Work order generation method and apparatus, electronic device, and storage medium

By acquiring and segmenting the material information of household appliance production work orders and generating matching processing work orders, the problem of mismatch between material processing efficiency and overall machine production efficiency is solved, and the optimization of material management and the improvement of overall machine production efficiency are achieved.

CN114091873BActive Publication Date: 2025-10-24GREE ELECTRIC APPLIANCE INC OF ZHUHAI +1
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Patent Information

Application Number
CN202111342429.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-12
Publication Date
2025-10-24
Estimated Expiration
2041-11-12

AI Technical Summary

Technical Problem

During the production process of home appliances, the efficiency of material handling cannot match the efficiency of complete machine production, resulting in chaotic material management and delayed complete machine production.

Method used

By obtaining the material information corresponding to multiple production work orders, the demand for target parts is obtained, and the parts are segmented and processed according to the preset segmentation rules, and the corresponding processing work orders are generated to ensure that material processing matches the production of the entire machine.

Benefits of technology

It improves the matching degree between material handling work orders and whole machine generation and processing, optimizes material management, reduces frequent line changes and management confusion in material handling, and improves the production efficiency of the whole machine.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a work order generation method and device, electronic equipment and a storage medium. The work order generation method comprises the following steps: acquiring a plurality of production work orders corresponding to a preset product, and acquiring material information corresponding to the plurality of production work orders in a preset material system; acquiring first part information corresponding to a target part in the material information; performing segmentation processing on the first part information according to a preset segmentation rule to obtain second part information; and generating a machining work order corresponding to the target part according to the second part information. Through the application, the problem that the processing efficiency of materials required by whole machine production cannot match the efficiency of whole machine production is solved, the classification and merging of a plurality of material processing work orders into corresponding machining work orders are realized, and the matching degree of the generated material processing work order and the whole machine production machining production work order is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of computers, and in particular to a work order generation method and device, electronic equipment, and storage medium. BACKGROUND

[0002] In related technologies, household appliances are composed of various materials, such as mainframes, plastic casings, display devices, and electronic chips. During the production of household appliances, corresponding production work orders are generated, and materials are checked out and processed according to the production work orders, thereby completing the production of the entire machine of the related household appliances.

[0003] In related technologies, a household appliance of a certain model is processed and produced, and at least one type of material is required for each group of types, so that the production work order (or production order) of a household appliance and the material are in a one-to-many relationship. In related technologies, a household appliance manufacturer needs a certain material for processing, such as chip burning, and after processing, the material is put into the production of the entire machine. Therefore, a production line for processing the corresponding material needs to be set up, and the material processing is also produced according to the generated work order. This makes the entire machine production work order of the household appliance correspond to multiple material processing production work orders. During the processing and production process, if a certain material is processed according to the total demand, the production work order corresponding to the material will be much more than the production work order of the entire machine. When the material processing production work order is too much, the production line of the material processing needs to be frequently transferred, and the material management is chaotic. At the same time, the material processing production work order does not match the production work order corresponding to the entire machine production, causing the processing efficiency of the material required by the entire machine production to be unable to match the efficiency of the entire machine production, resulting in the delay and stop of the entire machine production, and affecting the production of the corresponding household appliance.

[0004] There is no effective solution to the problem that the processing efficiency of the material required by the entire machine production cannot match the efficiency of the entire machine production in related technologies. SUMMARY

[0005] The present application provides a work order generation method and device, electronic equipment, and storage medium to at least solve the problem that the processing efficiency of the material required by the entire machine production cannot match the efficiency of the entire machine production in related technologies.

[0006] In a first aspect, the application provides a work order generation method, comprising: obtaining a plurality of production work orders corresponding to a preset product, and obtaining material information corresponding to the plurality of production work orders in a preset material system, wherein the material information is used to represent part information required for processing the product; obtaining first part information corresponding to a target part in the material information, wherein the first part information is used to represent a demand amount of the target part required in the plurality of production work orders; performing segmentation processing on the first part information according to a preset segmentation rule to obtain second part information, wherein the second part information includes a first demand amount of the target part required for a single processing work order, and the first demand amount at least includes a number of the target part in one of the production work orders; and generating a processing work order corresponding to the target part according to the second part information.

[0007] In a second aspect, the application provides a work order generation device, comprising:

[0008] an obtaining module, configured to obtain a plurality of production work orders corresponding to a preset product, and obtain material information corresponding to the plurality of production work orders in a preset material system, wherein the material information is used to represent part information required for processing the product;

[0009] a selecting module, configured to obtain first part information corresponding to a target part in the material information, wherein the first part information is used to represent a demand amount of the target part required in the plurality of production work orders;

[0010] a processing module, configured to perform segmentation processing on the first part information according to a preset segmentation rule to obtain second part information, wherein the second part information is used to represent a first demand amount of the target part required for a single processing work order, and the first demand amount at least includes a demand amount of the target part in one of the production work orders;

[0011] a generating module, configured to generate a processing work order corresponding to the target part according to the second part information.

[0012] In a third aspect, an electronic device is provided, comprising a processor, a communication interface, a memory and a communication bus, wherein the processor, the communication interface and the memory complete mutual communication through the communication bus;

[0013] the memory is used to store a computer program;

[0014] the processor is used to execute the program stored on the memory, and implement the steps of the work order generation method of any one of the embodiments of the first aspect.

[0015] In a fourth aspect, a computer readable storage medium is provided, and a computer program is stored on the computer readable storage medium. The computer program, when executed by a processor, implements the steps of the work order generation method according to any one of the embodiments of the first aspect.

[0016] Compared with the related art, the work order generation method, device, electronic device and storage medium provided in the embodiments can obtain a plurality of production work orders corresponding to a preset product, and obtain material information corresponding to the plurality of production work orders in a preset material system, where the material information is used to represent part information required for processing the product. In the material information, first part information corresponding to a target part is obtained, where the first part information is used to represent a demand quantity of the target part required in the plurality of production work orders. The first part information is segmented according to a preset segmentation rule to obtain second part information, where the second part information includes a first demand quantity of the target part required for a single processing work order, and the first demand quantity at least includes a number of the target part in the production work order. A processing work order corresponding to the target part is generated according to the second part information, thereby solving the problem that the processing efficiency of the required material of the whole machine production cannot match the efficiency of the whole machine production, and realizing the generation of the processing work order corresponding to the classification and combination of the plurality of material processing work orders, and improving the matching degree of the generated material processing work order and the production work order of the whole machine production.

[0017] Details of one or more embodiments of the present application are set forth in the accompanying drawings and the description below. Other features, objects, and advantages of the application will be apparent from the description of the embodiments and from the claims. BRIEF DESCRIPTION OF DRAWINGS

[0018] The accompanying drawings, which are incorporated herein and form a part of the specification, illustrate embodiments consistent with the present application and, together with the description, further serve to explain the principles of the application.

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the accompanying drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, for those skilled in the art, other drawings can also be obtained based on these drawings without any creative effort.

[0020] Figure 1 A flowchart of a work order generation method according to an embodiment of the present application is provided.

[0021] Figure 2 A structural block diagram of a work order generation device according to an embodiment of the present application is provided.

[0022] Figure 3 A structural diagram of an electronic device according to an embodiment of the present application is provided. DETAILED DESCRIPTION

[0023] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, any other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of protection of the present application.

[0024] Before the embodiments of the present application are described, the following describes the problems in the related art and the scenario to which the work order generation method in the embodiments of the present application is applied.

[0025] The work order generation method in the embodiments of the present application is used for generating a work order in industrial production, and the related product is produced by the corresponding work order, for example, the product online time is determined by the generated work order, the material is taken according to the work order, the delivery date is determined according to the work order, and the hierarchical relationship of the production department is determined according to the work order.

[0026] The following air conditioner in the household electrical appliance product is taken as a production product, and a chip is taken as a kind of material for related description. For the entire air conditioner equipment, the chip is a kind of material of the air conditioner, and at least one chip is used for one air conditioner model. Therefore, the corresponding production work order of the air conditioner is in a one-to-many relationship with the chip. For the corresponding manufacturer, a chip program burning production line is set. One air conditioner production work order corresponds to multiple chip burning production work orders. If the chip burning is performed on demand, the chip burning production work order will be much larger than the air conditioner production work order. The number of chip burning production work orders is large, the chip burning production line is frequently changed, the chip burning production work order is disordered, and the material management of the air conditioner production work order is disordered, for example, the problem of complete sets needs to be considered, and multiple material issues may exist if the complete sets are not complete. At the same time, the following problems exist when the chip burning is performed on demand: 1. The chip associated with the air conditioner production work order has not been burned when the air conditioner production work order is produced; 2. The chip required in the generated order of the air conditioner with a short online time has not been burned, and the chip burning of the air conditioner with a late online time is excessive; 3. When a new model of air conditioner is online, the chip corresponding to the previous version of air conditioner is still being burned (the subsequent production order has a demand), and therefore, the generation of the production work order of each material of the corresponding air conditioner needs to be adjusted, so as to process the material according to the generated work order, and to match the processing of each type of material (at least one) with the production of the product (the whole machine), thereby improving the production efficiency.

[0027] The technical solutions in the embodiments of the present application will be described below with reference to the accompanying drawings in the embodiments of the present application.

[0028] Figure 1 A flowchart of a work order generation method provided by an embodiment of the present application is shown. As shown in the figure, the present embodiment provides a work order generation method, which comprises the following steps: Figure 1

[0029] In step S101, a plurality of production work orders corresponding to a preset product are obtained, and in a preset material system, material information corresponding to the plurality of production work orders is obtained, wherein the material information is used to represent part information required for processing the product.

[0030] In the present embodiment, the preset product is a product to be processed and generated, which includes a plurality of categories of materials, for example:

[0031] electronic chips, screws, housings, indicator lights, display devices, each category of material including at least one part, for example:

[0032] The electronic chip has a control chip, a communication chip, and a network chip.

[0033] In the present embodiment, the generated work order is a processing work order for processing a certain category of material, rather than a generated work order for general assembly production of the product. In the present embodiment, the production work order of the preset product is a processing order formed according to the corresponding production demand, for example: a manufacturer A needs to process and generate M air conditioners, and the corresponding production work order is to arrange the production of M air conditioners. In the present embodiment, the plurality of production work orders can be a plurality of production work orders of different periods of the same category and model product, that is, a plurality of production work orders of the same production work order, for example: the production work orders corresponding to the production of A model air conditioners in a, b, and c months, or a plurality of production work orders of the same category and different models of products generated in the same batch, that is, a plurality of different production work orders, for example: the production work orders corresponding to the production of B model and C model air conditioners in the month. Of course, the production work orders corresponding to the B model or C model air conditioners in the month can also be counted as a plurality of production work orders of the same production work order.

[0034] In the present embodiment, the preset material system includes but is not limited to an enterprise resource planning (ERP) system. Meanwhile, in the ERP system of the manufacturer, the material information corresponding to the production work order is presented in the form of a bill of materials (BOM) table.

[0035] In the present embodiment, before generating the corresponding processing work order, the material information corresponding to the production work order is extracted as the original data source, and the processing work order of the corresponding material is generated based on the original data source.

[0036] In the material information, the first part information corresponding to the target part is obtained, wherein the first part information is used to represent the demand of the target part in the plurality of production orders.

[0037] In the embodiment, the target part is one of all types of parts of the product to be processed, for example, the chip of the air conditioner, and the chip represents all types of parts in this embodiment. The target part represents a type of part that needs to be processed, for example, the program burning of the chip of the air conditioner, and the target part corresponds to all chips of the air conditioner.

[0038] In the embodiment, the same type of part has not less than one type or one model of part, for example, the CPU chip, the communication chip and the wireless chip in the chip of the air conditioner. Therefore, the first part information corresponds to the part information of all parts of the same type selected from all parts of the product to be processed, and the first part information at least includes the demand of the target part in each production order and the total demand of the target part in the plurality of production orders. Of course, the first part information can also include the total type of the target part, the type of the target part, the name of each type of part, the demand of each type of part, the name of the single part, the material code, the demand information of the processing of the single part (for example, the program code, the version number and the burning file required by the chip burning).

[0039] In the embodiment, the first part information is used as the information source of the work order information of the generated processing work order corresponding to the target part, that is, the generated processing work order discloses the related part information in the first part information.

[0040] In step S103, the first part information is segmented according to the preset segmentation rule to obtain the second part information, wherein the second part information includes the first demand of the target part required by the single processing work order, and the first demand at least includes the number of the target part in one production order.

[0041] In the embodiment, the preset segmentation rule is used to limit the conditions that the generated processing work order needs to meet, for example, the processing sequence of the generated processing work order related to the burning of the chip of the air conditioner needs to meet the plan arrangement of the air conditioner production; in the embodiment, the preset segmentation rule includes but is not limited to the time, the part quantity and the dynamic adjustment rule.

[0042] In the embodiment, the preset segmentation rule can be multiple or one. When the first part information is segmented and the second part information required by the corresponding processing order is extracted, one segmentation rule can be used for segmentation, or multiple segmentation rules can be combined for segmentation. For example, when generating the processing order of air conditioner chip burning, the number of burnable chips and time can be used as the segmentation rule to segment the corresponding second part information from the first part information corresponding to the air conditioner chip. The second part information is used as the order data associated with the part information in the corresponding processing order. For example, the processing order corresponds to the matters required for processing the parts, and the number of parts required for processing.

[0043] In the embodiment, one production order corresponds to the demand amount of the target part required for processing. Therefore, the number of target parts required for processing in the generated processing order is the combination of the demand amount of the target part in multiple production orders. When the processing of the target part is performed according to the processing order, the processing of the target part in multiple production orders is completed at one time, and the demand of the product processing corresponding to at least one production order is met.

[0044] In step S104, the processing order corresponding to the target part is generated according to the second part information.

[0045] In the embodiment, after obtaining the second part information, the second part information needs to be converted into the corresponding processing order. The second part information is used as the data of the processing demand in the corresponding processing order. The corresponding processing order also needs to match the corresponding production line data, for example, the online time of the processing order, the production calendar corresponding to the processing order, and the sorting of the processing order in multiple processing orders. After matching the corresponding production line data, the complete processing order can be generated.

[0046] Through the above steps S101 to S104, multiple production work orders corresponding to the preset products are obtained, and material information corresponding to the multiple production work orders is obtained in the preset material system; the first part information corresponding to the target part is obtained in the material information; the first part information is segmented and processed according to the preset segmentation rules to obtain the second part information, and the processing work order corresponding to the target part is generated according to the second part information. By obtaining the first part information of the target part in the material information corresponding to multiple production work orders, and segmenting and merging the first part information according to the segmentation rules based on meeting the processing and production needs of the entire product, the corresponding second part information is obtained and a processing work order that matches the processing efficiency of the entire product is generated, which solves the problem that the processing efficiency of the materials required for the production of the whole machine cannot match the efficiency of the production of the whole machine, realizes the classification and merging of the work orders for multiple material processing into the generation of corresponding processing work orders, and improves the beneficial effect of improving the matching degree between the generated material processing work order and the production work order for the whole machine generation and processing.

[0047] It should be noted that, in the embodiment, when the target part corresponds to a chip and the processing corresponding to the processing order is chip burning, before the processing operation corresponding to the processing order goes online, the chip name, chip code, program code, burned program, and version number will be determined and verified based on the fixed material group and hierarchical relationship in the material information, and then the corresponding burning file will be determined according to the code of the burned program in the Product Lifecycle Management (PLM) system. After that, the verification code of the determined corresponding burning file will be checked with the program code, version number in the ERP system and the burning program code, version number and verification code in the burning tool. If the check is correct, the chip burning will be performed.

[0048] In some embodiments, step S103 of segmenting the first part information according to a preset segmentation rule to obtain the second part information is further implemented by the following steps:

[0049] Step 21: Detect a corresponding first segmentation element in a preset segmentation rule, wherein the first segmentation element is used to limit a first demand.

[0050] In this embodiment, the first segmentation factor includes a preset characteristic value in a preset segmentation rule. Based on the characteristic value, the corresponding segmentation benchmark can be determined. In this embodiment, the first segmentation factor includes but is not limited to some of: time factor, quantity factor and dynamic rule, wherein the dynamic rule can be the proportion of the demand for various types of parts in the target part to all parts belonging to the total category corresponding to the target part.

[0051] Step 22, according to the segmentation point corresponding to the first segmentation element, the first part information is segmented to obtain a plurality of first part information segments, wherein the second part information includes a plurality of first part information segments.

[0052] In the embodiment, the segmentation point corresponding to the first segmentation element refers to the segmentation point for segmenting the first part information into information segments that meet the corresponding data amount. The two first part information segments before and after the segmentation based on the segmentation point have the same data amount of first part information.

[0053] Through the above steps 21 to 22, the corresponding first segmentation element is detected in the preset segmentation rule, wherein the first segmentation element is used to define the first demand amount; according to the segmentation point corresponding to the first segmentation element, the first part information is segmented to obtain a plurality of first part information segments, thereby realizing the segmentation of the second part information corresponding to each processing order based on the preset segmentation rule. Based on the feature value of the first segmentation element in the preset segmentation rule, the generated processing order is matched with the entire product generation plan, and the processing efficiency of single part processing and the efficiency of product assembly production are improved.

[0054] In some optional embodiments, the step 22 of segmenting the first part information according to the segmentation point corresponding to the first segmentation element to obtain a plurality of first part information segments is also realized through the following steps:

[0055] Step 221, obtaining a second segmentation element in the first segmentation element, wherein the second segmentation element includes one of the following: processing time, processing quantity.

[0056] In the embodiment, when the second segmentation element is the processing time, it represents that the large processing order for processing the target part is segmented into small processing orders for processing the target part with a preset processing time threshold, for example, a large processing order for chip burning is cut into small processing orders for chip burning with a preset time length; when the second segmentation element is the processing quantity, it represents that the large processing order for processing the target part is segmented into small processing orders for processing the target part with a preset number of processable parts, for example, a large processing order for chip burning is cut into small processing orders for chip burning with a preset number.

[0057] Step 222, obtaining the first production information corresponding to each production order, and determining the first part information cutting point corresponding to the second segmentation element according to the first production information, wherein the first production information includes the first start time, the first production efficiency, and the first production calendar corresponding to each production order.

[0058] In the embodiment, after the corresponding second segmentation element is determined, the first part information cutting point corresponding to the second segmentation element is determined according to the first production information corresponding to the corresponding production line, that is, the degree of completing the processing of the target part corresponding to the second segmentation element is determined. For example, when the second segmentation element is a segmentation element corresponding to the processing time, the first start time is taken as the online time corresponding to the first processing order, and the preset processing time is taken as the interval of the processing order segmentation, so that the corresponding first part information cutting point is determined, and the first part information cutting points are sequentially arranged in the first production calendar. When the second segmentation element is a segmentation element corresponding to the processing quantity, the first production efficiency corresponding to the production line, that is, the production capacity efficiency of the production line itself, is determined first, the processing quantity of the target part processed by the production line in unit time is determined, the first processing time required for processing the target part corresponding to the preset processing quantity of the second segmentation element is determined according to the processing quantity, the first start time is taken as the online time of the first processing order, and the first processing time is taken as the interval of the processing order segmentation, so that the corresponding first part information cutting point is determined, and the first part information cutting points are sequentially arranged in the first production calendar.

[0059] In step 223, the first part information is segmented based on the first part information cutting point to obtain a plurality of first information segments, wherein the first part information segment includes the first information segment.

[0060] Through the above steps 221 to 223, the second segmentation element is obtained in the first segmentation element, the first production information corresponding to each production order is obtained, the first part information cutting point corresponding to the second segmentation element is determined according to the first production information, the first part information is segmented based on the first part information cutting point to obtain a plurality of first information segments, the segmentation and merging of the part information in the processing order based on time and / or quantity are realized, the generated processing order is matched with the entire product generation plan, and the matching of the processing efficiency of single part processing and the efficiency of product assembly production is further improved.

[0061] In some embodiments, the first part information cutting point corresponding to the second segmentation element is determined according to the first production information in step 222, which can be realized by the following steps:

[0062] In step 31, the first processing time threshold value corresponding to a single processing order is determined according to the first production efficiency.

[0063] In the embodiment, when the corresponding first production efficiency is determined, it can be determined that to ensure maintaining the first production efficiency, the working time corresponding to a single processing work order can only be the time corresponding to the processing time threshold, so that the target part can be processed at the first production efficiency within the time corresponding to the processing time threshold.

[0064] Step 32, determining a plurality of first segmentation points in the first production calendar based on the first start time and the processing time threshold, wherein the first part information cutting point includes the plurality of first segmentation points.

[0065] In the embodiment, the first start time is used as the online time corresponding to the first processing work order, and the processing time corresponding to the preset processing time threshold is used as the interval for processing work order segmentation, so that the corresponding first part information cutting point is determined, and the first part information cutting point is arranged in the first production calendar in sequence.

[0066] Through the steps 31 to 32, the processing time threshold corresponding to a single processing work order is determined according to the first production efficiency, and a plurality of first segmentation points in the first production calendar are determined based on the first start time and the processing time threshold, so that the segmentation and merging of the part information in the processing work order based on time are realized, the generated processing work order is matched with the entire product generation plan, and the matching of the processing efficiency of a single part and the efficiency of product assembly production is further improved.

[0067] In some embodiments, the step 222 of determining the first part information cutting point corresponding to the second segmentation element according to the first production information can be implemented by the following steps:

[0068] Step 41, determining the processing quantity threshold of the target part processed by a single processing work order according to the first production efficiency.

[0069] In the embodiment, the processing quantity threshold of the target part processed by a processing work order is matched based on the first production efficiency of the corresponding production line.

[0070] Step 42, determining a plurality of second segmentation points in the first part information with the processing quantity threshold as the segmentation interval, wherein the first part information cutting point includes the plurality of second segmentation points.

[0071] In the embodiment, the processing quantity threshold is directly used as the segmentation point for segmenting the first part information into a plurality of first part information segments, and the first part information is then cut and merged.

[0072] The processing quantity threshold of the target part processed by the single processing order is determined according to the first production efficiency in the steps 41-42; and the plurality of second segmentation points are determined in the first part information by taking the processing quantity threshold as a segmentation interval, so that the segmentation and merging of the part information in the processing order based on the quantity are realized, the generated processing order is matched with the entire product generation plan, and the matching of the processing efficiency of the single part processing and the efficiency of the product assembly production is further improved.

[0073] In some embodiments, the first part information is segmented according to the segmentation points corresponding to the first segmentation elements in step 22 to obtain a plurality of first part information segments, and the following steps are further implemented:

[0074] In step 51, the first part is detected in the target part, and a first proportion of the first part in the target part is determined, wherein the target part includes at least one first part.

[0075] In this embodiment, the first part includes various types of parts in the target part, and the first proportion includes a proportion of the demand quantity of the various types of parts in the target part to all parts belonging to a total category corresponding to the target part.

[0076] In step 52, a corresponding second part information cutting point is determined according to the first proportion, and the first part information is segmented based on the second part information cutting point to obtain a plurality of second information segments, wherein the first part information segment includes the second information segment.

[0077] In this embodiment, the data quantity of the part information determined directly according to the first proportion is the segmentation point for segmenting the first part information into a plurality of first part information segments, and the first part information is further cut and merged to obtain the corresponding second information segment.

[0078] In the steps 51-52, the first part is detected in the target part, and a first proportion of the first part in the target part is determined; and a corresponding second part information cutting point is determined according to the first proportion, and the first part information is segmented based on the second part information cutting point to obtain a plurality of second information segments, so that the segmentation and merging of the part information in the processing order based on the dynamic rule are realized, the generated processing order is matched with the entire product generation plan, and the matching of the processing efficiency of the single part processing and the efficiency of the product assembly production is further improved.

[0079] In some embodiments, the processing order corresponding to the target part is generated according to the second part information in step S104, and the following steps are further included:

[0080] Step 61, obtaining second production information corresponding to each production order, wherein the second production information includes a second start time, a second production efficiency and a second production calendar corresponding to each production order.

[0081] In the embodiment, the second production information and the first production information in the foregoing are both production information corresponding to each production order, and in the description of the embodiments of the present application, the first and the second are only distinguished by the labels in different embodiments.

[0082] Step 62, detecting a processing efficiency corresponding to the target part in the second production efficiency, and generating a processing time required for processing the target part corresponding to the second part information based on the processing efficiency.

[0083] In the embodiment, by obtaining the processing efficiency of the target part, the processing time required for processing the part corresponding to the segmented second part information is determined, the processing time is the time interval of sequentially arranging the plurality of processing orders, and the online time of processing the target part corresponding to the plurality of processing orders and the sorting corresponding to each processing order are determined.

[0084] Step 63, based on the second start time and the processing time, sequentially determining a production time corresponding to each processing order in the second production calendar, wherein the second start time is the start time corresponding to the first processing order.

[0085] Step 64, generating a processing order according to each production time and corresponding second part information.

[0086] In the embodiment, after determining each production time and corresponding second part information, the generation of the processing order is realized by converting the corresponding data into a form.

[0087] In the above steps 61 to 64, the second production information corresponding to each production order is obtained, the second production information includes a second start time, a second production efficiency and a second production calendar corresponding to each production order; the processing efficiency corresponding to the target part is detected in the second production efficiency, and the processing time required for processing the target part corresponding to the second part information is generated based on the processing efficiency; the second production information includes a second start time, a second production efficiency and a second production calendar corresponding to each production order; the processing order is generated according to each production time and corresponding second part information, the matching of the segmented second part information corresponding to the processing order and the production information of the corresponding production line is realized, the second part information and the production information are converted into a form, and the data conversion of the processing order is completed.

[0088] In some embodiments, after the processing order corresponding to the target part is generated in step S104, the following steps are further implemented:

[0089] Step 71, detecting a defective work order in the processing work order, wherein the defective work order includes one of the following: a to-be-adjusted work order, an invalid work order, and a delayed work order.

[0090] Step 72, in the case of detecting a defective work order, deleting the corresponding defective work order and updating the processing work order corresponding to the target part.

[0091] In the embodiment, if the production work order corresponding to the product is adjusted (for example: inserting a new production work order, canceling an old production work order, advancing or postponing the production work order), or there is a quality problem, a material shortage problem, etc. in the production process, so that the corresponding processing work order cannot be executed or needs to be executed separately, at this time, the corresponding defective work order needs to be adjusted or deleted, so as to complete the processing work order corresponding to the target part. In some optional embodiments, the modification of the processing work order can be processed manually.

[0092] Through the above steps 71 to 72, the defective work order is detected in the processing work order; in the case of detecting a defective work order, the corresponding defective work order is deleted, and the processing work order corresponding to the target part is updated, so as to realize the confirmation of the generated processing work order and complete the modification of the generated processing work order.

[0093] In some embodiments, before the step S103 of segmenting the first part information according to the preset segmentation rule to obtain the second part information, the following steps are further implemented:

[0094] Step 81, detecting third part information corresponding to a non-processing work order in the first part information.

[0095] In the embodiment, after obtaining the first part information, the part information corresponding to the non-customized processing order is screened out from the first part information. The screened part information indicates that the corresponding processing work order cannot be combined with other processing work orders, for example, the processing work order corresponding to testing, sampling and samples cannot be combined with the processing work order for normal processing.

[0096] Step 82, in the case of detecting the third part information, deleting the third part information and updating the first part information.

[0097] Through the above steps 81 to 82, the third part information corresponding to a non-processing work order is detected in the first part information; in the case of detecting the third part information, the third part information is deleted, and the first part information is updated, so as to realize the revision of the first part information, thereby improving the accuracy and executability of the generated processing work order.

[0098] In the embodiment, a work order generation device is also provided, which is used to implement the above-mentioned embodiments and preferred embodiments, and the description of which has been made above. The terms "module", "unit", "sub-unit" and the like used below can be a combination of software and / or hardware that can implement a predetermined function. Although the device described in the following embodiments is preferably implemented in software, implementation of hardware, or a combination of software and hardware, is also possible and contemplated.

[0099] Figure 2 is a structural block diagram of the work order generation device of the embodiment of the present application, as shown in Figure 2 The device comprises:

[0100] The acquisition module 21 is configured to acquire a plurality of production work orders corresponding to a preset product, and acquire material information corresponding to the plurality of production work orders in a preset material system, wherein the material information is used to represent part information required for processing the product.

[0101] The selection module 22 is coupled to the acquisition module 92 and is configured to acquire first part information corresponding to a target part in the material information, wherein the first part information is used to represent a demand amount of the target part required in the plurality of production work orders.

[0102] The processing module 23 is coupled to the selection module 22 and is configured to perform segmentation processing on the first part information according to a preset segmentation rule to obtain second part information, wherein the second part information is used to represent a first demand amount of the target part required for a single processing work order, and the first demand amount at least includes a demand amount of the target part in one production work order.

[0103] The generation module 24 is coupled to the processing module 23 and is configured to generate a processing work order corresponding to the target part according to the second part information.

[0104] The device of the embodiment of the present application acquires a plurality of production work orders corresponding to a preset product, and acquires material information corresponding to the plurality of production work orders in a preset material system; in the material information, first part information corresponding to a target part is acquired; the first part information is segmented according to a preset segmentation rule to obtain second part information, and a processing work order corresponding to the target part is generated according to the second part information. By acquiring the first part information of the target part in the material information corresponding to the plurality of production work orders, and segmenting and merging the first part information according to the segmentation rule that meets the entire product processing and production demand, the corresponding second part information and the processing work order matching the entire product processing efficiency are obtained, the problem that the processing efficiency of the material required by the entire machine production cannot match the efficiency of the entire machine production is solved, the classification and merging of a plurality of material processing work orders into the corresponding processing work order are realized, and the matching degree of the generated material processing work order and the production work order of the entire machine production is improved.

[0105] In some embodiments, the processing module 23 can further include:

[0106] A first detection unit is configured to detect a first segmentation element in the preset segmentation rule, wherein the first segmentation element is used to define a first demand amount.

[0107] A first segmentation unit, coupled to the first detection unit, is configured to segment the first part information according to a segmentation point corresponding to the first segmentation element to obtain a plurality of first part information segments, wherein the second part information includes the plurality of first part information segments.

[0108] In some embodiments, the first segmentation unit is further configured to acquire a second segmentation element in the first segmentation element, wherein the second segmentation element includes one of a processing time and a processing quantity; acquire first production information corresponding to each production work order, determine a first part information cutting point corresponding to the second segmentation element according to the first production information, wherein the first production information includes a first start time, a first production efficiency, and a first production calendar corresponding to each production work order; and segment the first part information based on the first part information cutting point to obtain a plurality of first information segments, wherein the first part information segment includes the first information segment.

[0109] In some embodiments, the first segmentation unit is further configured to determine a processing time threshold corresponding to a single processing work order according to the first production efficiency; determine a plurality of first segmentation points in the first production calendar based on the first start time and the processing time threshold, wherein the first part information cutting point includes the plurality of first segmentation points.

[0110] In some embodiments, the first segmentation unit is further configured to determine a machining quantity threshold of the target part processed by each of the machining orders according to the first production efficiency; and determine a plurality of second segmentation points in the first part information based on the machining quantity threshold, wherein the first part information segmentation points include the plurality of second segmentation points.

[0111] In some embodiments, the first segmentation unit is further configured to detect a first part in the target part and determine a first proportion of the first part in the target part, wherein the target part includes at least one first part; determine a corresponding second part information segmentation point according to the first proportion; and segment the first part information based on the second part information segmentation point to obtain a plurality of second information segments, wherein the first part information segments include the second information segments.

[0112] In some embodiments, the generation module 22 further includes:

[0113] The second acquisition unit acquires second production information corresponding to each of the production orders, wherein the second production information includes a second start time, a second production efficiency, and a second production calendar corresponding to each of the production orders.

[0114] The second detection unit, coupled to the second acquisition unit, is configured to detect a processing efficiency corresponding to the target part in the second production efficiency, and generate a machining time required for processing the target part corresponding to the second part information based on the processing efficiency.

[0115] The second determination unit, coupled to the second detection unit, is configured to determine a production time corresponding to each of the machining orders in the second production calendar based on the second start time and the machining time, wherein the second start time is a start time corresponding to the first machining order.

[0116] The second generation unit, coupled to the second determination unit, is configured to generate the machining order according to each of the production times and the corresponding second part information.

[0117] In some embodiments, after the machining order corresponding to the target part is generated, the order generation device is further configured to detect a defective order in the machining order, wherein the defective order includes one of the following: a to-be-adjusted order, an invalid order, and a lag order; and in the case of detecting the defective order, delete the corresponding defective order and update the machining order corresponding to the target part.

[0118] In some embodiments, before the first part information is segmented and processed according to a preset segmentation rule to obtain the second part information, the work order generation device is also used to detect the third part information corresponding to the non-processing work order in the first part information; when the third part information is detected, the third part information is deleted and the first part information is updated.

[0119] Figure 3 is a schematic diagram of the structure of an electronic device according to an embodiment of the present application. Figure 3 As shown, an embodiment of the present application provides an electronic device, including a processor 31, a communication interface 32, a memory 33 and a communication bus 34, wherein the processor 31, the communication interface 32, and the memory 33 communicate with each other through the communication bus 34.

[0120] Memory 33, for storing computer programs;

[0121] The processor 31 is used to execute the program stored in the memory 33 to achieve Figure 1 The method steps in .

[0122] Processing implementation in the server Figure 1 The technical effects of the method steps in the above embodiment are the same as those of the above embodiment. Figure 1 The technical effect of the method for generating work orders is the same and will not be repeated here.

[0123] The communication bus mentioned in the above terminal can be a Peripheral Component Interconnect (PCI) bus or an Extended Industry Standard Architecture (EISA) bus. The communication bus can be divided into an address bus, a data bus, a control bus, etc. For ease of representation, Figure 3 Only one thick line is used in the diagram, but this does not mean that there is only one bus or one type of bus.

[0124] The communication interface is used for communication between the above terminal and other devices.

[0125] The memory may include random access memory (RAM) or non-volatile memory, such as at least one disk storage. Alternatively, the memory may be at least one storage device located away from the processor.

[0126] The processor described above can be a general processor, including a central processing unit (CPU), a network processor (NP), etc.; can also be a digital signal processor (DSP), an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic device, a discrete gate or transistor logic device, a discrete hardware component.

[0127] The embodiment of the present application further provides a computer readable storage medium, which has a computer program stored thereon, and the computer program is executed by a processor to implement the steps of the work order generation method provided by any one of the foregoing method embodiments.

[0128] In another embodiment provided by the present application, a computer program product containing instructions, which, when executed on a computer, causes the computer to perform the steps of the work order generation method described in any one of the foregoing embodiments.

[0129] It should be noted that, in the present document, relational terms such as "first" and "second", and the like, are used solely to distinguish one entity or action from another entity or action, without necessarily requiring or implying any actual such relationship or order between or among the entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. In other words, "comprising" does not exclude the presence of additional elements.

[0130] The above description is merely one specific implementation of the application. Many modifications and other embodiments of the application set forth herein will come to mind to one skilled in the art to which the application pertains having the benefit of the teachings presented in the foregoing description. Therefore, it is to be understood that the application is not to be limited to the specific embodiments disclosed and that modifications and other embodiments are intended to be included within the spirit and scope of the application. Moreover, although the foregoing description has been described in the context of particular embodiments, it is not intended that such embodiments represent a limit to the scope of the application.

Claims

1. A method for generating a work order, characterized in that: The method comprises the following steps: obtaining a plurality of production orders corresponding to a preset product, and obtaining material information corresponding to the plurality of production orders in a preset material system, wherein the material information is used to represent part information required for processing the product; in the material information, obtaining first part information corresponding to a target part, wherein the first part information is used to represent the demand quantity of the target part required in the plurality of production orders; segmenting the first part information according to a preset segmentation rule to obtain second part information, wherein the second part information includes a first demand quantity of the target part required for a single processing order, and the first demand quantity includes at least the number of the target part in one of the production orders; generating a processing order corresponding to the target part according to the second part information; wherein segmenting the first part information according to a preset segmentation rule to obtain second part information comprises: detecting a corresponding first segmentation element in the preset segmentation rule, wherein the first segmentation element is used to limit the first demand quantity; segmenting the first part information according to a segmentation point corresponding to the first segmentation element to obtain a plurality of first part information segments, wherein the second part information includes a plurality of first part information segments; wherein segmenting the first part information according to a segmentation point corresponding to the first segmentation element to obtain a plurality of first part information segments comprises: obtaining a second segmentation element in the first segmentation element, wherein the second segmentation element includes one of the following: processing time, processing quantity; obtaining first production information corresponding to each of the production orders, and determining a first part information cutting point corresponding to the second segmentation element according to the first production information, wherein the first production information includes a first start time, a first production efficiency, and a first production calendar corresponding to each of the production orders; and segmenting the first part information based on the first part information cutting point to obtain a plurality of first information segments, wherein the first part information segment includes the first information segment.

2. The method of claim 1, wherein, determining a first part information cutting point corresponding to the second segmentation element according to the first production information comprises: determining a processing time threshold for completing a single processing order according to the first production efficiency; determining a plurality of first segmentation points in the first production calendar based on the first start time and the processing time threshold, wherein the first part information cutting point includes a plurality of first segmentation points.

3. The method of claim 1, wherein, determining a first part information cutting point corresponding to the second segmentation element according to the first production information comprises: determining a processing quantity threshold for processing the target part in a single processing order according to the first production efficiency; determining a plurality of second segmentation points in the first part information with the processing quantity threshold as a segmentation interval, wherein the first part information cutting point includes a plurality of second segmentation points.

4. The method of claim 1, wherein, According to the first segmentation element corresponding to the segmentation point, the first part information is segmented to obtain a plurality of first part information segments, comprising: Detecting a first part in the target part and determining a first proportion of the first part in the target part, wherein the target part includes at least one first part; According to the first proportion, a corresponding second part information cutting point is determined, and the first part information is segmented based on the second part information cutting point to obtain a plurality of second information segments, wherein the first part information segment includes the second information segment.

5. The method of claim 1, wherein, According to the second part information, a processing order corresponding to the target part is generated, comprising: Obtaining second production information corresponding to each production order, wherein the second production information includes second start time, second production efficiency and second production calendar corresponding to each production order; Detecting a processing efficiency corresponding to the target part in the second production efficiency, and generating a processing time required for processing the target part corresponding to the second part information based on the processing efficiency; Based on the second start time and the processing time, the production time corresponding to each processing order is determined in the second production calendar in sequence, wherein the second start time is the start time corresponding to the first processing order; According to each production time and corresponding second part information, the processing order is generated.

6. The method of claim 1, wherein, After generating the processing order corresponding to the target part, the method further comprises: Detecting a defect order in the processing order, wherein the defect order includes one of the following: to be adjusted order, invalid order, lag order; In the case of detecting the defect order, the corresponding defect order is deleted, and the processing order corresponding to the target part is updated.

7. The method of claim 1, wherein, Before segmenting the first part information according to the preset segmentation rule to obtain the second part information, the method further comprises: Detecting third part information corresponding to a non-processing order in the first part information; In the case of detecting the third part information, the third part information is deleted, and the first part information is updated.

8. A work order generation apparatus, characterized by comprising: Comprising: An acquisition module is configured to acquire a plurality of production orders corresponding to a preset product, and acquire material information corresponding to the plurality of production orders in a preset material system, wherein the material information is used to represent part information required for processing the product; A selection module is configured to acquire first part information corresponding to a target part in the material information, wherein the first part information is used to represent the demand amount of the target part required in the plurality of production orders; A processing module is configured to segment the first part information according to a preset segmentation rule to obtain second part information, wherein the second part information is used to represent a first demand amount of the target part required for a single processing order, and the first demand amount includes at least the demand amount of the target part in the production order; A generation module is configured to generate a processing order corresponding to the target part according to the second part information. The processing module comprises a first detection unit configured to detect a corresponding first segmentation element in a preset segmentation rule, wherein the first segmentation element is configured to define a first demand amount; a first segmentation unit coupled to the first detection unit and configured to segment the first part information according to a segmentation point corresponding to the first segmentation element to obtain a plurality of first part information segments, wherein the second part information comprises the plurality of first part information segments; The first segmentation unit is further configured to obtain a second segmentation element in the first segmentation element, wherein the second segmentation element comprises one of a machining time and a machining quantity; obtain first production information corresponding to each production order; determine a first part information cutting point corresponding to the second segmentation element according to the first production information, wherein the first production information comprises a first start time, a first production efficiency and a first production calendar corresponding to each production order; and segment the first part information based on the first part information cutting point to obtain a plurality of first information segments, wherein the first part information segment comprises a first information segment.

9. An electronic device, comprising: The device comprises a processor, a communication interface, a memory and a communication bus, wherein the processor, the communication interface and the memory are in communication with each other through the communication bus; The memory is configured to store a computer program; The processor is configured to execute the program stored in the memory to implement the work order generation method of any one of claims 1-7.

10. A computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program is executed by the processor to implement the work order generation method of any one of claims 1-7.

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