Two-lane automatic equipment management method and device, electronic equipment and storage medium

CN117967306BActive Publication Date: 2026-09-15BEIJING TIANMA INTELLIGENT CONTROL TECHNOLOGY CO LTD +1
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Patent Information

Application Number
CN202410014939.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-01-04
Publication Date
2026-09-15
Estimated Expiration
2044-01-04

AI Technical Summary

Technical Problem

[0004]而现有技术中,没有以XML技术实现对工作面两巷自动化设备进行数字化管理的方案

Benefits of technology

[0036] The present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the two-lane automated equipment management method as described above.

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Abstract

The application provides a two-lane automatic equipment management method and device, electronic equipment and a storage medium, and relates to the fully mechanized coal mining face mining technical field. The two-lane automatic equipment management method comprises the following steps: obtaining relevant information of each two-lane automatic equipment; formulating an XSD constraint document based on the relevant information, processing the relevant information according to the XSD constraint document, and generating an XML data interaction storage document; displaying a management interface of each two-lane automatic equipment based on the XML data interaction storage document; and managing each two-lane automatic equipment based on the management interface. The application can realize the management of two-lane automatic equipment by using the XML storage interaction document management mode.
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Description

Technical Field

[0001] This invention relates to the field of fully mechanized mining technology, and in particular to a method, device, electronic equipment and storage medium for managing automated equipment in two roadways. Background Technology

[0002] Two-way automated equipment management refers to the scientific and effective digital management of two-way automated equipment such as crushers, transfer machines, scraper conveyors, belt conveyors and pump stations in the fully mechanized mining face, based on the actual production process.

[0003] Extensible Markup Language (XML) is a technology used to mark up data and define data types. It is a source language that allows users to define their own markup languages. XML is a standard general-purpose markup language with advantages such as good extensibility, separation of content and form, adherence to strict syntax requirements, and good value preservation.

[0004] Currently, there is no solution for digitally managing automated equipment in both lanes of the working face using XML technology. Summary of the Invention

[0005] To address the problems existing in the prior art, embodiments of the present invention provide a method, apparatus, electronic device, and storage medium for managing automated equipment in two lanes.

[0006] This invention provides a method for managing automated equipment in two lanes, comprising:

[0007] Obtain relevant information about the automated equipment in each of the two lanes;

[0008] Based on the aforementioned relevant information, an XSD constraint document is formulated, and the aforementioned relevant information is processed according to the XSD constraint document to generate an XML data interaction storage document;

[0009] Based on the XML data interaction storage document, the management interface of each of the two lane automation devices is displayed;

[0010] Based on the management interface, the automated equipment in each of the two lanes is managed.

[0011] According to the present invention, a method for managing automated equipment in two lanes includes processing the relevant information based on the XSD constraint document to generate an XML data interaction and storage document, comprising:

[0012] Based on the XSD constraint document, the relevant information is processed in a structured manner to obtain a data organization structure;

[0013] The data organization structure is converted to XML format to obtain an XML data interactive storage document.

[0014] According to the present invention, a two-lane automated equipment management method is provided, wherein the two-lane automated equipment includes at least one of a crusher, a transfer conveyor, a scraper conveyor, a belt conveyor, a pump station, a combination switch, a transfer transformer, and a frequency converter;

[0015] The pumping station includes emulsifying pumps and / or spray pumps;

[0016] The relevant information includes at least one of the following: procurement information, installation information, commissioning information, usage information, maintenance information, scrapping information, and equipment identification.

[0017] According to the present invention, a two-lane automated equipment management method is provided, wherein the management interface of the two-lane automated equipment includes the equipment identifier of the two-lane automated equipment, and a management unit for at least one of the following information: procurement information, installation information, debugging information, usage information, maintenance information and scrapping information of the two-lane automated equipment;

[0018] The management unit includes at least one of the following: adding information unit, viewing information unit, modifying information unit, deleting information unit, importing XML document unit, and exporting XML document unit.

[0019] According to the present invention, a method for managing automated equipment in two lanes includes managing each of the automated equipment in the two lanes based on the management interface, comprising:

[0020] Receive management instructions, which carry a unit identifier and the device identifiers of the two automated devices to be managed;

[0021] Based on the equipment identifiers of the two lane automation devices to be managed, determine the two lane automation devices to be managed, and based on the unit identifiers, determine the management unit to be operated;

[0022] The two lanes of automated equipment to be managed are managed according to the management unit to be operated.

[0023] According to the present invention, a method for managing automated equipment in two lanes includes managing each of the automated equipment in the two lanes based on the management interface, comprising:

[0024] Receive instructions for selecting automated equipment in both lanes;

[0025] The selected two lane automation devices are determined based on the selection criteria of the two lane automation devices.

[0026] In response to the view command, import and display the XML data interaction storage documents corresponding to the selected two lane automation devices.

[0027] According to the present invention, a method for managing automated equipment in two lanes includes converting the data organization structure to XML format to obtain an XML data interactive storage document, comprising:

[0028] Obtain XML development tools;

[0029] The XML development tool is invoked to convert the data organization structure into XML format, resulting in an XML data interactive storage document.

[0030] The present invention also provides a two-lane automated equipment management device, comprising:

[0031] The acquisition module is configured to acquire relevant information about the automated equipment in each of the two lanes.

[0032] The generation module is configured to formulate an XSD constraint document based on the aforementioned relevant information, and process the aforementioned relevant information according to the XSD constraint document to generate an XML data interaction storage document;

[0033] The display module is configured to interact with and store documents based on the XML data to display the management interface of each of the two lane automation devices;

[0034] The management module is configured to manage each of the two lane automation devices based on the management interface.

[0035] The present invention also provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the two-lane automated equipment management method described above.

[0036] The present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the two-lane automated equipment management method as described above.

[0037] The present invention also provides a computer program product, including a computer program that, when executed by a processor, implements the two-lane automated equipment management method as described above.

[0038] The present invention provides a method, apparatus, electronic device, and storage medium for managing automated equipment in two lanes. The method involves: acquiring relevant information about each automated device in the two lanes; creating an XSD constraint document based on this information; processing the relevant information according to the XSD constraint document to generate an XML data interaction storage document; displaying a management interface for each automated device in the two lanes based on the XML data interaction storage document; and managing the automated devices in the two lanes based on the management interface. The present invention utilizes an XML storage interaction document management method to achieve the management of automated equipment in two lanes.

[0039] Furthermore, the XSD constraint document can be used to verify whether the XML data interaction storage document provided to the external party or provided by the external party conforms to the specified file format during interaction, thereby ensuring the reliability and interactivity of the XML data interaction storage document. The XML data interaction storage document is a representation of the XSD constraint document. With the XSD constraint document, there is a fixed XML writing format. The XSD constraint document can constrain the data structure of the XML data interaction storage document, such as whether certain data items must exist, whether the data item is a character type or an integer type, etc. The XSD constraint document has a core position and role in the two-lane automated equipment management method. Attached Figure Description

[0040] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0041] Figure 1 This is a flowchart illustrating the two-lane automated equipment management method provided by the present invention;

[0042] Figure 2 This is a schematic diagram of the XSD constraint document provided by the present invention;

[0043] Figure 3 This is a schematic diagram of the structure of the XML data interactive storage document provided by the present invention;

[0044] Figure 4 This is a schematic diagram of the organizational structure of the data management software for two-lane automated equipment provided by the present invention;

[0045] Figure 5 This is a schematic diagram of the structure of the two-lane automated equipment management device provided by the present invention;

[0046] Figure 6 This is a schematic diagram of the structure of the electronic device provided by the present invention. Detailed Implementation

[0047] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.

[0048] To facilitate a clearer understanding of the various embodiments of the present invention, some relevant background knowledge will be introduced as follows.

[0049] Two-way automated equipment management refers to the scientific and effective digital management of automated equipment in the fully mechanized mining face, such as crushers, transfer conveyors, scraper conveyors, belt conveyors, and pump stations, based on actual production processes. This minimizes damage to the automated equipment caused by factors such as geological conditions, equipment problems, operating environment, and production precautions, thereby improving production reliability and ensuring mining efficiency.

[0050] In existing technologies, most management is achieved through the design of automatic hydraulic support relocation processes, mainly using the following three technical solutions:

[0051] The first aspect is an intelligent management system and method for coal mines. This intelligent management system includes an intelligent management platform, a mining system, a coal mine auxiliary system, and a server connected to the intelligent management platform. The cloud server is also connected to the terminal devices. The intelligent management platform includes a monitoring system, a storage system, and a processing system. The monitoring system monitors the operating conditions of the mining system and the coal mine auxiliary system. The storage system stores various operating parameter information of the mining system and the coal mine auxiliary system. The processing system processes the operating parameter information of the mining system and the coal mine auxiliary system according to their operating conditions and transmits the processed data to the cloud server. The cloud server performs secondary processing on the processed data according to preset rules and sends the secondary processed data to the terminal devices. However, this solution manages various operating parameter information for mine operations, rather than managing the use of equipment in the two roadways. Furthermore, the system structure includes a backend server and a database, with storage primarily supported by the database rather than using XML technology.

[0052] The first solution is an intelligent coal mine management system. This system includes a coal enterprise management module for acquiring, storing, and managing user information; an equipment management module for acquiring, storing, and managing enterprise equipment information; an order management module for acquiring, storing, and managing user order information; and a queue management module for managing the queues of user vehicles entering and leaving the enterprise based on user order information. This solution uses the intelligent coal mine management system as a backend management system, communicating and connecting with distributor and supplier systems to acquire and comprehensively manage relevant order information and other data from distributors and suppliers. It also records and manages vehicle entry and exit, facilitating intelligent online management of the enterprise's coal mine supply chain and improving coal logistics efficiency. Throughout the management process, data from all ends can be recorded and easily traced, enhancing the safety of coal mine operation management. However, this solution manages coal mine operation and management information, not the usage management of equipment in the two roadways; and the system structure includes a backend server and database, with storage primarily supported by the database rather than using XML technology.

[0053] Thirdly, there is a coal mine management system, which includes multiple information identification devices, multiple vehicle passage indicator devices, and a controller. Each information identification device and each vehicle passage indicator device is associated with a specific location area in the coal mine, including at least one of the following: mine entrance area, parking lot entrance area, vehicle queuing area, light weighing area, loading area, heavy weighing area, ticketing area, and verification area. The information identification device identifies the transport code corresponding to the vehicle, obtains the identification result, and sends the result to the controller. The transport code includes driver information and information about the goods to be transported. The controller generates vehicle passage control commands based on the identification results. The vehicle passage indicator devices control the passage of the vehicle according to the vehicle passage control commands. This solution can improve the efficiency of coal mine management. However, the management object of this solution is coal mine vehicle information, not the use and management of equipment in the two roadways; and the system structure of this solution includes a backend server and a database, with storage mainly supported by the database rather than using XML technology.

[0054] It is evident that there is no existing technology that uses XML technology to achieve digital management of automated equipment in the two lanes of the working face.

[0055] Therefore, this invention provides a method, apparatus, electronic device, and storage medium for managing automated equipment in two lanes. The method involves acquiring relevant information about each automated device in the two lanes; creating an XSD constraint document based on this information; processing the relevant information according to the XSD constraint document to generate an XML data interaction storage document; displaying a management interface for each automated device in the two lanes based on the XML data interaction storage document; and managing the automated devices in the two lanes based on the management interface. This invention utilizes an XML storage interaction document management method to achieve the management of automated equipment in two lanes.

[0056] The following is combined with Figures 1-6 The present invention describes a two-lane automated equipment management method, apparatus, electronic device, and storage medium.

[0057] Figure 1 This is a flowchart illustrating the two-lane automated equipment management method provided by the present invention. See [link / reference]. Figure 1 As shown, steps 101-104 are included, wherein:

[0058] Step 101: Obtain relevant information about the automated equipment in each of the two lanes.

[0059] First, it should be noted that the executing entity of this invention can be any electronic device that manages the two-lane automation equipment, such as a smartphone, smartwatch, desktop computer, laptop, etc. Preferably, the executing entity of this invention is a two-lane automation equipment management system or software, and the operating system corresponding to the two-lane automation equipment management system or software can be a Windows system, and the development language is C#.

[0060] Specifically, the automated equipment in the two-way mining face refers to large-scale complete sets of equipment that can be automated, also known as automated devices. It refers to the process by which machines or devices automatically operate or are controlled according to prescribed procedures or instructions without human intervention. The automated equipment in the two-way mining face includes at least one of the following: crusher, transfer conveyor, scraper conveyor, belt conveyor, pump station, combination switch, mobile substation, and frequency converter; wherein the pump station includes emulsifying pumps and / or spray pumps. The mobile substation refers to a mobile substation.

[0061] Relevant information refers to information related to the automated equipment in the two lanes, i.e., status information. This relevant information includes at least one of the following: procurement information, installation information, commissioning information, usage information, maintenance information, scrapping information, and equipment identification.

[0062] In practical applications, relevant information about the automated equipment in each of the two roadways of a fully mechanized mining face can be obtained. There are various methods for obtaining this information, and this invention does not limit the methods used.

[0063] For example, users upload relevant information about the two lanes of automated equipment through the relevant information upload page, and the executing entity obtains the relevant information about the two lanes of automated equipment accordingly.

[0064] For example, when the executing entity receives an information retrieval instruction, it retrieves the relevant information of each of the two lane automation devices from the storage area pointed to by the information retrieval instruction.

[0065] For example, by sorting out the data items of the procurement, installation, commissioning, use, maintenance and scrapping of the automated equipment in the two roadways of the fully mechanized mining face, such as crushers, transfer machines, scraper conveyors, belt conveyors and pump stations, relevant information of each automated equipment in the two roadways can be obtained.

[0066] Step 102: Based on the relevant information, formulate an XSD constraint document, and process the relevant information according to the XSD constraint document to generate an XML data interaction storage document.

[0067] Specifically, an XSD (XML Schemas Definition) constraint document, also known as a schema document, is used to represent the data structure of an XML data interaction storage document. An XML data interaction storage document refers to a document that records relevant information about various automated devices, using XML as the description language. XML data interaction storage documents can be used for interaction, such as being displayed to users based on human-computer interaction or stored in a database.

[0068] In practical applications, XSD constraint documents can be formulated based on the acquired relevant information. Furthermore, the XSD constraint documents can be used as constraints to perform descriptive language conversion and other processing on the relevant information of each two-lane automation equipment, thereby obtaining an XML data interaction storage document.

[0069] It should be noted that the XML data interaction storage document can be an XML document composed of relevant information of all two lane automation devices, such as generating an XML data interaction storage document based on the relevant information of all two lane automation devices.

[0070] XML data exchange storage documents can also be XML documents composed of relevant information of some two-lane automation equipment, such as XML data exchange storage documents corresponding to each two-lane automation equipment, composed of relevant information of each two-lane automation equipment.

[0071] Furthermore, when an XML data interaction storage document is generated based on the relevant information of all two-lane automation equipment, this XML data interaction storage document can be divided into separate XML data interaction storage documents corresponding to each two-lane automation equipment.

[0072] It should be noted that the XSD constraint document serves as a verification tool to ensure that the XML data interaction storage document provided to or supplied by an external entity conforms to the specified file format. This ensures the reliability and interactivity of the XML data interaction storage document. The XML data interaction storage document is a representation of the XSD constraint document. With the XSD constraint document, a fixed XML writing format is established. The XSD constraint document can constrain the data structure of the XML data interaction storage document, such as whether certain data items must exist, whether the data item is a character or an integer, etc. The XSD constraint document plays a core role in the two-lane automated equipment management method.

[0073] For example, see Figure 2 , Figure 2 This is a schematic diagram of the XSD constraint document provided by the present invention: The two-lane automated equipment includes attribute nodes and other nodes. The attribute nodes represent the equipment identifier; the other nodes include order information nodes, installation information nodes, usage information nodes, maintenance information nodes, and scrapping information nodes, etc.; the order information node includes equipment serial number, equipment name, designer, inspector, modification date, modification indicators, order number, product number, customer, purchasing company, order date, order time, materials, external vouchers, and remarks, etc.

[0074] Step 103: Based on the XML data interaction storage document, display the management interface of each of the two lane automation devices.

[0075] Specifically, the management interface refers to the interface used to manage the automated equipment in the two lanes.

[0076] In practical applications, XML data exchange storage documents can be parsed to determine the automation equipment in each of the two lanes, as well as the management interface of each automation equipment in each of the two lanes.

[0077] Step 104: Based on the management interface, manage each of the two lane automation devices.

[0078] In practical applications, users can operate on the management interface based on management needs. Correspondingly, the execution entity performs corresponding operations on the automated equipment in each lane based on the user's operation, that is, it performs management.

[0079] The present invention provides a method for managing automated equipment in two lanes. This method involves: acquiring relevant information about each automated equipment in the two lanes; creating an XSD constraint document based on this information; processing the relevant information according to the XSD constraint document to generate an XML data interaction and storage document; displaying a management interface for each automated equipment in the two lanes based on the XML data interaction and storage document; and managing the automated equipment in the two lanes based on the management interface. This invention utilizes an XML storage and interaction document management method to achieve the management of automated equipment in two lanes.

[0080] In one or more optional embodiments of the present invention, the specific implementation process of processing the relevant information according to the XSD constraint document to generate an XML data interactive storage document can be as follows:

[0081] Based on the XSD constraint document, the relevant information is processed in a structured manner to obtain a data organization structure;

[0082] The data organization structure is converted to XML format to obtain an XML data interactive storage document.

[0083] Specifically, a data organization structure refers to a collection of data elements that have one or more specific relationships with each other.

[0084] In practical applications, by sorting out the relevant information of the automated equipment in each of the two roadways on the longwall mining face, and according to the set structure, namely the XML format specified in the XSD constraint document, a data organization structure serving the usage cycle of the automated equipment in the two roadways is formulated. This data organization structure can be stored in a database.

[0085] Furthermore, the data organization structure can be obtained from the database, or the structured data organization structure can be directly used. The data organization structure can be formatted by converting the original text format to XML format, thereby obtaining an XML data interactive storage document.

[0086] Therefore, performing structuring first and then XML format conversion can improve the structuring and accuracy of XML data interactive storage documents, as well as the retrieval efficiency of XML data interactive storage documents.

[0087] In one or more optional embodiments of the present invention, the specific implementation process of converting the data organization structure into XML format to obtain an XML data interactive storage document can be as follows:

[0088] Obtain XML development tools;

[0089] The XML development tool is invoked to convert the data organization structure into XML format, resulting in an XML data interactive storage document.

[0090] Specifically, XML development tools refer to tools for converting XML formats.

[0091] In practical applications, it is necessary to obtain the XML development tools used for XML format conversion beforehand. Then, the XML development tools are invoked to convert the data organization structure into XML format, resulting in an XML data interactive storage document.

[0092] An XML development tool could be Altova XMLSpy.

[0093] Therefore, by using XML development tools to perform XML format conversion, the standardization and accuracy of XML data exchange and storage documents can be guaranteed.

[0094] For example, see Figure 3 , Figure 3 This is a schematic diagram of the structure of the XML data interaction storage document provided by the present invention. The XML data interaction storage document includes: ordering information, installation information, usage information, maintenance information, and scrapping information. The ordering information includes ordering data for equipment such as crushers, transfer conveyors, scraper conveyors, emulsifying pumps, and spray pumps, including equipment serial numbers, purchase orders, and purchasers. The installation information includes installation data for equipment such as crushers, including equipment serial numbers, installation time, installation units, and installation personnel. The usage information includes usage data for equipment such as transfer conveyors, including equipment serial numbers, usage time, users, usage intervals, and operating duration. The maintenance information includes maintenance data for equipment such as emulsifying pumps, including equipment serial numbers, maintenance time, maintenance problems, maintenance intervals, maintenance personnel numbers, and maintenance personnel names. The scrapping information includes scrapping data for equipment such as spray pumps, including equipment serial numbers, scrapping time, scrapping personnel numbers, scrapping personnel names, and scrapping reasons. The description language for the XML data interaction storage document of the two-lane automated equipment status information is XML, and the development tool is Altova XMLSpy.

[0095] In one or more optional embodiments of the present invention, when the relevant information includes at least one of procurement information, installation information, commissioning information, usage information, maintenance information, scrapping information, and equipment identification, the management interface of the two-lane automation equipment includes the equipment identification of the two-lane automation equipment, and a management unit for at least one of the procurement information, installation information, commissioning information, usage information, maintenance information, and scrapping information of the two-lane automation equipment; the management unit includes at least one of the following: adding information unit, viewing information unit, modifying information unit, deleting information unit, importing XML document unit, and exporting XML document unit.

[0096] Among them, the equipment identification of the two lanes automation equipment is used to distinguish each two lane automation equipment.

[0097] Each two-lane automation device has an equipment identifier or a management unit associated with the two-lane automation device that contains at least one of the following information: procurement information, installation information, commissioning information, usage information, maintenance information, and scrapping information. That is, it contains at least one of the following management units: procurement information management unit, installation information management unit, commissioning information management unit, usage information management unit, maintenance information management unit, and scrapping information management unit.

[0098] The procurement information management unit is used to manage the procurement information of the current two-lane automated equipment; the installation information management unit is used to manage the installation information of the current two-lane automated equipment; the commissioning information management unit is used to manage the commissioning information of the current two-lane automated equipment; the usage information management unit is used to manage the usage information of the current two-lane automated equipment; the maintenance information management unit is used to manage the maintenance information of the current two-lane automated equipment; and the scrapping information management unit is used to manage the scrapping information of the current two-lane automated equipment.

[0099] In addition, each management unit includes at least one of the following: adding information unit, viewing information unit, modifying information unit, deleting information unit, importing XML document unit, and exporting XML document unit.

[0100] The Add Information Unit is used to add relevant information to the current management unit; the View Information Unit is used to view relevant information to the current management unit; the Modify Information Unit is used to modify relevant information to the current management unit; the Delete Information Unit is used to delete part or all of the relevant information to the current management unit; the Import XML Document Unit is used to import the XML data interaction storage document to the current management unit from the XML data interaction storage document storage location; and the Export XML Document Unit is used to export the XML data interaction storage document to the current management unit to the specified location.

[0101] In this way, multiple management of different related information in different automated equipment in two lanes can be achieved, which improves the richness of management.

[0102] In one or more optional embodiments of the present invention, the management of each of the two lane automation devices based on the management interface can be specifically implemented as follows:

[0103] Receive management instructions, which carry a unit identifier and the device identifiers of the two automated devices to be managed;

[0104] Based on the equipment identifiers of the two lane automation devices to be managed, determine the two lane automation devices to be managed, and based on the unit identifiers, determine the management unit to be operated;

[0105] The two lanes of automated equipment to be managed are managed according to the management unit to be operated.

[0106] Specifically, management instructions are instructions triggered to operate on management units. Unit identifiers are identifiers for management units.

[0107] In practical applications, users can perform operations such as clicking, long-pressing, and double-clicking on a specific unit of a two-lane automation device through the management interface. Correspondingly, the executing entity receives management instructions carrying unit and device identifiers.

[0108] For example, when a user clicks on the information modification unit for the crusher's installation information in the management interface, the executing entity receives a management instruction, which includes the crusher's equipment identifier and the unit identifier for the information modification unit for the installation information.

[0109] Furthermore, the implementing entity determines the two-lane automated equipment to be managed based on the equipment identifier of the two-lane automated equipment to be managed, and determines the management unit to be operated based on the unit identifier. Then, it manages the two-lane automated equipment to be managed based on the management unit to be operated.

[0110] Following the previous example, after the executing entity determines the information modification unit for the crusher and its installation information, it modifies the installation information of the crusher based on the information modification unit.

[0111] It should be noted that management instructions can also include management parameters, which are used for management. That is, the executing entity manages the automated equipment in the two lanes according to the management unit to be operated and the management parameters.

[0112] In this way, precise management of the automated equipment in both lanes can be achieved.

[0113] In one or more optional embodiments of the present invention, the management of each of the two lane automation devices based on the management interface can be specifically implemented as follows:

[0114] Receive instructions for selecting automated equipment in both lanes;

[0115] The selected two lane automation devices are determined based on the selection criteria of the two lane automation devices.

[0116] In response to the view command, import and display the XML data interaction storage documents corresponding to the selected two lane automation devices.

[0117] In practical applications, the management interface can also provide a batch selection control for selecting the two automated devices that need to be managed. Users can select the two automated devices that need to be managed through the batch selection control, and correspondingly, the execution entity receives the selection instructions for the two automated devices.

[0118] The two-lane automation equipment selection instruction carries the equipment identifier of the selected two-lane automation equipment. The executing entity determines the selected two-lane automation equipment based on the equipment identifier carried in the two-lane automation equipment selection instruction.

[0119] Then, a view command is received to view the XML data interaction storage document. In response to the view command, the XML data interaction storage documents corresponding to the selected two automated devices in the two lanes are imported and displayed together. This enables batch management of the two automated devices in the two lanes.

[0120] For example, by analyzing data items related to the procurement, installation, commissioning, use, maintenance, and scrapping of automated equipment in the two roadways of a fully mechanized mining face, such as crushers, transfer conveyors, scraper conveyors, belt conveyors, and pump stations, a data organization structure serving the equipment's lifecycle can be established. Based on this structured data organization using XML, the automated equipment in the two roadways can be managed through a fully mechanized mining face automated equipment management system or software. This aims to improve the efficiency of equipment maintenance by underground maintenance teams, reduce the intensity of maintenance work, and optimize the composition of maintenance team personnel.

[0121] Specifically, the two-lane automated equipment management system or software includes two categories: an XML data interaction and storage document operation function for the status information of the two-lane automated equipment and a status information management function for the two-lane automated equipment. The XML data interaction and storage document operation function includes: importing and exporting the status of the two-lane automated equipment according to actual needs, i.e., the functions corresponding to importing and exporting XML document units; the status information management function for the two-lane automated equipment includes: freely adding, viewing, modifying, and deleting the status information of the two-lane automated equipment, i.e., the functions corresponding to adding, viewing, modifying, and deleting information units.

[0122] For example, see Figure 4 , Figure 4 This is a schematic diagram of the organizational structure of the two-lane automated equipment data management software provided by the present invention: The two-lane automated equipment data management software includes management units for two-lane automated equipment such as crushers, transfer machines, scraper conveyors, emulsion pumps, sprayers, transfer transformers, and belt conveyors. The crusher management unit includes units for ordering information, installation information, usage information, maintenance information, and scrapping information. The ordering information management unit includes units for adding information, viewing information, modifying information, deleting information, importing XML documents, and exporting XML documents. In addition, the two-lane automated equipment data management software also includes management units for line-connected interlocks and user information.

[0123] As can be seen, the data management software for the two lanes' automated equipment allows users to add, modify, view, and save data in each module within a single data management module, and can also read in XML documents from external sources and extract XML documents from external sources.

[0124] Specifically, the operating system of the automated equipment management software for the two lanes is Windows, and the development language is C#.

[0125] Furthermore, this invention can separately store interactive XML text data, a backend management system, and a database. The main storage is supported by XML documents, while the database serves only as a backend software service and temporary data backup.

[0126] The two-lane automated equipment management device provided by the present invention is described below. The two-lane automated equipment management device described below and the two-lane automated equipment management method described above can be referred to in correspondence.

[0127] Figure 5 This is a schematic diagram of the structure of the two-lane automated equipment management device provided by the present invention, as shown below. Figure 5 As shown, the automated equipment management device 500 for the two lanes includes: an acquisition module 501, a generation module 502, a display module 503, and a management module 504, wherein:

[0128] The acquisition module 501 is configured to acquire relevant information about the automated equipment in each of the two lanes.

[0129] The generation module 502 is configured to formulate an XSD constraint document based on the aforementioned relevant information, and process the aforementioned relevant information according to the XSD constraint document to generate an XML data interaction storage document;

[0130] The display module 503 is configured to display the management interface of each of the two lane automation devices based on the XML data interaction storage document.

[0131] The management module 504 is configured to manage each of the two lane automation devices based on the management interface.

[0132] The two-lane automated equipment management device provided by this invention acquires relevant information of each two-lane automated equipment; based on the relevant information, it formulates an XSD constraint document, processes the relevant information according to the XSD constraint document, and generates an XML data interaction storage document; based on the XML data interaction storage document, it displays the management interface of each two-lane automated equipment; and based on the management interface, it manages each two-lane automated equipment. This invention uses an XML storage interaction document management method to realize the management of two-lane automated equipment.

[0133] In one or more optional embodiments of the present invention, the generation module 502 is further configured to:

[0134] Based on the XSD constraint document, the relevant information is processed in a structured manner to obtain a data organization structure;

[0135] The data organization structure is converted to XML format to obtain an XML data interactive storage document.

[0136] In one or more optional embodiments of the present invention, the two-lane automation equipment includes at least one of a crusher, a transfer conveyor, a scraper conveyor, a belt conveyor, a pump station, a combination switch, a transfer transformer, and a frequency converter;

[0137] The pumping station includes emulsifying pumps and / or spray pumps;

[0138] The relevant information includes at least one of the following: procurement information, installation information, commissioning information, usage information, maintenance information, scrapping information, and equipment identification.

[0139] In one or more optional embodiments of the present invention, the management interface of the two-lane automation equipment includes the equipment identifier of the two-lane automation equipment, and a management unit for at least one of the following information: procurement information, installation information, commissioning information, usage information, maintenance information and scrapping information of the two-lane automation equipment;

[0140] The management unit includes at least one of the following: adding information unit, viewing information unit, modifying information unit, deleting information unit, importing XML document unit, and exporting XML document unit.

[0141] In one or more optional embodiments of the present invention, the management module 504 is further configured to:

[0142] Receive management instructions, which carry a unit identifier and the device identifiers of the two automated devices to be managed;

[0143] Based on the equipment identifiers of the two lane automation devices to be managed, determine the two lane automation devices to be managed, and based on the unit identifiers, determine the management unit to be operated;

[0144] The two lanes of automated equipment to be managed are managed according to the management unit to be operated.

[0145] In one or more optional embodiments of the present invention, the management module 504 is further configured to:

[0146] Receive instructions for selecting automated equipment in both lanes;

[0147] The selected two lane automation devices are determined based on the selection criteria of the two lane automation devices.

[0148] In response to the view command, import and display the XML data interaction storage documents corresponding to the selected two lane automation devices.

[0149] In one or more optional embodiments of the present invention, the generation module 502 is further configured to:

[0150] Obtain XML development tools;

[0151] The XML development tool is invoked to convert the data organization structure into XML format, resulting in an XML data interactive storage document.

[0152] Figure 6 An example is a schematic diagram of the physical structure of an electronic device, such as... Figure 6As shown, the electronic device may include a processor 610, a communication interface 620, a memory 630, and a communication bus 640, wherein the processor 610, the communication interface 620, and the memory 630 communicate with each other through the communication bus 640. The processor 610 can call logical instructions in the memory 630 to execute a two-lane automation equipment management method, which includes: acquiring relevant information of each two-lane automation equipment; based on the relevant information, formulating an XSD constraint document, and processing the relevant information according to the XSD constraint document to generate an XML data interaction storage document; displaying the management interface of each two-lane automation equipment based on the XML data interaction storage document; and managing each two-lane automation equipment based on the management interface.

[0153] Furthermore, the logical instructions in the aforementioned memory 630 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, essentially, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

[0154] On the other hand, the present invention also provides a computer program product, which includes a computer program that can be stored on a non-transitory computer-readable storage medium. When the computer program is executed by a processor, the computer can execute the two-lane automation equipment management method provided by the above methods. The method includes: acquiring relevant information of each two-lane automation equipment; formulating an XSD constraint document based on the relevant information, and processing the relevant information according to the XSD constraint document to generate an XML data interaction storage document; displaying a management interface for each two-lane automation equipment based on the XML data interaction storage document; and managing each two-lane automation equipment based on the management interface.

[0155] In another aspect, the present invention also provides a non-transitory computer-readable storage medium storing a computer program thereon. When executed by a processor, the computer program implements the two-lane automation equipment management method provided by the above methods. The method includes: acquiring relevant information of each two-lane automation equipment; formulating an XSD constraint document based on the relevant information, and processing the relevant information according to the XSD constraint document to generate an XML data interaction storage document; displaying a management interface for each two-lane automation equipment based on the XML data interaction storage document; and managing each two-lane automation equipment based on the management interface.

[0156] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.

[0157] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.

[0158] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A method for managing automated equipment in two lanes, characterized in that, include: Obtain relevant information about the automated equipment in each of the two lanes; The two-lane automated equipment includes at least one of a crusher, a transfer conveyor, a scraper conveyor, a belt conveyor, a pump station, a combination switch, a transfer transformer, and a frequency converter; the pump station includes an emulsifying pump and / or a spray pump; the relevant information includes procurement information, installation information, commissioning information, usage information, maintenance information, scrapping information, and equipment identification; Based on the aforementioned relevant information, an XSD constraint document is formulated, and the aforementioned relevant information is processed according to the XSD constraint document to generate an XML data interaction storage document; Based on the XML data interaction storage document, the management interface of each of the two lane automation devices is displayed; Based on the management interface, the automated equipment in each of the two lanes is managed; The step of processing the relevant information according to the XSD constraint document to generate an XML data interaction storage document includes: Based on the XSD constraint document, the relevant information is processed in a structured manner to obtain a data organization structure; Obtain XML development tools; The XML development tool is invoked to convert the data organization structure into XML format, resulting in an XML data interactive storage document.

2. The two-lane automated equipment management method according to claim 1, characterized in that, The management interface of the two-lane automation equipment includes the equipment identifier of the two-lane automation equipment, and a management unit for at least one of the following information: procurement information, installation information, commissioning information, usage information, maintenance information, and scrapping information of the two-lane automation equipment; The management unit includes at least one of the following: adding information unit, viewing information unit, modifying information unit, deleting information unit, importing XML document unit, and exporting XML document unit.

3. The two-lane automated equipment management method according to claim 2, characterized in that, The management of each of the two lane automation devices based on the management interface includes: Receive management instructions, which carry a unit identifier and the device identifiers of the two automated devices to be managed; Based on the equipment identifiers of the two lane automation devices to be managed, determine the two lane automation devices to be managed, and based on the unit identifiers, determine the management unit to be operated; The two lanes of automated equipment to be managed are managed according to the management unit to be operated.

4. The two-lane automated equipment management method according to claim 1, characterized in that, The management of each of the two lane automation devices based on the management interface includes: Receive instructions for selecting automated equipment in both lanes; The selected two lane automation devices are determined based on the selection criteria of the two lane automation devices. In response to the view command, import and display the XML data interaction storage documents corresponding to the selected two lane automation devices.

5. A two-lane automated equipment management device, characterized in that, include: The acquisition module is configured to acquire relevant information about the automated equipment in each of the two lanes. The two-lane automated equipment includes at least one of a crusher, a transfer conveyor, a scraper conveyor, a belt conveyor, a pump station, a combination switch, a transfer transformer, and a frequency converter; the pump station includes an emulsifying pump and / or a spray pump; the relevant information includes procurement information, installation information, commissioning information, usage information, maintenance information, scrapping information, and equipment identification; The generation module is configured to formulate an XSD constraint document based on the aforementioned relevant information, and process the aforementioned relevant information according to the XSD constraint document to generate an XML data interaction storage document; The display module is configured to interact with and store documents based on the XML data to display the management interface of each of the two lane automation devices; The management module is configured to manage each of the two lane automation devices based on the management interface; The generation module is specifically configured to perform structuring processing on the relevant information according to the XSD constraint document to obtain a data organization structure; obtain an XML development tool; and call the XML development tool to perform XML format conversion on the data organization structure to obtain an XML data interactive storage document.

6. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the program, it implements the two-lane automated equipment management method as described in any one of claims 1 to 4.

7. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the two-lane automated equipment management method as described in any one of claims 1 to 4.

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