Production information acquisition method, device and equipment
By responding to the production completion instructions of the output materials in the production equipment of the sterile packaging material industry, sampling and detection information during the production period are obtained, and detailed production information is generated, which solves the problem of low accuracy in obtaining production information of the output materials and improves the control and management capabilities of the production process.
Patent Information
- Application Number
- CN202510221115.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2025-06-13
AI Technical Summary
In the sterile packaging material industry, the processing of multiple input materials by production equipment leads to low accuracy in obtaining production information of output materials, especially the attribute information of the output materials, the relationship with the input materials and the detection information are difficult to accurately obtain.
By responding to the production completion instructions of the produced material, it determines its production period and obtains the sampling information and detection information of the production equipment during this period. Based on this information, detailed production information is generated, including material properties, association information, loss information and defect information.
It improves the accuracy of obtaining production information of produced materials, ensures detailed records of the production process and the reliability of data, thereby better controlling and managing the production process.
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Figure CN120146492A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of computer technology, and in particular, to a method, apparatus, and device for obtaining production information. Background Art
[0002] In the aseptic packaging material industry, production equipment can process input materials to obtain output materials. To facilitate the control of the production process, it is necessary to record the production information of the entire process. For example, which input materials are used to produce the output materials.
[0003] During the production process, multiple input materials can be continuously put into the production equipment, and the production equipment processes the multiple input materials in sequence to obtain multiple output materials. One input material can produce part of the output materials, one output material, or multiple output materials. One output material can also be produced by one input material or multiple input materials. That is, there is a complex correspondence relationship between the input materials and the output materials. In this case, how to accurately obtain the production information of the output materials (such as the attribute information of the output materials, the association relationship with the input materials, the detection information, etc.) is an urgent problem to be solved. Summary of the Invention
[0004] This application provides a method, apparatus, and device for obtaining production information to solve the problem of low accuracy of the obtained production information.
[0005] In a first aspect, this application provides a method for obtaining production information, including:
[0006] In response to a production completion instruction for a first output material, determine a first production period of the first output material;
[0007] Obtain sampling information of the production equipment during the first production period, where the sampling information includes multiple sampling times and a sampling record corresponding to each sampling time, and the sampling record includes an identifier of the input material and a processing position of the input material at the sampling time;
[0008] Obtain first detection information obtained by the production equipment for detecting the first output material during the first production period;
[0009] Generate first production information corresponding to the first output material according to the sampling information and the first detection information, where the first production information indicates detailed information for producing the first output material.
[0010] In a possible implementation manner, in response to a production completion instruction for a first output material, determining a first production period of the first output material includes:
[0011] Periodically detect the remaining production length of the first output material, where the remaining production length is the difference between the preset length and the current length of the first output material;
[0012] When it is detected that the remaining production length is 0, generate the production completion instruction and the production end time of the first output material;
[0013] According to the production completion instruction, obtain the production start time of the first output material from the preset record information;
[0014] Determine the time period between the production start time and the production end time as the first production period.
[0015] In a possible implementation, periodically detecting the remaining production length of the first output material includes:
[0016] When the timer corresponding to the first output material times out, determine the detection period. The timer is started when the first output material starts production, and the duration of the timer is determined according to the estimated production duration of the first output material;
[0017] According to the detection period, periodically detect the remaining production length of the first output material.
[0018] In a possible implementation, generating the first production information corresponding to the first output material according to the sampling information and the first detection information includes:
[0019] Obtain the first material attribute information of the first output material;
[0020] Parse and process the sampling information to obtain the associated information of the first output material. The associated information includes the identifiers of at least one input material corresponding to the first output material and the position information of each input material for producing the first output material. The position information includes a start position and an end position;
[0021] According to the associated information, determine the loss information of the first output material;
[0022] According to the first detection information, determine the first defect information of the first output material. The first defect information includes a defect type and a defect position;
[0023] Determine that the first production information includes: the first material attribute information, the associated information, the loss information, and the first defect information.
[0024] In a possible implementation, parsing and processing the sampling information to obtain the associated information of the first output material includes:
[0025] Group the multiple sampling records in the sampling information according to the identifiers of the input materials in each sampling record to obtain at least one record group, where the identifiers of the input materials in each sampling record in the record group are the same;
[0026] For any one record group, determine the input material corresponding to the record group according to the identifier of the input material corresponding to the record group, and determine the position information of the input material corresponding to the record group for producing the first output material according to the processing positions in each sampling record in the record group;
[0027] Determine that the association information includes: the identifier of the input material corresponding to each record group, and the position information of the input material corresponding to each record group for producing the first output material.
[0028] In a possible implementation manner, determining the loss information of the first output material according to the at least one input material and the position information of each input material for producing the first output material includes:
[0029] Determine M segments of target loss materials in the at least one input material according to the position information of each input material for producing the first output material, where the target loss materials are used to produce the first output material, and M is an integer;
[0030] Determine the loss position of each segment of target loss material in the first output material and the material length of each segment of loss material;
[0031] Determine that the loss information includes: the loss position of each segment of target loss material in the first output material and the material length of each segment of loss material.
[0032] In a possible implementation manner, after generating the first production information corresponding to the first output material according to the sampling information and the first detection information, further include:
[0033] Obtain a production information template, where the production information template includes multiple information fields and filling positions corresponding to each information field;
[0034] Perform parsing processing on the production information template to obtain the multiple information fields;
[0035] Extract the field values corresponding to each information field from the first production information according to the multiple information fields;
[0036] Fill the field values corresponding to each information field into the corresponding filling positions in the production information template to obtain a production information page and display the production information page.
[0037] In a possible implementation, the method further includes:
[0038] In response to a production completion instruction for a target input material, determining a second production period of the target input material;
[0039] Obtaining second detection information for the target input material during the second production period;
[0040] Determining at least one second output material produced by the production equipment during the second production period;
[0041] Determining second production information of the target input material according to the second detection information and first production information of each second output material, where the second production information is used to indicate detailed information for processing the target input material.
[0042] In a possible implementation, determining the second production information of the target input material according to the second detection information and first production information of each second output material includes:
[0043] Determining second material attribute information of the target input material;
[0044] Performing parsing processing on the first production information to obtain output information of the target input material, where the output information includes an identifier of each second output material and a material length of the target input material used to produce each second output material;
[0045] Determining second defect information of the target input material according to the second detection information, where the second defect information includes a defect type and a defect location;
[0046] Determining that the second production information includes: the second material attribute information, the output information, and the second defect information.
[0047] In a second aspect, the present application provides a production information acquisition device, including: a first determination module, a first acquisition module, a second acquisition module, and a generation module, where,
[0048] The first determination module is configured to determine a first production period of the first output material in response to a production completion instruction for the first output material;
[0049] The first acquisition module is configured to acquire sampling information of the production equipment during the first production period, where the sampling information includes a plurality of sampling times and a sampling record corresponding to each sampling time, and the sampling record includes an identifier of the input material and a processing position of the input material at the sampling time;
[0050] The second acquisition module is configured to acquire first detection information obtained by detecting the first output material by the production equipment during the first production period;
[0051] The generation module is configured to generate first production information corresponding to the first output material according to the sampling information and the first detection information, where the first production information indicates detailed information for producing the first output material.
[0052] In a possible implementation manner, the first determination module is specifically configured to:
[0053] Periodically detect the remaining production length of the first output material, where the remaining production length is the difference between the preset length and the current length of the first output material;
[0054] When it is detected that the remaining production length is 0, generate the production completion instruction and the production end time of the first output material;
[0055] According to the production completion instruction, obtain the production start time of the first output material from the preset record information;
[0056] Determine the period between the production start time and the production end time as the first production period.
[0057] In a possible implementation manner, the first determination module is specifically configured to:
[0058] When the timer corresponding to the first output material times out, determine the detection period, where the timer is started when the production of the first output material starts, and the duration of the timer is determined according to the estimated production duration of the first output material;
[0059] According to the detection period, periodically detect the remaining production length of the first output material.
[0060] In a possible implementation manner, the generation module is specifically configured to:
[0061] Obtain first material attribute information of the first output material;
[0062] Parse and process the sampling information to obtain associated information of the first output material, where the associated information includes the identifiers of at least one input material corresponding to the first output material and the position information of each input material for producing the first output material, and the position information includes a start position and an end position;
[0063] Determine the loss information of the first output material according to the associated information;
[0064] Determine the first defect information of the first output material according to the first detection information, where the first defect information includes the defect type and the defect location;
[0065] Determine that the first production information includes: the first material attribute information, the association information, the loss information, and the first defect information.
[0066] In a possible implementation manner, the generating module is specifically configured to:
[0067] Group the multiple sampling records in the sampling information according to the identifiers of the input materials in each sampling record, to obtain at least one record group, where the identifiers of the input materials in each sampling record in the record group are the same;
[0068] For any one record group, determine the input material corresponding to the record group according to the identifier of the input material corresponding to the record group, and determine the position information of the input material corresponding to the record group for producing the first output material according to the processing locations in each sampling record in the record group;
[0069] Determine that the association information includes: the identifier of the input material corresponding to each record group, and the position information of the input material corresponding to each record group for producing the first output material.
[0070] In a possible implementation manner, the generating module is specifically configured to:
[0071] Determine M segments of target loss materials in the at least one input material according to the position information of the input materials for producing the first output material, where the target loss materials are used to produce the first output material, and M is an integer;
[0072] Determine the loss location of each segment of target loss material in the first output material, and the material length of each segment of loss material;
[0073] Determine that the loss information includes: the loss location of each segment of target loss material in the first output material, and the material length of each segment of loss material.
[0074] In a possible implementation manner, the generating module is specifically configured to:
[0075] Obtain a production information template, where the production information template includes multiple information fields and the filling positions corresponding to the information fields;
[0076] Perform parsing processing on the production information template to obtain the multiple information fields;
[0077] Extract the field values corresponding to the information fields in the first production information according to the multiple information fields;
[0078] Fill the field values corresponding to each information field into the corresponding filling positions in the production information template to obtain a production information page, and display the production information page.
[0079] In a possible implementation manner, the device further includes a third acquisition module, a second determination module, and a third determination module:
[0080] The first determination module is further configured to, in response to a production completion instruction of a target input material, determine a second production period of the target input material;
[0081] The third acquisition module is configured to acquire second detection information of the target input material during the second production period;
[0082] The second determination module is configured to determine at least one second output material produced by the production device during the second production period;
[0083] The third determination module is configured to determine second production information of the target input material according to the second detection information and the first production information of each second output material, where the second production information is used to indicate detailed information about processing the target input material.
[0084] In a possible implementation manner, the third determination module is specifically configured to:
[0085] Determine second material attribute information of the target input material;
[0086] Perform parsing processing on the first production information to obtain output information of the target input material, where the output information includes the identifier of each second output material and the material length of the target input material used to produce each second output material;
[0087] Determine second defect information of the target input material according to the second detection information, where the second defect information includes a defect type and a defect position;
[0088] Determine that the second production information includes: the second material attribute information, the output information, and the second defect information.
[0089] In a third aspect, an embodiment of the present application provides a production device, including: at least one processor and a memory; the memory stores computer-executable instructions; at least one processor executes the computer-executable instructions stored in the memory, so that at least one processor executes the method for acquiring production information as described in the first aspect and any item of the first aspect above.
[0090] The method, apparatus, and device for obtaining production information provided in this application, when obtaining production information, the production device responds to the production completion instruction of the first output material. After determining the first production period corresponding to the first output material, it obtains the corresponding sampling information within the first production period, including multiple sampling times and corresponding sampling records (identifications of input materials and processing positions corresponding to the sampling times). Subsequently, it can obtain the first detection information corresponding to the first output material within the first production period, and based on the obtained sampling information and the first detection information, obtain the first production information corresponding to the first output material. In the above process, since the sampling records and the first detection information can record the processing conditions of the first output material in detail, the first production information (such as location information) corresponding to the first output material can be accurately obtained, improving the accuracy of production information. BRIEF DESCRIPTION OF THE DRAWINGS
[0091] The accompanying drawings herein are incorporated into the specification and constitute a part of this specification, showing embodiments consistent with this application, and are used together with the specification to explain the principles of this application.
[0092] Figure 1 Schematic diagram of the system architecture provided for the embodiments of this application;
[0093] Figure 2 Schematic diagram of a process for obtaining production information provided for the embodiments of this application;
[0094] Figure 3 Schematic diagram of another process for obtaining production information provided for the embodiments of this application;
[0095] Figure 4 Schematic diagram of a process for determining associated information of the first output material provided for the embodiments of this application;
[0096] Figure 5 Schematic diagram of a process for displaying a production information page provided for the embodiments of this application;
[0097] Figure 6 Schematic diagram of a window of the first production information page provided for the embodiments of this application;
[0098] Figure 7 Schematic diagram of yet another process for obtaining production information provided for the embodiments of this application;
[0099] Figure 8 Schematic diagram of a window of the second production information page provided for the embodiments of this application;
[0100] Figure 9 Schematic diagram of the structure of an apparatus for obtaining production information provided for the embodiments of this application;
[0101] Figure 10Schematic structural diagram of another production information acquisition device provided by an embodiment of the present application;
[0102] Figure 11 Schematic structural diagram of the production equipment provided by an embodiment of the present application.
[0103] Through the above-mentioned drawings, specific embodiments of the present application have been shown, and more detailed descriptions will be provided hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed implementation manners
[0104] Here, the exemplary embodiments will be described in detail, and the examples are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all implementation manners consistent with the present application. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.
[0105] It should be noted that the user information (including but not limited to user device 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 fully authorized by all parties. Moreover, the processing of relevant data, such as collection, storage, use, processing, transmission, provision, disclosure, and application, all comply with the relevant laws, regulations, and standards of relevant countries and regions, adopt necessary confidentiality measures, do not violate public order and good customs, and provide corresponding operation entrances for users to choose to authorize or refuse.
[0106] It should be noted that in the embodiments of the present application, some industry-existing solutions such as certain software, components, models, etc. may be mentioned. They should be regarded as exemplary, and their purpose is only to illustrate the feasibility in the implementation of the technical solution of the present application, but it does not mean that the applicant has already or necessarily used this solution.
[0107] For ease of understanding, the following combines Figure 1 to illustrate the system architecture applicable to the embodiments of the present application.
[0108] Figure 1 Schematic diagram of the system architecture provided by an embodiment of the present application. Please refer to Figure 1 , which includes a production device 101 and a display device 102.
[0109] The production device 101 can process the input materials to obtain the corresponding output materials, and can also acquire the production information of the input materials and the output materials, and send the above production information to the display device 102. The display device 102 can be a separate device for displaying the production information of the output materials.
[0110] In the actual application process, a Manufacturing Execution System (MES) can be set in the production device 101. Among them, the MES system can be used to store the production information of the input materials and the output materials.
[0111] In the prior art, information acquisition is usually carried out manually. For example, when it is necessary to obtain the production information during the production process, the staff needs to use tools for measurement. After obtaining multiple measurement data, multiple operations such as calculation and sorting of the multiple measurement data are still required to obtain the production information. However, due to the errors in the measurement data obtained manually, the measured value deviates from the true value, resulting in low accuracy of the obtained production information.
[0112] In view of the above technical problems, in the embodiments of the present application, during the production process, the sampling records (including the identification of the input materials and the processing positions at the sampling moments) and the detection information of the output materials at each sampling moment can be recorded in real time. Correspondingly, after the first output material is produced, the first production period corresponding to the first output material can be determined, and based on the sampling records and the detection information during the first production period, the first production information corresponding to the first output material can be determined. In the above process, since the sampling records and the first detection information can record the processing situation of the first output material in detail, the first production information (such as position information) corresponding to the first output material can be accurately obtained, improving the accuracy of the production information.
[0113] The technical solution of the present application and how the technical solution of the present application solves the above technical problems will be described in detail below with specific embodiments. These specific embodiments below can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the present application will be described below with reference to the accompanying drawings.
[0114] Figure 2 It is a schematic diagram of the acquisition process of production information provided by the embodiments of the present application. Please refer to Figure 2 As shown, the method may include the following steps:
[0115] S201. In response to the production completion instruction of the first output material, determine the first production period of the first output material.
[0116] The execution subject of the embodiments of the present application can be a production device or a device for acquiring production information provided in the production device. The device for acquiring production information can be implemented by software or by a combination of software and hardware.
[0117] The production completion instruction is used to indicate that the production of the first output material is completed.
[0118] The first production period refers to the period during which the first output material is produced. For example, the first production period can be from 10:00 to 11:00.
[0119] The first production period of the first output material can be determined in the following manner: periodically detect the remaining production length of the first output material, where the remaining production length is the difference between the preset length and the current length of the first output material; when it is detected that the remaining production length is 0, generate a production completion instruction and the production end time of the first output material; according to the production completion instruction, obtain the production start time of the first output material from the preset record information; determine the period between the production start time and the production end time as the first production period.
[0120] The preset length refers to the target length of the first output material set in advance, and different first output materials can have different preset lengths.
[0121] For example, assuming that the preset length of the first output material is 1000 meters and the current length is 600 meters, then the remaining production length is 400 meters.
[0122] The preset record information refers to the information related to the production process set in advance. For example, the preset record information can include the production start times of multiple output materials.
[0123] The production end time is the time when the production device finishes producing the first output material. The production start time is the time when the production of the first output material starts through the production device.
[0124] For example, assuming that the production end time of the first output material is 8:20 am and the production start time is 8:50 am, then the first production period is from 8:20 am to 8:50 am.
[0125] When the timer corresponding to the first output material times out, determine the detection period. The timer is started when the production of the first output material starts, and the duration of the timer is determined according to the estimated production duration of the first output material; according to the detection period, periodically detect the remaining production length of the first output material.
[0126] The detection period refers to the time period during which the detection device detects the first output material. For example, the detection period can be 30 seconds, one minute, etc.
[0127] The estimated production duration refers to the production duration of the first output material set in advance. For example, the estimated production duration can be 30 minutes, 1 hour, etc.
[0128] The estimated production duration can be determined in the following way: Obtain the lengths of multiple output materials and their corresponding production durations within a historical period; obtain the preset length of the current first output material; based on the preset length of the first output material, determine the corresponding output material among the lengths of multiple output materials, and determine the production duration of this output material as the estimated production duration of the first output material.
[0129] For example, assume that within the historical period, there are output material A and output material B. The length of output material A is 2000 meters and the production duration is 20 minutes. The length of output material B is 1500 meters and the production duration is 12 minutes. The preset length of the first output material is 2000 meters. Then the estimated production duration of the first output material is 20 minutes.
[0130] S202. Obtain the sampling information of the production equipment within the first production period.
[0131] Among them, the sampling information includes multiple sampling moments and the sampling records corresponding to each sampling moment. The sampling records include the identifier of the input material and the processing position of the input material at the sampling moment.
[0132] In the actual application process, a sampling device can be set in the production equipment, and this sampling device can collect the sampling records of the production equipment at each sampling moment in real time.
[0133] The multiple sampling moments can be determined in the following way: The production equipment obtains the first production period of the first output material, including the start moment and the end moment. After determining the preset time interval, based on the start moment, the end moment, and the preset time interval, determine multiple sampling moments within the first production period.
[0134] For example, assume that the first production period of the first output material is from 8:20 am to 8:23 am, and the preset time interval is 1 minute. Then the sampling moments are 8:20 am, 8:21 am, 8:22 am, and 8:23 am.
[0135] S203. Obtain the first detection information obtained by the production equipment for detecting the first output material within the first production period.
[0136] The first detection information is used to determine the surface characteristics of the first output material. For example, assume that the first output material is a paper roll. The first detection information can be the breakage information, defect information, etc. of the paper roll.
[0137] In the actual application process, a detection device can be set in the production equipment, and the detection device can detect the materials produced by the production equipment in real time. The detection device can include an image collector to detect the first output material by means of image acquisition and processing.
[0138] It should be noted that the execution order of S202 and S203 can be sequential execution or parallel execution, and the embodiments of the present application do not limit this.
[0139] S204. Generate first production information corresponding to the first output material according to the sampling information and the first detection information.
[0140] Among them, the first production information indicates the detailed information of producing the first output material.
[0141] The first production information corresponding to the first output material can be generated in the following way: obtain the first material attribute information of the first output material; perform parsing processing on the sampling information to obtain the associated information of the first output material; determine the loss information of the first output material according to the associated information; determine the first defect information of the first output material according to the first detection information, where the defect information includes the defect type and the defect location; determine that the first production information includes: the first material attribute information, the associated information, the loss information, and the first defect information.
[0142] Among them, the associated information includes the identifiers of at least one input material corresponding to the first output material, and the position information of each input material for producing the first output material, where the position information includes the start position and the end position.
[0143] The first material attribute information includes at least one attribute name and the attribute value corresponding to each attribute name. The attribute name can be the production order number, the output batch, the output serial number, the material status, the equipment number, the length, the start time, the end time, etc. For example, if the attribute name is the production order number, the corresponding attribute value can be 1001. That is, the first material attribute information of the first output material can be as shown in Table 1:
[0144] Table 1
[0145]
[0146] According to Table 1, it can be obtained that the production order number of the first output material is 1001, the output batch is 003, the output serial number is 5, the material status is good, the equipment number is 16952, the start time is 9:30 on December 31, 2024, and the end time is 9:35 on December 31, 2024.
[0147] The associated information can be obtained in the following way: Group multiple sampling records in the sampling information according to the identifiers of the input materials in each sampling record to obtain at least one record group, where the identifiers of the input materials in each sampling record in the record group are the same; for any one record group, determine the input material corresponding to the record group according to the identifier of the input material corresponding to the record group, and determine the position information of the input material corresponding to the record group for producing the first output material according to the processing positions in each sampling record in the record group. Determining the associated information includes: the identifier of the input material corresponding to each record group, and the position information of the input material corresponding to each record group for producing the first output material.
[0148] After determining at least one record group, in any one record group, the processing position corresponding to the first sampling record can be determined as the starting position of the first output material, and the processing position corresponding to the last sampling record can be determined as the ending position of the first output material.
[0149] For example, assume that there are a total of 5 sampling records in the sampling information. Among them, the identifiers of the input materials in sampling records 1 - 2 are both 001, and the corresponding input material is A. The identifiers of the input materials in sampling records 3 - 4 are both 002, and the corresponding material is B. The processing position in sampling record 1 is the 50th meter, the processing position in sampling record 2 is the 65th meter, the processing position in sampling record 3 is the 0th meter, and the processing position in sampling record 4 is the 12th meter. That is, the identifiers of the input materials corresponding to the sampling records and the input materials can be as shown in Table 2:
[0150] Table 2
[0151]
[0152] According to Table 2, it can be obtained that the identifiers (001) of the input materials in sampling records 1 - 2 are the same, and sampling records 1 - 2 can be determined as the 1st record group. The identifiers (002) of the input materials in sampling records 3 - 4 are the same, and sampling records 3 - 4 can be determined as the 2nd record group. Then the position information of the first output material includes: the 50 - 65th meters of input material A, and the 0 - 12th meters of input material B.
[0153] The loss information refers to the necessary loss information of the first output material set in advance. For example, the loss information can be the first 5 meters and the last 5 meters of the first output material.
[0154] The first defect information is used to determine whether there are defect characteristics in the first output material. Among them, the first defect information includes the defect type and the defect position. For example, assume that the first output material is a paper roll, then the defect type can be a paper roll break, and the corresponding defect position can be the 10 - 12th meters of the first output material.
[0155] In the embodiment of the present application, when production information needs to be obtained, the production equipment responds to the production completion instruction of the first output material. After determining the first production period corresponding to the first output material, it can obtain the sampling information within the first production period, including multiple sampling times and sampling records (identifications of input materials and processing positions at the sampling times), and obtain the first detection information corresponding to the first output material within the first production period. Subsequently, according to the sampling information and the first detection information, the first production information corresponding to the first output material is obtained. In the above process, since the sampling records and the first detection information can record the processing situation of the first output material in detail, the first production information (such as location information) corresponding to the first output material can be accurately obtained, improving the accuracy of production information.
[0156] Figure 3 Schematic diagram of another process for obtaining production information provided by the embodiment of the present application. Please refer to Figure 3 , and the method may include the following steps:
[0157] S301. Respond to the production completion instruction of the first output material and determine the first production period of the first output material.
[0158] S302. Obtain the sampling information of the production equipment within the first production period.
[0159] Among them, the sampling information includes multiple sampling times and sampling records corresponding to each sampling time. The sampling records include the identification of the input material and the processing position of the input material at the sampling time.
[0160] S303. Obtain the first detection information obtained by the production equipment for detecting the first output material within the first production period.
[0161] It should be noted that the execution processes of S301 - S303 can refer to S201 - S203, and will not be elaborated here.
[0162] S304. Obtain the first material attribute information of the first output material.
[0163] S305. Analyze and process the sampling information to obtain the associated information of the first output material.
[0164] Among them, the associated information includes the identifications of at least one input material corresponding to the first output material and the location information of each input material for producing the first output material. The location information includes the starting position and the ending position.
[0165] Next, in combination with Figure 4 , through specific examples, the associated information of the first output material will be described.
[0166] Figure 4Schematic diagram of the determination process of the associated information of the first output material provided by the embodiments of the present application. Please refer to Figure 4 , including input material A and input material B, as well as first output material A, first output material B, and first output material C.
[0167] Among them, the length of input material A is 3000 meters, the length of input material B is 2000 meters, and all of input materials A and B are used to produce the first output material. The length of first output material A is 2000 meters, the length of first output material B is 2000 meters, and the length of first output material C is 1000 meters.
[0168] The associated information corresponding to the first output material can be obtained: the input material corresponding to first output material A is A, and the position information is 0 - 2000 meters of input material A; the input materials corresponding to first output material B are A and B, and the position information is 2000 - 3000 meters of input material A and 0 - 1000 meters of input material B; the input material corresponding to first output material C is B, and the position information is 1000 - 2000 meters of input material B.
[0169] It should be noted that the execution order of S304 and S305 can be sequential execution or parallel execution, and the embodiments of the present application do not limit this.
[0170] S306. Determine the loss information of the first output material according to the associated information.
[0171] The loss information of the first output material can be determined in the following way: according to the position information of the input materials used to produce the first output material in each input material, determine M segments of target loss materials in at least one input material, where the target loss materials are used to produce the first output material, and M is an integer; determine the loss position of each segment of target loss material in the first output material and the material length of each segment of loss material; determine that the loss information includes: the loss position of each segment of target loss material in the first output material and the material length of each segment of loss material.
[0172] In the actual application process, usually the materials at the head and tail of the input material are determined as loss information. For example, assuming that all of input material A is used to produce the first output material, and the first output material only corresponds to input material A, and the total length of input material A is 1000 meters, then the materials at 0 - 5 meters and 995 - 1000 meters of input material A can be determined as target loss materials, and the corresponding material lengths are both 5.
[0173] S307. Determine the first defect information of the first output material according to the first detection information.
[0174] Among them, the first defect information includes the defect type and the defect position.
[0175] It should be noted that the execution order of S306 and S307 can be sequential execution or parallel execution, and the embodiments of the present application do not limit this.
[0176] S308. Determining the first production information includes: the first material attribute information, the association information, the loss information, and the first defect information.
[0177] In the embodiments of the present application, when production information needs to be obtained, the production equipment responds to the production completion instruction of the first output material. After determining the first production period corresponding to the first output material, it can obtain the sampling information within the first production period, including multiple sampling times and sampling records, and obtain the first detection information corresponding to the first output material within the first production period. After obtaining the first material attribute information of the first output material, the association information of the first output material can be obtained according to the sampling information, and the loss information of the first output material can be determined according to the association information. Subsequently, the defect information of the first output material is determined according to the first detection information, and the first production information corresponding to the first output material is obtained according to the sampling information and the first detection information. In the above process, since the sampling records and the first detection information can record the processing situation of the first output material in detail, the first production information (such as the position information) corresponding to the first output material can be accurately obtained, improving the accuracy of the production information.
[0178] Figure 5 It is a schematic diagram of the production information page display process provided by the embodiments of the present application. Please refer to Figure 5 , and the method may include the following steps:
[0179] S501. Obtain a production information template.
[0180] Among them, the production information template includes multiple information fields and the filling positions corresponding to each information field.
[0181] The production information template refers to a pre-designed template file related to production information.
[0182] In the actual application process, the production information template can be set according to actual needs. For example, when it is necessary to determine the position information (including the starting position and the ending position) of each input material used for producing the first output material, "starting position" and "ending position" can be determined as information fields.
[0183] S502. Perform parsing processing on the production information template to obtain multiple information fields.
[0184] The parsing processing is used to extract the information fields in the production information template.
[0185] S503. Extract the field values corresponding to each information field from the first production information according to multiple information fields.
[0186] The field values can be extracted from the first production information in the following way: extract multiple information fields from the production information template; match the multiple information fields with the first production information in sequence. If the match is successful, extract the corresponding field values in the first production information.
[0187] For example, assume there are 5 information fields, namely production order number, output batch, start position, end position, and input materials. Among them, the first production information includes: the production order number of the first output material is 0036, then extract the field value (0036).
[0188] S504. Fill the field values corresponding to each information field into the corresponding filling positions in the production information template to obtain the production information page and display the production information page.
[0189] Next, in combination with Figure 6 , the first production information page window will be described through specific examples.
[0190] Figure 6 For the schematic diagram of the first production information page window provided by the embodiment of the present application, please refer to Figure 6 The production information page is used to display the detailed information related to the first output material. The production information page may include a first material attribute information module, an association information module, and a first detection information module.
[0191] Among them, the first material attribute information module includes production order number, output batch, output serial number, material status, equipment number, length, start time, and end time, etc. The association information module includes the identifiers of at least one input material and the position information of the input material used to produce the first output material. The first detection information module includes loss information and first defect information.
[0192] After the production of the first output material is completed, the staff can obtain the first production information of the first output material through the first production information page. In the actual application process, the production information page can be sent to the display device and displayed on the display device.
[0193] In an embodiment of the present application, after obtaining the production information template, the production information template can be parsed to obtain multiple information fields, and the field values corresponding to the multiple information fields can be extracted from the first production information. Subsequently, the multiple extracted field values are filled into the corresponding filling positions, and the obtained production information page is displayed. In the above process, the production information page can store the production information according to actual needs, without frequently extracting the required information from the first production information, improving the efficiency of obtaining production information.
[0194] Figure 7 It is a schematic diagram of another process for obtaining production information provided by an embodiment of the present application. Please refer to Figure 7 , and the method may include the following steps:
[0195] S701. In response to the production completion instruction of the target input material, determine the second production period of the target input material.
[0196] The second production period refers to the period for processing the target input material. For example, the second production period can be from 8 o'clock to 12 o'clock.
[0197] In the actual application process, the production equipment usually first determines the total length and start position of the target input material, reads the current used length of the target input material at each preset time interval, and determines whether the current target input material is produced completed according to the total length, start position and current used length of the target input material.
[0198] For example, assume that the total length of the target input material is 2000 meters and the start position is the 1000th meter. If the current used length is 500 meters, it means that the target input material is not produced completed; if the current used length is 1000 meters, it means that the target input material is produced completed.
[0199] S702. Obtain the second detection information of the target input material within the second production period.
[0200] The second detection information is used to determine the surface characteristics of the target input material.
[0201] S703. Determine at least one second output material produced by the production equipment within the second production period.
[0202] S704. Determine the second production information of the target input material according to the second detection information and the first production information of each second output material.
[0203] Among them, the second production information is used to indicate the detailed information for processing the target input material.
[0204] The second production information of the target input material can be determined in the following manner: Determine the second material attribute information of the target input material; perform parsing processing on the first production information to obtain the output information of the target input material; determine the second defect information of the target input material according to the second detection information, where the second defect information includes the defect type and the defect location; determine that the second production information includes: the second material attribute information, the output information, and the second defect information.
[0205] Among them, the output information includes the identifier of each second output material and the material length in the target input material used to produce each second output material.
[0206] The second material attribute information includes at least one attribute name and the attribute value corresponding to each attribute name. The second material attribute information may include the production order number of the target input material, the input material number, the input serial number, the material status, and the length, etc.
[0207] For example, the second material attribute information of the target input material may be: the production order number is 3002, the input material number is 001, the input serial number is 2, and the material status is good, etc.
[0208] The output information can be obtained in the following manner: The production equipment obtains the first production information of multiple second output materials, and for any one output material, extract and process it sequentially from the corresponding first production information to obtain the output information of the target input material.
[0209] For example, assume that the second output materials corresponding to the target input material include: second output material A and second output material B, the identifier of second output material A is 005, the identifier of second output material B is 006, the material length in the target input material used to produce second output material A is 1000 meters, and the material length used to produce second output material B is 1000 meters. That is, the output information of the target input material can be as shown in Table 3:
[0210] Table 3
[0211]
[0212] The second defect information is used to determine whether the target input material has defect characteristics.
[0213] Among them, the second defect information includes the defect type and the defect location. For example, assume that the target input material is a paper roll, then the defect type may be a paper roll flaw, and the corresponding defect location may be the 35th - 38th meters of the target input material.
[0214] In an embodiment of the present application, in response to a production completion instruction for a target input material, after determining a second production period of the target input material, the production equipment acquires second detection information within the second production period, determines at least one second output material, and then can acquire second material attribute information of the target input material, and obtain output information of the target input material from the first production information corresponding to at least one second output material. After acquiring second defect information, second production information of the target input material is obtained. In the above process, according to multiple first production information and second detection information, the second production information of the target input material can be accurately and quickly acquired, improving the efficiency of acquiring production information.
[0215] Next, in combination with Figure 8 , through specific examples, the second production information page window will be described.
[0216] Figure 8 For the schematic diagram of the second production information page window provided by the embodiment of the present application, please refer to Figure 8 , the production information page is used to display detailed information related to the target input material. The production information page may include a second material attribute information module, an output information module, a second detection information module, etc. After the production of the target input material is completed, the staff can obtain the second production information of the target input material through the second production information page.
[0217] Among them, the second material attribute information module includes the production order number of the target input material, the input material number, the input sequence number, the material status, the equipment number, the length, the start time, and the end time, etc. The output information module includes the identifier of at least one second output material, and the material length used in the target input material to produce each second output material. The second detection information module includes second defect information.
[0218] Figure 9 For the schematic structural diagram of an acquisition device for production information provided by the embodiment of the present application. Please refer to Figure 9 , the acquisition device 10 for production information includes: a first determination module 11, a first acquisition module 12, a second acquisition module 13, and a generation module 14, where,
[0219] The first determination module 11 is configured to determine a first production period of the first output material in response to a production completion instruction for the first output material;
[0220] The first acquisition module 12 is configured to acquire sampling information of the production equipment within the first production period, where the sampling information includes multiple sampling times and sampling records corresponding to each sampling time, and the sampling record includes the identifier of the input material and the processing position of the input material at the sampling time;
[0221] The second acquisition module 13 is configured to acquire first detection information obtained by detecting the first output material by the production equipment during the first production period;
[0222] The generation module 14 is configured to generate first production information corresponding to the first output material according to the sampling information and the first detection information, where the first production information indicates detailed information for producing the first output material.
[0223] The production information acquisition device provided by the embodiments of the present application can execute the method shown in the above method embodiments, and its implementation principle and beneficial effects are similar, and will not be elaborated here.
[0224] In a possible implementation manner, the first determination module 11 is specifically configured to:
[0225] Periodically detect the remaining production length of the first output material, where the remaining production length is the difference between the preset length and the current length of the first output material;
[0226] When it is detected that the remaining production length is 0, generate the production completion instruction and the production end time of the first output material;
[0227] According to the production completion instruction, obtain the production start time of the first output material from the preset record information;
[0228] Determine the period between the production start time and the production end time as the first production period.
[0229] In a possible implementation manner, the first determination module 11 is specifically configured to:
[0230] When the timer corresponding to the first output material times out, determine the detection period, where the timer is started when the production of the first output material starts, and the duration of the timer is determined according to the estimated production duration of the first output material;
[0231] According to the detection period, periodically detect the remaining production length of the first output material.
[0232] In a possible implementation manner, the generation module 14 is specifically configured to:
[0233] Obtain the first material attribute information of the first output material;
[0234] Analyze and process the sampling information to obtain the associated information of the first output material. The associated information includes the identifiers of at least one input material corresponding to the first output material, and the position information of each input material for producing the first output material. The position information includes a starting position and an ending position;
[0235] Determine the loss information of the first output material according to the associated information;
[0236] Determine the first defect information of the first output material according to the first detection information. The first defect information includes a defect type and a defect position;
[0237] Determine that the first production information includes: the first material attribute information, the associated information, the loss information, and the first defect information.
[0238] In a possible implementation manner, the generating module 14 is specifically configured to:
[0239] Group the multiple sampling records in the sampling information according to the identifiers of the input materials in each sampling record to obtain at least one record group, and the identifiers of the input materials in each sampling record in the record group are the same;
[0240] For any one record group, determine the input material corresponding to the record group according to the identifier of the input material corresponding to the record group, and determine the position information of the input material corresponding to the record group for producing the first output material according to the processing positions in each sampling record in the record group;
[0241] Determine that the associated information includes: the identifier of the input material corresponding to each record group, and the position information of the input material corresponding to each record group for producing the first output material.
[0242] In a possible implementation manner, the generating module 14 is specifically configured to:
[0243] Determine M segments of target loss materials in the at least one input material according to the position information of each input material for producing the first output material. The target loss materials are used to produce the first output material, and M is an integer;
[0244] Determine the loss position of each segment of target loss material in the first output material and the material length of each segment of loss material;
[0245] Determine that the loss information includes: the loss position of each segment of target loss material in the first output material and the material length of each segment of loss material.
[0246] In a possible implementation manner, the generating module 14 is specifically configured to:
[0247] Obtain a production information template, where the production information template includes a plurality of information fields and filling positions corresponding to each information field;
[0248] Perform parsing processing on the production information template to obtain the plurality of information fields;
[0249] Extract the field values corresponding to each information field from the first production information according to the plurality of information fields;
[0250] Fill the field values corresponding to each information field into the corresponding filling positions in the production information template to obtain a production information page, and display the production information page.
[0251] The production information acquisition device provided by the embodiments of the present application can execute the method shown in the above method embodiments, and its implementation principle and beneficial effects are similar, and will not be elaborated here.
[0252] Figure 10 It is a schematic structural diagram of another production information acquisition device provided by the embodiments of the present application. On the basis of the embodiment shown in Figure 9 please refer to Figure 10 , the production information acquisition device 10 further includes a third acquisition module 15, a second determination module 16, and a third determination module 17, where
[0253] The first determination module 11 is further configured to determine a second production period of the target input material in response to a production completion instruction of the target input material;
[0254] The third acquisition module 15 is configured to acquire second detection information of the target input material during the second production period;
[0255] The second determination module 16 is configured to determine at least one second output material produced by the production equipment during the second production period;
[0256] The third determination module 17 is configured to determine second production information of the target input material according to the second detection information and the first production information of each second output material, and the second production information is used to indicate detailed information about processing the target input material.
[0257] In a possible implementation manner, the third determination module 17 is specifically configured to:
[0258] Determine the second material attribute information of the target input material;
[0259] Analyze and process the first production information to obtain the output information of the target input material, where the output information includes the identifier of each second output material and the material length of the target input material used to produce each second output material.
[0260] Determine the second defect information of the target input material according to the second detection information, where the second defect information includes the defect type and the defect location.
[0261] Determine that the second production information includes: the second material attribute information, the output information, and the second defect information.
[0262] The production information acquisition device provided in this embodiment can be used to execute the method shown in the above method embodiment, and its implementation principle and technical effect are similar, so details are not described here.
[0263] Figure 11 It is a schematic structural diagram of the production equipment provided in the embodiment of the present application. As Figure 11 shown, the production equipment 20 may include: a transceiver 21, a processor 22, and a memory 23.
[0264] The processor 22 executes the computer execution instructions stored in the memory, so that the processor 22 executes the solution in the above embodiment. The processor 22 may be a general-purpose processor, including a central processing unit CPU, a network processor (NP), etc.; it may also be a digital signal processor DSP, an application-specific integrated circuit ASIC, a field programmable gate array FPGA, or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components.
[0265] The memory 23 is connected to the processor 22 through a system bus and completes communication with each other. The memory 23 is used to store computer program instructions.
[0266] The transceiver 21 can be used to obtain the task to be run and the configuration information of the task to be run.
[0267] The system bus can be a Peripheral Component Interconnect (PCI) bus, an Extended Industry Standard Architecture (EISA) bus, or the like. The system bus can be divided into an address bus, a data bus, a control bus, etc. For the sake of simplicity, only a thick line is used to represent it in the figure, but it does not mean that there is only one bus or one type of bus. The transceiver is used to implement communication between the database access device and other computers (such as clients, read-write libraries, and read-only libraries). The memory may include Random Access Memory (RAM), and may also include non-volatile memory.
[0268] An embodiment of this application also provides a chip for running instructions. This chip is used to execute the technical solution of the method for obtaining production information in the above embodiment.
[0269] An embodiment of this application also provides a computer-readable storage medium. Computer instructions are stored in this computer-readable storage medium. When the computer instructions run on a computer, the computer is caused to execute the technical solution of the method for obtaining production information in the above embodiment.
[0270] An embodiment of this application also provides a computer program product. This computer program product includes a computer program, which is stored in a computer-readable storage medium. At least one processor can read the computer program from the computer-readable storage medium. When at least one processor executes the computer program, the technical solution of the method for obtaining production information in the above embodiment can be implemented.
[0271] In the several embodiments provided by this application, it should be understood that the disclosed devices and methods can be implemented in other ways. For example, the device embodiments described above are only illustrative. For example, the division of modules is only a logical function division. In actual implementation, there can be other division methods. For example, multiple modules can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the displayed or discussed coupling or direct coupling or communication connection between each other can be through some interfaces, and the indirect coupling or communication connection of devices or modules can be in an electrical, mechanical or other form.
[0272] The modules described as separate components may or may not be physically separated. The components displayed as modules may or may not be physical units, that is, they can be located in one place, or they can be distributed to multiple network units. Some or all of the modules can be selected according to actual needs to implement the solution of this embodiment.
[0273] In addition, in each embodiment of the present application, each functional module can be integrated in a processing unit, or each module can exist physically alone, or two or more modules can be integrated in one unit. The unit formed by the above modules can be implemented in the form of hardware, or in the form of a hardware plus a software functional unit.
[0274] The integrated module implemented in the form of a software functional module can be stored in a computer-readable storage medium. The above software functional module stored in a storage medium includes several instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor to execute some steps of the methods in the various embodiments of the present application.
[0275] It should be understood that the above processor can be a central processing unit (Central Processing Unit, abbreviated as CPU), and can also be other general-purpose processors, digital signal processors (Digital Signal Processor, abbreviated as DSP), application specific integrated circuits (Application Specific Integrated Circuit, abbreviated as ASIC), etc. The general-purpose processor can be a microprocessor or the processor can also be any conventional processor, etc. The steps of the method disclosed in combination with the invention can be directly embodied as being executed by a hardware processor, or executed by a combination of hardware and software modules in the processor.
[0276] The memory may include high-speed RAM memory, and may also include non-volatile storage NVM, such as at least one disk memory, and can also be a USB flash drive, a mobile hard disk, a read-only memory, a magnetic disk, or an optical disc, etc.
[0277] The bus can be an Industry Standard Architecture (ISA) bus, a Peripheral Component Interconnect (PCI) bus, or an Extended Industry Standard Architecture (EISA) bus, etc. The bus can be divided into an address bus, a data bus, a control bus, etc. For the convenience of representation, the buses in the drawings of the present application are not limited to only one bus or one type of bus.
[0278] The above storage medium can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk. The storage medium can be any available medium accessible by a general-purpose or special-purpose computer.
[0279] An exemplary storage medium is coupled to the processor, enabling the processor to read information from the storage medium and write information to the storage medium. Of course, the storage medium can also be a component of the processor. The processor and the storage medium can be located in an application specific integrated circuit (ASIC). Of course, the processor and the storage medium can also exist as discrete components in an electronic control unit or a master control device.
[0280] Those of ordinary skill in the art can understand that all or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions. The foregoing program can be stored in a computer-readable storage medium. When the program is executed, it performs the steps including the above method embodiments; and the foregoing storage medium includes: various media such as ROM, RAM, magnetic disk or optical disk that can store program codes.
[0281] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A method for obtaining production information, characterized in that: Applied to production equipment, the method comprises: In response to a production completion instruction for a first output material, determining a first production time period for the first output material; Acquire sampling information of the production equipment in the first production period, the sampling information including multiple sampling moments and a sampling record corresponding to each sampling moment, the sampling record including an identification of an input material and a processing position of the input material at the sampling moment; Acquire first detection information obtained by the production equipment during the first production period on the first output material; First production information corresponding to the first output material is generated according to the sampling information and the first detection information, where the first production information indicates detailed information on producing the first output material.
2. The method according to claim 1, characterized in that In response to a production completion instruction for a first output material, determining a first production time period for the first output material includes: Periodically detecting the remaining production length of the first output material, where the remaining production length is the difference between a preset length and a current length of the first output material; When it is detected that the remaining production length is 0, generating the production completion instruction and the production end time of the first output material; According to the production completion instruction, obtaining the production start time of the first output material in the preset record information; The period between the production start time and the production end time is determined as the first production period.
3. The method according to claim 2, characterized in that Periodically detecting the remaining production length of the first output material, including: When a timer corresponding to the first output material times out, a detection period is determined, wherein the timer is started when production of the first output material begins, and the duration of the timer is determined according to an estimated production duration of the first output material; According to the detection cycle, the remaining production length of the first output material is periodically detected.
4. The method according to claim 1, characterized in that: Generating first production information corresponding to the first output material according to the sampling information and the first detection information, including: Acquire first material attribute information of the first output material; Parsing the sampling information to obtain association information of the first output material, the association information including an identifier of at least one input material corresponding to the first output material, and position information of each input material used to produce the first output material, the position information including a starting position and an ending position; Determining loss information of the first output material according to the associated information; Determine first defect information of the first output material according to the first detection information, where the first defect information includes a defect type and a defect location; Determine that the first production information includes: the first material attribute information, the association information, the loss information and the first defect information.
5. The method according to claim 4, characterized in that The sampling information is analyzed and processed to obtain the associated information of the first output material, including: According to the identifier of the input material in each sampling record, a plurality of sampling records in the sampling information are grouped to obtain at least one record group, wherein the identifier of the input material in each sampling record in the record group is the same; For any record group, the input material corresponding to the record group is determined according to the identifier of the input material corresponding to the record group, and the position information of the input material corresponding to the record group for producing the first output material is determined according to the processing position in each sampling record in the record group; Determining the associated information includes: identification of the input material corresponding to each record group, and location information of the input material corresponding to each record group used to produce the first output material.
6. The method according to claim 4 or 5, characterized in that: Determining loss information of the first output material according to the at least one input material and location information of each input material used to produce the first output material includes: According to the position information of each input material used to produce the first output material, determine M sections of target loss materials in the at least one input material, the target loss materials are used to produce the first output material, and M is an integer; Determine the loss position of each section of target loss material in the first output material and the material length of each section of loss material; Determining the loss information includes: the loss position of each section of target loss material in the first output material, and the material length of each section of loss material.
7. The method according to any one of claims 1 to 6, characterized in that: After generating first production information corresponding to the first output material according to the sampling information and the first detection information, the method further includes: Acquire a production information template, wherein the production information template includes a plurality of information fields and a fill bit corresponding to each information field; Parsing the production information template to obtain the multiple information fields; According to the multiple information fields, extracting a field value corresponding to each information field in the first production information; The field value corresponding to each information field is filled into the corresponding filling position in the production information template to obtain a production information page, and the production information page is displayed.
8. The method according to any one of claims 1 to 7, characterized in that: The method further comprises: In response to a production completion instruction of the target input material, determining a second production time period of the target input material; Acquiring second detection information of the target input material during the second production period; Determining at least one second output material produced by the production equipment in the second production time period; The second production information of the target input material is determined according to the second detection information and the first production information of each second output material, where the second production information is used to indicate detailed information on processing the target input material.
9. The method according to claim 8, characterized in that Determining the second production information of the target input material according to the second detection information and the first production information of each second output material includes: Determining second material attribute information of the target input material; Parsing the first production information to obtain output information of the target input material, the output information including an identifier of each second output material and a material length of the target input material used to produce each second output material; Determine second defect information of the target input material according to the second detection information, where the second defect information includes a defect type and a defect location; Determine that the second production information includes: the second material attribute information, the output information and the second defect information.
10. A device for acquiring production information, characterized in that: include: A first determining module, a first acquiring module, a second acquiring module and a generating module, wherein: The first determination module is used to determine a first production period of the first output material in response to a production completion instruction of the first output material; The first acquisition module is used to acquire sampling information of the production equipment in the first production period, the sampling information including multiple sampling moments and a sampling record corresponding to each sampling moment, the sampling record including an identification of an input material and a processing position of the input material at the sampling moment; The second acquisition module is used to acquire first detection information obtained by the production equipment during the first production period from detecting the first output material; The generating module is used to generate first production information corresponding to the first output material according to the sampling information and the first detection information, where the first production information indicates detailed information on producing the first output material.
11. A production equipment, characterized in that: include: A processor, and a memory communicatively connected to the processor; The memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the method according to any one of claims 1 to 9.