Mining process cycle determination method and storage medium
By determining the cycle of mining operations and identifying the clustering of operations to be performed based on the process identifier, the problem of inaccurate operation cycles in mining has been solved, enabling refined management and data support.
Patent Information
- Application Number
- CN202511364576.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-23
- Publication Date
- 2026-01-23
AI Technical Summary
Existing technologies cannot accurately determine the operational cycle of mining processes, resulting in non-standardized production processes and an inability to achieve refined management.
A method for determining the cycle of mining operations is provided. By obtaining the sequence identifier of the operation to be performed and the sequence identifier of the existing operation at the target operation point, the method determines whether the operation to be performed should be included in the current operation cycle or the next operation cycle, thereby realizing the determination of the continuity of the operation content.
It enables refined management and control of mining operations, standardizes production processes, and provides an accurate data foundation for mine production management.
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Figure CN121390657A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of mine production management, and in particular to a mine mining process cycle determination method and a storage medium. BACKGROUND
[0002] In the process of intelligent mine construction, the management of production processes is generally concentrated in the production scheduling part, and the management of each working face / working point working process is based on production scheduling. However, the current general practice can only record the single-day single-process working content of the working face / working point according to the production scheduling data, and cannot achieve the automatic connection of the working process in each mining cycle and the connection between cycles based on actual production processes according to the scheduling data or production data. For example, a working point of production has multiple working cycles, and a working process A is issued during production scheduling, but it is not known which working process A in the working cycle the task is issued for during execution, so that the fine management and control of mine production cannot be achieved, resulting in non-standard production process. SUMMARY
[0003] The present application provides a mine mining process cycle determination method and a storage medium to solve the technical problem of how to accurately determine the working cycle of the mine mining process.
[0004] In a first aspect, the present application provides a mine mining process cycle determination method, which comprises: obtaining a to-be-worked process of a target working point input at a current time; if the to-be-worked process is scheduled by multiple scheduling dates, and the target working point has not been scheduled for the next working cycle, the to-be-worked process is collected to the current working cycle; if the to-be-worked process is not sequential with the working process content in the current working cycle, the to-be-worked process is collected to the next working cycle; if the to-be-worked process is sequential with the working process content in the current working cycle, the to-be-worked process is collected to the current working cycle.
[0005] Optionally, the method for determining whether the to-be-worked process is sequential with the working process content in the current working cycle comprises: determining whether the to-be-worked process is sequential with the working process content in the current working cycle according to the sequence identifier of the to-be-worked process and the sequence identifier of the existing process of the target working point.
[0006] The to-be-operated process includes one of a supporting process, a rock drilling process, a blasting pry process, and a slag removal process, the supporting process, the rock drilling process, the blasting pry process, and the slag removal process each carries a sequence identifier, the sequence identifier of the supporting process is less than the sequence identifier of the rock drilling process, the sequence identifier of the rock drilling process is less than the sequence identifier of the blasting pry process, and the sequence identifier of the blasting pry process is less than the sequence identifier of the slag removal process; According to the sequence identifier of the to-be-operated process and the sequence identifier of the existing process of the target operating point, it is determined whether the to-be-operated process is consistent with the operating process content sequence in the current operating cycle, including: The first operating process of the target operating point is obtained from the database; wherein the first operating process is the operating process closest to the current time among the historical operating processes of the target operating point; the first operating process includes one of the supporting process, the rock drilling process, the blasting pry process, and the slag removal process; If the sequence identifier of the first operating process is less than or equal to the sequence identifier of the to-be-operated process, the to-be-operated process is added to the operating cycle to which the first operating process belongs in the database; If the sequence identifier of the first operating process is greater than the sequence identifier of the to-be-operated process, a new operating cycle is created in the database and the to-be-operated process is taken as the first process of the new operating cycle.
[0007] Optionally, after the to-be-operated process is added to the operating cycle to which the first operating process belongs in the database or a new operating cycle is created in the database and the to-be-operated process is taken as the first process of the new operating cycle, the method further includes: The ore output corresponding to the operating cycle is obtained, and the production material consumption corresponding to the operating processes included in the operating cycle is obtained; According to the ore output, a production output report of the operating cycle is generated; According to the production material consumption, single consumption data corresponding to each operating process and total consumption data of the operating cycle are determined; According to the single consumption data and the total consumption data, a production consumption report of the operating cycle is generated.
[0008] Optionally, the to-be-operated process of the target operating point input at the current time is obtained, including: The to-be-operated process of the target operating point input by a user at the current time is obtained; According to the operating content of the to-be-operated process, an operating shift team, a control level, a safety confirmation person, a safety guardian, and a safety person responsible for the responsibility are allocated.
[0009] Optionally, after obtaining the to-be-operated work procedure of the target operation point input by the user at the current time, the method further comprises: generating model display content according to the operation content of the to-be-operated work procedure; displaying the model display content in a preset three-dimensional model.
[0010] Optionally, after obtaining the to-be-operated work procedure of the target operation point input by the user at the current time, the method further comprises: obtaining a current production type rectification project; determining a target rectification project associated with the to-be-operated work procedure from the production type rectification project; issuing the target rectification project to the safety confirmation person, so that the safety confirmation person performs safety confirmation according to the target rectification project before the operation of the operation team.
[0011] Optionally, after issuing the target rectification project to the safety confirmation person, the method further comprises: generating rectification display content according to the target rectification project; displaying the rectification display content in a preset three-dimensional model.
[0012] Optionally, after assigning the operation team, the control level, the safety confirmation person, the safety guardian and the safety person in charge according to the operation content of the to-be-operated work procedure, the method further comprises: obtaining an abnormal event of the operation team during operation; sending the abnormal event to the operation team, the safety confirmation person, the safety guardian and the safety person in charge.
[0013] In a second aspect, the application provides a mine operation work procedure cycle determination device, which comprises: an acquisition module, configured to acquire a to-be-operated work procedure of a target operation point input at a current time; a first determination module, configured to, if the to-be-operated work procedure is scheduled by multiple scheduling dates and the target operation point has not been scheduled for a next operation cycle, collect the to-be-operated work procedure to a current operation cycle; a second determination module, configured to, if the to-be-operated work procedure is not sequentially coherent with the operation work procedure content in the current operation cycle, collect the to-be-operated work procedure to a next operation cycle; a third determination module, configured to, if the to-be-operated work procedure is sequentially coherent with the operation work procedure content in the current operation cycle, collect the to-be-operated work procedure to the current operation cycle.
[0014] In a third aspect, the present application provides an electronic device, comprising a processor, a communication interface, a memory and a communication bus, wherein the processor, the communication interface and the memory complete mutual communication through the communication bus; The memory is configured to store a computer program. The processor is configured to execute the program stored in the memory, so as to implement the mine production procedure cycle determination method according to any one of the first aspect.
[0015] In a fourth aspect, the present application provides a computer readable storage medium, which stores a computer program, and the computer program is executed by a processor to implement the mine production procedure cycle determination method according to any one of the first aspect.
[0016] The above technical solution provided by the embodiments of the present application has the following advantages compared with the prior art: the method provided by the embodiments of the present application acquires the to-be-operated procedure of the target operating point input at the current time; if the to-be-operated procedure is scheduled by multiple scheduling dates, and the target operating point has not been scheduled for the next operating cycle, the to-be-operated procedure is collected to the current operating cycle; if the to-be-operated procedure is not sequential with the operating procedure content in the current operating cycle, the to-be-operated procedure is collected to the next operating cycle; if the to-be-operated procedure is sequential with the operating procedure content in the current operating cycle, the to-be-operated procedure is collected to the current operating cycle. The method can determine whether the to-be-operated procedure is collected to the current operating cycle or the next operating cycle according to whether the to-be-operated procedure of the target operating point input is sequential with the operating procedure content in the current operating cycle; if the to-be-operated procedure is scheduled by multiple scheduling dates and the target operating point has not been scheduled for the next operating cycle, the to-be-operated procedure is collected to the current operating cycle; if the to-be-operated procedure is not sequential with the operating procedure content in the current operating cycle, the to-be-operated procedure is collected to the next operating cycle; if the to-be-operated procedure is sequential with the operating procedure content in the current operating cycle, the to-be-operated procedure is collected to the current operating cycle, so as to accurately determine the operating cycle of the to-be-operated procedure, realize fine management and control of the mine production, standardize the production process, and provide accurate data basis for mine production management. BRIEF DESCRIPTION OF DRAWINGS
[0017] The drawings incorporated into the specification and forming a part thereof, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the application.
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced as follows, and obviously, other drawings can also be obtained by those skilled in the art without any creative labor.
[0019] One or more embodiments are illustrated by way of example in the drawings in which like reference numerals indicate similar elements, and as such, continue to refer to a like reference numeral throughout the several figures of the drawings and no attempt is made to show all of the routine, conventional elements with which one skilled in the art is already familiar. The figures in the drawings are not necessarily to scale, the emphasis instead being placed upon illustrating the principles of the embodiments.
[0020] Figure 1 A system architecture diagram of a mine mining process cycle determination method provided by an embodiment of the present application is provided. Figure 2 A flowchart of a mine mining process cycle determination method provided by an embodiment of the present application is provided. Figure 3 A structural diagram of a mine mining process cycle determination device provided by an embodiment of the present application is provided. Figure 4 A structural diagram of an electronic device provided by an embodiment of the present application is provided. DETAILED DESCRIPTION
[0021] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described below in connection with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the scope of protection of the present application.
[0022] The following disclosure provides many different embodiments, or examples, for implementing different structures of the present application. For the purpose of simplicity, the elements and settings of particular examples in the following are described in some detail. Of course, they are merely examples and are not intended to limit the present application. Furthermore, the present application can be implemented in various examples with reference to a reference numeral and / or letter. Such repetition is for the purpose of simplification and clarity, and does not indicate a relationship between the various embodiments and / or settings being discussed.
[0023] To solve the technical problem of how to accurately determine the operation cycle of the mine mining process in the prior art, the present application provides a mine mining process cycle determination method and a storage medium, which can accurately determine which operation cycle the to-be-operated process should be collected into, realize fine management and control of mine mining, standardize the production process, and provide accurate data basis for mine production management.
[0024] The first embodiment of the present application provides a mine mining process cycle determination method, which can be applied to, for example, Figure 1The system architecture shown can be a mine production management system of a metal or non-metal mine. The system can include a personnel management module, a device management module, a production plan scheduling module, a production execution management module, a production yield report module, and a production consumption report module.
[0025] The personnel management module is configured to manage personnel information of the mine enterprise.
[0026] The device management module is configured to manage device information of the mine enterprise.
[0027] The production plan scheduling module is configured to schedule underground operation contents, rectification projects, and abnormal situations.
[0028] The production execution management module is configured to report production process data based on daily production scheduling data. The production process can include a support process, a drilling process, a blasting and prying process, a slag removal process, and a transportation process. In each operation cycle of a single operation face or operation point, the process is rotated in the order of support / drilling, blasting and prying, slag removal, and transportation.
[0029] The production yield report module is mainly configured to count the output ore of each grade of ore in each operation cycle of the operation face or operation point and the filling volume of each operation face or operation point. The transportation efficiency of the transportation vehicles or personnel can be analyzed and the performance of the transportation team can be evaluated.
[0030] The production consumption report module can analyze the total consumption and unit consumption data of various devices and materials involved in each process in each operation cycle of the operation face or operation point, and provide data support for the production efficiency evaluation of the mine enterprise.
[0031] The mine production process cycle determination method can be mainly applied to the production plan scheduling part of the system architecture. Next, based on the system architecture, the mine production process cycle determination method will be described in detail, such as Figure 2 The mine production process cycle determination method comprises: Step 201, obtaining the to-be-operated process of the target operation point input at the current time.
[0032] The user can schedule the daily operation content of each operation face or operation point in the mine based on the current operation progress, such as inputting the to-be-operated process of the target operation point at the current time.
[0033] Step 202, if the to-be-operated process is scheduled by multiple scheduling dates, and the target operation point has not been scheduled for the next operation cycle, the to-be-operated process is collected into the current operation cycle.
[0034] In the production process, each job point will carry out multiple job cycles. If the job procedure to be processed cannot be accurately determined to belong to which job cycle, the overall data statistics will be affected, such as the production consumption report statistics corresponding to the job cycle, for example, yield calculation, unit consumption calculation, etc. The scheduling module can determine whether the job procedure to be processed of the target job point obtained at the current time belongs to the next job cycle (i.e. new job cycle) or the current job cycle.
[0035] If the job procedure to be processed has been scheduled by multiple scheduling dates and the target job point has not been scheduled for the next job cycle, the job procedure to be processed is collected into the current job cycle in the database.
[0036] Step 203, if the job procedure to be processed is not sequential with the job procedure content in the current job cycle, the job procedure to be processed is collected into the next job cycle.
[0037] The production scheduling module can determine whether the job procedure to be processed is sequential with the job procedure content in the current job cycle. If the job procedure to be processed is not sequential with the job procedure content in the current job cycle, the job procedure to be processed is collected into the next job cycle, i.e. a new job cycle is established, and the job procedure to be processed is added to the new job cycle.
[0038] Step 204, if the job procedure to be processed is sequential with the job procedure content in the current job cycle, the job procedure to be processed is collected into the current job cycle.
[0039] If the job procedure to be processed is sequential with the job procedure content in the current job cycle, it means that the job procedure to be processed is sequential with the existing job procedure in the current job cycle, and the job procedure to be processed can be collected into the current job cycle.
[0040] The method can determine whether the job procedure to be processed is collected into the current job cycle or the next job cycle according to whether the job procedure to be processed of the target job point input is sequential with the job procedure content in the current job cycle. If the job procedure to be processed is scheduled by multiple scheduling dates and the target job point has not been scheduled for the next job cycle, the job procedure to be processed is collected into the current job cycle. If the job procedure to be processed is not sequential with the job procedure content in the current job cycle, the job procedure to be processed is collected into the next job cycle. If the job procedure to be processed is sequential with the job procedure content in the current job cycle, the job procedure to be processed is collected into the current job cycle. Thus, it can be accurately determined which job cycle the job procedure to be processed should be collected into, the fine management and control of the mine exploitation is realized, the production process is standardized, and accurate data basis is provided for the mine production management.
[0041] In one embodiment, the method for determining whether the to-be-operated process is consistent with the sequence of the operating process in the current operating cycle comprises: determining whether the to-be-operated process is consistent with the sequence of the operating process in the current operating cycle according to the sequence identifier of the to-be-operated process and the sequence identifier of the existing process at the target operating point.
[0042] The determination of whether the to-be-operated process is consistent with the sequence of the operating process in the current operating cycle can be made according to the relationship between the sequence identifier of the to-be-operated process and the sequence identifier of the existing process at the target operating point.
[0043] For example, the to-be-operated process includes one of a support process, a rock drilling process, a blasting and prying process, and a slag removal process, and the support process, the rock drilling process, the blasting and prying process, and the slag removal process each carries a sequence identifier, the sequence identifier of the support process is less than that of the rock drilling process, the sequence identifier of the rock drilling process is less than that of the blasting and prying process, and the sequence identifier of the blasting and prying process is less than that of the slag removal process.
[0044] In one embodiment, the determination of whether the to-be-operated process is consistent with the sequence of the operating process in the current operating cycle according to the sequence identifier of the to-be-operated process and the sequence identifier of the existing process at the target operating point comprises: Step S1, obtaining the first operating process of the target operating point from the database; wherein the first operating process is the operating process closest to the current time among the historical operating processes of the target operating point; and the first operating process includes one of a support process, a rock drilling process, a blasting and prying process, and a slag removal process.
[0045] In mine exploitation, the production processes include a support process, a rock drilling process, a blasting and prying process, a slag removal process, and a transportation process. Next, each process will be briefly introduced.
[0046] The support process is arranged in the underground operation content scheduling when the rock-soil stability of the operating face or operating point cannot meet the rock drilling requirements. After receiving the information, the corresponding team obtains the support anchor and support mesh for support and reinforcement after the safety confirmation person has made the safety confirmation before operation.
[0047] The rock drilling process is arranged in the underground operation content scheduling when the rock-soil stability meets the requirements of the rock drilling operation of the trolley. After receiving the information, the corresponding team enters the operating face or operating point for operation after the safety confirmation person has made the safety confirmation before operation, and reports the planned quantity of explosives and detonators required in the cycle and predicts the cross-section size that can be excavated.
[0048] The blasting prying process is arranged in the underground operation content scheduling by the work area person in charge when the drilling jumbo has the blasting condition after completing the blast hole operation, and the corresponding team receives the information and enters the operation surface or operation point for operation after the safety confirmation person performs the safety confirmation before operation, and the number of explosives and detonators used in the cycle is reduced, and the ore grade in the cycle is judged.
[0049] The slag removal process is arranged in the underground operation content scheduling by the work area person in charge when the blasting is completed and the section slag removal condition is met, and the corresponding team receives the information and enters the operation surface or operation point for operation after the safety confirmation person performs the safety confirmation before operation, and the number of vehicles for section slag removal in the cycle is recorded.
[0050] The transportation process mainly includes transporting section ore and transporting filling material. The ore transportation is performed by the transportation team after the operation surface or operation point is slag removed, and the transported ore amount in the transportation process is recorded as the main basis for yield accounting, and can also be compared and analyzed with the ore amount in other links. The filling material transportation is recorded according to the actual situation of the mine, and the filling transportation data is converted into filling cubic amount according to the vehicle.
[0051] Among the above production processes, the processes that need to be focused on operation cycle scheduling or operation cycle determination mainly include the supporting process, the drilling process, the blasting prying process and the slag removal process. In the continuous production plan scheduling, the same operation point is scheduled in the order of supporting-drilling-blasting prying-slag removal, and the supporting process, the drilling process, the blasting prying process and the slag removal process carry sequence identifiers respectively, for example, the sequence identifier of the supporting process can be 1, the sequence identifier of the drilling process can be 2, the sequence identifier of the blasting prying process can be 3, and the sequence identifier of the slag removal process can be 4.
[0052] In an embodiment, the target operation point to be operated process input at the current time is obtained, including: obtaining the target operation point to be operated process input by the user at the current time, and assigning the operation team, control level, safety confirmation person, safety guardian and safety person in charge according to the operation content of the to-be-operated process.
[0053] In this embodiment, the user can schedule the daily operation content of each operation surface or operation point in the mine based on the operation progress of the previous day, such as inputting the target operation point to be operated process at the current time, and assigning the operation team, control level, safety confirmation person, safety guardian and safety person in charge to the operation content of the target operation point.
[0054] In one embodiment, after obtaining the to-be-operated process of the target operating point input by the user at the current time, the method further comprises: generating model display content according to the operation content of the to-be-operated process; and displaying the model display content in the preset three-dimensional model.
[0055] In this embodiment, the model display content can be generated according to the operation content of the to-be-operated process, and the model display content can be displayed in the preset three-dimensional model. The three-dimensional model can be a three-dimensional model of the underground, so that the scheduling content is displayed more intuitively.
[0056] The first operation process closest to the current time among the historical operation processes of the target operating point can be obtained from the database. The first operation process can be one of a support process, a rock drilling process, a blasting and prying process, and a slag removal process, thereby providing a basis for process cycle determination.
[0057] In step S2, if the sequence identifier of the first operation process is less than or equal to the sequence identifier of the to-be-operated process, the to-be-operated process is added to the operation cycle to which the first operation process belongs in the database.
[0058] The same operating point will have multiple operation cycles in continuous production plan scheduling. Each operation cycle schedules operation content in the order of support-rock drilling-blasting and prying-slag removal. For example, a to-be-operated process is a support process when it is issued in production plan scheduling. If it is unknown which operation cycle the support process belongs to when it is executed, it will affect production control and cannot provide accurate data basis for mine production management. In this embodiment, the scheduling time span of the same operation cycle is as long as the automatic collection of the same operation cycle. The starting production process of each process cycle is a support process or a rock drilling process by default. The reason is that in the process of mining, it is determined whether support is needed before rock drilling according to the hydrogeological conditions of the excavation face. In the case of good hydrogeological conditions, the rock drilling process can be directly entered after the completion of the previous operation cycle. In the case of poor hydrogeological conditions, the support of the operation face is needed after the completion of the previous operation cycle to ensure the safety of the personnel and equipment entering the operation face.
[0059] For example, operating point A is arranged for support and rock drilling on January 13, 2025, and for blasting and prying on March 15, 2025. Since the sequence identifier of the blasting and prying process is less than that of the rock drilling process, the blasting and prying arranged on March 15 is added to the operation cycle of January 13. Slag removal is arranged on April 17. Since the sequence identifier of the blasting and prying process is less than that of the slag removal process, the slag removal on April 17 is added to the operation cycle of March 15. That is, the production plan scheduling of operating point A from January 13, 2025 to April 17, 2025 is determined to be in the same operation cycle.
[0060] For example, the support and drilling of the work point B scheduled on April 15, 2025, and the slag removal scheduled on April 16, 2025, are determined to be in the same work cycle.
[0061] In addition, each work point on a work face (containing many work points) basically experiences the complete process of support-drilling-blasting and prying slag-removal, but sometimes a single scheduling cannot complete the work, and the same work point may need support for two consecutive days, so the two supports are connected and placed in a work cycle. That is, if one of the support, drilling, blasting and prying slag, and slag removal of the same work point is scheduled by multiple scheduling dates before the next work content is scheduled, it will be automatically collected into the same cycle. For example, the work point C is scheduled for support and drilling on April 13, 2025, drilling on April 15, 2025, and drilling and blasting and prying slag on April 17, 2025, and the production plan scheduling of the three days will be determined to be in the same work cycle. For example, the work point D is scheduled for support on April 15, 2025, and support on April 16, 2025, so the two supports on April 15 and April 16 should be collected into the same work cycle, and if support is scheduled on April 17, the support on April 17 should also be collected into the same work cycle, i.e. the three supports from April 15 to April 17 belong to the same work cycle. Similarly, for the work point D, if support is scheduled on April 15, 2025, and drilling and blasting and prying slag is scheduled on April 16, 2025, the work contents on April 15 and April 16 are collected into the same work cycle, and if support is scheduled on April 17, the support on April 17 should be collected into a new work cycle. After accurately determining the work cycle of the work process to be worked, fine management and control of mine production can be realized, the production process is standardized, and accurate data basis is provided for mine production management.
[0062] Step S3: If the sequence identifier of the first work process is greater than the sequence identifier of the work process to be worked, a new work cycle is created in the database and the work process to be worked is taken as the first work process of the new work cycle.
[0063] For example, the schedule for April 4, 2025 is released on April 3, 2025, and the operation point D is scheduled for the process of blasting and prying tomorrow, i.e. April 4. First, the first operation process scheduled before the scheduling date (including April 3 and before) in the database for the operation point D is queried. If it is support or rock drilling, the scheduling content of April 4 is connected with the previous operation process to form the same operation cycle. If the last operation process of the operation point D before the scheduling date in the database is slagging, the operation process to be performed on April 4 needs to form a new operation cycle, and the blasting and prying is taken as the first process of the new operation cycle.
[0064] The method can compare the sequence identifiers between the operation process to be performed on the target operation point and the first operation process of the target operation point obtained from the database. If the sequence identifier of the first operation process is less than or equal to the sequence identifier of the operation process to be performed, the operation process to be performed is added to the operation cycle to which the first operation process belongs in the database. If the sequence identifier of the first operation process is greater than the sequence identifier of the operation process to be performed, a new operation cycle is created in the database, and the operation process to be performed is taken as the first process of the new operation cycle. Thus, the operation cycle of the operation process to be performed is accurately determined, the fine management and control of the mining operation are realized, the production process is standardized, and accurate data basis is provided for the production management of the mine.
[0065] In one embodiment, after the operation process to be performed is added to the operation cycle to which the first operation process belongs in the database or a new operation cycle is created in the database and the operation process to be performed is taken as the first process of the new operation cycle, the method further includes obtaining the ore output corresponding to the operation cycle and obtaining the production material consumption corresponding to the operation processes included in the operation cycle; generating a production output report of the operation cycle according to the ore output; determining the unit consumption data corresponding to each operation process and the total consumption data of the operation cycle according to the production material consumption; and generating a production consumption report of the operation cycle according to the unit consumption data and the total consumption data.
[0066] In this embodiment, after the operation cycle is determined, the production output report and the production consumption report of each operation cycle can be prepared. For example, the ore output corresponding to the operation cycle is obtained, the production output report of the operation cycle is generated according to the ore output, the production material consumption corresponding to the operation processes included in the operation cycle is obtained, the unit consumption data corresponding to each operation process and the total consumption data of the operation cycle are determined according to the production material consumption, and the production consumption report of the operation cycle is generated according to the unit consumption data and the total consumption data. Thus, data support is provided for the production efficiency evaluation of the mining enterprise.
[0067] In the above embodiments, the underground operation content scheduling in the production plan scheduling is determined, i.e. whether the operation process to be performed belongs to the existing operation cycle in the database or needs to be newly created. In addition, the rectification project scheduling and the abnormal situation scheduling can also be included in the production plan scheduling.
[0068] In one embodiment, after obtaining the to-be-worked process of the target work point input by the user at the current time, the method further comprises: obtaining the current production rectification project, determining the target rectification project associated with the to-be-worked process from the production rectification project, and issuing the target rectification project to the safety verifier to make the safety verifier perform safety verification according to the target rectification project before the work team works.
[0069] In this embodiment, the rectification project can be included in the daily production plan and scheduling. For example, the current production rectification project is obtained, the target rectification project associated with the to-be-worked process is determined from the production rectification project, and the target rectification project is issued to the safety verifier to make the safety verifier perform safety verification according to the target rectification project before the work team works. In this embodiment, the hidden danger management process in safety management is uniformly managed, the target rectification project associated with the to-be-worked process is determined from the production rectification project, and the target rectification project is used as the task basis for the safety verifier to perform safety verification before the work team works, thereby improving work safety.
[0070] To improve the visibility of rectification project scheduling, in one embodiment, after issuing the target rectification project to the safety verifier, the method further comprises: generating rectification display content according to the target rectification project, and displaying the rectification display content in a preset three-dimensional model.
[0071] In this embodiment, the rectification display content based on the target rectification project is displayed in the preset three-dimensional model, which can clearly and intuitively display the details of daily production rectification, constantly urge and remind the scheduling personnel to pay attention to safety hazards, and indirectly improve safety.
[0072] In one embodiment, after assigning the work team, the control level, the safety verifier, the safety guardian, and the safety person in charge according to the work content of the to-be-worked process, the method further comprises: obtaining an abnormal situation event of the work team in the work process, and sending the abnormal situation event to the work team, the safety verifier, the safety guardian, and the safety person in charge.
[0073] In this embodiment, after obtaining the abnormal situation event of the work team in the work process, the abnormal situation event can be directly sent to the work team, the safety verifier, the safety guardian, and the safety person in charge, thereby improving the response speed of the abnormal situation event and ensuring production safety. Specifically, when an uphole and downhole abnormal situation event occurs and the downhole network is not smooth, the abnormal situation and production scheduling such as ventilation and power supply can be uniformly scheduled and processed by the wellhead duty room, or can be directly scheduled by the corresponding discoverer or scheduling instruction issuer. Further, if an abnormal situation occurs in the equipment, the data is used as an index for evaluating the health of the equipment after the processing is completed.
[0074] In the above embodiments of the present application, taking the production process of the underground metal and non-metal mine as the main line, based on the information of production scheduling and production links, the data flow reverse analysis technology is used to determine the mining process cycle, assist the mine enterprise to dynamically allocate resources and balance the production rhythm. By constructing a seamless and mutually coordinated fine production management system between processes, not only the regular cycle operation and standardized operation of the field production are realized, but also the safety level, work efficiency and economic benefit of the mine production are greatly improved from the system level. The process management drives the precise safety management and the synchronous improvement of production and operation.
[0075] Based on the same technical concept, the second embodiment of the present application provides a mine mining process cycle determination device, as shown in Figure 3 , the device comprises: The acquisition module 301 is configured to acquire the to-be-operated process of the target operation point input at the current time; The first determination module 302 is configured to, if the to-be-operated process is scheduled by multiple scheduling dates, and the target operation point has not been scheduled for the next operation cycle, then the to-be-operated process is collected to the current operation cycle; The second determination module 303 is configured to, if the to-be-operated process is not sequential with the operation process content in the current operation cycle, then the to-be-operated process is collected to the next operation cycle; The third determination module 304 is configured to, if the to-be-operated process is sequential with the operation process content in the current operation cycle, then the to-be-operated process is collected to the current operation cycle.
[0076] The device can determine whether the to-be-operated process is collected to the current operation cycle or the next operation cycle according to whether the to-be-operated process of the target operation point input is sequential with the operation process content in the current operation cycle. If the to-be-operated process is scheduled by multiple scheduling dates and the target operation point has not been scheduled for the next operation cycle, then the to-be-operated process is collected to the current operation cycle. If the to-be-operated process is not sequential with the operation process content in the current operation cycle, then the to-be-operated process is collected to the next operation cycle. If the to-be-operated process is sequential with the operation process content in the current operation cycle, then the to-be-operated process is collected to the current operation cycle. Thus, the operation cycle of the to-be-operated process is accurately determined, the fine management and control of the mine mining is realized, the production process is standardized, and accurate data basis is provided for the mine production management.
[0077] As shown in Figure 4 , the present application provides an electronic device, which comprises a processor 111, a communication interface 112, a memory 113 and a communication bus 114, wherein the processor 111, the communication interface 112 and the memory 113 complete mutual communication through the communication bus 114, a memory 113 for storing a computer program; In an embodiment of the present application, the processor 111, when executing the program stored in the memory 113, implements the mine mining process cycle determination method provided by any one of the preceding method embodiments.
[0078] The communication bus mentioned above can be a Peripheral Component Interconnect (PCI) bus or an Extended Industry Standard Architecture (EISA) bus, etc. The communication bus can be divided into an address bus, a data bus, a control bus, etc. For the convenience of representation, only one thick line is used in the figure, but it does not mean that there is only one bus or only one type of bus.
[0079] The communication interface is used for communication between the terminal and other devices.
[0080] The memory can include a Random Access Memory (RAM) and can also include a non-volatile memory, such as at least one disk memory. Optionally, the memory can also be at least one storage device located away from the processor.
[0081] The processor mentioned above can be a general-purpose processor, including a Central Processing Unit (CPU), a Network Processor (NP), etc.; can also be a Digital Signal Processing (DSP), an Application Specific Integrated Circuit (ASIC), a Field-Programmable Gate Array (FPGA) or other programmable logic device, a discrete gate or transistor logic device, a discrete hardware component.
[0082] The embodiment of the present application also provides a computer readable storage medium, which stores a computer program, and the computer program is executed by a processor to implement the mine mining process cycle determination method provided by any one of the preceding method embodiments.
[0083] The apparatus embodiments described above are only illustrative, and the units described as separate components can or can not be physically separate, and the components shown as units can or can not be physical units, i.e., can be located in one place, or can be distributed on multiple network units. Part or all of the modules can be selected according to actual needs to achieve the purpose of the embodiment.
[0084] Through the description of the above embodiments, those skilled in the art can clearly understand that the embodiments can be implemented by means of software plus a general hardware platform, and of course can also be implemented by hardware. Based on such understanding, the above technical solutions can be embodied in the form of a software product, which can be stored in a computer readable storage medium, such as a ROM / RAM, a magnetic disk, an optical disk, etc., and includes a number of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute the methods described in the various embodiments or some parts of the embodiments.
[0085] It should be understood that the terms used herein are for the purpose of describing particular example embodiments only and are not intended to be limiting. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. The terms "comprises", "comprising", "includes", "including" and the like are to be construed in an inclusive sense, as opposed to an exclusive or exhaustive sense, that is to say, in the sense of "including, but not limited to". The methods described herein can be implemented in a computer program, software, or firmware incorporated in a computer- readable medium for execution by, or to control the operation of, a data processing apparatus, and can be implemented in one or more computer programs or code (application programming interface (API) declarations, for example) that can be executed by a computer or network device. A computer program in the present context can be a program, a piece of code, an instruction, or some other logic that, when executed, contributes to causing a computer or network device to perform a certain process. Computer programs can be combined or distributed in various ways. The computer program can be stored in a computer program product, which can be distributed in, for example, a computer system or a memory. The memory can be, for example, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, or a combination thereof. The memory can be a computer program product in the form of a memory chip, or it can be a computer program product in the form of a memory medium storing the program. The memory medium can be a semiconductor memory, a solid-state memory, a magnetic memory, or an optical memory.
[0086] It should be understood that the specific embodiments described herein merely exemplify the application and should not be used to limit the application. In the description, the suffixes such as "module", "part", or "unit" used to represent elements are merely for the convenience of the description of the application and have no specific meaning. Therefore, "module", "part", or "unit" can be used interchangeably.
[0087] The above description is merely one specific implementation of the present application, enabling those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A mine working process cycle determination method characterized by comprising: a step of determining a cycle of a mine working process based on a result of a mine working process cycle determination model. The method comprises: acquiring a to-be-operated process of a target operating point input at a current time; if the to-be-operated process is scheduled by multiple scheduling dates and the target operating point has not been scheduled for a next operating cycle, the to-be-operated process is grouped into the current operating cycle; if the to-be-operated process is not sequentially coherent with a process content in the current operating cycle, the to-be-operated process is grouped into the next operating cycle; if the to-be-operated process is sequentially coherent with the process content in the current operating cycle, the to-be-operated process is grouped into the current operating cycle.
2. The method of claim 1, wherein, The method for determining whether the to-be-operated process is sequentially coherent with the process content in the current operating cycle comprises: determining whether the to-be-operated process is sequentially coherent with the process content in the current operating cycle according to a sequence identifier of the to-be-operated process and a sequence identifier of an existing process of the target operating point.
3. The method of claim 2, wherein, The to-be-operated process comprises one of a support process, a drilling process, a blasting and prying process and a slag removal process, and the support process, the drilling process, the blasting and prying process and the slag removal process respectively carry a sequence identifier, the sequence identifier of the support process is smaller than the sequence identifier of the drilling process, the sequence identifier of the drilling process is smaller than the sequence identifier of the blasting and prying process, and the sequence identifier of the blasting and prying process is smaller than the sequence identifier of the slag removal process; determining whether the to-be-operated process is sequentially coherent with the process content in the current operating cycle according to the sequence identifier of the to-be-operated process and the sequence identifier of the existing process of the target operating point comprises: acquiring a first operating process of the target operating point from a database, wherein the first operating process is a process closest to the current time among historical operating processes of the target operating point, and the first operating process comprises one of the support process, the drilling process, the blasting and prying process and the slag removal process; if the sequence identifier of the first operating process is smaller than or equal to the sequence identifier of the to-be-operated process, the to-be-operated process is added to an operating cycle to which the first operating process belongs in the database; if the sequence identifier of the first operating process is greater than the sequence identifier of the to-be-operated process, a new operating cycle is created in the database and the to-be-operated process is taken as a first process of the new operating cycle.
4. The method of claim 3, wherein, After the to-be-operated process is added to the operating cycle to which the first operating process belongs in the database or a new operating cycle is created in the database and the to-be-operated process is taken as the first process of the new operating cycle, the method further comprises: acquiring an ore output corresponding to the operating cycle and acquiring a production material consumption corresponding to an operating process included in the operating cycle; generating a production output report of the operating cycle according to the ore output; determining single consumption data corresponding to each operating process and total consumption data of the operating cycle according to the production material consumption; generating a production consumption report of the operating cycle according to the single consumption data and the total consumption data.
5. The method of claim 3, wherein, Acquiring a to-be-operated process of a target operating point input at a current time comprises: obtaining a work procedure to be performed at the target work point input by a user at a current time; allocating a work team, a control level, a safety verifier, a safety guardian, and a safety person in charge according to a work content of the work procedure.
6. The method of claim 5, wherein, After obtaining the work procedure to be performed at the target work point input by the user at the current time, the method further comprises: generating model display content according to the work content of the work procedure; displaying the model display content in a preset three-dimensional model.
7. The method of claim 5, wherein, After obtaining the work procedure to be performed at the target work point input by the user at the current time, the method further comprises: obtaining a current production rectification project; determining a target rectification project associated with the work procedure from the production rectification project; issuing the target rectification project to the safety verifier, so that the safety verifier performs safety verification according to the target rectification project before the work team performs work.
8. The method of claim 7, wherein, After issuing the target rectification project to the safety verifier, the method further comprises: generating rectification display content according to the target rectification project; displaying the rectification display content in a preset three-dimensional model.
9. The method of claim 5, wherein, After allocating the work team, the control level, the safety verifier, the safety guardian, and the safety person in charge according to the work content of the work procedure, the method further comprises: obtaining an abnormal event of the work team during work; sending the abnormal event to the work team, the safety verifier, the safety guardian, and the safety person in charge.
10. A computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program is executed by a processor to realize the mine work procedure cycle determination method according to any one of claims 1-9.
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