Plate state monitoring method, device and equipment and storage medium
By scanning the QR code on the board to obtain processing information and monitoring the processing status in real time, it solves the problem that it is difficult to monitor and discover problems in real time during the edge sealing process, real-time monitoring of the board quality and improvement of production efficiency.
Patent Information
- Application Number
- CN202510048785.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2025-05-09
AI Technical Summary
It is difficult for the existing technology to monitor and timely discover potential problems in the edge sealing process in real time, such as unstable processing status, disordered process, equipment failure or board size not meeting expectations, resulting in low production efficiency, poor quality standards and waste.
By scanning the QR code on the board to obtain processing information, monitor the processing status information of the board in real time, including location, size and real-time processing status, timely compare the processing status information and processing information, and generate alarm information to remind the operator to handle abnormalities.
Real-time monitoring of the quality of the board is realized, abnormalities in the processing process are discovered in a timely manner, human omissions and errors are reduced, the automation level of the production line and product quality control accuracy are improved, and production waste is reduced.
Smart Images

Figure CN119963044A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of plate detection, and in particular to a plate state monitoring method, device, equipment and storage medium. Background Art
[0002] In the modern woodworking and board processing industry, edge banding machines are commonly used production equipment, mainly used to add edge banding to the edge of the board to improve the appearance quality and durability of the board. However, in the actual production process, there may be many potential problems in the processing of edge banding machines, such as unstable processing status, disordered process, equipment failure or board size not meeting expectations, etc. These problems are often difficult to monitor and discover in real time, which may lead to low production efficiency, substandard quality, and even unnecessary waste.
[0003] Most of the existing edge banding machine control systems rely on manual monitoring and regular inspections, and cannot monitor the processing status and quality of each board in real time. Due to the large number of equipment, large number of boards, and complex processes in the processing process, manual inspections often fail to detect subtle problems in production, resulting in errors in the production process that cannot be discovered and corrected in a timely manner, which may even affect the quality of the entire production batch in serious cases.
[0004] In addition, the existing monitoring methods also lack comprehensive tracking of the sheet status and cannot effectively compare the processing information, sheet status and target processing standards. This makes it impossible to provide timely feedback to operators during the processing, resulting in low production efficiency and inaccurate quality control, which in turn affects the automation level and product quality of the overall production line.
[0005] In summary, the problems existing in the prior art need to be solved urgently. Summary of the invention
[0006] The present invention provides a plate state monitoring method, device, equipment and storage medium, which are used to solve the defects in the prior art and realize real-time monitoring of plate quality.
[0007] The present invention provides a plate state monitoring method, comprising:
[0008] Obtaining plate processing information, wherein the plate processing information is obtained by scanning a QR code on the plate;
[0009] Monitor the processing status information of the plate;
[0010] When the processing status information does not match the plate processing information, an alarm message is generated.
[0011] According to a plate state monitoring method provided by the present invention, after the step of monitoring the processing state information of the plate, the method further comprises:
[0012] The processing status information is displayed visually.
[0013] According to a plate state monitoring method provided by the present invention, the plate processing information includes plate process information and plate target size, and the plate process information corresponds to the plate target size one by one.
[0014] According to a plate state monitoring method provided by the present invention, processing state information includes plate position information, plate size information and real-time plate processing status, and the plate position information is used to characterize the position of the plate in the edge banding machine connection line.
[0015] According to a plate state monitoring method provided by the present invention, the step of monitoring the processing state information of the plate specifically includes:
[0016] The plate position information and plate size information of the plate are obtained through the sensor
[0017] Acquire a real-life image of the plate through a camera;
[0018] The real scene image is input into the image recognition model to obtain the real-time processing status of the plate.
[0019] According to a plate state monitoring method provided by the present invention, the step of generating an alarm message when the processing state information does not match the plate processing information specifically includes:
[0020] According to the plate position information, determine the corresponding plate process information and the plate target size;
[0021] When the plate size information does not match the plate target size, an alarm message is generated;
[0022] or
[0023] When the real-time processing status of the plate does not match the plate process information, an alarm message is generated.
[0024] According to a plate state monitoring method provided by the present invention, when the processing state information does not match the plate processing information, the step of generating an alarm message specifically includes:
[0025] Determine the type of processing abnormality based on the mismatched processing status information;
[0026] Generate alarm information based on the plate position information and the processing abnormality type.
[0027] The present invention also provides a plate state monitoring device, comprising:
[0028] An information acquisition module is used to acquire plate processing information, wherein the plate processing information is acquired by scanning a QR code on the plate;
[0029] Status monitoring module, used to monitor the processing status information of the plate;
[0030] The alarm generation module is used to generate an alarm message when the processing status information does not match the plate processing information.
[0031] The present invention also provides an electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the program, any of the above-mentioned plate state monitoring methods is implemented.
[0032] The present invention also provides a non-transitory computer-readable storage medium on which a computer program is stored. When the computer program is executed by a processor, the plate state monitoring method as described above is implemented.
[0033] The present invention also provides a computer program product, comprising a computer program, wherein when the computer program is executed by a processor, the computer program implements any of the above-mentioned plate state monitoring methods.
[0034] The plate state monitoring method, device, equipment and storage medium provided by the present invention obtain plate processing information by scanning the QR code on the plate; monitor the plate processing state information; when the processing state information does not match the plate processing information, an alarm message is generated. The present invention obtains the plate processing information by scanning the QR code on the plate, and by real-time monitoring the plate processing state information, the processing process of each plate can be tracked in real time, ensuring the visualization of the processing progress and plate state, avoiding human omissions and errors. In addition, by comparing the processing state information with the plate processing information, the abnormality of the processing state can be discovered in time, especially when the size does not match or the process sequence is wrong, the system can automatically generate an alarm message to remind the operator to deal with it in time, thereby reducing quality problems and production waste. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0036] Figure 1 It is a schematic flow chart of the plate state monitoring method provided by the present invention;
[0037] Figure 2It is a structural schematic diagram of the plate state monitoring device provided by the present invention;
[0038] Figure 3 It is a structural schematic diagram of the electronic device provided by the present invention. DETAILED DESCRIPTION
[0039] In order to make the purpose, technical solution and advantages of the present invention clearer, the technical solution of the present invention will be clearly and completely described below in conjunction with the drawings of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0040] In order to solve the problems in the prior art, the present invention proposes a plate state monitoring method to achieve real-time monitoring of plate quality. The plate state monitoring method is described below. Figure 1 As shown, including but not limited to the following steps:
[0041] Step 110: Acquire plate processing information, wherein the plate processing information is obtained by scanning a QR code on the plate.
[0042] In step 110, the step of obtaining the plate processing information is achieved by scanning the QR code on the plate. The specific process is as follows:
[0043] In the initial stage of sheet production, a unique QR code is generated for each sheet. The QR code contains basic information about the sheet, including but not limited to the sheet model, size, production process, target processing size, processing sequence, and related production batch information. The QR code can be marked on the sheet by laser marking, inkjet printing, etc.
[0044] When the board enters the edge banding machine processing line, the scanning device (such as a QR code scanner, barcode scanner or mobile device) will scan the QR code on each board to obtain the processing information of the board. The QR code scanner can be a fixed or handheld device. Choose the appropriate device for scanning according to the actual situation.
[0045] The scanned QR code information is transmitted to the control center of the system, and after decoding, detailed processing information of each board is obtained. This information includes the processing steps required for the board, target size, board type, edge banding requirements and other data. This information will serve as a benchmark for subsequent steps and be used to compare with the processing status information of the board.
[0046] Step 120: monitor the processing status information of the plate.
[0047] Step 120 is used to monitor the status information of the plate in the processing process in real time to ensure the correctness and processing quality of the processing procedure. The specific process is as follows:
[0048] At key locations on the processing line, multiple sensors are installed to collect real-time information about the processing status of the sheet metal. Common sensors include position sensors, dimension sensors, pressure sensors, temperature and humidity sensors, etc. The sensors collect the actual processing status of the sheet metal in real time, such as:
[0049] The position of the board in the edge banding machine is monitored by a position sensor to ensure that the board is processed according to the predetermined processing path.
[0050] Use size sensors to detect the size of the plate in real time to ensure it meets the predetermined target size.
[0051] Including the adhesion of the edge banding tape, the flatness of the edge banding area, the completion of the processing steps, etc.
[0052] Where necessary, the image recognition system is combined with a camera or industrial camera to collect real-time images of the board. The image recognition system analyzes the image data to determine whether there are defects in the edge sealing of the board, such as gaps, damage, misalignment, etc.
[0053] The processing status information collected by the sensor and image recognition system is transmitted to the control system in real time. The system processes these real-time data to obtain information such as the processing progress, dimensional changes and processing quality of the plate.
[0054] The monitored processing status information will be stored in the system's database together with the plate's processing information (obtained through QR code scanning) as basic data for subsequent comparison.
[0055] Step 130: When the processing status information does not match the plate processing information, an alarm message is generated.
[0056] The core purpose of step 130 is to timely discover problems in the processing process by comparing the processing status information with the plate processing information, and generate alarm information when an abnormality occurs. The specific process is as follows:
[0057] Compare processing status and processing information: The system compares the processing status information collected in real time (such as the actual size of the board, processing progress, edge banding quality, etc.) with the board processing information previously obtained through QR code scanning. The key factors for comparison include:
[0058] Dimension mismatch: If the actual size of the sheet does not match the target size (for example, the dimensional deviation is outside the tolerance range), it indicates that an abnormality has occurred during the processing.
[0059] Processing procedure discrepancy: If the actual processing procedure of the plate is not completed in the predetermined order (for example, a certain procedure is not completed or the processing sequence is disordered), it is considered that there is a problem with the process.
[0060] Edge banding quality issues: If the image recognition system detects that the edge banding quality of the board does not meet the standards (such as defects such as gaps, damage or unevenness), the processing quality is considered to be defective.
[0061] Generate alarm information: Once the system detects that the processing status information does not match the processing information, the system will automatically generate an alarm message. The content of the alarm message usually includes:
[0062] Abnormality type: Indicates whether the problem is caused by dimensional deviation, process error, edge banding defect, etc.
[0063] Specific location: Point out the location of the problematic plate in the processing line to help operators quickly locate the problematic plate.
[0064] Action Suggestions: Provides suggestions for the operator to deal with the problem, such as stopping further processing of the board, adjusting equipment settings, or replacing edgebanding.
[0065] Alarm information feedback: Alarm information will be fed back to operators or managers in real time through displays, industrial computer interfaces or mobile devices to ensure that problems can be handled in a timely manner.
[0066] A plate state monitoring method obtains processing information by scanning a QR code on a plate, monitors the plate's processing state in real time, promptly detects mismatches during processing, generates alarm information, and effectively prevents processing deviations and quality problems. The present invention not only improves the automation level of the production line through an intelligent monitoring and feedback mechanism, but also significantly improves the quality control accuracy of plate processing and reduces waste during the production process.
[0067] As a further optional embodiment, after the step of monitoring the processing status information of the plate, the method further includes:
[0068] The processing status information is displayed visually.
[0069] In this embodiment, after the processing status information of the plate is monitored, in order to enable the operator to understand the processing status of the plate more intuitively, the system displays the collected processing status information through a visual interface. The specific process is as follows:
[0070] The system aggregates and processes the processing status information obtained through sensors and image recognition systems, mainly including the following aspects:
[0071] Plate position information: The position of the plate in the processing line, showing the actual processing progress of the plate.
[0072] Plate size information: monitor the actual size of the plate in real time and display the comparison result with the target size.
[0073] Plate processing status: Real-time processing status obtained through sensors, such as process progress, edge banding quality, etc.
[0074] Alarm information: If a mismatch or abnormality occurs during the processing, an alarm message is generated, including the abnormality type and specific location.
[0075] The system converts the above data into visual content through graphical interface software. Common visualization forms include:
[0076] Real-time plate position map: displays the position, progress and processing status of the plate in the processing line. Different states can be indicated by colors, icons, etc. For example, green indicates normal processing and red indicates abnormality.
[0077] Board processing status dashboard: displays various processing data of the board, such as size information, processing status, edge banding quality, etc., which can be presented in the form of charts, dashboards, etc.
[0078] Alarm information pop-up window: When a processing abnormality occurs, the system will pop up an alarm box on the display interface to prompt the operator with specific problems and handling suggestions.
[0079] As the plate is processed, the system will update the visual interface in real time to ensure that the operator can see the latest processing status. For example, as the plate is gradually processed, the position information and size data will be updated in real time on the interface.
[0080] In order to allow operators to fully understand the processing status of the board, the system's visual display can also integrate the processing status information from different sources. For example, information such as dimensional deviation, edge banding quality, and processing progress can be presented in different dimensions on the same interface, allowing operators to understand the processing status at a glance.
[0081] The visual display interface not only supports traditional industrial computers and monitors, but also supports mobile devices (such as tablets, mobile phones, etc.), allowing operators to view processing information anytime and anywhere, further improving work efficiency.
[0082] As a further optional embodiment, the plate processing information includes plate process information and plate target size, and the plate process information corresponds to the plate target size one by one.
[0083] When the plate enters the processing line, the scanning device scans the QR code on the plate and extracts the processing information of the plate. The extracted information includes:
[0084] Plate process information: List each specific process of the plate in the processing process. For example, edge banding, punching, trimming and other processes, and indicate the execution order and requirements of each process.
[0085] Plate target size: For each process, the system presets a target size to ensure that the plate meets the specified size requirements during processing.
[0086] As a further optional embodiment, the processing status information includes plate position information, plate size information and real-time plate processing status, and the plate position information is used to characterize the position of the plate in the edge banding machine line.
[0087] Specifically, the system monitors the position of the sheet in the processing line in real time through sensors (such as position sensors, laser rangefinders, etc.) installed on the edge banding machine line. Each position of the sheet in the processing process has a unique identifier.
[0088] The plate position information is used to describe the position coordinates of the plate in the entire edge banding machine connection. For example, the system will record the initial position of the plate before entering the edge banding machine, the intermediate position of each process during the processing, and the final position after the processing is completed.
[0089] This position information can be expressed by X, Y, and Z axis coordinates, or by relative position markings to show the flow of the board between different stations of the edge banding machine.
[0090] The system obtains the dimensional information of the plate in real time through a dimensional sensor (such as a laser measuring instrument or a high-precision image recognition system). The dimensional information includes key parameters such as the length, width, thickness, etc. of the plate, especially the target size and actual size of the plate after processing.
[0091] The board size information will be compared with the target size of the board to check whether it meets the predetermined specifications. For example, in the edge banding process, the width of the edge banding and the edge processing size of the board need to be precisely controlled.
[0092] Through cameras, sensors and image recognition technology, the system monitors the processing status of the board in real time, including the execution of the current processing step, the edge banding quality, whether there are defects (such as edge banding gaps, loose edge banding, etc.), and other real-time processing parameters.
[0093] The real-time processing status includes the execution progress of each process, such as whether the edge banding is completed, whether there are any processing abnormalities, etc.
[0094] As a further optional embodiment, the step of monitoring the processing status information of the plate specifically includes:
[0095] The plate position information and plate size information of the plate are obtained through the sensor
[0096] Acquire a real-life image of the plate through a camera;
[0097] The real scene image is input into the image recognition model to obtain the real-time processing status of the plate.
[0098] In this embodiment, the position of each plate in the edge banding machine line is obtained in real time by installing a position sensor (such as a laser rangefinder, an infrared sensor, a photoelectric sensor, etc.) on the production line. The sensor can generate accurate plate position information by detecting the plate's entry and exit position, the position of each process, and the movement trajectory of the plate in the process.
[0099] By installing dimension sensors (such as laser scanners, rangefinders, optical measurement systems, etc.), the dimensions of the sheet can be monitored in real time. The sensors can measure the length, width, thickness and other dimensions of the sheet in different processes to obtain the sheet size information.
[0100] High-definition cameras are installed at key process locations on the production line to capture real-time images of the panels. Through image acquisition, information such as the appearance, surface quality, and edge sealing status of the panels during processing can be obtained.
[0101] The camera can acquire images at different angles through high-speed shooting, helping the system determine whether there are gaps, damage, poor edge sealing, etc. in the board during the edge sealing process.
[0102] The camera can clearly capture the processing status of the plate and provide data support for subsequent image recognition analysis.
[0103] The real-life images captured by the camera are input into the pre-trained image recognition model. The image recognition model can automatically analyze and process the images based on deep learning, machine vision and other technologies to obtain the real-time processing status of the plate.
[0104] The real-time processing status includes judging whether the edge banding is flat, whether there are edge banding gaps, whether there are edge banding missing, whether there is damage on the surface of the board, etc.
[0105] The model can also identify the completion status of different process steps, for example, whether the edge banding is completed correctly, whether the type and size of the edge banding meet the requirements, etc.
[0106] By comparing the actual processing conditions with the preset standards, the image recognition model can quickly determine whether the processing is qualified and provide data support for subsequent processing.
[0107] As a further optional embodiment, the step of generating an alarm message when the processing status information does not match the plate processing information specifically includes:
[0108] According to the plate position information, determine the corresponding plate process information and the plate target size;
[0109] When the plate size information does not match the plate target size, an alarm message is generated;
[0110] or
[0111] When the real-time processing status of the plate does not match the plate process information, an alarm message is generated.
[0112] In this embodiment, the system first obtains the position information of the plate in the production line through the sensor and positioning module, and then queries the plate process information corresponding to the position based on the position information. For example, if the plate is in the edge banding process, the system will find the size, shape and processing requirements corresponding to the edge banding process.
[0113] The system obtains the actual size information of the plate through sensors (such as laser measuring instruments) and compares it with the preset target size. If the actual size of the plate exceeds the tolerance range, the system will trigger an alarm mechanism.
[0114] For example, when the length, width or thickness of the plate does not match the target size, the system generates a specific alarm message based on the plate position and its target size settings, reminding the operator to make adjustments.
[0115] The system uses cameras or other visual recognition devices to obtain the real-time processing status of the board during the processing (such as the quality of edge banding, edge banding type, etc.), and compares it with the predetermined processing procedure requirements.
[0116] If the system finds that the actual processing situation does not meet the process requirements (such as incomplete edge banding, incorrect use of edge banding, damaged board, etc.), the system will generate an alarm message, specifically pointing out the location of the problem and the type of abnormality.
[0117] The alarm information not only contains basic information about size mismatch or processing mismatch, but also provides detailed error description, possible causes and handling suggestions.
[0118] For example, specific error messages such as "board size does not match the edge banding process" or "edge banding installation position is wrong" will be displayed on the operation interface or notified to the operator through other means.
[0119] As a further optional embodiment, when the processing state information does not match the plate processing information, the step of generating an alarm message specifically includes:
[0120] Determine the type of processing abnormality based on the mismatched processing status information;
[0121] Generate alarm information based on the plate position information and the processing abnormality type.
[0122] In this embodiment, the system collects the processing status information of the board in real time through sensors, cameras and other equipment, including the size, position, edge quality, surface defects, etc. of the board.
[0123] The system compares the collected processing status information with the preset processing standards. If a mismatch occurs, the system begins to analyze the anomaly.
[0124] The system analyzes mismatched processing status information through preset rules or intelligent algorithms to determine the specific type of processing anomaly.
[0125] For example:
[0126] If the edge banding of the board is incomplete, the system will judge it as "missing edge banding".
[0127] If the dimension exceeds the tolerance range, the system will determine it as "dimensional abnormality".
[0128] If the edge banding is not aligned with the edge of the board, the system will determine it as "abnormal edge banding position".
[0129] This analysis process can be implemented through machine learning algorithms, image recognition models or rule engines to ensure accurate judgment of the anomaly type.
[0130] The system determines the specific location of the problem plate in the production line through position sensors or workstation information. Then, the location information is combined with the abnormality type to generate an alarm message.
[0131] For example, if the edge band of the plate is offset during the edge banding process, the alarm message may include the following:
[0132] Position: 3rd station of edge banding machine.
[0133] Abnormal type: Edge band position deviation.
[0134] Processing suggestion: Adjust the position of the edge banding and restart the processing.
[0135] The system can also automatically generate alarm reports and send them to operators or management systems to remind them to take timely measures.
[0136] The plate state monitoring device provided by the present invention is described below. Figure 2As shown, the plate state monitoring device described below and the plate state monitoring method described above can refer to each other.
[0137] A plate state monitoring device, comprising:
[0138] An information acquisition module 210 is used to acquire plate processing information, wherein the plate processing information is acquired by scanning a QR code on the plate;
[0139] The status monitoring module 220 is used to monitor the processing status information of the plate;
[0140] The alarm generating module 230 is used to generate an alarm message when the processing status information does not match the plate processing information.
[0141] Figure 3 An example of a physical structure diagram of an electronic device is shown in FIG. Figure 3 As shown, the electronic device may include: a processor 310, a communication interface 320, a memory 330 and a communication bus 340, wherein the processor 310, the communication interface 320 and the memory 330 communicate with each other through the communication bus 340. The processor 310 may call the logic instructions in the memory 330 to execute the plate state monitoring method, which includes:
[0142] Obtaining plate processing information, wherein the plate processing information is obtained by scanning a QR code on the plate;
[0143] Monitor the processing status information of the plate;
[0144] When the processing status information does not match the plate processing information, an alarm message is generated.
[0145] In addition, the logic instructions in the above-mentioned memory 330 can be implemented in the form of software functional units and can be stored in a computer-readable storage medium when sold or used as an independent product. Based on such an understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art or the part of the technical solution, can be embodied in the form of a software product, which is stored in a storage medium and includes several instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: various media that can store program codes, such as a U disk, a mobile hard disk, a read-only memory (ROM, Read-On l yMemory), a random access memory (RAM, Random Access Memory), a disk or an optical disk.
[0146] On the other hand, the present invention further provides a computer program product, the computer program product includes a computer program, the computer program can be stored in a non-transitory computer-readable storage medium, when the computer program is executed by a processor, the computer can execute the plate state monitoring method provided by the above methods, the method includes:
[0147] Obtaining plate processing information, wherein the plate processing information is obtained by scanning a QR code on the plate;
[0148] Monitor the processing status information of the plate;
[0149] When the processing status information does not match the plate processing information, an alarm message is generated.
[0150] In another aspect, the present invention further provides a non-transitory computer-readable storage medium having a computer program stored thereon, and when the computer program is executed by a processor, the method for monitoring the plate state provided by the above methods is implemented, and the method comprises:
[0151] Obtaining plate processing information, wherein the plate processing information is obtained by scanning a QR code on the plate;
[0152] Monitor the processing status information of the plate;
[0153] When the processing status information does not match the plate processing information, an alarm message is generated.
[0154] The device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Ordinary technicians in this field can understand and implement it without paying creative labor.
[0155] Through the description of the above implementation methods, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solution is essentially or the part that contributes to the prior art can be embodied in the form of a software product, and the computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a disk, an optical disk, etc., including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or some parts of the embodiments.
[0156] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A plate state monitoring method, characterized in that: include: Obtaining plate processing information, wherein the plate processing information is obtained by scanning a QR code on the plate; Monitor the processing status information of the plate; When the processing status information does not match the plate processing information, an alarm message is generated.
2. The plate state monitoring method according to claim 1, characterized in that: After the step of monitoring the processing status information of the plate, the method further comprises: The processing status information is displayed visually.
3. The plate state monitoring method according to claim 1, characterized in that: The plate processing information includes plate process information and plate target size, and the plate process information corresponds to the plate target size one by one.
4. The plate state monitoring method according to claim 3, characterized in that: The processing status information includes plate position information, plate size information and real-time plate processing status. The plate position information is used to characterize the position of the plate in the edge banding machine connection line.
5. The plate state monitoring method according to claim 4, characterized in that: The step of monitoring the processing status information of the plate specifically includes: Acquire the plate position information and plate size information of the plate through a sensor; Acquire a real-life image of the plate through a camera; The real scene image is input into the image recognition model to obtain the real-time processing status of the plate.
6. The plate state monitoring method according to claim 5, characterized in that: The step of generating an alarm message when the processing status information does not match the plate processing information specifically includes: According to the plate position information, determine the corresponding plate process information and the plate target size; When the plate size information does not match the plate target size, an alarm message is generated; or When the real-time processing status of the plate does not match the plate process information, an alarm message is generated.
7. The plate state monitoring method according to claim 6, characterized in that: The step of generating an alarm message when the processing status information does not match the plate processing information specifically includes: Determine the type of processing abnormality based on the mismatched processing status information; Generate alarm information based on the plate position information and the processing abnormality type.
8. A plate state monitoring device, characterized in that: include: An information acquisition module is used to acquire plate processing information, wherein the plate processing information is acquired by scanning a QR code on the plate; Status monitoring module, used to monitor the processing status information of the plate; The alarm generation module is used to generate an alarm message when the processing status information does not match the plate processing information.
9. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the program, the plate state monitoring method as described in any one of claims 1 to 7 is implemented.
10. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the plate state monitoring method as claimed in any one of claims 1 to 7 is implemented.
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