Production resource allocation method and device, electronic equipment and storage medium
By identifying the production hours of target equipment and constructing a production resource threshold range, combined with standard production resources and the number of production lines, the problem of low efficiency and accuracy in production resource allocation is solved, achieving more efficient and accurate production resource allocation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- INSPUR SUZHOU INTELLIGENT TECH CO LTD
- Filing Date
- 2023-06-08
- Publication Date
- 2026-07-21
AI Technical Summary
The efficiency and accuracy of resource allocation in existing technologies are low, which makes manual calculation prone to errors and inefficiency.
By acquiring target production requests, identifying the production hours of target equipment, constructing a production resource threshold range, and allocating target production resources according to standard production resources and the number of production lines, precise production resource allocation is achieved.
It improves the efficiency and accuracy of production resource allocation, simplifies the allocation process, and reduces labor input time and costs.
Smart Images

Figure CN116630082B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of computers, and more specifically, to a method, apparatus, electronic device, and storage medium for allocating production resources. Background Technology
[0002] The input of production resources is an indispensable part of factory production. The quantity and allocation of production resources not only determine the overall production capacity of the factory, but also the manufacturing cost of the products. Therefore, the rational allocation of production resources is particularly important, and it is necessary to use quantitative data to calculate the allocation needs of production resources.
[0003] Currently, the allocation of production resources is mostly done manually offline in Excel spreadsheets. The calculation logic is the same every month, requiring repeated calculations in Excel spreadsheets based on different order capacity requirements. In addition, manual calculation is prone to fatigue or data maintenance errors, resulting in low efficiency and accuracy in the allocation of production resources.
[0004] There are no effective solutions yet to address the issues of low efficiency and accuracy in the allocation of production resources in related technologies. Summary of the Invention
[0005] This application provides a method, apparatus, electronic device, and storage medium for allocating production resources, in order to at least solve the problems of low efficiency and accuracy in the allocation of production resources in related technologies.
[0006] According to one embodiment of this application, a method for allocating production resources is provided, comprising:
[0007] Obtain a target production request, wherein the target production request is used to request the production of a target product with a target attribute;
[0008] The target working hours corresponding to the production of the target product using the target equipment are identified based on the target attributes, wherein the target working hours are used to indicate the production time of the target product using the target equipment;
[0009] A production resource threshold range is constructed based on the target working hours and production resource parameters, wherein the production resource threshold range includes the upper and lower limits of the production resources theoretically required to produce the target product;
[0010] The number of production lines to be opened is determined based on standard production resources, which are within the threshold range of the production resources. The standard production resources are used to indicate the production resources that the target production line where each target device is located is allowed to provide, and the number of production lines to be opened is used to indicate the number of production lines of the target production line required to produce the target product.
[0011] Based on the number of production lines and the standard production resources, target production resources are allocated to the target production request, wherein the target production resources are used to produce the target product.
[0012] In an exemplary embodiment, identifying the target working hours corresponding to the production of the target product using the target equipment based on the target attribute includes:
[0013] Assign target production facilities to the target product based on the target attributes;
[0014] Extract the target equipment information corresponding to the target production plant from the first database, wherein the target equipment information includes the target equipment model and the target equipment quantity, and wherein the first database maintains production plants and equipment models with corresponding relationships;
[0015] Obtain the reference unit working hours corresponding to the target equipment model, wherein the reference unit working hours are used to indicate the production time of each piece of equipment belonging to the target equipment model;
[0016] The target working hours are determined based on the reference unit working hours and the number of target equipment, wherein the target working hours are used to indicate the production time for producing the target product using equipment deployed in the target production plant.
[0017] In an exemplary embodiment, obtaining the reference unit working hours corresponding to the target equipment model includes:
[0018] The production hours corresponding to each time period of the target equipment model are extracted from the second database to obtain multiple production hours. Each production hour is used to indicate the production time of each piece of equipment belonging to the target equipment model in the corresponding time period.
[0019] Calculate the weighted average of the multiple production hours;
[0020] The ratio of the weighted average to the utilization rate parameter corresponding to the target equipment model is determined as the reference unit working hours.
[0021] In an exemplary embodiment, constructing a production resource threshold range based on the target working hours and production resource parameters includes:
[0022] The equivalent production resources are determined based on the target working hours and the production resource parameters, wherein the production resource parameters include the number of production days in each production cycle and the production duration of the production resources per day.
[0023] The upper limit and lower limit values are calculated using the equivalent production resources and the preset error to obtain the production resource threshold range.
[0024] In an exemplary embodiment, determining the equivalent production resources based on the target working hours and the production resource parameters includes:
[0025] Calculate the first ratio between the target working hours and the number of production days;
[0026] The second ratio between the first ratio and the production time is calculated as the equivalent production resource.
[0027] In an exemplary embodiment, calculating the upper limit and the lower limit using the equivalent production resources and the preset error includes:
[0028] The equivalent production resources are determined as the lower limit value;
[0029] The product of the equivalent production resources and the preset error is determined as the upper limit value.
[0030] In an exemplary embodiment, determining the number of open lines that conforms to the threshold range of the production resources based on standard production resources includes:
[0031] The ratio of the upper limit value to the standard production resources is determined as the upper limit value of the number of production lines to be opened, and the ratio of the lower limit value to the standard production resources is determined as the lower limit value of the number of production lines to be opened; the number of production lines to be opened parameter is obtained from the lower limit value to the upper limit value of the number of production lines to be opened.
[0032] In an exemplary embodiment, identifying the target working hours corresponding to the production of the target product using the target equipment based on the target attribute includes:
[0033] The target product is divided into critical components and non-critical components based on the target attributes.
[0034] Identify the target man-hours corresponding to the production of the key component using the target equipment, allocate a first production resource to the non-key component, and allocate a second production resource to the target production request, wherein the first production resource is used to produce the non-key component, and the second production resource is used to manage the production process of the target product.
[0035] In an exemplary embodiment, allocating target production resources to the target production request based on the number of production lines and the standard production resources includes:
[0036] The product of the number of production lines and the standard production resources is determined as the third production resource, wherein the third production resource is used to produce the key components;
[0037] The sum of the first production resource, the second production resource, and the third production resource is determined as the target production resource.
[0038] In one exemplary embodiment, after determining the number of open lines that conforms to the production resource threshold range based on standard production resources, the method further includes at least one of the following:
[0039] Based on the request information of the target production request, the number of production lines opened, the sampling rate parameter of the target product, and the capacity information of the quality inspection resources, target quality inspection resources are allocated to the target production request, wherein the target quality inspection resources are used to perform quality inspection on the target product;
[0040] Based on the request information of the target production request, the number of production lines opened and the capacity information of the storage resources are used to allocate target storage resources for the target production request, wherein the target storage resources are used to store the target product.
[0041] According to another embodiment of this application, a production resource allocation device is provided, comprising:
[0042] The acquisition module is used to acquire the target production request, wherein the target production request is used to request the production of a target product with a target attribute;
[0043] The identification module is used to identify the target working hours corresponding to the production of the target product using the target equipment based on the target attributes, wherein the target working hours are used to indicate the production time of the target product using the target equipment;
[0044] A construction module is used to construct a production resource threshold range based on the target working hours and production resource parameters, wherein the production resource threshold range includes the upper and lower limits of the theoretically required production resources for producing the target product;
[0045] The determination module is used to determine the number of production lines that meet the threshold range of the production resources based on standard production resources, wherein the standard production resources are used to indicate the production resources that the target production line where each target device is located is allowed to provide, and the number of production lines is used to indicate the number of production lines of the target production line required to produce the target product;
[0046] The allocation module is used to allocate target production resources to the target production request according to the number of production lines and the standard production resources, wherein the target production resources are used to produce the target product.
[0047] According to yet another embodiment of this application, a computer-readable storage medium is also provided, wherein a computer program is stored therein, and the computer program is configured to perform the steps in any of the above method embodiments when it is run.
[0048] According to yet another embodiment of this application, an electronic device is also provided, including a memory and a processor, wherein the memory stores a computer program and the processor is configured to run the computer program to perform the steps in any of the above method embodiments.
[0049] This application first obtains a target production request for producing a target product with target attributes. The target equipment then produces the target product. Next, based on the target attributes, the target working hours corresponding to the production of the target product by the target equipment are identified, thereby obtaining the production time for the target product. Then, based on the target working hours and production resource parameters, an upper and lower limit value of the theoretically required production resources for producing the target product is constructed, i.e., a production resource threshold range. Based on the standard production resources used to indicate the production resources allowed to be provided by the target production line where each target equipment is located, the number of production lines within the production resource threshold range is determined as a parameter for the number of production lines to be opened. Finally, target production resources are allocated to the target production request based on the number of production lines to be opened parameter and the standard production resources. By determining the number of production lines to be opened parameter that conforms to the upper and lower limit value range of the theoretically required production resources for producing the target product, the allocation of production resources becomes more accurate. The allocation of target production resources in a target production request only needs to be based on the standard production resources and the number of production lines to be opened parameter, thus making the allocation of production resources simpler and faster. Therefore, the problem of low efficiency and accuracy in production resource allocation is solved, thereby achieving the effect of improving the efficiency and accuracy of production resource allocation. Attached Figure Description
[0050] Figure 1 This is a hardware structure block diagram of a mobile terminal for a production resource allocation method according to an embodiment of this application.
[0051] Figure 2 This is a flowchart of a production resource allocation method according to an embodiment of this application;
[0052] Figure 3 This is a flowchart of one possible implementation of the present application for acquiring a target production resource;
[0053] Figure 4 This is a flowchart illustrating the acquisition of target quality inspection resources according to an optional implementation of this application;
[0054] Figure 5 This is a flowchart illustrating the acquisition of a target warehousing resource according to an optional implementation of this application;
[0055] Figure 6 This is a schematic diagram of a human resource management platform according to an optional implementation of this application;
[0056] Figure 7 This is a structural block diagram of a production resource allocation device according to an embodiment of this application. Detailed Implementation
[0057] The embodiments of this application will be described in detail below with reference to the accompanying drawings and examples.
[0058] It should be noted that the terms "first," "second," etc., in the specification, claims, and drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.
[0059] The methods and embodiments provided in this application can be executed on a mobile terminal, computer terminal, or similar computing device. Taking running on a mobile terminal as an example, Figure 1 This is a hardware structure block diagram of a mobile terminal for a method of allocating production resources according to an embodiment of this application. For example... Figure 1 As shown, a mobile terminal may include one or more ( Figure 1 Only one is shown in the diagram. A processor 102 (which may include, but is not limited to, a microprocessor MCU or a programmable logic device FPGA, etc.) and a memory 104 for storing data are also shown. The mobile terminal may further include a transmission device 106 for communication functions and an input / output device 108. Those skilled in the art will understand that... Figure 1 The structure shown is for illustrative purposes only and does not limit the structure of the mobile terminal described above. For example, the mobile terminal may also include components that are more... Figure 1 The more or fewer components shown, or having the same Figure 1 The different configurations shown.
[0060] The memory 104 can be used to store computer programs, such as application software programs and modules, like the computer program corresponding to the production resource allocation method in this embodiment. The processor 102 executes various functional applications and data processing by running the computer programs stored in the memory 104, thus implementing the aforementioned method. The memory 104 may include high-speed random access memory and non-volatile memory, such as one or more magnetic storage devices, flash memory, or other non-volatile solid-state memory. In some instances, the memory 104 may further include memory remotely located relative to the processor 102, and these remote memories can be connected to a mobile terminal via a network. Examples of such networks include, but are not limited to, the Internet, corporate intranets, local area networks, mobile communication networks, and combinations thereof.
[0061] The transmission device 106 is used to receive or send data via a network. Specific examples of the network described above may include a wireless network provided by the mobile terminal's communication provider. In one example, the transmission device 106 includes a Network Interface Controller (NIC), which can connect to other network devices via a base station to communicate with the Internet. In another example, the transmission device 106 may be a Radio Frequency (RF) module used for wireless communication with the Internet.
[0062] This embodiment provides a method for allocating production resources running on the aforementioned mobile terminal. Figure 2 This is a flowchart of a production resource allocation method according to an embodiment of this application, such as... Figure 2 As shown, the process includes the following steps:
[0063] Step S202: Obtain the target production request, wherein the target production request is used to request the production of a target product with target attributes;
[0064] Step S204: Identify the target working hours corresponding to the production of the target product using the target equipment based on the target attribute, wherein the target working hours are used to indicate the production time of the target product using the target equipment;
[0065] Step S206: Construct a production resource threshold range based on the target working hours and production resource parameters, wherein the production resource threshold range includes the upper and lower limits of the production resources theoretically required to produce the target product, and the production resource parameters are used to indicate the attribute characteristics of the production resources to be allocated;
[0066] Step S208: Determine the number of production lines that meet the production resource threshold range based on standard production resources, wherein the standard production resources are used to indicate the production resources that the target production line where each target device is located is allowed to provide, and the number of production lines is used to indicate the number of production lines of the target production line required to produce the target product;
[0067] Step S210: Allocate target production resources to the target production request according to the number of production lines and the standard production resources, wherein the target production resources are used to produce the target product.
[0068] Through the above steps, firstly, a target production request for producing a target product with target attributes is obtained. The target equipment then produces the target product. Next, the target working hours corresponding to the production of the target product by the target equipment are identified based on the target attributes, thereby obtaining the production time for the target equipment to produce the target product. Then, based on the target working hours and production resource parameters, the upper and lower limits of the theoretically required production resources for producing the target product are constructed, i.e., the production resource threshold range. Based on the standard production resources used to indicate the production resources allowed to be provided by the target production line where each target equipment is located, the number of production lines to be opened within the production resource threshold range is determined. Finally, target production resources are allocated to the target production request based on the number of production lines to be opened and the standard production resources. By determining the number of production lines to be opened within the theoretically required upper and lower limits of the production resources for producing the target product, the allocation of production resources becomes more precise. The allocation of target production resources in a target production request only needs to be based on the standard production resources and the number of production lines to be opened, thus making the allocation of production resources simpler and faster. Therefore, the problem of low efficiency and accuracy in production resource allocation is solved, thereby achieving the effect of improving the efficiency and accuracy of production resource allocation.
[0069] Optionally, in this embodiment, the entity performing the above steps may be, but is not limited to, a computer terminal or server deployed with support for the above-mentioned production resource allocation method, such as a background operation management system for application software, a processor with human-computer interaction capabilities configured on a storage device, or a processing device or processing unit with similar processing capabilities.
[0070] Optionally, in this embodiment, production resources may include, but are not limited to, human resources required for production, information resources required for production, raw material resources required for production, etc. In this embodiment, production resources are described as human resources required for production.
[0071] In the technical solution provided in step S202 above, the target production request can be, but is not limited to, triggered by a production order submitted by an employee account on the production resource allocation software platform based on customer demand. The employee account can enter the customer's production order on the production resource allocation software platform and click the submit button. The production resource allocation software platform will allocate production resources according to the target product and target attributes of the target product carried in the production order, thereby ensuring the efficient and accurate completion of the order.
[0072] Optionally, in this embodiment, the target product can be, but is not limited to, any kind of product, such as: electronic products, server-related electronic products, server chips, servers, server accessories, server motherboards, etc.
[0073] Optionally, in this embodiment, the target attribute can be, but is not limited to, any product attribute feature used to guide product production. For example, product quantity, product model, product configuration, etc. Different production scales, models, and configurations of products can be used with different production lines or equipment.
[0074] In the technical solution provided in step S204 above, products with different target attributes are produced using different equipment, and the production time for different equipment to produce products with different target attributes varies. The target equipment for producing the target product and the production time for using the target equipment to produce the target product are identified based on the target attribute.
[0075] Optionally, in this embodiment, the target equipment is the production equipment for the target product, such as product production line equipment, processing equipment, etc.
[0076] In one exemplary embodiment, the target working hours corresponding to the production of the target product using the target equipment can be identified based on the target attributes in the following manner, but not limited to: allocating a target production plant to the target product based on the target attributes; extracting target equipment information corresponding to the target production plant from a first database, wherein the target equipment information includes the target equipment model and the number of target equipment, wherein the first database maintains production plants and equipment models with corresponding relationships; obtaining a reference unit working hour corresponding to the target equipment model, wherein the reference unit working hour is used to indicate the production time of each piece of equipment belonging to the target equipment model in producing the product; determining the target working hours based on the reference unit working hours and the number of target equipment, wherein the target working hours are used to indicate the production time of producing the target product using the equipment deployed in the target production plant.
[0077] Optionally, in this embodiment, the production lines of different production plants can be adapted to different product models, and the plant data corresponding to the model can be maintained in the background, taking into account the actual production line conditions.
[0078] Optionally, in this embodiment, the first database may be, but is not limited to, an order planning database obtained from the APO (Advanced Planner and Optimizer) system. The order planning database may, but is not limited to, maintaining corresponding production plants and equipment models. It may, but is not limited to, extracting the model and quantity of the target equipment corresponding to the target production plant from the order planning database.
[0079] Optionally, in this embodiment, after extracting the number of target equipment corresponding to the target production plant from the order planning database, the product of the reference unit working hours and the number of target equipment can be used to determine the target working hours for indicating the production time of the target product using the equipment deployed in the target production plant.
[0080] In one exemplary embodiment, the reference unit working hours corresponding to the target equipment model can be obtained in the following manner, but is not limited to: extracting the production working hours corresponding to each time period of the target equipment model from a second database to obtain multiple production working hours, wherein each production working hour is used to indicate the production time of each piece of equipment belonging to the target equipment model in the corresponding time period; calculating the weighted average of the multiple production working hours; and determining the ratio of the weighted average to the utilization rate parameter corresponding to the target equipment model as the reference unit working hours.
[0081] Optionally, in this embodiment, the second database may be, but is not limited to, a production time database obtained based on the OPE (Overall Production Effectiveness) system, and may be, but is not limited to, obtaining multiple production times corresponding to each time period of the target equipment model from the OPE system.
[0082] Optionally, in this embodiment, after extracting the production hours corresponding to each time period of the target equipment model from the second database, the following operations may be performed, but are not limited to: matching the target equipment model with the corresponding factory database, and allocating the order plan to the corresponding factory. Obtaining the production hours corresponding to the target equipment model within the OPE system. If it is a new model, the production hours may be obtained by referring to models with similar functions.
[0083] Optionally, in this embodiment, the weighted average working hours of the OPE system over the past three months can be used as the weighted average of multiple production working hours for the target equipment model, but not limited to this.
[0084] Optionally, in this embodiment, the quotient of the weighted average working hours of the OPE system over the past three months and the utilization rate parameter corresponding to the target equipment model can be used as the reference unit working hours. The reference unit working hours calculated in this way can be manually verified, but is not limited to. If verified, standard production resources can be calculated based on this reference unit working hours, but is not limited to.
[0085] In one exemplary embodiment, the target working hours for producing the target product using the target equipment may be identified based on the target attributes in the following manner: the target product is divided into critical components and non-critical components based on the target attributes; the target working hours for producing the critical components using the target equipment are identified, and a first production resource is allocated to the non-critical components, and a second production resource is allocated to the target production request, wherein the first production resource is used to produce the non-critical components, and the second production resource is used to manage the production process of the target product.
[0086] Optionally, in this embodiment, the target product may be divided into parts for producing complete machine components (critical components) and parts for producing other components (non-critical components) based on the target attributes; the target working hours corresponding to the production of parts for producing complete machine components may be identified using the target equipment, and a first production resource may be allocated for the production of other components, and a second production resource for managing the production process of the target product may be allocated for the target production request.
[0087] In the technical solution provided in step S206 above, the production resource parameters may include, but are not limited to, the number of days and hours of attendance of the production human resources in the weekly plan.
[0088] Optionally, in this embodiment, the upper and lower limits of the production resources theoretically required to produce the target product can be, but are not limited to, determined based on the number of days and hours of attendance of the production human resources in the well-maintained weekly plan, as well as the target working hours.
[0089] In one exemplary embodiment, the production resource threshold range can be constructed based on the target working hours and production resource parameters in the following manner, but not limited to: determining equivalent production resources based on the target working hours and the production resource parameters, wherein the production resource parameters include the number of production days of the production resources in each production cycle and the production duration of the production resources in each day; calculating the upper limit value and the lower limit value using the equivalent production resources and a preset error to obtain the production resource threshold range.
[0090] Optionally, in this embodiment, equivalent production resources can be determined based on, but are not limited to, target working hours, number of working days, and working hours, wherein the number of working days can be the number of production days of production human resources in each production cycle, and the working hours can be the production hours of production human resources in each production cycle.
[0091] Optionally, in this embodiment, the production cycle may include, but is not limited to, one day, one week, one month, one quarter, one year, etc.
[0092] In one exemplary embodiment, equivalent production resources may be determined based on the target working hours and the production resource parameters in the following manner: calculating a first ratio between the target working hours and the number of production days; and calculating a second ratio between the first ratio and the production duration as the equivalent production resources.
[0093] Optionally, in this embodiment, the first ratio can be determined according to, but is not limited to, Formula 1:
[0094] First ratio = Target working hours / Number of working days (Formula 1)
[0095] Among them, the number of days of attendance can be the number of production days and the duration of attendance of production human resources in each production cycle.
[0096] Optionally, in this embodiment, the second ratio can be determined according to, but is not limited to, Formula 2:
[0097] Second ratio = First ratio / Attendance duration (Formula 2)
[0098] Among them, attendance duration can be the production duration of production human resources in each production cycle.
[0099] In one exemplary embodiment, the upper limit and the lower limit can be calculated using the equivalent production resources and the preset error in the following manner, but not limited to: determining the equivalent production resources as the lower limit; and determining the product of the equivalent production resources and the preset error as the upper limit.
[0100] Optionally, in this embodiment, the preset error can be determined, but is not limited to, based on the factory's actual production capacity and actual needs.
[0101] Optionally, in this embodiment, the production resources theoretically required for the target product may be greater than or equal to the equivalent production resources, and the production resources theoretically required for the target product may be less than or equal to the equivalent production resources multiplied by 103 (i.e., the aforementioned preset error).
[0102] In the technical solution provided in step S208 above, the number of production lines that meet the threshold range of production resources can be determined by, but is not limited to, based on the standard production resources of each target production line and in combination with the actual conditions of the production site. Finally, the number of production lines required to produce the target product can be indicated by the number of production lines.
[0103] Optionally, in this embodiment, the target production line may be, but is not limited to, a production line containing one or more target devices.
[0104] Optionally, in this embodiment, standard manpower for each shift in the factory production department can be established based on reference unit working hours, and combined to form a standard production resource database for each production line. The standard production resource database may include, but is not limited to, one or more standard production resources.
[0105] Optionally, in this embodiment, by determining the number of production lines within the threshold range of production resources based on the standard production resources of each target production line, the calculation logic of production resources becomes more accurate, greatly reducing production costs, minimizing manual labor input time, and significantly improving production efficiency.
[0106] In one exemplary embodiment, the number of lines opened that conforms to the threshold range of the production resources can be determined based on the following method, but is not limited to: determining the ratio of the upper limit value to the standard production resources as the upper limit value of the number of lines opened, and determining the ratio of the lower limit value to the standard production resources as the lower limit value of the number of lines opened; obtaining the number of lines opened from the lower limit value of the number of lines opened to the upper limit value of the number of lines opened.
[0107] Optionally, in this embodiment, the upper limit of the number of open lines can be determined, but is not limited to, according to Formula 3:
[0108] Maximum number of production lines = Maximum theoretical production resources required to produce the target product / Standard production resources of each production line (Formula 3)
[0109] Optionally, in this embodiment, the upper limit of the number of open lines can be determined, but is not limited to, according to Formula 4:
[0110] Minimum number of production lines = Minimum theoretical production resources required to produce the target product / Standard production resources of each production line (Formula 4)
[0111] In the technical solution provided in step S210 above, the target production resources may include, but are not limited to, online (direct) human resources for the complete machine part of the production department, online human resources for the rest of the production department, and offline (indirect) human resources for the production department; human resources in the quality department that are strongly related to production, human resources in the quality department that are not strongly related to production, and fixed human resources in the quality department; human resources in the warehousing department that are strongly related to production, human resources in the warehousing department that are not strongly related to production, and fixed human resources in the warehousing department, etc. Among these, online human resources may include, but are not limited to, production line personnel who directly participate in product manufacturing in the production workshop, who can change the shape or physicochemical properties of the product, output measurable added value for the final product, and whose human resources can be measured by standard working hours. Offline human resources may include, but are not limited to, positions that do not directly participate in product manufacturing, such as off-line personnel, management, etc.; activities that provide necessary support and management for direct human resources, output immeasurable added value for the final product, and whose human resources cannot be measured by standard working hours but are considered in terms of workload.
[0112] Optionally, in this embodiment, the remaining online human resources of the production department may be, but are not limited to, human resources for products with a relatively simple and fixed type of production, or human resources that are different from the complex and diverse types of complete machines, and can be directly calculated based on the order demand quantity without considering the human resource impact caused by the configuration differences of the products.
[0113] Optionally, in this embodiment, the offline human resources for the production department can be reserved, but are not limited to personnel who are not strongly related to production and are merely peripheral personnel supporting the production line, who do not create value for the product. An offline human resource database can be established on the platform, but is not limited to that provided. After the order plan is generated, the platform retrieves the offline human resource database to form the production offline human resources. After manual confirmation, the final offline staffing is output.
[0114] In one exemplary embodiment, target production resources may be allocated to the target production request based on the number of production lines and the standard production resources in the following manner: the product of the number of production lines and the standard production resources is determined as a third production resource, wherein the third production resource is used to produce the key component; the sum of the first production resource, the second production resource, and the third production resource is determined as the target production resource.
[0115] Optionally, in this embodiment, the third production resource may be, but is not limited to, the online human resources of the whole machine part of the production department, the second production resource may be, but is not limited to, the offline human resources of the production department, and the first production resource may be, but is not limited to, the online human resources of the rest of the production department.
[0116] Optionally, in this embodiment, the third production resource can be determined using, but is not limited to, Formula 5; Third production resource = Number of lines opened * Standard production resource of each production line (Formula 5)
[0117] Optionally, in this embodiment, the target production resources can be determined using, but are not limited to, Formula 6: Target Production Resources = Online Human Resources for the Complete Machine Portion of the Production Department + Online Human Resources for the Remaining Portion of the Production Department + Offline Human Resources for the Production Department (Formula 6)
[0118] Optionally, in this embodiment, the online human resource accounting logic for the remaining production manpower can be, but is not limited to, the following: Basic data maintenance is performed on the platform: For other work groups, IE engineers will measure the work of their work groups on the production line, as well as the standard working hours and corresponding capacity for each work item. This ultimately forms a standard manpower database on the platform. Data source input: Obtain the order plan from the APO system. Data calculation: Identify the quantity based on the obtained order plan, and calculate the required manpower based on the basic data maintained in step 1). The remaining online human resources for production can be determined using, but is not limited to, Formula 7:
[0119] Production manpower (remaining online human resources) = Quantity of orders / Standard capacity * Standard production resources (Formula 7)
[0120] Optionally, in this embodiment, the offline human resource accounting logic for the production department may, but is not limited to, establishing an offline human resource database on the platform. After the order plan is generated, the platform retrieves the offline human resource database to form the production offline human resources. After manual confirmation, the production department's offline human resources are finally output.
[0121] In one alternative implementation, a process for acquiring target production resources is provided. Figure 3 This is a flowchart illustrating the acquisition of a target production resource according to an optional implementation of this application, such as... Figure 3As shown, the target production resources may include, but are not limited to, production resource 1, production resource 2, and production resource 3. Production resource 1 can be the online human resources for the entire production line, and can be obtained in, but is not limited to, the following ways: First, basic data maintenance is performed: different factories have production lines adapted to different machine models. Based on the actual production line conditions, the factory data corresponding to the machine model is maintained in the background. Second, IE engineers will measure the business of the production shifts on the production line, the standard working hours corresponding to each business, and the standard manpower under the corresponding capacity, forming a standard production manpower database, which is then obtained through the production manpower data management platform. The APO system's order plan is used to identify machine models and quantities. After identifying the machine model, it is matched with the corresponding factory database, and the order plan is allocated to the factory. The standard working hours for each machine model in the OPE system are then obtained, and multiplied by the number of machines to obtain the theoretical working hours. The equivalent manpower is calculated based on the theoretical working hours and the planned number of days and hours for weekly maintenance. The standard manpower database for each production line is compared with the equivalent manpower, and the number of production lines to be opened is determined in conjunction with the actual production conditions. Finally, the production resources 1 are calculated and organized based on the determined number of production lines to be opened and the standard manpower database for each production line. Production Resource 2 can be the remaining Online human resources for production. It can be obtained, but is not limited to, through the following methods: First, basic data maintenance is performed. Second, IE engineers measure the business of production teams on the production line, the standard working hours corresponding to each business, and the standard manpower under the corresponding capacity, forming a standard production manpower database. Then, the order plan in the APO system is obtained through the production manpower data management platform. Based on the obtained order plan, the quantity is identified, and the maintained basic data is used to calculate Production Resource 2. Production Resource 3 can be Offline human resources for production. It can be obtained, but is not limited to, through the following methods: Since this part of the manpower is fixed, an Offline manpower database can be established to obtain Production Resource 3. Alternatively, the sum of Production Resource 1, Production Resource 2, and Production Resource 3 can be used to obtain the target production resource.
[0122] Optionally, in this embodiment, the production department may, but is not limited to, maintain the actual business operations and measured working hours, production capacity and standard manpower underlying data on the manpower data management platform, and organize them into a standard manpower working hour database.
[0123] Optionally, in this embodiment, the manpower calculated based on the previous manpower calculation logic may be redundant, affecting costs; or the calculated manpower may be insufficient, posing a risk to production capacity delivery. The manpower calculation logic is changed from offline to online, making the calculation more accurate, reducing the time spent on manual labor, and the manpower calculated according to the new logic is based on standard working hours, quantifying the previous data, which makes it easier to conduct manpower assessment.
[0124] In an exemplary embodiment, after determining the number of production lines that meet the threshold range of the production resources based on standard production resources, at least one of the following methods may be used, but is not limited to: allocating target quality inspection resources to the target production request based on the request information of the target production request, the number of production lines, the sampling rate parameter of the target product, and the capacity information of the quality inspection resources, wherein the target quality inspection resources are used to perform quality inspection on the target product; allocating target warehousing resources to the target production request based on the request information of the target production request, the number of production lines, and the capacity information of the warehousing resources, wherein the target warehousing resources are used to store the target product.
[0125] Optionally, in this embodiment, production resource data is obtained using the request information (order plan) and line opening parameters of the target production request, instead of the current method of providing data through Excel (Microsoft Excel, a spreadsheet software). When the order plan changes, the system can quickly calculate the required manpower based on the plan input, facilitating a rapid response from the factory.
[0126] In one alternative implementation, a process for acquiring target quality inspection resources is provided. Figure 4 This is a flowchart illustrating the acquisition of target quality inspection resources according to an optional implementation of this application, such as... Figure 4As shown, the target quality inspection resources may include, but are not limited to, quality inspection resource 1, quality inspection resource 2, and quality inspection resource 3. Among them, quality inspection resource 1 may be a portion of human resources that are strongly related to quality and production. Quality inspection resource 1 may be obtained in the following ways, but are not limited to: First, maintain the sampling ratio during quality inspection; Second, IE (industrial engineer, referring to an engineer who uses IE methods to professionally manage a system as a whole) engineers will measure the business of their shifts on the production line, as well as the standard working hours and corresponding capacity for each business, forming a UPPH (Units Per Person per Hour) database; Then, retrieve the capacity data in the order plan, form the daily capacity based on the planned attendance days, and retrieve the number of lines opened generated in the production part's manpower accounting logic; Finally, combine the daily capacity, UPPH database, number of lines opened, and sampling ratio data to generate different staffing levels for each shift, thus obtaining quality inspection resource 1. Quality inspection resource 2 can be a portion of human resources that are not strongly related to quality or production. It can be obtained, but is not limited to, through the following methods: First, maintain the sampling ratio during quality inspection; second, IE engineers will measure the work of their work teams on the production line, the standard working hours for each task, and the corresponding capacity, forming a UPPH database; then, take the values generated by each quality team after actual production within the historical period as the data source, plan the number of attendance days, and form the daily capacity requirement; finally, combine the daily capacity, UPPH database, number of lines open, and sampling ratio data to generate different staffing levels for each quality team, ultimately obtaining quality inspection resource 2. Quality inspection resource 3 can be fixed human resources for quality. Since this part of the personnel is fixed, it is possible, but is not limited to, establishing a fixed personnel database to obtain quality inspection resource 3. It is possible, but is not limited to, using formula 8 to obtain the target quality inspection resource:
[0127] Target quality inspection resources = Quality inspection resource 1 + Quality inspection resource 2 + Quality inspection resource 3 (Formula 8)
[0128] Optionally, in this embodiment, each shift of quality inspection may, but is not limited to, performing... Figure 4 The logic shown can be skipped if certain steps or parameters are not needed.
[0129] Optionally, in this embodiment, the quality department may, but is not limited to, maintain the sampling ratio and form a sampling ratio database. The underlying data of actual business operations and measured working hours, production capacity and standard manpower collected on site will be maintained on the manpower data management platform and organized into the UPPH database.
[0130] In one alternative implementation, a process for acquiring target warehouse resources is provided. Figure 5This is a flowchart illustrating the acquisition of a target warehousing resource according to an optional implementation of this application, such as... Figure 5 As shown, the target warehousing resources may include, but are not limited to, warehousing resource 1, warehousing resource 2, and warehousing resource 3. Among them, warehousing resource 1 may be a portion of human resources that are strongly related to warehousing and production. Warehouse resource 1 may be obtained in the following ways, but are not limited to: First, basic data maintenance is performed. IE engineers measure the business of the warehousing team on the production line and the standard working hours corresponding to each business, and combine this with the standard capacity to finally form a standard warehousing manpower database; Second, the capacity data in the order plan is retrieved; The number of production lines opened is retrieved from the manpower accounting logic of the production section; Finally, the different staffing quotas for each team are generated by combining the capacity, the standard warehousing manpower database, and the number of production lines opened, and warehousing resource 1 is finally obtained. Warehouse resource 2 can be a portion of warehouse manpower that is not strongly correlated with production. It can be obtained, but is not limited to, through the following methods: First, basic data maintenance is performed. IE engineers will measure the business of warehouse work teams on the production line and the standard working hours corresponding to each business, combining this with standard capacity to ultimately form a standard warehouse manpower database. Second, the values generated after actual production by each work team within the historical value range are used as the data source to form capacity requirements. Finally, combining capacity and the standard warehouse manpower database, different staffing levels for each work team are generated, ultimately obtaining warehouse resource 2. Warehouse resource 3 can be fixed warehouse manpower. It can be obtained, but is not limited to, through the following methods: Since this portion of manpower is fixed, a fixed manpower database can be established to obtain warehouse resource 3. The target warehouse resource can be obtained using formula 9, but is not limited to:
[0131] Target warehousing resources = Warehouse resource 1 + Warehouse resource 2 + Warehouse resource 3 (Formula 9)
[0132] Optionally, in this embodiment, each shift in the warehousing department can, but is not limited to, perform... Figure 5 The logic shown can be skipped if certain steps or parameters are not needed.
[0133] Optionally, in this embodiment, the warehousing department may, but is not limited to, maintain the actual on-site business operations and measured working hours, capacity and standard manpower underlying data on the manpower data management platform, and organize them into a standard manpower working hour database.
[0134] In one alternative implementation, a schematic diagram of a human resource management platform is provided. Figure 6 This is a schematic diagram of a human resource management platform according to an optional implementation of this application, such as... Figure 6As shown, the human resource management platform includes a data source acquisition module, an automatic human resource calculation module, a standard working hour database storage module, and a human resource allocation module. After acquiring data, the data source acquisition module sends it along with the standard working hour data stored in the standard working hour database storage module to the automatic human resource calculation module. The automatic human resource calculation module then calculates the authorized manpower, which is used by factory management to make human resource allocation decisions, which are then sent to the human resource allocation module. The data in the data source acquisition module can be obtained from, but is not limited to, other platforms such as data analysis platforms, OPE systems, and APO systems. The human resource allocation module can manage and control the system through, but is not limited to, the attendance system.
[0135] Optionally, in this embodiment, the approved manpower can be automatically sent to the HR (Human Resources) email address via email, or can be connected to the HR system to obtain the actual number of employees on staff and compare the planned manpower with the actual number of employees on staff.
[0136] Optionally, in this embodiment, all underlying logical data for manpower calculation, including business and standard working hours, are uniformly converted from personal EXCEL spreadsheets to be stored on the platform. The data will not be lost, which facilitates business benchmarking and querying for each factory. Changes can be recorded in the system for easy traceability. The system can quickly calculate the required manpower based on the plan input, which facilitates rapid response from the factory.
[0137] Optionally, in this embodiment, the planned manpower and the actual manpower are managed on the same platform, which makes it easier for managers to quickly and effectively understand the factory status and make manpower allocation decisions that maximize efficiency and minimize costs.
[0138] Through the above description of the embodiments, those skilled in the art can clearly understand that the methods according to the above embodiments can be implemented by means of software plus necessary general-purpose hardware platforms. Of course, they can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) and includes several instructions to cause a terminal device (which may be a mobile phone, computer, server, or network device, etc.) to execute the methods described in the various embodiments of this application.
[0139] This embodiment also provides a production resource allocation device for implementing the above embodiments and preferred embodiments; details already described will not be repeated. As used below, the term "module" can refer to a combination of software and / or hardware that performs a predetermined function. Although the device described in the following embodiments is preferably implemented in software, hardware implementation, or a combination of software and hardware, is also possible and contemplated.
[0140] Figure 7 This is a structural block diagram of a production resource allocation device according to an embodiment of this application, such as... Figure 7 As shown, the device includes:
[0141] The acquisition module 702 is used to acquire a target production request, wherein the target production request is used to request the production of a target product with a target attribute;
[0142] The identification module 704 is used to identify the target working hours corresponding to the production of the target product using the target equipment according to the target attribute, wherein the target working hours are used to indicate the production time of the target product using the target equipment;
[0143] The construction module 706 is used to construct a production resource threshold range based on the target working hours and production resource parameters, wherein the production resource threshold range includes the upper limit and lower limit of the production resources theoretically required to produce the target product, and the production resource parameters are used to indicate the attribute characteristics of the production resources to be allocated;
[0144] The determining module 708 is used to determine the number of production lines that meet the threshold range of the production resources based on the standard production resources, wherein the standard production resources are used to indicate the production resources that the target production line where each target device is located is allowed to provide, and the number of production lines is used to indicate the number of production lines of the target production line required to produce the target product;
[0145] The allocation module 710 is used to allocate target production resources to the target production request according to the number of production lines and the standard production resources, wherein the target production resources are used to produce the target product.
[0146] The aforementioned apparatus first obtains a target production request for producing a target product with target attributes. The target equipment then produces the target product. Next, based on the target attributes, the target working hours corresponding to the production of the target product by the target equipment are identified, thereby obtaining the production time for the target product. Then, based on the target working hours and production resource parameters, an upper and lower limit value of the theoretically required production resources for producing the target product is constructed, i.e., a production resource threshold range. Based on the standard production resources used to indicate the production resources allowed to be provided by the target production line where each target equipment is located, the number of production lines within the production resource threshold range is determined as a parameter for the number of production lines to be opened. Finally, target production resources are allocated to the target production request based on the number of production lines to be opened parameter and the standard production resources. By determining the number of production lines to be opened parameter that conforms to the upper and lower limit value range of the theoretically required production resources for producing the target product, the allocation of production resources becomes more precise. The allocation of target production resources in a target production request only needs to be based on the standard production resources and the number of production lines to be opened parameter, thus making the allocation of production resources simpler and faster. Therefore, the problem of low efficiency and accuracy in production resource allocation is solved, thereby achieving the effect of improving the efficiency and accuracy of production resource allocation.
[0147] In one exemplary embodiment, the identification module includes:
[0148] The first allocation unit is used to allocate a target production plant to the target product according to the target attribute;
[0149] The extraction unit is used to extract the target equipment information corresponding to the target production plant from the first database, wherein the target equipment information includes the target equipment model and the target equipment quantity, and wherein the first database maintains production plants and equipment models with corresponding relationships;
[0150] The first acquisition unit is used to acquire the reference unit working hours corresponding to the target equipment model, wherein the reference unit working hours are used to indicate the production time of each piece of equipment belonging to the target equipment model.
[0151] The first determining unit is configured to determine the target working hours based on the reference unit working hours and the number of target equipment, wherein the target working hours are used to indicate the production time for producing the target product using equipment deployed in the target production plant.
[0152] In an exemplary embodiment, the first acquiring unit is configured to:
[0153] The production hours corresponding to each time period of the target equipment model are extracted from the second database to obtain multiple production hours. Each production hour is used to indicate the production time of each piece of equipment belonging to the target equipment model in the corresponding time period.
[0154] Calculate the weighted average of the multiple production hours;
[0155] The ratio of the weighted average to the utilization rate parameter corresponding to the target equipment model is determined as the reference unit working hours.
[0156] In one exemplary embodiment, the building module includes:
[0157] The second determining unit is used to determine the equivalent production resources based on the target working hours and the production resource parameters, wherein the production resource parameters include the number of production days of the production resources in each production cycle and the production duration of the production resources in each day;
[0158] The calculation unit is used to calculate the upper limit value and the lower limit value using the equivalent production resources and the preset error, so as to obtain the production resource threshold range.
[0159] In one exemplary embodiment, the second determining unit is configured to:
[0160] Calculate the first ratio between the target working hours and the number of production days;
[0161] The second ratio between the first ratio and the production time is calculated as the equivalent production resource.
[0162] In one exemplary embodiment, the computing unit is configured to:
[0163] The equivalent production resources are determined as the lower limit value;
[0164] The product of the equivalent production resources and the preset error is determined as the upper limit value.
[0165] In one exemplary embodiment, the determining module includes:
[0166] The third determining unit determines the ratio of the upper limit value to the standard production resources as the upper limit value of the number of production lines to be opened, and determines the ratio of the lower limit value to the standard production resources as the lower limit value of the number of production lines to be opened.
[0167] The second acquisition unit is used to acquire the number of open wires parameter from the lower limit of the number of open wires to the upper limit of the number of open wires.
[0168] In one exemplary embodiment, the identification module includes:
[0169] A segmentation unit is used to divide the target product into critical components and non-critical components based on the target attributes;
[0170] The second allocation unit is configured to identify the target working hours corresponding to the production of the key component using the target equipment, allocate a first production resource to the non-key component, and allocate a second production resource to the target production request, wherein the first production resource is used to produce the non-key component, and the second production resource is used to manage the production process of the target product.
[0171] In one exemplary embodiment, the allocation module includes:
[0172] The fourth determining unit is used to determine the product of the number of production lines and the standard production resources as the third production resource, wherein the third production resource is used to produce the key components;
[0173] The fifth determining unit is used to determine the sum of the first production resource, the second production resource, and the third production resource as the target production resource.
[0174] In one exemplary embodiment, the device further includes at least one of the following:
[0175] The third allocation unit is used to allocate target quality inspection resources to the target production request based on the request information of the target production request, the number of production lines opened, the sampling rate parameter of the target product, and the capacity information of the quality inspection resources after the production line opening parameters are determined according to the standard production resources. The target quality inspection resources are used to perform quality inspection on the target product.
[0176] The fourth allocation unit is used to allocate target warehousing resources to the target production request based on the request information of the target production request, the number of production lines, and the capacity information of the warehousing resources, after the production line number parameters that meet the threshold range of the production resources are determined according to the standard production resources. The target warehousing resources are used to store the target product.
[0177] It should be noted that the above modules can be implemented by software or hardware. For the latter, they can be implemented in the following ways, but are not limited to: all the above modules are located in the same processor; or, the above modules are located in different processors in any combination.
[0178] Embodiments of this application also provide a computer-readable storage medium storing a computer program, wherein the computer program is configured to execute the steps in any of the above method embodiments when run.
[0179] In one exemplary embodiment, the aforementioned computer-readable storage medium may include, but is not limited to, various media capable of storing computer programs, such as a USB flash drive, read-only memory (ROM), random access memory (RAM), portable hard disk, magnetic disk, or optical disk.
[0180] Embodiments of this application also provide an electronic device, including a memory and a processor, wherein the memory stores a computer program and the processor is configured to run the computer program to perform the steps in any of the above method embodiments.
[0181] In one exemplary embodiment, the electronic device may further include a transmission device and an input / output device, wherein the transmission device is connected to the processor and the input / output device is connected to the processor.
[0182] Specific examples in this embodiment can be found in the examples described in the above embodiments and exemplary implementations, and will not be repeated here.
[0183] Obviously, those skilled in the art should understand that the modules or steps of this application described above can be implemented using general-purpose computing devices. They can be centralized on a single computing device or distributed across a network of multiple computing devices. They can be implemented using computer-executable program code, and thus can be stored in a storage device for execution by a computing device. In some cases, the steps shown or described can be performed in a different order than those presented here, or they can be fabricated as separate integrated circuit modules, or multiple modules or steps can be fabricated as a single integrated circuit module. Thus, this application is not limited to any particular combination of hardware and software.
[0184] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the principles of this application should be included within the protection scope of this application.
Claims
1. A method for allocating production resources, characterized in that, include: Obtain a target production request, wherein the target production request is used to request the production of a target product with a target attribute; The target working hours corresponding to the production of the target product using the target equipment are identified based on the target attributes, wherein the target working hours are used to indicate the production time of the target product using the target equipment; A production resource threshold range is constructed based on the target working hours and production resource parameters, wherein the production resource threshold range includes the upper and lower limits of the production resources theoretically required to produce the target product, and the production resource parameters are used to indicate the attribute characteristics of the production resources to be allocated. The number of production lines to be opened is determined based on standard production resources, which are within the threshold range of the production resources. The standard production resources are used to indicate the production resources that the target production line where each target device is located is allowed to provide, and the number of production lines to be opened is used to indicate the number of production lines of the target production line required to produce the target product. Based on the number of production lines and the standard production resources, target production resources are allocated to the target production request, wherein the target production resources are used to produce the target product.
2. The method according to claim 1, characterized in that, The step of identifying the target man-hours corresponding to the production of the target product using the target equipment based on the target attributes includes: Assign target production facilities to the target product based on the target attributes; Extract the target equipment information corresponding to the target production plant from the first database, wherein the target equipment information includes the target equipment model and the target equipment quantity, and wherein the first database maintains production plants and equipment models with corresponding relationships; Obtain the reference unit working hours corresponding to the target equipment model, wherein the reference unit working hours are used to indicate the production time of each piece of equipment belonging to the target equipment model; The target working hours are determined based on the reference unit working hours and the number of target equipment, wherein the target working hours are used to indicate the production time for producing the target product using equipment deployed in the target production plant.
3. The method according to claim 2, characterized in that, The step of obtaining the reference unit working hours corresponding to the target equipment model includes: The production hours corresponding to each time period of the target equipment model are extracted from the second database to obtain multiple production hours. Each production hour is used to indicate the production time of each piece of equipment belonging to the target equipment model in the corresponding time period. Calculate the weighted average of the multiple production hours; The ratio of the weighted average to the utilization rate parameter corresponding to the target equipment model is determined as the reference unit working hours.
4. The method according to claim 1, characterized in that, The step of constructing a production resource threshold range based on the target working hours and production resource parameters includes: The equivalent production resources are determined based on the target working hours and the production resource parameters, wherein the production resource parameters include the number of production days in each production cycle and the production duration of the production resources per day. The upper limit and lower limit values are calculated using the equivalent production resources and the preset error to obtain the production resource threshold range.
5. The method according to claim 4, characterized in that, The step of determining the equivalent production resources based on the target working hours and the production resource parameters includes: Calculate the first ratio between the target working hours and the number of production days; The second ratio between the first ratio and the production time is calculated as the equivalent production resource.
6. The method according to claim 4, characterized in that, The calculation of the upper limit and the lower limit using the equivalent production resources and the preset error includes: The equivalent production resources are determined as the lower limit value; The product of the equivalent production resources and the preset error is determined as the upper limit value.
7. The method according to claim 1, characterized in that, The step of determining the number of open lines that meets the threshold range of the production resources based on standard production resources includes: The ratio of the upper limit value to the standard production resources is determined as the upper limit value of the number of production lines opened, and the ratio of the lower limit value to the standard production resources is determined as the lower limit value of the number of production lines opened. The number of open wires parameter is obtained from the lower limit of the number of open wires to the upper limit of the number of open wires.
8. The method according to claim 1, characterized in that, The step of identifying the target man-hours corresponding to the production of the target product using the target equipment based on the target attributes includes: The target product is divided into critical components and non-critical components based on the target attributes. Identify the target man-hours corresponding to the production of the key component using the target equipment, allocate a first production resource to the non-key component, and allocate a second production resource to the target production request, wherein the first production resource is used to produce the non-key component, and the second production resource is used to manage the production process of the target product.
9. The method according to claim 8, characterized in that, The step of allocating target production resources to the target production request based on the number of production lines and the standard production resources includes: The product of the number of production lines and the standard production resources is determined as the third production resource, wherein the third production resource is used to produce the key components; The sum of the first production resource, the second production resource, and the third production resource is determined as the target production resource.
10. The method according to claim 1, characterized in that, After determining the number of open lines that meets the production resource threshold range based on standard production resources, the method further includes at least one of the following: Based on the request information of the target production request, the number of production lines opened, the sampling rate parameter of the target product, and the capacity information of the quality inspection resources, target quality inspection resources are allocated to the target production request, wherein the target quality inspection resources are used to perform quality inspection on the target product; Based on the request information of the target production request, the number of production lines opened parameter allocates target warehousing resources to the target production request using the capacity information of warehousing resources, wherein the target warehousing resources are used to store the target product.
11. A production resource allocation device, characterized in that, include: The acquisition module is used to acquire the target production request, wherein the target production request is used to request the production of a target product with a target attribute; The identification module is used to identify the target working hours corresponding to the production of the target product using the target equipment based on the target attributes, wherein the target working hours are used to indicate the production time of the target product using the target equipment; A construction module is used to construct a production resource threshold range based on the target working hours and production resource parameters, wherein the production resource threshold range includes the upper and lower limits of the production resources theoretically required to produce the target product, and the production resource parameters are used to indicate the attribute characteristics of the production resources to be allocated; The determination module is used to determine the number of production lines that meet the threshold range of the production resources based on standard production resources, wherein the standard production resources are used to indicate the production resources that the target production line where each target device is located is allowed to provide, and the number of production lines is used to indicate the number of production lines of the target production line required to produce the target product; The allocation module is used to allocate target production resources to the target production request according to the number of production lines and the standard production resources, wherein the target production resources are used to produce the target product.
12. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program, wherein the computer program, when executed by a processor, implements the steps of the method described in any one of claims 1 to 10.
13. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the steps of the method described in any one of claims 1 to 10.