A method and system for collecting and utilizing geological exploration results data

By combining environmental warning, data comparison and update and supplement terminals, the problem of severe weather and complex terrain affecting data collection in geological exploration has been solved, seamless integration and real-time updating of multi-source data have been achieved, and the accuracy and timeliness of geological exploration data utilization have been improved.

CN120104976BActive Publication Date: 2025-09-23HENAN NO 4 GEOLOGICAL SURVEY INST CO LTD
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Patent Information

Application Number
CN202510234411.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-09-23
Estimated Expiration
2045-02-28

AI Technical Summary

Technical Problem

During the data collection process of geological exploration results, severe weather and complex terrain affect the integrity of data collection, multi-source data management is chaotic, and data updates are not timely, resulting in poor timeliness.

Method used

The environmental early warning terminal is used to judge the impact of environment and terrain in real time, the data comparison terminal realizes seamless integration of multi-source data, and the update and supplement terminal ensures the timeliness of data. Through the combination of environmental early warning module, data comparison module and update and supplement module, the collection strategy, comparison data and update geological conditions are adjusted in real time.

Benefits of technology

It improves the accuracy and efficiency of geological exploration data collection, ensures real-time updating and management of data, and reflects the latest geological conditions in a timely manner.

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Abstract

The present invention discloses a method and system for collecting and utilizing geological exploration results data, which relates to the field of geological exploration technology and includes an environmental warning terminal, a data comparison terminal, and an update and supplement terminal. The environmental warning terminal is used to determine in real time whether current environmental parameters affect data collection stability and adjust the geological exploration data collection strategy in real time. The data comparison terminal is used to predict geological exploration results by comparing multiple channels and multiple features corresponding to multi-source data in real time to determine whether they are repeated. The update and supplement terminal is used to determine in real time whether the geological exploration data is timely and promptly reflect the latest geological conditions. The method and system for collecting and utilizing geological exploration results data can determine in real time whether geological exploration affects the normal progress of data collection, avoid the inability to collect data in some areas or incomplete collection, avoid confusion and loss during geological exploration data collection, ensure the timeliness of data collection and utilization, and promptly reflect the latest geological conditions.
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Description

Technical Field

[0001] The present invention relates to the field of geological exploration technology, and in particular to a method and system for collecting and utilizing geological exploration results data. Background Art

[0002] The collection and utilization of geological exploration data is a systematic project involving multiple links and aspects. Geologists conduct field observations, measurements, and records of geological phenomena, stratigraphic structures, rock minerals, and more. This includes using tools such as geological compasses and GPS locators to determine geographic location and orientation, collecting rock specimens with geological hammers and magnifying glasses, and measuring the thickness and occurrence of strata. Geophysical methods such as seismic, gravity, magnetic, and electrical methods are used to obtain information on underground geological structures and structures. For example, in seismic exploration, seismic waves are artificially excited and reflected wave signals are received. After processing and interpretation, information on the depth, morphology, and rock properties of the underground strata is obtained.

[0003] At present, there are some deficiencies in the collection and utilization of geological exploration results data: 1. When conducting geological exploration in the field, severe weather conditions such as heavy rain or strong winds, as well as complex terrain such as high mountains or river canyons, may affect the normal progress of data collection, resulting in data in some areas being unable to be collected or incompletely collected, affecting the accuracy of geological exploration results data collection and utilization; 2. Existing technologies lack a platform that can achieve seamless integration and management of multi-source data, resulting in confusion and loss of data during storage, transmission and processing, affecting the efficiency of data utilization; 3. With the continuous progress of exploration work and the continuous generation of new data, the original data needs to be updated and supplemented in a timely manner, but in actual work, data updates are often not timely, resulting in poor timeliness of the data, which cannot reflect the latest geological conditions, affecting the collection and utilization of geological exploration results data.

[0004] Therefore, a method and system for collecting and utilizing geological exploration results data is proposed to solve the above problems. Summary of the Invention

[0005] The main purpose of the present invention is to provide a method and system for collecting and utilizing geological exploration results data to solve the problems raised in the above background.

[0006] To achieve the above-mentioned purpose, the technical solution adopted by the present invention is: a method and system for collecting and utilizing geological exploration results data, including an environmental early warning terminal, a data comparison terminal and an update and supplement terminal;

[0007] The environmental warning terminal is used to set the scope of the field geological exploration area and divide the corresponding area into multiple areas, collect environmental parameters in real time and combine them with the corresponding topography and landforms, judge in real time whether the current environmental parameters affect the stability of data collection, and adjust the geological exploration data collection strategy in real time according to the standard environmental parameter model of geological exploration;

[0008] The data comparison terminal is used to collect multi-source data in the geological exploration process in real time after determining that the data collection is abnormal, and set the multi-channels and multi-features corresponding to the multi-source data, and compare the multi-channels and multi-features corresponding to the multi-source data in real time to see if they are repeated, predict the geological exploration results, and realize seamless integration and management of multi-source data;

[0009] The updating and supplementing terminal is used to receive multi-channel and multi-feature geological exploration data in real time, and to judge whether the geological exploration data is timely in real time. In the judgment process, the geological exploration prediction results are combined to reflect the latest geological conditions in a timely manner.

[0010] The environmental early warning terminal includes a geological acquisition module, a positioning acquisition module and an environmental early warning module;

[0011] The geological acquisition module includes a region setting unit and a multi-region acquisition unit;

[0012] The region setting unit is used to set the scope of the geological exploration data collection and utilization area, and divide the scope of the geological exploration data collection and utilization area into multiple areas, each area corresponding to a landform;

[0013] The multi-region acquisition unit is used to collect geological exploration data in multiple regions in real time through a data acquisition instrument, and arrange the geological exploration data in multiple regions in sequence using Arabic numerals, with the sequence numbers being arranged in ascending order.

[0014] The positioning acquisition module includes an environment acquisition unit and a topography unit;

[0015] The environmental acquisition unit is used to detect geological exploration environmental parameters within the corresponding area in real time through environmental monitoring equipment, which includes earthquake monitoring equipment, landslide monitoring equipment, debris flow monitoring equipment, ground subsidence monitoring equipment, volcanic eruption monitoring equipment, temperature sensors, humidity sensors and light sensors;

[0016] The topography unit is used to detect the topography within the corresponding area in real time through geological exploration equipment, which includes a level, theodolite, rangefinder, seismograph, gravimeter, magnetometer, total station and three-dimensional laser scanner.

[0017] The environmental warning module includes a data impact unit, an impact warning unit, an exploration strategy unit and a strategy adjustment unit;

[0018] The data impact unit is used to combine environmental parameters and topography to calculate the impact of the environment and topography on geological exploration in real time through a calculation formula. The calculation formula is as follows:

[0019] ;

[0020] in, and are the data of environmental parameters and topographic parameters, and are the mean values ​​of environmental parameters and topographic parameters, Linear parameters representing the impact of environment and topography on geological exploration;

[0021] The impact warning unit is used to set the standard value of the impact of environment and topography on geological exploration. Calculate the difference with the standard value. If the difference is less than or equal to 1, it means that the environment and topography have no impact on geological exploration. If the difference is greater than 1, it means that the environment and topography have an impact on geological exploration. The system will be reported and a voice alarm will be issued through the voice alarm.

[0022] The exploration strategy unit is used to adjust the standard environmental parameter model of geological exploration in real time according to the influencing linear parameters, and the standard environmental parameter model is determined according to the geological exploration conditions corresponding to the topography;

[0023] The strategy adjustment unit is used to determine the environment adjustment parameters according to the geological exploration conditions corresponding to the terrain and landforms. The environment adjustment parameters set different geological exploration environment requirements for different terrain and landforms.

[0024] The data comparison terminal includes a multi-source data module, a multi-source correspondence module and a duplicate comparison module;

[0025] The multi-source data module includes a multi-source acquisition unit and an information exchange unit;

[0026] The multi-source acquisition unit is used to collect multi-source data in the geological exploration process in real time, the multi-source data including underground structure detection by seismic waves, underground electrical structure detection by electromagnetic waves, surface images within the corresponding area acquired by satellites, physical property data of underground rock formations acquired by logging tools, and geological and geophysical information of exploration activities;

[0027] The information intercommunication unit is used to realize the networking and intercommunication of multi-source data through the Internet of Things.

[0028] The multi-source corresponding module includes a channel corresponding unit and a feature corresponding unit;

[0029] The channel corresponding unit is used to arrange the multi-source data into multi-channel serial numbers using Arabic numerals and arrange them in ascending order;

[0030] The feature corresponding unit is used to arrange the multi-source data into multi-feature serial numbers using Arabic numerals, and arrange them in ascending order.

[0031] The repeated comparison module includes a repeated comparison unit and a data early warning unit;

[0032] The duplicate comparison unit is used to compare in real time whether the multi-channels and multi-features corresponding to the multi-source data are duplicated. The comparison method is as follows:

[0033] Calculate the duplication degree of corresponding multi-channel data and multi-feature data in multi-source data :

[0034] ;

[0035] in, and It is The first channel feature vectors, No. The weight of each channel, Is a duplicate detection function, usually returns 1 (duplicate) or 0 (no duplicate);

[0036] Set the standard threshold, if If the value is greater than or equal to the standard threshold, it means the data is repeated. If it is less than the standard threshold, it means that the data is not repeated;

[0037] The data early warning unit is used to send a voice alarm signal to the reporting system when data is repeated, and delete and crush the repeated data through the data crushing function.

[0038] The update and supplement terminal includes a data receiving module, a data judgment module, a geological prediction module and a geological update module;

[0039] The data receiving module is used to receive multi-channel and multi-feature geological exploration data in real time through a data receiver;

[0040] The data judgment module is used to collect geological exploration data within the corresponding area in real time through a data acquisition instrument, and calculate the time range difference of the data reflecting the geological conditions in real time according to the display time of the geological exploration data. If the time range difference is less than 2 hours, it means that the data is updated in time and the latest geological conditions are obtained. If the time range is greater than or equal to 2 hours, it means that the data is not updated in time and the geological conditions are not obtained.

[0041] The geological prediction module is used to collect geological exploration data for the corresponding environmental parameters within the regional scope through GIS technology, and receive data update judgment results in real time, set standard environmental parameters for geological exploration, and predict geological exploration results. The method is as follows:

[0042] The difference between the environmental parameters in the corresponding area and the standard environmental parameters is calculated. If the difference is equal to ±3, the environmental parameters are judged to be close to the safe value. If the difference is greater than 3 or less than -3, the environmental parameters are judged to have exceeded the safe value, and an environmental warning is issued. One day is considered as one cycle. The environmental parameters of the geological exploration in the corresponding area are predicted based on the environmental parameters of three cycles. If the average values ​​of the environmental parameters of the three cycles all exceed the standard environmental parameters, it is judged that the geological exploration data collection execution in the corresponding area is abnormal.

[0043] The geological update module includes a geological update unit and an update data evaluation unit;

[0044] The geological update unit is used to update the geological exploration data in real time through the geological exploration prediction results, and record them in real time through the data recorder;

[0045] The updated data evaluation unit is used to evaluate the geological exploration data collection and utilization results in real time based on the geological exploration data collection and execution prediction results. If the geological exploration data collection is executed normally, the evaluation result is good; if the geological exploration data collection is executed abnormally, the evaluation result is poor.

[0046] A method for collecting and utilizing geological exploration results data comprises the following steps:

[0047] Step 1: Configure the IP address information of the geological exploration remote control area server;

[0048] Step 2: Enter the environmental warning terminal, collect field geological exploration data in real time, and collect environmental parameters in real time in combination with the corresponding topography and landforms to determine whether the current environmental parameters affect the stability of data collection. If abnormal, the reporting system will issue a voice alarm and combine it with the standard environmental parameter model of geological exploration;

[0049] Step 3: Enter the data comparison terminal, determine if the data collection is abnormal, collect multi-source data in the geological exploration process in real time, set the multi-channels and multi-features corresponding to the multi-source data, and compare the multi-channels and multi-features corresponding to the multi-source data in real time to see if there are any duplications;

[0050] Step 4: Enter the update and supplement terminal, receive multi-channel and multi-feature geological exploration data in real time, and judge in real time whether the geological exploration data is timely and whether it is the latest geological conditions, so as to ensure the effectiveness and timeliness of geological exploration data collection and utilization.

[0051] The present invention has the following beneficial effects:

[0052] 1. In the present invention, by setting up an environmental early warning terminal, when collecting and utilizing geological exploration results data, it is possible to judge in real time whether the current environmental parameters affect the stability of data collection. This allows for real-time prediction of severe weather such as rainstorms or strong winds, as well as complex terrain such as high mountains or river canyons, by combining the environmental parameters and topography during field geological exploration. The combination of the two can be used to judge in real time whether geological exploration will affect the normal progress of data collection, thereby avoiding the inability to collect data in some areas or incomplete collection, and increasing the accuracy of geological exploration results data collection and utilization.

[0053] 2. In the present invention, by setting up a data comparison terminal, when collecting and utilizing geological exploration results data, multi-source data in the geological exploration process is collected in real time, and multi-channels and multi-features corresponding to the multi-source data are compared in real time to see if there are duplications, so that multi-source data can be seamlessly integrated and managed during geological exploration. Through real-time comparison of multi-channels and multi-features, confusion and loss during geological exploration data collection can be avoided, further improving the utilization efficiency of geological exploration data.

[0054] 3. In the present invention, by setting up an update and supplement terminal, when collecting and utilizing geological exploration results data, it is possible to judge in real time whether the geological exploration data is timely and whether it is the latest geological situation. In the judgment process, the geological exploration prediction results are combined, so that when collecting and utilizing geological exploration data, real-time updating and real-time judgment of data can be guaranteed, the timeliness of data collection and utilization can be guaranteed, the latest geological situation can be reflected in a timely manner, and the collection and utilization effect of geological exploration results data can be further improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0055] Figure 1 This is a schematic diagram of the system architecture of a method and system for collecting and utilizing geological exploration results data according to the present invention;

[0056] Figure 2 This is a schematic diagram of the architecture of an environmental warning terminal of a method and system for collecting and utilizing geological exploration results data according to the present invention;

[0057] Figure 3 This is a schematic diagram of the architecture of a data comparison end of a method and system for collecting and utilizing geological exploration results data according to the present invention;

[0058] Figure 4 This is a schematic diagram of the architecture of an update and supplement end of a method and system for collecting and utilizing geological exploration results data according to the present invention. DETAILED DESCRIPTION

[0059] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0060] Example 1

[0061] Please refer to Figure 1-Figure 2 Shown: A method and system for collecting and utilizing geological exploration results data, including an environmental early warning terminal, a data comparison terminal, and an update and supplement terminal;

[0062] The environmental warning terminal is used to set the scope of the field geological exploration area and divide the corresponding area into multiple areas. It collects environmental parameters in real time and combines them with the corresponding topography to determine whether the current environmental parameters affect the stability of data collection. It also adjusts the geological exploration data collection strategy in real time according to the standard environmental parameter model of geological exploration.

[0063] The data comparison terminal is used to collect multi-source data in the geological exploration process in real time after determining data collection anomalies, set the multi-channels and multi-features corresponding to the multi-source data, and compare the multi-channels and multi-features corresponding to the multi-source data in real time to see if they are repeated, predict geological exploration results, and achieve seamless integration and management of multi-source data;

[0064] The update and supplement terminal is used to receive multi-channel and multi-feature geological exploration data in real time, and to judge whether the geological exploration data is timely in real time. In the judgment process, the geological exploration prediction results are combined to reflect the latest geological conditions in a timely manner.

[0065] The environmental early warning terminal includes a geological acquisition module, a positioning acquisition module, and an environmental early warning module;

[0066] The geological acquisition module includes a region setting unit and a multi-region acquisition unit;

[0067] The area setting unit is used to set the area range for collecting and utilizing geological exploration data, and divide the area range for collecting and utilizing geological exploration data into multiple areas, each area corresponding to a landform;

[0068] The multi-region acquisition unit is used to collect geological exploration data in multiple regions in real time through a data acquisition instrument, and arrange the geological exploration data of multiple regions in sequence using Arabic numerals, and the sequence arrangement is arranged in ascending order.

[0069] The positioning acquisition module includes an environment acquisition unit and a terrain acquisition unit;

[0070] The environmental acquisition unit is used to detect geological exploration environmental parameters in the corresponding area in real time through environmental monitoring equipment. The environmental monitoring equipment includes earthquake monitoring equipment, landslide monitoring equipment, debris flow monitoring equipment, ground subsidence monitoring equipment, volcanic eruption monitoring equipment, temperature sensors, humidity sensors and light sensors;

[0071] The topography unit is used to detect the topography within the corresponding area in real time through geological exploration equipment. The geological exploration equipment includes levels, theodolites, rangefinders, seismographs, gravimeters, magnetometers, total stations and 3D laser scanners.

[0072] The environmental early warning module includes data impact unit, impact early warning unit, exploration strategy unit and strategy adjustment unit;

[0073] The data impact unit is used to combine environmental parameters with topography and geomorphology, and calculate the impact of environment and topography on geological exploration in real time through a calculation formula. The calculation formula is as follows:

[0074] ;

[0075] in, and are the data of environmental parameters and topographic parameters, and are the mean values ​​of environmental parameters and topographic parameters, Linear parameters representing the impact of environment and topography on geological exploration;

[0076] The impact warning unit is used to set the standard value of the impact of environment and topography on geological exploration. Calculate the difference with the standard value. If the difference is less than or equal to 1, it means that the environment and topography have no impact on geological exploration. If the difference is greater than 1, it means that the environment and topography have an impact on geological exploration. The system will be reported and a voice alarm will be issued through the voice alarm.

[0077] The exploration strategy unit is used to adjust the standard environmental parameter model of geological exploration in real time according to the influencing linear parameters. The standard environmental parameter model is determined according to the geological exploration conditions corresponding to the topography;

[0078] The strategy adjustment unit is used to determine the environmental adjustment parameters according to the geological exploration conditions corresponding to the terrain and landforms. The environmental adjustment parameters set different geological exploration environment requirements for different terrain and landforms. According to the standard environmental parameter model of geological exploration, the geological exploration data collection strategy is adjusted in real time. When conducting geological exploration in the field, the environmental parameters and terrain and landforms can be combined to predict in real time severe weather such as heavy rain or strong winds, as well as complex terrain and landforms such as high mountains or river canyons. The two can be combined to determine in real time whether the geological exploration will affect the normal progress of data collection, avoid the inability to collect data in some areas or incomplete collection, and increase the accuracy of data collection and utilization of geological exploration results.

[0079] Example 2

[0080] Please refer to Figure 3As shown: Based on the first embodiment, the data comparison end includes a multi-source data module, a multi-source correspondence module and a duplicate comparison module;

[0081] The multi-source data module includes a multi-source acquisition unit and an information exchange unit;

[0082] The multi-source acquisition unit is used to collect multi-source data in the geological exploration process in real time. The multi-source data includes underground structure detection through seismic waves, underground electrical structure detection through electromagnetic waves, surface images of the corresponding area obtained by satellite, physical property data of underground rock formations obtained by logging tools, and geological and geophysical information of exploration activities;

[0083] The information intercommunication unit is used to realize the networking and intercommunication of multi-source data through the Internet of Things.

[0084] The multi-source correspondence module includes a channel correspondence unit and a feature correspondence unit;

[0085] The channel corresponding unit is used to arrange the multi-source data into multi-channel serial numbers using Arabic numerals and arrange them in ascending order;

[0086] The feature corresponding unit is used to arrange the multi-source data into multi-feature serial numbers using Arabic numerals and arrange them in ascending order.

[0087] The duplicate comparison module includes a duplicate comparison unit and a data early warning unit;

[0088] The duplicate comparison unit is used to compare multiple channels and multiple features corresponding to multi-source data in real time to see if they are duplicated. The comparison method is as follows:

[0089] Calculate the duplication degree of corresponding multi-channel data and multi-feature data in multi-source data :

[0090] ;

[0091] in, and It is The first channel feature vectors, No. The weight of each channel, Is a duplicate detection function, usually returns 1 (duplicate) or 0 (no duplicate);

[0092] Set the standard threshold, if If the value is greater than or equal to the standard threshold, it means the data is repeated. If it is less than the standard threshold, it means that the data is not repeated;

[0093] The data early warning unit is used to send a voice alarm signal to the reporting system when data is repeated, and delete and crush the duplicate data through the data shredding function. During the storage, transmission and processing of data, real-time comparison of multiple channels and multiple features can avoid confusion and loss during geological exploration data collection, further improving the utilization efficiency of geological exploration data.

[0094] Example 3

[0095] Please refer to Figure 4 As shown: Based on the first embodiment, the update and supplement end includes a data receiving module, a data judgment module, a geological prediction module and a geological update module;

[0096] The data receiving module is used to receive multi-channel and multi-feature geological exploration data in real time through a data receiver;

[0097] The data judgment module is used to collect geological exploration data within the corresponding area in real time through the data acquisition instrument, and calculate the time range difference of the data reflecting the geological conditions in real time according to the display time of the geological exploration data. If the time range difference is less than 2 hours, it means that the data is updated in time and is the latest geological conditions. If the time range is greater than or equal to 2 hours, it means that the data is not updated in time and is not the latest geological conditions.

[0098] The geological prediction module is used to collect geological exploration data for the corresponding environmental parameters within the regional scope through GIS technology, and receive data update judgment results in real time, set standard environmental parameters for geological exploration, and predict geological exploration results. The method is as follows:

[0099] The difference between the environmental parameters in the corresponding area and the standard environmental parameters is calculated. If the difference is equal to ±3, the environmental parameters are judged to be close to the safe value. If the difference is greater than 3 or less than -3, the environmental parameters are judged to have exceeded the safe value, and an environmental warning is issued. One day is considered as one cycle. The environmental parameters of the geological exploration in the corresponding area are predicted based on the environmental parameters of three cycles. If the average values ​​of the environmental parameters of the three cycles all exceed the standard environmental parameters, it is judged that the geological exploration data collection execution in the corresponding area is abnormal.

[0100] The geological update module includes a geological update unit and an update data evaluation unit;

[0101] The geological update unit is used to update the geological exploration data in real time through the geological exploration prediction results and record them in real time through the data recorder;

[0102] The updated data evaluation unit is used to evaluate the results of geological exploration data collection and utilization in real time based on the prediction results of geological exploration data collection. If the geological exploration data collection is executed normally, the evaluation result is good. If the geological exploration data collection is executed abnormally, the evaluation result is poor. The geological exploration prediction results are combined in the judgment process to ensure the effectiveness and timeliness of geological exploration data collection and utilization in real time. When geological exploration data is collected and utilized, real-time updating and real-time judgment of data can be guaranteed, the timeliness of data collection and utilization can be guaranteed, the latest geological conditions can be reflected in a timely manner, and the collection and utilization effect of geological exploration results data can be further improved.

[0103] In the present invention, a method and system for collecting and utilizing geological exploration results data is provided. When the system is in operation, the IP address information of the geological exploration remote control area server is first configured; the environmental warning terminal is entered, and the field geological exploration data is collected in real time, and the environmental parameters are collected in real time in combination with the terrain and landforms corresponding to the positioning, and it is judged whether the current environmental parameters affect the stability of data collection. If abnormal, the reporting system issues a voice alarm, and combines the standard environmental parameter model of geological exploration, sets the scope of the field geological exploration area, and divides the corresponding area into multiple areas, collects geological exploration data in real time, and collects environmental parameters in combination with the terrain and landforms corresponding to the positioning, and judges in real time whether the current environmental parameters are abnormal. Whether it affects the stability of data collection, the geological exploration data collection strategy is adjusted in real time according to the standard environmental parameter model of geological exploration, so that when conducting geological exploration in the field, the environmental parameters and topography can be combined to predict in real time the severe weather such as rainstorms or strong winds, as well as complex topography such as high mountains or river canyons. The two can be combined to judge in real time whether the geological exploration affects the normal progress of data collection, avoid the inability to collect data in some areas or incomplete collection, and increase the accuracy of data collection and utilization of geological exploration results; enter the data comparison terminal, after judging the data collection anomaly, collect multi-source data in the geological exploration process in real time, and set the multi-channel and multi-feature corresponding to the multi-source data, to realize Compare the multi-channels and multi-features corresponding to the multi-source data to see if they are repeated. After judging the abnormality of data collection, collect the multi-source data in the geological exploration process in real time, set the multi-channels and multi-features corresponding to the multi-source data, and compare the multi-channels and multi-features corresponding to the multi-source data to see if they are repeated in real time, so as to ensure that the data collected by geological exploration in the corresponding area are true and valid, so that the multi-source data can be seamlessly integrated and managed during geological exploration. At the same time, in the process of data storage, transmission and processing, the real-time comparison of multi-channels and multi-features can avoid confusion and loss during geological exploration data collection, and further improve the utilization efficiency of geological exploration data. Enter the update and supplement terminal, through real-time It receives multi-channel and multi-feature geological exploration data in real time, and judges in real time whether the geological exploration data is timely and whether it is the latest geological situation, so as to ensure the effectiveness and timeliness of geological exploration data collection and utilization. By receiving multi-channel and multi-feature geological exploration data in real time, and judging in real time whether the geological exploration data is timely and whether it is the latest geological situation, the geological exploration prediction results are combined in the judgment process to ensure the effectiveness and timeliness of geological exploration data collection and utilization in real time, so that when geological exploration data is collected and utilized, real-time updating and real-time judgment of data can be guaranteed, the timeliness of data collection and utilization can be guaranteed, the latest geological situation can be reflected in time, and the collection and utilization effect of geological exploration results data can be further improved.

[0104] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A geological exploration results data collection and utilization system, characterized in that: The system includes an environmental early warning terminal, a data comparison terminal and an update and supplement terminal; The environmental warning terminal is used to set the scope of the field geological exploration area and divide the corresponding area into multiple areas, collect environmental parameters in real time and combine them with the corresponding topography and landforms, judge in real time whether the current environmental parameters affect the stability of data collection, and adjust the geological exploration data collection strategy in real time according to the standard environmental parameter model of geological exploration; The data comparison terminal is used to collect multi-source data in the geological exploration process in real time after determining that the data collection is abnormal, and set the multi-channels and multi-features corresponding to the multi-source data, and compare the multi-channels and multi-features corresponding to the multi-source data in real time to see if they are repeated, predict the geological exploration results, and realize seamless integration and management of multi-source data; The updating and supplementing terminal is used to receive multi-channel and multi-feature geological exploration data in real time, and to judge whether the geological exploration data is timely in real time. In the judgment process, the geological exploration prediction results are combined to reflect the latest geological conditions in a timely manner. The environmental early warning terminal includes a geological acquisition module, a positioning acquisition module and an environmental early warning module; The geological acquisition module includes a region setting unit and a multi-region acquisition unit; The region setting unit is used to set the scope of the geological exploration data collection and utilization region, and divide the scope of the geological exploration data collection and utilization region into multiple regions, each region corresponding to a landform; The multi-region acquisition unit is used to collect geological exploration data in multiple regions in real time through a data acquisition instrument, and to arrange the geological exploration data of the multiple regions in sequence using Arabic numerals, wherein the sequence numbers are arranged in ascending order; The environmental warning module includes a data impact unit, an impact warning unit, an exploration strategy unit and a strategy adjustment unit; The data impact unit is used to combine environmental parameters and topography to calculate the impact of the environment and topography on geological exploration in real time through a calculation formula. The calculation formula is as follows: Among them, x i and y i are the data of environmental parameters and topographic parameters, and are the mean values ​​of environmental parameters and topographic parameters, respectively; r represents the linear parameter of the influence of environment and topography on geological exploration; The impact warning unit is used to set a standard value for the impact of the environment and topography on geological exploration, and calculate the difference between r and the standard value. If the difference is less than or equal to 1, it means that the environment and topography have no impact on geological exploration. If the difference is greater than 1, it means that the environment and topography have an impact on geological exploration, and the system will be reported to issue a voice alarm through the voice alarm; The exploration strategy unit is used to adjust the standard environmental parameter model of geological exploration in real time according to the influencing linear parameters, and the standard environmental parameter model is determined according to the geological exploration conditions corresponding to the topography; The strategy adjustment unit is used to determine the environment adjustment parameters according to the geological exploration conditions corresponding to the terrain and landforms. The environment adjustment parameters set different geological exploration environment requirements for different terrain and landforms.

2. The system according to claim 1, wherein: The positioning acquisition module includes an environment acquisition unit and a topography unit; The environmental acquisition unit is used to detect geological exploration environmental parameters within the corresponding area in real time through environmental monitoring equipment, which includes earthquake monitoring equipment, landslide monitoring equipment, debris flow monitoring equipment, ground subsidence monitoring equipment, volcanic eruption monitoring equipment, temperature sensors, humidity sensors and light sensors; The topography unit is used to detect the topography within the corresponding area in real time through geological exploration equipment, which includes a level, theodolite, rangefinder, seismograph, gravimeter, magnetometer, total station and three-dimensional laser scanner.

3. The system according to claim 1, wherein: The data comparison terminal includes a multi-source data module, a multi-source correspondence module and a duplicate comparison module; The multi-source data module includes a multi-source acquisition unit and an information exchange unit; The multi-source acquisition unit is used to collect multi-source data in the geological exploration process in real time, the multi-source data including underground structure detection by seismic waves, underground electrical structure detection by electromagnetic waves, surface images within the corresponding area acquired by satellites, physical property data of underground rock formations acquired by logging tools, and geological and geophysical information of exploration activities; The information intercommunication unit is used to realize the networking and intercommunication of multi-source data through the Internet of Things.

4. The system according to claim 3, wherein: The multi-source corresponding module includes a channel corresponding unit and a feature corresponding unit; The channel corresponding unit is used to arrange the multi-source data into multi-channel serial numbers using Arabic numerals and arrange them in ascending order; The feature corresponding unit is used to arrange the multi-source data into multi-feature serial numbers using Arabic numerals, and arrange them in ascending order.

5. The system according to claim 4, characterized in that: The repeated comparison module includes a repeated comparison unit and a data early warning unit; The duplicate comparison unit is used to compare in real time whether the multi-channels and multi-features corresponding to the multi-source data are duplicated. The comparison method is as follows: Calculate the repetition score of the corresponding multi-channel data and multi-feature data in the multi-source data: Among them, X ij and Y ij is the i-th eigenvector of the j-th channel, w j The weight of the jth channel, repeat(X ij , Y ij ) is a duplicate detection function, which usually returns 1 (duplicate) or 0 (no duplicate); Set a standard threshold. If the score is greater than or equal to the standard threshold, it means the data is repeated. If the score is less than the standard threshold, it means the data is not repeated. The data early warning unit is used to send a voice alarm signal to the reporting system when data is repeated, and delete and crush the repeated data through the data crushing function.

6. The system according to claim 1, wherein: The update and supplement terminal includes a data receiving module, a data judgment module, a geological prediction module and a geological update module; The data receiving module is used to receive multi-channel and multi-feature geological exploration data in real time through a data receiver; The data judgment module is used to collect geological exploration data within the corresponding area in real time through a data acquisition instrument, and calculate the time range difference of the data reflecting the geological conditions in real time according to the display time of the geological exploration data. If the time range difference is less than 2 hours, it means that the data is updated in time and the latest geological conditions are obtained. If the time range is greater than or equal to 2 hours, it means that the data is not updated in time and the geological conditions are not obtained.

7. The system according to claim 6, characterized in that: The geological prediction module is used to collect geological exploration data for the corresponding environmental parameters within the regional scope through GIS technology, and receive data update judgment results in real time, set standard environmental parameters for geological exploration, and predict geological exploration results. The method is as follows: The difference between the environmental parameters in the corresponding area and the standard environmental parameters is calculated. If the difference is equal to ±3, the environmental parameters are judged to be close to the safe value. If the difference is greater than 3 or less than -3, the environmental parameters are judged to have exceeded the safe value, and an environmental warning is issued. One day is considered as one cycle. The environmental parameters of the geological exploration in the corresponding area are predicted based on the environmental parameters of three cycles. If the average values ​​of the environmental parameters of the three cycles all exceed the standard environmental parameters, it is judged that the geological exploration data collection execution in the corresponding area is abnormal. The geological update module includes a geological update unit and an update data evaluation unit; The geological update unit is used to update the geological exploration data in real time through the geological exploration prediction results, and record them in real time through the data recorder; The updated data evaluation unit is used to evaluate the geological exploration data collection and utilization results in real time based on the geological exploration data collection and execution prediction results. If the geological exploration data collection is executed normally, the evaluation result is good; if the geological exploration data collection is executed abnormally, the evaluation result is poor.

8. A method for collecting and utilizing geological exploration results data according to any one of claims 1 to 7, characterized in that: The following steps are involved: Step 1: Configure the IP address information of the geological exploration remote control area server; Step 2: Enter the environmental warning terminal, collect field geological exploration data in real time, and collect environmental parameters in real time in combination with the corresponding topography and landforms to determine whether the current environmental parameters affect the stability of data collection. If abnormal, the reporting system will issue a voice alarm and combine it with the standard environmental parameter model of geological exploration; Step 3: Enter the data comparison terminal, determine if the data collection is abnormal, collect multi-source data in the geological exploration process in real time, set the multi-channels and multi-features corresponding to the multi-source data, and compare the multi-channels and multi-features corresponding to the multi-source data in real time to see if there are any duplications; Step 4: Enter the update and supplement terminal, receive multi-channel and multi-feature geological exploration data in real time, and judge in real time whether the geological exploration data is timely and whether it is the latest geological conditions, so as to ensure the effectiveness and timeliness of geological exploration data collection and utilization.

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