Power equipment manufacturing supervision guiding method and device based on power equipment visualization and computer device
By obtaining the equipment identification and production process identification of power equipment, querying and sending visual dynamic production guidelines, the problem of staff being unable to quickly confirm the work process during the power equipment manufacturing supervision process is solved, thus improving the efficiency and accuracy of the supervision work.
Patent Information
- Application Number
- CN202210340725.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-02
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2042-04-02
AI Technical Summary
During the supervision of power equipment manufacturing, staff are unable to quickly confirm the work process, resulting in low work efficiency.
By obtaining the equipment identification and production process identification of the power equipment, the system queries the target visual dynamic production guide and sends it to the display terminal to guide the manufacturing supervision process.
This improved the efficiency of power equipment manufacturing supervision, ensuring the accuracy and speed of the production process.
Smart Images

Figure CN114755988B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electric power, and in particular to a manufacturing supervision guiding method and device based on electric power equipment visualization, computer equipment, storage medium and computer program product. BACKGROUND
[0002] Electric power is one of the important resources to ensure normal life of people, and the quality of electric power equipment is an important factor affecting the normal work and operation of the electric power system. In order to improve the production quality of electric power equipment, the manufacturing process of electric power equipment needs to be supervised.
[0003] However, with the improvement of technology, the functions and structures of electric power equipment gradually become complex and the speed of updating and replacing becomes faster and faster, which makes it difficult for workers to quickly confirm the work flow of electric power equipment in the manufacturing supervision process when introducing new electric power equipment or unfamiliar electric power equipment, resulting in low work efficiency in the manufacturing supervision process of electric power equipment.
[0004] Therefore, there is a problem of low work efficiency in the manufacturing supervision of electric power equipment in the prior art. SUMMARY
[0005] Therefore, it is necessary to provide a manufacturing supervision guiding method and device based on electric power equipment visualization, computer equipment, computer readable storage medium and computer program product, which can improve the work efficiency of electric power equipment manufacturing supervision.
[0006] In a first aspect, the present application provides a manufacturing supervision guiding method based on electric power equipment visualization. The method comprises:
[0007] obtaining a device identifier corresponding to a to-be-supervised electric power equipment and a current production process identifier; the current production process identifier is used to represent a current production step in which the to-be-supervised electric power equipment is located;
[0008] querying a target visual dynamic production guide corresponding to the device identifier and the current production process identifier; the target visual dynamic production guide comprises dynamic content of simulating production of a digital model of the to-be-supervised electric power equipment in the current production step;
[0009] sending the target visual dynamic production guide to a display terminal to guide a target object to supervise the production process of the to-be-supervised electric power equipment.
[0010] In one embodiment, the querying of the target visual dynamic production guide corresponding to the device identifier and the current production process identifier comprises:
[0011] In the device production guide library, a visual dynamic production guide of the to-be-supervised power device is determined according to the device identifier; the visual dynamic production guide includes dynamic content of simulating production of a digital model of the to-be-supervised power device in each production step of the to-be-supervised power device.
[0012] According to the current production process identifier, the target visual dynamic production guide is queried in the visual dynamic production guide.
[0013] In one of the embodiments, the method further includes:
[0014] Device metadata and production process data of the to-be-supervised power device are acquired; the production process data includes flow information in each production step;
[0015] According to the device metadata, the to-be-supervised power device is modeled to obtain a digital model of the to-be-supervised power device;
[0016] According to the production process data, the digital model is simulated to generate the visual dynamic production guide.
[0017] In one of the embodiments, the method further includes:
[0018] After the current production step is completed, device production parameters of the to-be-supervised power device in the production site are acquired;
[0019] In the device production guide library, a target device parameter corresponding to the device identifier and the current production process identifier is queried; the target device parameter is a parameter of the digital model after the digital model of the to-be-supervised power device is simulated in the current production step;
[0020] The device production parameters and the target device parameters are compared to generate a supervision result of the to-be-supervised power device; the supervision result is used to determine whether the to-be-supervised power device is in a normal state.
[0021] In one of the embodiments, the target visual dynamic production guide further includes a model state of the digital model after the digital model of the to-be-supervised power device is simulated in the current production step; if the to-be-supervised power device is in an abnormal state, the method further includes:
[0022] In response to a deconstruction model acquisition operation on the digital model, the model state of the digital model is deconstructed to obtain a digital deconstruction model; the digital deconstruction model includes zero-component description information corresponding to each zero component in the model state;
[0023] send the digital disassembly model to the display terminal, so that the target object determines an abnormal part in the to-be-manufactured power equipment according to the zero-component description information.
[0024] In one of the embodiments, when the display terminal is a target wearable device carrying an image acquisition device, the obtaining of the device identifier corresponding to the to-be-manufactured power equipment comprises:
[0025] obtaining a to-be-recognized device image of the to-be-manufactured power equipment; the to-be-recognized device image is a device image acquired by the image acquisition device of the target wearable device;
[0026] performing feature extraction on the to-be-recognized device image to obtain a to-be-recognized device image feature;
[0027] determining the device identifier corresponding to the to-be-manufactured power equipment according to the to-be-recognized device image feature.
[0028] In a second aspect, the present application further provides a manufacturing guidance device based on power equipment visualization. The device comprises:
[0029] an obtaining module, configured to obtain a device identifier corresponding to a to-be-manufactured power equipment and a current production process identifier; the current production process identifier is used to represent a current production step in which the to-be-manufactured power equipment is located;
[0030] a querying module, configured to query a target visual dynamic production guide corresponding to the device identifier and the current production process identifier; the target visual dynamic production guide comprises dynamic content of simulating production of a digital model of the to-be-manufactured power equipment in the current production step;
[0031] a sending module, configured to send the target visual dynamic production guide to a display terminal, so as to guide a target object to monitor the production process of the to-be-manufactured power equipment.
[0032] In a third aspect, the present application further provides a computer device. The computer device comprises a memory and a processor, the memory stores a computer program, and the processor realizes the following steps when executing the computer program:
[0033] obtaining a device identifier corresponding to a to-be-manufactured power equipment and a current production process identifier; the current production process identifier is used to represent a current production step in which the to-be-manufactured power equipment is located;
[0034] query a target visual dynamic production guide corresponding to the device identifier and the current production process identifier; the target visual dynamic production guide comprises dynamic content of simulating production of the digital model of the power equipment to be supervised and manufactured in the current production step;
[0035] send the target visual dynamic production guide to a display terminal to guide a target object to supervise and manufacture the production process of the power equipment to be supervised and manufactured.
[0036] In a fourth aspect, the present application further provides a computer readable storage medium. The computer readable storage medium has a computer program stored thereon, and the computer program is executed by a processor to implement the following steps:
[0037] obtain a device identifier corresponding to the power equipment to be supervised and manufactured and a current production process identifier; the current production process identifier is used to represent a current production step in which the power equipment to be supervised and manufactured is located;
[0038] query a target visual dynamic production guide corresponding to the device identifier and the current production process identifier; the target visual dynamic production guide comprises dynamic content of simulating production of the digital model of the power equipment to be supervised and manufactured in the current production step;
[0039] send the target visual dynamic production guide to a display terminal to guide a target object to supervise and manufacture the production process of the power equipment to be supervised and manufactured.
[0040] In a fifth aspect, the present application further provides a computer program product. The computer program product comprises a computer program, and the computer program is executed by a processor to implement the following steps:
[0041] obtain a device identifier corresponding to the power equipment to be supervised and manufactured and a current production process identifier; the current production process identifier is used to represent a current production step in which the power equipment to be supervised and manufactured is located;
[0042] query a target visual dynamic production guide corresponding to the device identifier and the current production process identifier; the target visual dynamic production guide comprises dynamic content of simulating production of the digital model of the power equipment to be supervised and manufactured in the current production step;
[0043] send the target visual dynamic production guide to a display terminal to guide a target object to supervise and manufacture the production process of the power equipment to be supervised and manufactured.
[0044] The supervision guiding method, device, computer device, storage medium and computer program product based on power equipment visualization provided in the above embodiment can be applied to the supervision of power equipment production, and the method comprises the following steps: obtaining a device identifier corresponding to the power equipment to be supervised and a current production process identifier; the current production process identifier is used to represent the current production step of the power equipment to be supervised; querying a target visual dynamic production guide corresponding to the device identifier and the current production process identifier; the target visual dynamic production guide comprises dynamic content of simulating production of a digital model of the power equipment to be supervised in the current production step; and sending the target visual dynamic production guide to a display terminal to guide a target object to supervise the production process of the power equipment to be supervised. In this way, when the staff at the power equipment production site is not clear about the specific work content of the production process of the power equipment to be supervised, the target visual dynamic production guide of the power equipment to be supervised can be used to determine the specific production process of the power equipment to be supervised in the current production step, so that it can be quickly and accurately determined whether an error occurs in the production process of the power equipment to be supervised, and the efficiency of the supervision of the power equipment is improved. BRIEF DESCRIPTION OF DRAWINGS
[0045] Figure 1 An application environment diagram of a supervision guiding method based on power equipment visualization in one embodiment;
[0046] Figure 2 A flowchart of a supervision guiding method based on power equipment visualization in one embodiment;
[0047] Figure 3 A flowchart of a supervision guiding method based on power equipment visualization in another embodiment;
[0048] Figure 4 A structural block diagram of a supervision guiding device based on power equipment visualization in one embodiment;
[0049] Figure 5 An internal structure diagram of a computer device in one embodiment. DETAILED DESCRIPTION
[0050] In order to make the purpose, technical scheme and advantages of the present application clearer, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.
[0051] The supervision guiding method based on power equipment visualization provided in the embodiments of the present application can be applied to the supervision of power equipment production, and the method comprises the following steps: obtaining a device identifier corresponding to the power equipment to be supervised and a current production process identifier; the current production process identifier is used to represent the current production step of the power equipment to be supervised; querying a target visual dynamic production guide corresponding to the device identifier and the current production process identifier; the target visual dynamic production guide comprises dynamic content of simulating production of a digital model of the power equipment to be supervised in the current production step; and sending the target visual dynamic production guide to a display terminal to guide a target object to supervise the production process of the power equipment to be supervised. In this way, when the staff at the power equipment production site is not clear about the specific work content of the production process of the power equipment to be supervised, the target visual dynamic production guide of the power equipment to be supervised can be used to determine the specific production process of the power equipment to be supervised in the current production step, so that it can be quickly and accurately determined whether an error occurs in the production process of the power equipment to be supervised, and the efficiency of the supervision of the power equipment is improved. Figure 1The application environment shown. Among them, the display terminal 102 communicates with the server 104 through the network. The data storage system can store the data required by the server 104 to process. The data storage system can be integrated on the server 104, or placed on the cloud or other network servers. The server 104 obtains the device identifier corresponding to the power equipment to be monitored and the current production process identifier; wherein the current production process identifier is used to represent the current production step of the power equipment to be monitored; the server 104 queries the target visual dynamic production guide corresponding to the device identifier and the current production process identifier; wherein the target visual dynamic production guide includes the dynamic content of simulating the production of the digital model of the power equipment to be monitored in the current production step; the server 104 sends the target visual dynamic production guide to the display terminal 102 to guide the target object to monitor the production process of the power equipment to be monitored. Among them, the display terminal 102 can be, but not limited to, various personal computers, notebook computers, smart phones, tablet computers, Internet of Things devices and portable wearable devices. The server 104 can be implemented by an independent server or a server cluster composed of multiple servers.
[0052] In one embodiment, as shown in Figure 2 , a power equipment visualization-based monitoring guidance method is provided, which is applied to the server in Figure 1 for example, including the following steps:
[0053] Step S210, obtaining the device identifier corresponding to the power equipment to be monitored and the current production process identifier.
[0054] Among them, the current production process identifier is used to represent the current production step of the power equipment to be monitored, which can be, but not limited to, the production step number.
[0055] Among them, the device identifier is used to determine the power equipment to be monitored, which can be the device number and other information of the power equipment to be monitored.
[0056] Among them, the target object can be the staff in the monitoring site of the power equipment to be monitored.
[0057] In specific implementation, the server can acquire the device identifier and the production process identifier sent by the display terminal located at the supervision site of the power equipment to be supervised. Specifically, when the target object at the supervision site wants to determine the specific production process of the power equipment to be supervised at the current production step, the display terminal carrying an input device can be directly inputted with the device identifier corresponding to the power equipment to be supervised and the current production process identifier, so as to send the corresponding device identifier and the current production process identifier to the server. When the display terminal is a wearable device carrying an image acquisition device and a voice acquisition device, the wearable device can acquire the to-be-identified device image of the power equipment to be supervised through the image acquisition device and send it to the server for identifying the device identifier corresponding to the power equipment to be supervised, and acquire the voice data containing the current production process identifier inputted by the target object through the voice acquisition device and send it to the server for identifying the current production process identifier. The to-be-identified device image can be a nameplate image including the device identifier of the power equipment to be supervised, and the server can determine the device identifier by text recognition on the nameplate image.
[0058] Step S220: querying the target visual dynamic production guide corresponding to the device identifier and the current production process identifier.
[0059] The target visual dynamic production guide includes the dynamic content of simulating the production of the digital model of the power equipment to be supervised at the current production step, which can be but is not limited to animation, audio and video.
[0060] The target visual dynamic production guide can include the installation work simulation process of each component in the power equipment to be supervised at the current production step.
[0061] In specific implementation, the server can query the target visual dynamic production guide corresponding to the device identifier and the current production process identifier in the device production guide library according to the device identifier and the current production process identifier. The target visual dynamic production guide includes the dynamic content of simulating the production of the digital model of the power equipment to be supervised at the current production step, such as the installation work simulation process of each component in the power equipment to be supervised at the current production step. In addition, the dynamic content can also include the dynamic content at different viewing angles when simulating the production of the digital model at the current production step.
[0062] Step S230: sending the target visual dynamic production guide to the display terminal to guide the target object to supervise the production process of the power equipment to be supervised.
[0063] The target object can be a staff at the supervision site of the power equipment to be supervised.
[0064] The display terminal is located at a supervision site of the to-be-supervised power equipment.
[0065] In a specific implementation, after the server queries the target visual dynamic production guide, the server can send the target visual dynamic production guide in a single perspective to the display terminal to guide the target object to supervise the production process of the to-be-supervised power equipment. If the target object cannot determine the specific implementation of the current production step according to the target visual dynamic production guide in a single perspective, the current production step can be marked. In response to the marking operation of the target object on the current production step, the display terminal can send a multi-perspective target visual dynamic production guide acquisition request to the server to instruct the server to send the multi-perspective target visual dynamic production guide. Thus, the display terminal can display the dynamic content of the digital model in different perspectives when simulating production in the current production step, thereby reducing the data transmission amount between the display terminal and the server and improving the data transmission efficiency. It can be understood that the target visual dynamic production guide can also be used to guide the production personnel of the to-be-supervised power equipment to perform the specific work content of the current production step.
[0066] In the above supervision guidance method based on power equipment visualization, the device identifier corresponding to the to-be-supervised power equipment and the current production process identifier are obtained. The current production process identifier is used to represent the current production step in which the to-be-supervised power equipment is located. The target visual dynamic production guide corresponding to the device identifier and the current production process identifier is queried. The target visual dynamic production guide includes dynamic content of a digital model of the to-be-supervised power equipment when simulating production in the current production step. The target visual dynamic production guide is sent to a display terminal to guide a target object to supervise the production process of the to-be-supervised power equipment. In this way, when the workers at the power equipment production site are not clear about the specific work content of the production process of the to-be-supervised power equipment, the target visual dynamic production guide of the to-be-supervised power equipment can be used to determine the specific production process of the to-be-supervised power equipment in the current production step, so that the production process of the to-be-supervised power equipment can be quickly and accurately determined to be correct or not, thereby improving the efficiency of the power equipment supervision work.
[0067] In one embodiment, querying the target visual dynamic production guide corresponding to the device identifier and the current production process identifier includes: determining, in a device production guide library, a visual dynamic production guide of the to-be-supervised power equipment according to the device identifier; and querying the target visual dynamic production guide in the visual dynamic production guide according to the current production process identifier.
[0068] The visual dynamic production guide includes dynamic content of a digital model of the to-be-supervised power equipment when simulating production in each production step of the to-be-supervised power equipment.
[0069] In specific implementation, in the process of querying the target visual dynamic production guide corresponding to the device identifier and the current production process identifier, the server can query the visual production guide of the to-be-supervised device in the device production guide library according to the device identifier, and the visual production guide includes dynamic content of simulating production of the digital model of the to-be-supervised power device in each production step of the to-be-supervised power device; and the dynamic content of simulating production corresponding to the current production step in the visual production guide is found according to the current production process identifier, as the target visual dynamic production guide.
[0070] The technical scheme of the embodiment determines the visual dynamic production guide of the to-be-supervised power device in the device production guide library according to the device identifier, and queries the target visual dynamic production guide in the visual dynamic production guide according to the current production process identifier, so that the target visual dynamic production guide is found through the device identifier corresponding to the to-be-supervised power device and the current production process identifier, which can improve the accuracy of obtaining the production guide of the to-be-supervised device, and thus improve the supervision accuracy of the to-be-supervised power device.
[0071] In one embodiment, the method further comprises: obtaining device metadata and production process data of the to-be-supervised power device; modeling the to-be-supervised power device according to the device metadata to obtain a digital model of the to-be-supervised power device; and simulating production of the digital model according to the production process data to generate a visual dynamic production guide.
[0072] The production process data includes flow information in each production step.
[0073] The flow information can include target parameters of the to-be-supervised power device after each production step, production operation specifications of the to-be-supervised power device, and requirements and precautions of related tools in each production step.
[0074] The device metadata can include manufacturer, model, and zero component description information of each zero component of the to-be-supervised power device.
[0075] In specific implementation, the server can obtain device metadata of the to-be-supervised power device to determine basic data such as manufacturer, model, and zero component description information of each zero component of the to-be-supervised power device, and establish a device basic database; and obtain production process data of the to-be-supervised power device to determine flow information of the to-be-supervised power device in each production step, including target parameters of the to-be-supervised power device after each production step, production operation specifications of the to-be-supervised power device, and requirements and precautions of related tools in each production step, and establish a device digital production process library.
[0076] Thus, the server can model the power equipment to be supervised and manufactured according to the equipment metadata to obtain a digital model of the power equipment to be supervised and manufactured, which can include digital models of various components in the power equipment to be supervised and manufactured; then, according to the production process data, the digital model of the power equipment to be supervised and manufactured is simulated and produced by a three-dimensional image engine to generate a visual dynamic production guide of the power equipment to be supervised and manufactured, and a first mapping relationship between the equipment identifier and the visual dynamic production guide and a second mapping relationship between each production process identifier and the corresponding target visual dynamic production guide are established.
[0077] Finally, the server can obtain an equipment production guide library based on the first mapping relationship, the second mapping relationship, the equipment basic database, and the equipment digital production process library.
[0078] The technical solution of the embodiment obtains the equipment metadata and the production process data of the power equipment to be supervised and manufactured, models the power equipment to be supervised and manufactured according to the equipment metadata to obtain a digital model of the power equipment to be supervised and manufactured, and simulates and produces the digital model according to the production process data to generate a visual dynamic production guide. Thus, the visual dynamic production guide of the power equipment to be supervised and manufactured is obtained based on the equipment metadata and the production process data, which ensures the reliability of the visual dynamic production guide.
[0079] In one embodiment, the method further includes: obtaining equipment production parameters of the power equipment to be supervised and manufactured in the production site after the current production step is completed; querying, in the equipment production guide library, target equipment parameters corresponding to the equipment identifier and the current production process identifier; and comparing the equipment production parameters with the target equipment parameters to generate a supervision and manufacturing result of the power equipment to be supervised and manufactured.
[0080] The equipment production parameters can include parameters and operation data in the actual production process of the power equipment to be supervised and manufactured, such as dial values of instruments and meters.
[0081] The target equipment parameters are parameters of the digital model after the digital model of the power equipment to be supervised and manufactured is simulated and produced in the current production step.
[0082] The supervision and manufacturing result is used to determine whether the power equipment to be supervised and manufactured is in a normal state.
[0083] In a specific implementation, the server can acquire the equipment production parameter of the to-be-supervised power equipment in the production site after the current production step ends through a display terminal located in the supervision site of the to-be-supervised power equipment. In actual application, the target object can directly input the equipment production parameter to the display terminal carrying an input device so that the display terminal acquires the equipment production parameter and sends the equipment production parameter to the server. When the display terminal is a wearable device carrying an image acquisition device, the display terminal can acquire a parameter image including the equipment production parameter of the to-be-supervised power equipment, such as a dial image of an instrument of the to-be-supervised power equipment, through the image acquisition device, and send the parameter image to the server so that the server identifies the parameter image to determine the equipment production parameter.
[0084] The server can query the parameter of the digital model of the to-be-supervised power equipment after the simulation production of the digital model in each production step in the equipment production guidance library according to the equipment identification, and determine the parameter of the digital model of the to-be-supervised power equipment after the simulation production of the digital model in the current production step according to the current production process identification, to obtain the target equipment parameter.
[0085] Finally, the server can compare the equipment production parameter with the target equipment parameter to detect whether the equipment production parameter is consistent with the target equipment parameter, generate the supervision result of the to-be-supervised power equipment to determine whether the to-be-supervised power equipment is in a normal state, and return the supervision result and the target equipment parameter to the display terminal. Optionally, the server can also return the related information of the to-be-supervised power equipment to the display terminal, and the related information can be the production operation specification of the to-be-supervised power equipment and the related tool requirement and matters needing attention in each production step.
[0086] In actual application, when the display terminal is a wearable device with an augmented reality function, the target object wearing the wearable device can compare the displayed supervision result, the target equipment parameter, and the related information of the to-be-supervised power equipment with the equipment production parameter in the production site to guide the production work and supervision work of the to-be-supervised power equipment.
[0087] The technical scheme of the embodiment comprises the following steps: obtaining equipment production parameters of the to-be-supervised power equipment in the production site after a current production step ends; in the equipment production guide database, querying target equipment parameters corresponding to the equipment identifier and the current production process identifier; wherein, the target equipment parameters are parameters of a digital model of the to-be-supervised power equipment after the digital model is simulated in the current production step; comparing the equipment production parameters with the target equipment parameters to generate a supervision result of the to-be-supervised power equipment; the supervision result is used to determine whether the to-be-supervised power equipment is in a normal state; in this way, the target equipment parameters generated after the digital model of the to-be-supervised power equipment is simulated are compared with the equipment production parameters in the production site to determine the supervision result, so that the accuracy of the supervision result can be improved.
[0088] In one embodiment, the target visual dynamic production guide further comprises a model state of the digital model after the digital model of the to-be-supervised power equipment is simulated in the current production step; if the to-be-supervised power equipment is in an abnormal state, the method further comprises: in response to a deconstruction model obtaining operation on the digital model, deconstructing the model state of the digital model to obtain a digital deconstructed model; and sending the digital deconstructed model to the display terminal for the target object to determine an abnormal part in the to-be-supervised power equipment.
[0089] The digital deconstructed model comprises zero-component description information corresponding to each zero component in the model state.
[0090] The zero-component description information corresponding to each zero component can comprise a mapping relationship between each zero component and each zero-component parameter, a connection relationship between each zero component, a use specification of each zero component, and the like.
[0091] In a specific implementation, the target visual dynamic production guide further comprises a model state of the digital model after the digital model of the to-be-supervised power equipment is simulated in the current production step, which can comprise a form of the digital model; if the to-be-supervised power equipment is in an abnormal state, the target object can obtain a deconstructed model of the digital model from the server through the display terminal; in response to a deconstruction model obtaining operation on the digital model, the server deconstructs the model state of the digital model to obtain a digital deconstructed model, which can comprise zero-component description information corresponding to each zero component in the model state, such as a mapping relationship between each zero component and each zero-component parameter, a connection relationship between each zero component, a use specification of each zero component, and the like; then, the server can send the digital deconstructed model to the display terminal, so that the target object can determine an abnormal part in the to-be-supervised power equipment according to the zero-component description information.
[0092] In actual application, when the target object is not familiar with the components of the power equipment to be supervised and constructed, and it is inconvenient to directly check the power equipment to be supervised and constructed on site due to the large size of the power equipment to be supervised and constructed, the server can obtain the disassembled model of the power equipment to be supervised and constructed to determine the mapping relationship between the components and the component parameters, the connection relationship between the components, and the use specification of the components, so that the target object does not need to learn the power equipment to be supervised and constructed on site, and the flexibility of obtaining the structural information of the power equipment to be supervised and constructed is improved.
[0093] The technical scheme of the embodiment obtains the digital disassembled model by disassembling the model state of the digital model in response to the disassembled model obtaining operation on the digital model, and obtains the digital disassembled model; wherein the digital disassembled model includes component description information corresponding to each component in the model state; and the digital disassembled model is sent to the display terminal, so that the target object determines the abnormal part in the power equipment to be supervised and constructed according to the component description information. In this way, the diversity of obtaining the component information of the power equipment to be supervised and constructed is improved by obtaining the digital disassembled model to determine the component description information corresponding to each component in the power equipment to be supervised and constructed, and the abnormal part in the power equipment to be supervised and constructed can be more accurately and quickly determined, and the efficiency of the power equipment supervision and construction work is improved.
[0094] In one embodiment, when the display terminal is a target wearable device carrying an image acquisition device, obtaining the equipment identifier corresponding to the power equipment to be supervised and constructed includes: obtaining a to-be-identified equipment image of the power equipment to be supervised and constructed; performing feature extraction on the to-be-identified equipment image to obtain to-be-identified equipment image features; and determining the equipment identifier corresponding to the power equipment to be supervised and constructed according to the to-be-identified equipment image features.
[0095] The to-be-identified equipment image is an equipment image obtained by the image acquisition device of the target wearable device.
[0096] In a specific implementation, when the display terminal is a target wearable device carrying an image acquisition device, in the process of obtaining the equipment identifier corresponding to the power equipment to be supervised and constructed, the server can obtain a to-be-identified equipment image obtained by the image acquisition device of the target wearable device performing image acquisition on the power equipment to be supervised and constructed, and perform feature extraction on the to-be-identified equipment image to obtain to-be-identified equipment image features. In the equipment production guide library, there is a corresponding relationship between the equipment image features of each power equipment to be supervised and constructed and the corresponding equipment identifier, and the server determines the equipment identifier corresponding to the power equipment to be supervised and constructed by performing feature matching on the to-be-identified equipment image features.
[0097] The technical scheme of the embodiment comprises the following steps: obtaining an to-be-identified device image of a to-be-supervised power equipment; performing feature extraction on the to-be-identified device image to obtain to-be-identified device image features; and determining a device identifier corresponding to the to-be-supervised power equipment according to the to-be-identified device image features. In this way, the device identifier corresponding to the to-be-supervised power equipment can be determined through the to-be-identified device image of the to-be-supervised power equipment, thereby improving the diversity of the device information of the to-be-supervised power equipment.
[0098] In one embodiment, as shown in Figure 3 , another power equipment visualization-based supervision guidance method is provided. The method is applied to a server in Figure 1 for example, and comprises the following steps:
[0099] In step S310, device metadata and production process data of a to-be-supervised power equipment are obtained.
[0100] In step S320, the to-be-supervised power equipment is modeled according to the device metadata, and a digital model of the to-be-supervised power equipment is obtained.
[0101] In step S330, the digital model is simulated according to the production process data, and a visual dynamic production guide is generated.
[0102] In step S340, a device identifier corresponding to the to-be-supervised power equipment and a current production process identifier are obtained.
[0103] In step S350, the visual dynamic production guide of the to-be-supervised power equipment is determined according to the device identifier in a device production guide library.
[0104] In step S360, a target visual dynamic production guide is queried in the visual dynamic production guide according to the current production process identifier.
[0105] In step S370, the target visual dynamic production guide is sent to a display terminal to guide a target object to supervise the production process of the to-be-supervised power equipment.
[0106] It should be noted that the specific definition of the above steps can refer to the specific definition of the power equipment visualization-based supervision guidance method described above.
[0107] It should be understood that although each step in the flowchart involved in the embodiments described above is shown in sequence according to the direction of the arrow, these steps are not necessarily executed in the order indicated by the arrow. Unless otherwise specified herein, there is no strict order limitation for the execution of these steps, and these steps can be executed in other orders. Moreover, at least some of the steps in the flowchart involved in the embodiments described above can include multiple steps or multiple stages, which are not necessarily executed at the same time, but can be executed at different times, and the execution order of these steps or stages is not necessarily sequential, but can be alternately or alternately executed with at least part of other steps or steps or stages in other steps.
[0108] Based on the same inventive concept, the embodiments of the present application also provide a device for implementing the above-mentioned power equipment visualization-based manufacturing supervision guiding method. The device provides a solution to the problem similar to the implementation solution described in the above-mentioned method, so the specific limitations in one or more power equipment visualization-based manufacturing supervision guiding device embodiments provided below can refer to the limitations of the power equipment visualization-based manufacturing supervision guiding method described above, and will not be repeated here.
[0109] In one embodiment, as shown in Figure 4 A power equipment visualization-based manufacturing supervision guiding device is provided, comprising: an acquisition module 410, a query module 420, and a sending module 430, wherein:
[0110] The acquisition module 410 is configured to acquire a device identifier corresponding to a power equipment to be supervised and a current production process identifier; the current production process identifier is used to represent a current production step in which the power equipment to be supervised is located.
[0111] The query module 420 is configured to query a target visualization dynamic production guide corresponding to the device identifier and the current production process identifier; the target visualization dynamic production guide includes dynamic content for simulating production of a digital model of the power equipment to be supervised in the current production step.
[0112] The sending module 430 is configured to send the target visualization dynamic production guide to a display terminal to guide a target object to supervise a production process of the power equipment to be supervised.
[0113] In one of the embodiments, the query module 420 is specifically configured to determine the visual dynamic production guide of the to-be-supervised power equipment in the device production guide library according to the device identifier; the visual dynamic production guide comprises dynamic content of simulating production of the digital model of the to-be-supervised power equipment in each production step of the to-be-supervised power equipment; and the target visual dynamic production guide is queried in the visual dynamic production guide according to the current production process identifier.
[0114] In one of the embodiments, the device further comprises a data acquisition module configured to acquire device metadata and production process data of the to-be-supervised power equipment; the production process data comprises process information in each production step; a modeling module configured to model the to-be-supervised power equipment according to the device metadata to obtain a digital model of the to-be-supervised power equipment; and a simulation module configured to simulate production of the digital model according to the production process data to generate the visual dynamic production guide.
[0115] In one of the embodiments, the device further comprises a parameter acquisition module configured to acquire device production parameters of the to-be-supervised power equipment in a production site after the current production step ends; a parameter query module configured to query target device parameters corresponding to the device identifier and the current production process identifier in the device production guide library; the target device parameters are parameters of the digital model after simulating production of the digital model of the to-be-supervised power equipment in the current production step; and a comparison module configured to compare the device production parameters with the target device parameters to generate a supervision result of the to-be-supervised power equipment; and the supervision result is used to determine whether the to-be-supervised power equipment is in a normal state.
[0116] In one of the embodiments, the target visual dynamic production guide further comprises a model state of the digital model after simulating production of the digital model of the to-be-supervised power equipment in the current production step; and if the to-be-supervised power equipment is in an abnormal state, the device further comprises a deconstruction module configured to deconstruct the model state of the digital model to obtain a digital deconstructed model in response to a deconstructed model acquisition operation on the digital model; the digital deconstructed model comprises zero-component description information corresponding to each zero component in the model state; and a model sending module configured to send the digital deconstructed model to the display terminal, so that the target object determines an abnormal part in the to-be-supervised power equipment according to the zero-component description information.
[0117] In one of the embodiments, when the display terminal is a target wearable device carrying an image acquisition device, the acquisition module 410 is specifically configured to acquire a to-be-identified device image of the to-be-monitored power equipment; the to-be-identified device image is a device image acquired by the image acquisition device of the target wearable device; feature extraction is performed on the to-be-identified device image to obtain a to-be-identified device image feature; and the device identifier corresponding to the to-be-monitored power equipment is determined according to the to-be-identified device image feature.
[0118] The above various modules in the monitoring guidance device based on power equipment visualization can be implemented by software, hardware, and combinations thereof, in whole or in part. The above various modules can be embedded in or independent of a processor in a computer device in a hardware form, or can be stored in a memory in a computer device in a software form, so as to be called and executed by a processor to perform the operations corresponding to the above various modules.
[0119] In one embodiment, a computer device, which can be a server, has an internal structure diagram as shown in Figure 5 The computer device includes a processor, a memory, and a network interface connected through a system bus. The processor of the computer device is configured to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program, and a database. The internal memory provides an environment for running the operating system and the computer program in the non-volatile storage medium. The database of the computer device is configured to store device production guidance library data. The network interface of the computer device is configured to communicate with an external terminal through a network connection. The computer program is executed by the processor to implement a monitoring guidance method based on power equipment visualization.
[0120] Those skilled in the art can understand that Figure 5 The structure shown in the above
[0121] In one embodiment, a computer device is also provided, which includes a memory and a processor. The memory stores a computer program, and the processor executes the computer program to implement the steps in the above method embodiments.
[0122] In one embodiment, a computer readable storage medium is provided, which stores a computer program. The computer program is executed by a processor to implement the steps in the above method embodiments.
[0123] In an embodiment, a computer program product is provided, comprising a computer program which, when executed by a processor, implements the steps of any of the above method embodiments.
[0124] It should be noted that the user information (including but not limited to user equipment information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in the present application are all information and data authorized by the user or authorized by all parties.
[0125] It can be understood by those skilled in the art that all or part of the processes in the above-mentioned embodiments can be completed by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer readable storage medium. When the computer program is executed, it can include the processes of the above-mentioned embodiments. Any reference to memory, database or other medium used in the embodiments provided by the present application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical storage, high-density embedded non-volatile memory, resistive memory (ReRAM), magnetoresistive random access memory (MRAM), ferroelectric memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. As an illustration but not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc. The database involved in the embodiments provided by the present application can include at least one of a relational database and a non-relational database. The non-relational database can include a distributed database based on a block chain, etc., without being limited thereto. The processor involved in the embodiments provided by the present application can be a general-purpose processor, a central processing unit, a graphics processing unit, a digital signal processor, a programmable logic device, a data processing logic device based on quantum computing, etc., without being limited thereto.
[0126] Any technical features in the above embodiments can be combined, and for the sake of brevity, not all possible combinations are described above, however, as long as the combinations of technical features do not have contradictions, they shall be considered within the scope of the present disclosure.
[0127] The above embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it shall not be understood as a limitation on the patent scope of the present application. It shall be pointed out that, for ordinary skilled persons in the art, several modifications and improvements can be made without departing from the concept of the present application, and these shall be within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the appended claims.
Claims
1. A manufacturing supervision guiding method based on power equipment visualization, characterized by, The method comprises: obtaining the equipment identifier corresponding to the power equipment to be supervised and the current production process identifier; the current production process identifier is used to represent the current production step of the power equipment to be supervised; querying the target visual dynamic production guide corresponding to the equipment identifier and the current production process identifier; the target visual dynamic production guide comprises dynamic content for simulating production of the digital model of the power equipment to be supervised in the current production step; the target visual dynamic production guide further comprises dynamic content at different viewing angles when simulating production of the digital model in the current production step; sending the target visual dynamic production guide to the display terminal to guide the target object to supervise the production process of the power equipment to be supervised, comprising: sending the target visual dynamic production guide of a single viewing angle to the display terminal; in response to a multi-viewing angle target visual dynamic production guide acquisition request, sending the target visual dynamic production guide of multiple viewing angles to the display terminal; The target visual dynamic production guide further comprises the model state of the digital model after simulating production of the digital model of the power equipment to be supervised in the current production step; in response to a deconstruction model acquisition operation on the digital model, the model state of the digital model is deconstructed to obtain a digital deconstructed model; the digital deconstructed model comprises zero component description information corresponding to each zero component in the model state; the zero component description information comprises the mapping relationship between each zero component and each zero component parameter, the connection relationship between each zero component, and the use specification of each zero component; sending the digital deconstructed model to the display terminal.
2. The method of claim 1, wherein, The query of the target visual dynamic production guide corresponding to the equipment identifier and the current production process identifier comprises: in the equipment production guide library, the visual dynamic production guide of the power equipment to be supervised is determined according to the equipment identifier; the visual dynamic production guide comprises dynamic content for simulating production of the digital model of the power equipment to be supervised in each production step of the power equipment to be supervised; according to the current production process identifier, the target visual dynamic production guide is queried in the visual dynamic production guide.
3. The method of claim 2, wherein, The method further comprises: obtaining the equipment metadata and production process data of the power equipment to be supervised; the production process data comprises process information in each production step; modeling the power equipment to be supervised according to the equipment metadata to obtain the digital model of the power equipment to be supervised; according to the production process data, simulating production of the digital model to generate the visual dynamic production guide.
4. The method of claim 1, wherein, The method further comprises: obtaining the equipment production parameters of the power equipment to be supervised in the production site after the current production step is completed; In the device production guide library, a target device parameter corresponding to the device identifier and the current production process identifier is queried; the target device parameter is a parameter of a digital model of the to-be-inspected power device after simulation production of the digital model in the current production step is performed; The device production parameter and the target device parameter are compared, and an inspection result of the to-be-inspected power device is generated; the inspection result is used to determine whether the to-be-inspected power device is in a normal state.
5. The method of claim 4, wherein, If the to-be-inspected power device is in an abnormal state, the digital disassembly model is also used for the target object to determine an abnormal part in the to-be-inspected power device according to the zero-component description information.
6. The method of claim 1, wherein, When the display terminal is a target wearable device carrying an image acquisition device, the device identifier corresponding to the to-be-inspected power device includes: An to-be-identified device image of the to-be-inspected power device is acquired; the to-be-identified device image is a device image acquired by an image acquisition device of the target wearable device; Feature extraction is performed on the to-be-identified device image to obtain to-be-identified device image features; The device identifier corresponding to the to-be-inspected power device is determined according to the to-be-identified device image features.
7. A manufacturing supervision guiding device based on power equipment visualization, characterized by, The apparatus includes: An acquisition module is configured to acquire a device identifier corresponding to a to-be-inspected power device and a current production process identifier; the current production process identifier is used to represent a current production step in which the to-be-inspected power device is located; A query module is configured to query a target visual dynamic production guide corresponding to the device identifier and the current production process identifier; the target visual dynamic production guide includes dynamic content of simulation production of a digital model of the to-be-inspected power device in the current production step; the target visual dynamic production guide also includes dynamic content at different viewing angles when the digital model is simulated and produced in the current production step; A sending module is configured to send the target visual dynamic production guide to a display terminal to guide a target object to inspect a production process of the to-be-inspected power device; The sending module is specifically configured to send a single-view target visual dynamic production guide to the display terminal; in response to a multi-view target visual dynamic production guide acquisition request, a multi-view target visual dynamic production guide is sent to the display terminal; The target visual dynamic production guide also includes a model state of the digital model after simulation production of the digital model in the current production step is performed; A disassembly module is configured to, in response to a disassembly model acquisition operation on the digital model, disassemble the model state of the digital model to obtain a digital disassembly model; the digital disassembly model includes zero-component description information corresponding to each zero component in the model state; the zero-component description information includes a mapping relationship between each zero component and each zero-component parameter, a connection relationship between each zero component, and a use specification of each zero component; A model sending module is configured to send the digital disassembly model to the display terminal.
8. A computer device comprising a memory and a processor, the memory storing a computer program, characterized in that, The computer program is executed by the processor to implement the steps of the method of any one of claims 1 to 6.
9. A computer readable storage medium having stored thereon a computer program, characterized in that, The computer program is executed by the processor to implement the steps of the method of any one of claims 1 to 6.
10. A computer program product comprising a computer program, characterized in that, The computer program is executed by the processor to implement the steps of the method of any one of claims 1 to 6.
Citation Information
Patent Citations
Power equipment production supervision method and device, computer equipment and storage medium
CN112699571A