, obtain a geological structure data type directory of the geological structure data to be identified, then obtain a geological structure data processing method corresponding to the geological structure data type directory, and then perform multiple processing on the geological structure data to be identified according to several processing sub-methods in the geological structure data processing method, and finally output the processed target geological structure data. Through the above method, the intelligent identification function of the geological structure data to be identified can be realized. Only one geological structure data operation instruction needs to be input to implement multiple enhanced processing of the geological structure data to be identified, thereby simplifying the geological structure data processing operation and improving the accuracy of geological structure data identification, thereby providing a basic guarantee for subsequent construction and improving construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] 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. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.

[0044] Figure 1 A flowchart of a Beidou satellite-based underground structure identification method provided in an embodiment of the present application. DETAILED DESCRIPTION

[0045] In order to better understand the above technical solution, the technical solution of the present application is described in detail below through the accompanying drawings and specific embodiments. It should be understood that the embodiments of the present application and the specific features in the embodiments are detailed descriptions of the technical solution of the present application, rather than limitations on the technical solution of the present application. In the absence of conflict, the embodiments of the present application and the technical features in the embodiments can be combined with each other.

[0046] See also Figure 1 , shows a method for identifying underground structures based on Beidou satellites, which may include the technical solutions described in the following steps 201-203.

[0047] 201. Obtain geological structure data to be identified, and receive geological structure data processing instructions for the geological structure data to be identified.

[0048] For example, the geological structure data to be identified is the initial geological structure data obtained by Beidou satellite photography, which includes normal geological structure data and interference data.

[0049] The geological structure data processing instruction may be a geological structure data processing command, which is used to execute identification processing of geological structure data.

[0050] Geological structure refers to the shape left behind by deformation or displacement of rock layers or rock masses under the influence of internal and external stresses. This is most prominent in areas with layered rocks, but also occurs in areas with igneous and metamorphic rocks. Specifically, it manifests itself as folds, fractures, cleavages, and other planar and linear structures. This has a direct impact on the stability and permeability of foundations for hydraulic structures. For example, in the core of a folded structure, the rock is broken and fissures are developed, resulting in low strength and high permeability. Sites for dams, power stations, tunnels, and other structures should be avoided as much as possible. Site selection should also consider the presence of faults within the reservoir area. Large faults extending beyond the reservoir can cause leakage.

[0051] 202. Perform geological structure data content recognition on the geological structure data to be recognized to obtain a geological structure data content recognition result.

[0052] After receiving a geological structure data processing instruction for the geological structure data to be identified, it is necessary to first identify the geological structure data content of the geological structure data to be identified. For example, the geological structure data scene characteristics of the geological structure data to be identified can be identified, such as identifying the scene content of each geological structure data description content in the geological structure data to be identified, and determining the scene type, including key scenes, etc.

[0053] For example, the content of the geological structure data to be identified can also be identified, for example, feature points of the geological structure data description in the geological structure data to be identified can be compared to determine the type of the included content, such as geological matters and hidden geological information included in the geological structure data to be identified.

[0054] The contents included in all the geological structure data to be identified can be divided to obtain the final geological structure data content identification result, so as to subsequently determine the type of geological structure data based on the geological structure data content identification result, thereby determining the geological structure data processing method.

[0055] 203. In response to the geological structure data processing instruction, a geological structure data category directory corresponding to the geological structure data to be identified is obtained according to the geological structure data content identification result.

[0056] In response to the geological structure data processing indication, a geological structure data processing flow is started. First, the geological structure data category directory of the geological structure data needs to be determined according to the geological structure data content identification result. Specifically, the geological structure data sharing platform can count and identify the content of a large amount of photographed geological structure data, establish a category directory system for the geological structure data, that is, classify the geological structure data according to the content of the geological structure data, and add different category directories. For example, it can include a geological matter category directory, a local geological matter category directory, a hidden geological information category directory, a document category directory, a geological structure layer category directory, a key category directory, etc. Among them, the hidden geological information can be understood as the geological information that is not completely acquired or not acquired through the Beidou satellite. For example: the Beidou satellite of our country adopts the principle of ultrasonic imaging, but if there is a substance that absorbs sound waves underground, it cannot collect underground data, so there is hidden information. For the identification of hidden information, the existing technology is to identify the hole through artificial conversion, which is a common technical solution at present.

[0057] It can be understood that one geological structure data can correspond to several geological structure data category directories, and the geological structure data category directories corresponding to the to-be-identified geological structure data can be determined as the geological matter category directory and the geological structure layer category directory, that is, the number of geological structure data category directories corresponding to the to-be-identified geological structure data is not limited.

[0058] For example, a geological structure identification thread can be established based on the above geological structure data category directory system, which is used to output the geological structure data category directory of the to-be-identified geological structure data. For example, the geological structure identification thread can be trained through the following steps: first, the training sample is labeled, the training sample is the historical uploaded geological structure data, and the labeling content is the accurate geological structure data category directory of the training sample; then the labeled sample is loaded into the geological structure identification thread, and the geological structure identification thread obtains the output category directory of the labeled sample through the content of the labeled sample. Then, according to the loss of the output category directory and the labeled geological structure data category directory, the parameters of the geological structure identification thread are iteratively updated until the geological structure identification thread converges. In this way, the to-be-identified geological structure data can be loaded into the trained geological structure identification thread, and the geological structure data category directory of the to-be-identified geological structure data can be obtained according to the output of the geological structure identification thread.

[0059] A geological structure data processing strategy can be established for each geological structure data category directory, and a geological structure data processing method can be developed, and finally a geological structure data processing method specific to each geological structure data category directory can be generated.

[0060] Steps 204 and 205 are further limitations on the processing method.

[0061] 204. Determine the geological structure data processing mode according to the geological structure data category directory.

[0062] According to the geological structure data category directory of the to-be-identified geological structure data, its corresponding geological structure data processing mode is determined, and then the to-be-identified geological structure data is processed in turn according to a plurality of sub-modes in the geological structure data processing mode. The geological structure data category directory and the geological structure data processing mode correspond one-to-one, and each geological structure data processing mode includes a plurality of specific processing modes (i.e., processing sub-modes), which can be key hidden content processing modes or hidden content processing modes.

[0063] For example, the geological structure data processing mode corresponding to the local geological event category directory can include not less than two of data optimization processing, data recognition processing, or data cleaning processing.

[0064] For example, the geological structure data processing mode corresponding to the hidden geological information category directory can include differential analysis and data cleaning. When the geological structure data category directory corresponding to the to-be-identified geological structure data is the hidden geological information category directory, the "hidden geological information" in the to-be-identified geological structure data is determined, and then differential analysis and data cleaning can be automatically performed on it, finally achieving optimization and enhancement of all geological structure data.

[0065] For example, the geological structure layer category directory corresponding to the geological structure data processing mode can include not less than two of preprocessing, data recognition, or filtering processing. When the geological structure data category directory corresponding to the to-be-identified geological structure data is the geological structure layer category directory, not less than two of preprocessing, data recognition, or filtering processing can be performed on all geological structure factor description contents, finally achieving optimization and enhancement of all geological structure data.

[0066] For example, the key category directory corresponding to the geological structure data processing mode can include not less than two of preprocessing, data recognition, or weight value optimization. When the geological structure data category directory corresponding to the to-be-identified geological structure data is the key category directory, not less than two of preprocessing, data recognition, or weight value optimization can be performed on all geological structure factor description contents, finally achieving optimization and enhancement of all geological structure data.

[0067] It can be understood that a plurality of geological structure data processing combinations can be determined for each geological structure data category according to the processing mode, and an analysis geological structure data processing mode is established, and the specific processing mode is not limited. At the same time, when a certain to-be-identified geological structure data corresponds to a plurality of geological structure data category directories, the to-be-identified geological structure data can be sequentially processed according to the geological structure data processing mode corresponding to each geological structure data category directory, the processing effect can be superimposed, and finally the optimized enhanced geological structure data is generated.

[0068] 205、According to the geological structure data processing mode, the to-be-identified geological structure data is processed, and the target geological structure data is output.

[0069] When the geological structure data category of the to-be-identified geological structure data and the geological structure data processing mode corresponding to the geological structure data category are determined, the to-be-identified geological structure data is sequentially processed according to the processing mode in the geological structure data processing mode, and the target geological structure data is generated.

[0070] In this embodiment, when the user sends the geological structure data processing indication, first, the geological structure data processing indication is responded to, the geological structure data category of the to-be-identified geological structure data is obtained, and then the geological structure data processing mode corresponding to the geological structure data category is obtained. According to a plurality of processing sub-modes in the geological structure data processing mode, the to-be-identified geological structure data is processed, and finally the processed target geological structure data is output. Through the above mode, the "one-key optimization" function of the to-be-identified geological structure data can be realized, and only one geological structure data operation indication needs to be input to realize the multi-enhanced processing of the to-be-identified geological structure data, thereby simplifying the geological structure data processing operation and improving the accuracy of the geological structure data recognition, thereby providing a basis for subsequent construction and improving the construction efficiency.

[0071] Next, taking the execution subject as an example, the underground structure identification method based on Beidou satellite in the present application is introduced. Another underground structure identification method based on Beidou satellite provided by the present application can be understood. In the present application, one to-be-identified geological structure data corresponds to one geological structure data category; comprising:

[0072] 401、Obtain the to-be-identified geological structure data, and receive the geological structure data processing indication for the to-be-identified geological structure data.

[0073] 402、The to-be-identified geological structure data is subjected to geological structure data content identification, and the geological structure data content identification result is obtained.

[0074] 403. In response to the geological structure data processing instruction, periodically intercept a plurality of geological structure factors in the geological structure data to be identified according to a preset frequency.

[0075] When a geological structure data processing instruction is received, it is necessary to respond to the geological structure data processing instruction and start the geological structure data processing process for the geological structure data to be identified. First, several geological structure factors in the geological structure data to be identified can be periodically intercepted, and the main scenarios of all geological structure data can be determined based on the content of these several geological structure factors, so as to facilitate the subsequent reasonable planning of processing methods. It is understandable that several key items in the geological structure data can also be determined according to a certain strategy, and the application scenarios of geological structure data can be determined by identifying the content of several key items, such as determining several key items based on the number of items contained in the description of geological structure data, etc. The specific form is not limited.

[0076] 404. Determine several content items in each geological structure factor based on the geological structure data content identification result.

[0077] After determining a number of geological structural factors, it is necessary to sequentially identify each of the geological structural factors. It is understood that the content of the geological structural factors is used to determine the processing strategy for the geological structural data to be identified. Therefore, each geological structural factor can be first classified based on the geological structural data content identification results to determine the geological structural data category directory corresponding to each geological structural factor. Then, a number of geological structural data category directories corresponding to the geological structural factors are identified, and the geological structural data category directory that best represents the geological structural data content is selected as the geological structural data category directory for all the geological structural data to be identified. In this way, the determined processing method can be used to more intelligently process the geological structural data to be identified, thereby improving the effect of geological structural data processing.

[0078] For example, the geological structure data category catalog corresponding to each geological structure factor may be determined by the geological structure data scene characteristics corresponding to each geological structure factor.

[0079] For example, the catalog of geological structure data types corresponding to each geological structure factor can be determined by the geological structure data item characteristics corresponding to each geological structure factor.

[0080] 405. Determine the catalog of geological structure data types corresponding to each geological structure factor based on the weight values ​​of several content items.

[0081] As can be seen from the above examples, by identifying the content in each geological structure factor, the most representative features are sought to determine the geological structure data category directory of the geological structure factor, so different strategies can be developed to determine the geological structure data category directory of a certain geological structure factor according to user needs, which is not limited in detail.

[0082] 406、According to the geological structure data category directories of the several geological structure factors, determine the geological structure data category directory corresponding to the to-be-identified geological structure data.

[0083] After determining the geological structure data category directory corresponding to each geological structure factor, statistical identification needs to be performed on the geological structure data category directories of the several geological structure factors to obtain the geological structure data category directory of the final to-be-identified geological structure data. For example, the geological structure data category directory with the highest frequency in the several geological structure data category directories can be determined as the geological structure data category directory corresponding to the to-be-identified geological structure data. For example, 10 geological structure factors of to-be-identified geological structure data are obtained, among which, the geological structure data category directories corresponding to 5 geological structure factors are geological event category directories, the geological structure data category directories corresponding to 3 geological structure factors are animal category directories, and the directories corresponding to 2 geological structure factors are hidden geological information category directories. Then, the geological structure data category directory of the to-be-identified geological structure data can be determined as the geological event category directory.

[0084] For example, the geological structure data category directory of the to-be-identified geological structure data can also be determined. Specifically, the geological structure data category directories corresponding to the several geological structure factors are determined respectively, and then the geological structure data category directory with the highest importance is selected as the geological structure data category directory of all to-be-identified geological structure data.

[0085] 407、According to the geological structure data category directory corresponding to the to-be-identified geological structure data, determine the geological structure data processing mode.

[0086] After determining the geological structure data category directory corresponding to the to-be-identified geological structure data, the to-be-identified geological structure data can be processed according to the geological structure data processing mode corresponding to the geological structure data category directory.

[0087] 408、According to the geological structure data processing mode, process the to-be-identified geological structure data, and output target geological structure data.

[0088] In the embodiment, several geological structure factors in the geological structure data to be identified can be intercepted, and then a geological structure data category directory corresponding to each geological structure factor is determined according to the content included in each geological structure factor, several geological structure data category directories corresponding to the several geological structure factors are counted, a geological structure data category directory best reflecting the characteristics of the geological structure data is selected as the geological structure data category directory of all the geological structure data to be identified, and finally the geological structure data to be identified is processed in multiple ways according to the geological structure data processing mode corresponding to the geological structure data category directory of the geological structure data to be identified, and the target geological structure data after processing is output. When the geological structure data to be identified includes only one geological structure data category directory, the geological structure data processing process can be greatly simplified, the mode color of the geological structure factors in the geological structure data is kept uniform, the editing and processing time of the geological structure data is reduced, and the processing rate of the geological structure data is improved.

[0089] Another underground structure identification method based on Beidou satellite provided by the embodiment of the application is that the geological structure data to be identified corresponds to several geological structure data category directories; taking an execution subject as an example, the method comprises the following steps.

[0090] 501. Obtain the geological structure data to be identified, and receive a geological structure data processing instruction for the geological structure data to be identified.

[0091] 502. Perform geological structure data content identification on the geological structure data to be identified, and obtain a geological structure data content identification result.

[0092] 503. In response to the geological structure data processing instruction, obtain not less than one key geological structure factor in the geological structure data to be identified.

[0093] When the geological structure data processing instruction is received, the geological structure data processing flow is started in response to the geological structure data processing instruction. First, not less than one key geological structure factor of the geological structure data to be identified is determined according to a related strategy, and the content included in the key geological structure factor is identified, for example, the key geological structure factor is determined according to the number of items contained in the geological structure data description content, and the specific form is not limited.

[0094] 504. According to the geological structure data content identification result of the key geological structure factor, one important geological structure data category directory and not less than one secondary geological structure data category directory corresponding to the geological structure data to be identified are determined.

[0095] When the key geological structure factors of the to-be-identified geological structure data are determined, a number of geological structure data category directories can be determined according to the corresponding geological structure data content identification results of the key geological structure factors. For example, the geological structure data category directory corresponding to each key geological structure factor can be determined according to the geological structure data scene characteristics corresponding to each key geological structure factor, and then the important geological structure data category directory and the secondary geological structure data category directory can be determined according to the geological structure data category directory corresponding to each key geological structure factor. For example, by identifying the geological structure data scene characteristics of the key geological structure data, it is found that the scene corresponding to the key geological structure factor includes a key scene and a hidden scene, and if the number of key geological structure factors with outdoor scene characteristics is greater than the number of key scenes, the hidden scene directory can be determined as the main geological structure data directory, and the key scene directory can be determined as the secondary geological structure data directory.

[0096] For example, the item features included in the key geological structure factors can also be identified, and the item features that can better represent the geological structure data can be intelligently selected, and the important geological structure data category directory of the to-be-identified geological structure data can be determined according to the item features. Then, other content items are identified to determine the secondary geological structure data category directory. For example, the main content items and the secondary content items can be determined by identifying the number of influence factors occupied by all content items in the key geological structure factors, and the important geological structure data category directory can be determined according to the main content items, and the secondary geological structure data category directory can be determined according to the secondary content items. Then, according to the main content items, i.e., animal images, the important geological structure data category directory of the to-be-identified geological structure data is determined as the animal category directory, and the secondary geological structure data category directory of the to-be-identified geological structure data is determined as the geological item category directory and the hidden geological information category directory.

[0097] For example, the main content items and the secondary content items can be determined by the importance weight of all content items in the key geological structure factors, and the important geological structure data category directory can be determined according to the main content items, and the secondary geological structure data category directory can be determined according to the secondary content items. Then, according to the main content items, i.e., geological items, the important geological structure data category directory of the to-be-identified geological structure data is determined as the geological item category directory, and the secondary geological structure data category directory of the to-be-identified geological structure data is determined as the category directory and the hidden geological information category directory.

[0098] It can be understood that different strategies can be developed according to requirements to determine the important geological structure data category directory and the secondary geological structure data category directory of the to-be-identified geological structure data, and the number of secondary geological structure data category directories can be freely determined, and specific limitations are not made.

[0099] 505、determining a main geological structure data processing mode according to the important geological structure data category directory and at least a secondary geological structure data processing mode according to the secondary geological structure data category directory.

[0100] When the geological structure data category directory corresponding to the to-be-identified geological structure data is determined, the to-be-identified geological structure data can be processed according to the geological structure data processing mode corresponding to the geological structure data category directory.

[0101] 506、processing the to-be-identified geological structure data by using the main geological structure data processing mode and the secondary geological structure data processing mode.

[0102] It can be understood that the important geological structure data category directory is the geological structure data category directory that can best represent the geological structure data category mode. For example, the main geological structure data processing mode corresponding to the important geological structure data category directory can process the to-be-identified geological structure data in all geological structure data description contents. Specifically, all content items of geological structure factors can be processed. For example, a to-be-identified geological structure data is a geological event dance geological structure data. Then, it can be determined that the important geological structure data category directory corresponding to the geological structure data is a geological structure layer category directory, and the secondary geological structure data category directory is a geological event category directory. When the geological structure data is processed, the brightness and difference analysis of all geological structure factor description contents can be performed according to the geological structure data processing mode corresponding to the geological structure layer category directory, so as to achieve the effect of enhancing and optimizing the to-be-identified geological structure data.

[0103] It can be understood that the secondary geological structure data processing mode corresponding to the secondary geological structure data category directory can process local content items of the geological structure data. For example, in the above example, the main geological structure data category of the to-be-identified geological structure data is the geological structure layer category directory, and the secondary geological structure data category is the geological event category directory. Then, the difference analysis of all geological structure factor description contents can be performed according to the geological structure data processing mode corresponding to the geological structure layer category directory, and the geological events in the geological structure factors can be deleted, debugged, or processed according to the geological structure data processing mode corresponding to the geological event category directory, so as to finally generate target geological structure data.

[0104] For example, when a plurality of geological structure data category directories are determined according to the scene characteristics of the geological structure data, the scene characteristics of the geological structure data corresponding to each geological structure factor can be identified, the to-be-identified geological structure data can be divided into a plurality of segments, the scene information corresponding to each segment is the same, and then the to-be-identified geological structure data can be processed according to the plurality of geological structure data processing modes.

[0105] For example, when a number of geological structure data category directories are determined according to the characteristics of the matters, different categories of matters in the to-be-identified geological structure data can be determined. For example, a geological structure data includes geological matters and hidden geological information. The geological matters can be processed according to the geological structure data processing mode corresponding to the geological matter category directory, the matters can be processed according to the geological structure data processing mode corresponding to the category directory, and the hidden geological information matters can be processed according to the geological structure data processing mode corresponding to the hidden geological information category directory.

[0106] In the embodiment, the key geological structure factors in the to-be-identified geological structure data can be determined first. Then, the important geological structure data category directory and the secondary geological structure data category directory of the to-be-identified geological structure data can be determined by identifying all the content matters in the key geological structure factors. Finally, the overall description content of the to-be-identified geological structure data can be processed according to the geological structure data processing mode corresponding to the important geological structure data category directory of the to-be-identified geological structure data, and the specific content matters in the to-be-identified geological structure data can be processed using the secondary geological structure data processing mode. Finally, the processed target geological structure data is output. In the above manner, each to-be-identified geological structure data corresponds to a number of directories. The main geological structure data directory can determine the global processing mode of the geological structure data processing, and the secondary geological structure data directory is used for analyzing and processing specific content matters in the geological structure factors. In this way, the geological structure data processing mode combination can be more abundant, the geological structure data processing effect can be better, and the geological structure data processing quality can be improved.

[0107] On the basis of the above, a Beidou satellite-based underground structure identification device is provided, which comprises:

[0108] An indication obtaining module is configured to obtain a geological structure data processing indication for to-be-identified geological structure data.

[0109] A result identification module is configured to identify the content of the to-be-identified geological structure data to obtain a geological structure data content identification result.

[0110] a catalog obtaining module, configured to, in response to the geologic structure data processing instruction, obtain X geologic structure data catalog corresponding to the to-be-identified geologic structure data through the geologic structure data content recognition result, wherein X is an integer greater than 1; the X geologic structure data catalog includes one important geologic structure data catalog and no less than one secondary geologic structure data catalog; the important geologic structure data catalog is used to determine a global processing mode of geologic structure data processing, and the secondary geologic structure data catalog is used to determine a saliency processing mode of local content matters of geologic structure factors.

[0111] On the basis of the above, a Beidou satellite-based underground structure identification system is shown, which includes a processor and a memory in communication with each other, the processor is used to read the computer program from the memory and execute to realize the above method.

[0112] On the basis of the above, a computer readable storage medium is also provided, and the computer program stored thereon realizes the above method when running.

[0113] In summary, based on the above scheme, when receiving a geologic structure data processing instruction, first respond to the geologic structure data processing instruction to obtain the geologic structure data catalog of the to-be-identified geologic structure data, then obtain the geologic structure data processing mode corresponding to the geologic structure data catalog, then perform multiple processing on the to-be-identified geologic structure data according to several processing sub-modes in the geologic structure data processing mode, and finally output the processed target geologic structure data. Through the above method, the intelligent identification function of the to-be-identified geologic structure data can be realized, and only one geologic structure data operation instruction needs to be input to realize multiple enhanced processing of the to-be-identified geologic structure data, thereby simplifying the geologic structure data processing operation and improving the accuracy of geologic structure data identification, thereby providing a basis guarantee for subsequent construction and improving construction efficiency.

[0114] It should be appreciated that the systems and modules thereof described above can be implemented in a number of ways. For example, in some embodiments, the systems and modules thereof can be implemented in hardware, software, or a combination of both. The hardware portion can be implemented using specialized logic; the software portion can be stored in memory and executed by a suitable instruction execution system, such as a microprocessor or dedicated design hardware. Those skilled in the art will appreciate that the methods and systems described above can be implemented using computer-executable instructions and / or in processor control code, for example, provided on a carrier medium such as a disk, CD or DVD-ROM, programmable memory such as read-only memory (firmware), or data carrier such as an optical or electrical signal carrier. The systems and modules thereof of the present application can be implemented not only in hardware circuitry such as very large scale integrated circuits or gate arrays, semiconductors such as logic chips, transistors, or programmable hardware devices such as field programmable gate arrays, programmable logic devices, etc., but also in software, for example, executed by various types of processors, and in a combination of the above (e.g., firmware).

[0115] It should be noted that the beneficial effects produced by different embodiments can be different, and in different embodiments, the beneficial effects that can be produced can be any one or a combination of the above, or any other beneficial effects that can be obtained.

Claims

1. A method for identifying underground structures based on BeiDou satellites, characterized in that: The method comprises: Obtaining geological structure data processing instructions for geological structure data to be identified; Performing geological structure data content recognition on the geological structure data to be recognized to obtain a geological structure data content recognition result; In response to the geological structure data processing instruction, obtaining X geological structure data category directories corresponding to the geological structure data to be identified based on the geological structure data content identification result, where X is an integer greater than 1; the X geological structure data category directories include one important geological structure data category directory and at least one minor geological structure data category directory; the important geological structure data category directory is used to determine a global processing method for geological structure data processing, and the minor geological structure data category directory is used to determine a significance processing method for local content matters of geological structure factors; Determine the geological structure data processing method based on the geological structure data type catalog; Processing the geological structure data to be identified according to the geological structure data processing method, and outputting target geological structure data; The step of obtaining the X geological structure data category directories corresponding to the geological structure data to be identified through the geological structure data content identification result includes: Loading the geological structure data to be identified into the geological structure identification thread; The X geological structure data category directories corresponding to the geological structure data to be identified are determined through the output of the geological structure identification thread.

2. The method according to claim 1, characterized in that The step of performing geological structure data content identification on the geological structure data to be identified to obtain a geological structure data content identification result includes: Obtaining at least one key geological structure factor in the geological structure data to be identified; Determine all the details of at least one key geological structural factor; Determine one main content item and at least one secondary content item among all the content items based on the number of impact factors of all the content items; The method of obtaining the X geological structure data category directories corresponding to the geological structure data to be identified through the geological structure data content identification result includes: The geological structure data category directory corresponding to the main content item is determined as the important geological structure data category directory, and the geological structure data category directory corresponding to at least one secondary content item is determined as the at least one secondary geological structure data category directory.

3. The method according to claim 1, characterized in that The step of performing geological structure data content identification on the geological structure data to be identified to obtain a geological structure data content identification result includes: Obtaining at least one key geological structure factor in the geological structure data to be identified; Determine all the details of at least one key geological structural factor; Determine, by using the importance weights corresponding to all the content items, the content item with the highest importance among all the content items as the primary content item; and determine, by using the importance weights, at least one secondary content item; The method of obtaining the X geological structure data category directories corresponding to the geological structure data to be identified through the geological structure data content identification result includes: The geological structure data type corresponding to the main content item is determined as the important geological structure data type directory, and the geological structure data type directory corresponding to at least one secondary content item is determined as the at least one secondary geological structure data type directory.

4. The method according to claim 1, wherein The X geological structure data category directories include geological event category directories, and the geological structure data processing methods corresponding to the geological event category directories include at least two of cleaning processing, analysis processing, or data optimization; The X geological structure data processing methods are used to process the geological structure data to be identified, including: Determining the geological matter content items in the geological structure data to be identified through the geological matter category catalog; The geological matters are subjected to at least two of the following processes: cleaning, analysis or data optimization.

5. The method according to claim 1, wherein The X geological structure data category directories include local geological event category directories, and the geological structure data processing methods corresponding to the local geological event category directories include at least two of data optimization, data identification, or data cleaning; The X geological structure data processing methods are used to process the geological structure data to be identified, including: Determining rock content items in the to-be-identified geological structure data through the local geological item category catalog; The rock content items are subjected to at least two of data optimization processing, data identification processing or data cleaning processing.

6. The method according to claim 1, characterized in that The X geological structure data category directories include a geological structure layer category directory, and the geological structure data processing methods corresponding to the geological structure layer category directory include at least two of preprocessing, data recognition or filtering processing; The X geological structure data processing methods are used to process the geological structure data to be identified, including: Determining several geological layer structural factors in the geological structure data to be identified through the geological structure layer type catalog; The plurality of geological layer structural factors are subjected to at least two of pre-processing, data identification processing or filtering processing.

7. The method according to claim 1, characterized in that The X geological structure data category directories include a key category directory, and the geological structure data processing methods corresponding to the key category directory include at least two of preprocessing, data recognition, or weight value optimization; The X geological structure data processing methods are used to process the geological structure data to be identified, including: Determining a plurality of key geological structure factors in the geological structure data to be identified through the key category catalog; Performing at least two of pre-processing, data identification, or weight optimization on the several key geological structural factors; The X geological structure data category directories include a hidden geological information category directory, and the geological structure data processing methods corresponding to the hidden geological information category directory include differential analysis and data cleaning; and processing the geological structure data to be identified using the X geological structure data processing methods includes: Determining the hidden geological information content items in the geological structure data to be identified through the hidden geological information category catalog; The hidden geological information content is subjected to differentiated analysis and data cleaning.

8. The method according to claim 1, characterized in that Determining X geological structure data processing methods based on the X geological structure data category directories specifically includes: determining a primary geological structure data processing method based on the important geological structure data category directory; determining at least one secondary geological structure data processing method based on the at least one secondary geological structure data category directory; wherein the geological structure data processing methods correspond to the geological structure data category directories, each geological structure data processing method includes at least two processing sub-methods, wherein each processing sub-method includes at least one of a key hidden content processing method and a hidden content processing method; The X geological structure data processing methods are used to process the geological structure data to be identified to output target geological structure data, specifically including: using the primary geological structure data processing method to process all content items of geological structure factors in the geological structure data to be identified; using the secondary geological structure data processing method to analyze and process local content items of geological structure factors in the geological structure data to be identified; and obtaining the secondary geological structure data type directory based on the local content items.

9. A BeiDou satellite-based underground structure identification system, characterized in that: The method comprises a processor and a memory communicating with each other, wherein the processor is used to read a computer program from the memory and execute the computer program to implement the method according to any one of claims 1 to 8.

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