Incoming logistics resource rapid calculation method, system and equipment based on finished automobile factory

By establishing a standardized method and parameter library for rapid calculation of logistics resources, the complexity and high error rate of calculating inbound logistics resources for automobile manufacturers have been solved, achieving efficient and accurate resource allocation and rapid calculation.

CN120952680APending Publication Date: 2025-11-14CHONGQING SAIMEI SHUZHI TECH CO LTD
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Patent Information

Application Number
CN202410598322.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-14
Publication Date
2025-11-14

AI Technical Summary

Technical Problem

In existing technologies, the methods for calculating inbound logistics resources at automobile OEMs vary greatly from factory to factory, lack universality, have complex calculation logic, are prone to errors, and have scattered parameters, resulting in calculation difficulties and low efficiency.

Method used

Establish a rapid calculation method for logistics resources based on automobile OEMs. Through a logical framework and parameter library, form a standardized minimum unit calculation process. Combine the enterprise's accumulated parameters for calculation to reduce the probability of errors and improve efficiency.

Benefits of technology

It has achieved standardized and efficient allocation of logistics resource calculations, reduced error rates, improved calculation efficiency, shortened the training cycle for new employees, and enhanced the accuracy and flexibility of calculation results.

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Abstract

The invention provides an incoming logistics resource rapid calculation method, system and device based on a finished automobile factory, and the method comprises the steps: obtaining measurement basic information; wherein the measurement and calculation basic information comprises production basic information and part basic information; obtaining a corresponding calculation formula according to the calculation basic information; and obtaining a logistics resource rapid calculation result according to the calculation basic information and the calculation formula. According to the method, a logic framework can be established, minimum unit measurement and calculation can be formed, the measurement and calculation process is standardized and solidified, factory logistics resource calculation is performed by adopting a parameter library of enterprise precipitation, the error probability of the whole measurement and calculation process can be greatly reduced, logistics planning personnel can quickly complete measurement and calculation work, the measurement and calculation efficiency is improved, and the calculation efficiency is improved. And efficient resource configuration is realized.
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Description

Technical Field

[0001] This invention relates to the field of logistics management technology, and in particular to a method, system and equipment for rapid calculation of inbound logistics resources for automobile manufacturers. Background Technology

[0002] With the development of the internet, intelligent industrialization is also developing rapidly. Intelligent industrialization is a development approach that uses network technology, intelligent technology, and automation technology to manage all aspects of enterprises and factories in complex environments during the production and transportation process.

[0003] Currently, the calculation methods, parameters, and logic used by logistics planning engineers in various factories to calculate the standard manpower allocation for inbound logistics differ to some extent. The calculation methods are all tailored to their respective factories, lacking strong universality. Due to the complexity of inbound logistics in automotive OEMs, the calculation logic formulas are numerous and complex, with strong logical relationships between them. Even a slight error can lead to the entire calculation failing to produce results, and error checking is time-consuming and labor-intensive. Furthermore, the necessary parameters for calculation are scattered among various engineers, failing to be effectively utilized and disseminated. Summary of the Invention

[0004] Therefore, it is necessary to provide a method, system, and equipment for quickly calculating inbound logistics resources of automobile manufacturers to address the aforementioned technical problems.

[0005] A rapid calculation method for inbound logistics resources at automobile OEMs includes the following steps:

[0006] Obtain basic measurement information; wherein, the basic measurement information includes: production basic information and part basic information;

[0007] The corresponding calculation formula is obtained based on the basic calculation information.

[0008] Based on the basic calculation information and the calculation formula, the quick calculation result of logistics resources is obtained.

[0009] In one embodiment, obtaining the basic measurement information further includes, prior to:

[0010] Establish a production basic information table and a parts basic information table.

[0011] In one embodiment, obtaining the basic measurement information includes:

[0012] Receive user input of basic calculation information, and obtain the basic calculation information based on the basic calculation information, the production basic information table, and the part basic information table.

[0013] In one embodiment, the calculation formula is obtained based on the basic calculation information, and the process further includes:

[0014] Obtain the inbound logistics operation process and derive the calculation logic based on the inbound logistics operation process;

[0015] The calculation formula is obtained based on the calculation logic.

[0016] In one embodiment, obtaining the inbound logistics operation process and deriving the calculation logic based on the inbound logistics operation process includes:

[0017] Obtain the part prefix, and then obtain the part status data based on the part prefix;

[0018] Based on the component status data, the weighted usage per vehicle is obtained:

[0019] Q = K * J

[0020] Where Q represents weighted usage per vehicle, K represents usage per vehicle, and J represents part status data;

[0021] Based on the weighted average usage per vehicle, the hourly consumption of parts is obtained:

[0022] P = JPH * Q

[0023] Where P represents the hourly consumption of parts, JPH represents the workload per unit time, and Q represents the weighted consumption per vehicle.

[0024] Based on the hourly consumption of the aforementioned parts, the material flow rate is obtained:

[0025] T = P * S t

[0026] Where T represents material flow rate, P represents hourly consumption of parts, and S represents material flow rate. t This indicates the standard containment number.

[0027] In one embodiment, the quick calculation result of logistics resources is obtained based on the basic calculation information and the calculation formula, including:

[0028] Obtain the parameters corresponding to the basic calculation information, and obtain the logistics resource quick calculation result based on the parameters, the basic calculation information, and the calculation formula.

[0029] In one embodiment, obtaining the parameters corresponding to the basic information to be measured further includes:

[0030] Obtain the basic operation time reference database and factory time parameters to obtain the parameter table corresponding to the calculation logic.

[0031] In one embodiment, the calculation formula obtained according to the calculation logic includes:

[0032] The calculation formula is as follows:

[0033] SUM = T*(C+D) / (P*L)

[0034] Where SUM represents the quick calculation result of logistics resources, T represents the flow rate, C represents the parameter, D represents the unit travel time, P represents the working hours of a single person in a single shift, and L represents the labor load.

[0035] A rapid calculation system for inbound logistics resources at an automotive OEM factory is provided to implement the rapid calculation method for inbound logistics resources at an automotive OEM factory as described above, comprising:

[0036] The information acquisition module is used to acquire basic calculation information; wherein, the basic calculation information includes: basic production information and basic part information;

[0037] The formula correspondence module is used to obtain the corresponding calculation formula based on the basic calculation information.

[0038] The result calculation module is used to obtain the quick calculation result of logistics resources based on the basic calculation information and the calculation formula.

[0039] An apparatus includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the steps of the method for quick calculation of inbound logistics resources for automobile OEMs as described in the above embodiments.

[0040] Compared with existing technologies, the advantages and beneficial effects of this invention are as follows: This invention can establish a logical framework, form the smallest unit of calculation, standardize the calculation process, and solidify it. It uses the parameter library accumulated by the enterprise to calculate the inbound logistics resources, which greatly reduces the probability of error in the entire calculation process. It enables logistics planners to complete the calculation work quickly, improves the calculation efficiency, and achieves efficient resource allocation. Attached Figure Description

[0041] Figure 1 This is a flowchart illustrating a method for quickly calculating inbound logistics resources at an automobile manufacturing plant, as shown in one embodiment.

[0042] Figure 2 This is a schematic diagram of the basic information table structure of a part in one embodiment;

[0043] Figure 3 This is a schematic diagram of the resource calculation framework table structure in one embodiment;

[0044] Figure 4 This is a schematic diagram of the parameter table structure corresponding to the calculation logic in one embodiment;

[0045] Figure 5 This is a schematic diagram of the resource calculation table structure in one embodiment;

[0046] Figure 6 This is a schematic diagram of the planning table structure in one embodiment;

[0047] Figure 7 This is a schematic diagram of the basic production information input in one embodiment;

[0048] Figure 8 This is a schematic diagram of the basic information of the parts input in one embodiment;

[0049] Figure 9 This is a schematic diagram of the output results in one embodiment;

[0050] Figure 10 This is a schematic diagram of a rapid calculation system for inbound logistics resources of an automobile OEM factory, as shown in one embodiment.

[0051] Figure 11 This is a schematic diagram of the internal structure of the device in one embodiment. Detailed Implementation

[0052] Before describing the specific embodiments of the present invention, the overall concept of the present invention will be explained as follows:

[0053] This invention primarily focuses on the development of a rapid calculation process for inbound logistics resources. Currently, the calculation methods, parameters, and logic used by logistics planning engineers in various factories to calculate the standard manpower allocation for inbound logistics differ to some extent. The calculation methods are all tailored to their respective factories, lacking strong universality. Due to the complexity of inbound logistics in automotive OEMs, the calculation logic formulas are numerous and complex, with strong logical relationships between them. Even a slight error can lead to the entire calculation failing to yield results, and error checking is time-consuming and labor-intensive. Furthermore, the necessary parameters for calculation are scattered among various engineers and have not been effectively utilized or disseminated.

[0054] Therefore, this invention proposes a rapid calculation method for inbound logistics resources of automobile manufacturers. It establishes a logical framework, forms the smallest unit of calculation, standardizes and solidifies the calculation process, and uses the enterprise's accumulated parameter library to calculate inbound logistics resources. The probability of error in the entire calculation process will be greatly reduced, enabling logistics planners to complete the calculation work quickly, improving calculation efficiency, and achieving efficient resource allocation.

[0055] After introducing the overall concept of the present invention, in order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below through specific embodiments and in conjunction with the accompanying drawings.

[0056] It should be noted that, unless otherwise defined, the technical or scientific terms used in one or more embodiments of this specification should have the ordinary meaning understood by one of ordinary skill in the art to which this invention pertains. The terms "first," "second," and similar terms used in one or more embodiments of this specification do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Terms such as "comprising" or "including" mean that the element or object preceding the word covers the element or object listed following the word and its equivalents, without excluding other elements or objects. Terms such as "connected" or "linked" are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. Terms such as "upper," "lower," "left," and "right" are used only to indicate relative positional relationships; when the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0057] In one embodiment, such as Figure 1 As shown, a method for quickly calculating inbound logistics resources for automobile manufacturers is provided, including the following steps:

[0058] Step S101: Obtain basic measurement information; wherein, the basic measurement information includes: production basic information and part basic information.

[0059] Specifically, the input calculation basic information is obtained, and the calculation basic information includes: production basic information and part basic information.

[0060] Based on this, basic calculation information is obtained, which previously included:

[0061] Establish a production basic information table and a parts basic information table.

[0062] Specifically, the basic production information table is shown in Table 1 below, and the format of the basic part information table is as follows: Figure 2 As shown, the basic information is stored in the format of the production basic information table and the part basic information table.

[0063]

[0064] Table 1 Production Basic Information Table

[0065] Basic production information and basic part information can be obtained by users directly inputting them, or they can be obtained from real-time data.

[0066] Based on this, the basic information for the calculation includes:

[0067] Receive user input of basic calculation information, and obtain the basic calculation information based on the basic calculation information, the production basic information table, and the part basic information table.

[0068] Specifically, basic information can be calculated by receiving user input or by obtaining it through other means. The content can be extracted according to the format of the production basic information table and the part basic information table to obtain the basic information.

[0069] Step S102: Obtain the corresponding calculation formula based on the basic calculation information.

[0070] Specifically, after obtaining the basic calculation information, find the corresponding calculation formula according to the basic calculation information.

[0071] Based on this, the corresponding calculation formula is obtained according to the basic calculation information, which also includes:

[0072] Obtain the inbound logistics operation process and derive the calculation logic based on the inbound logistics operation process;

[0073] The calculation formula is obtained based on the calculation logic.

[0074] Specifically, obtain the inbound logistics operation process, and form a resource framework model based on the inbound logistics operation process, such as... Figure 3 As shown, a resource estimation framework is built using PEFP as the basic carrier. Specifically, it includes basic part number information, part supplier information, packaging at each stage of remote / near-distance supplier processes, planning and estimation results for each stage of remote / near-distance processes.

[0075] Based on this, the inbound logistics operation process is obtained, and the calculation logic derived from the inbound logistics operation process includes:

[0076] Obtain the part prefix, and then obtain the part status data based on the part prefix;

[0077] Based on the component status data, the weighted usage per vehicle is obtained:

[0078] Q = K * J

[0079] Where Q represents weighted usage per vehicle, K represents usage per vehicle, and J represents part status data;

[0080] Based on the weighted average usage per vehicle, the hourly consumption of parts is obtained:

[0081] P = JPH * Q

[0082] Where P represents the hourly consumption of parts, JPH represents the workload per unit time, and Q represents the weighted consumption per vehicle.

[0083] Based on the hourly consumption of the aforementioned parts, the material flow rate is obtained:

[0084] T = P * S t

[0085] Where T represents material flow rate, P represents hourly consumption of parts, and S represents material flow rate. t This indicates the standard containment number.

[0086] Specifically, the names, part numbers, supplier names and types, and corresponding vehicle model information of the parts required for automobile assembly are entered into the basic information table of the parts. An automatic formula for capturing part number prefixes is set to count the repeated part prefixes. When the count is greater than 1, it indicates that the part is a multi-state part.

[0087] Prefix = LEFT(part number, SEARCH("-", part number) - 1)

[0088] Part status data = COUNTIFS(prefix range, prefix)

[0089] Identify the status components. If the installation ratio of each multi-status component is unknown, directly allocate the components according to their status data to obtain the weighted per-vehicle usage. Based on the production cycle, calculate the hourly consumption of the components that matches the actual usage. When there are two vehicle models being produced on mixed lines, their respective JPHs must be allocated according to the production ratio; otherwise, the calculated flow rate will be twice the actual flow rate.

[0090] Q = K * J, P = JPH * Q

[0091] Q represents weighted single-vehicle usage, K represents single-vehicle usage, J represents part status data, P represents hourly part consumption, JPH represents workload per unit time, and Q represents weighted single-vehicle usage.

[0092] The process involves entering basic information for both transport packaging and line packaging, including packaging dimensions, standard capacity, and hourly parts consumption, to calculate the material flow rate. In actual logistics operations, the objects handled may be directly packaged or pallets / racks, so it is also necessary to convert the material flow rate based on packaging to that based on pallets.

[0093] T = P * S t

[0094] T represents material flow rate, P represents hourly consumption of parts, and S represents material flow rate. t This indicates the standard containment number.

[0095] Based on this, and according to the aforementioned basic calculation information and calculation formula, the quick calculation results for logistics resources are obtained, including:

[0096] Obtain the parameters corresponding to the basic calculation information, and obtain the logistics resource quick calculation result based on the parameters, the basic calculation information, and the calculation formula.

[0097] Specifically, based on the basic information calculated, the corresponding parameters are obtained. These parameters and the values ​​of the basic information are then input into the calculation formula to obtain the quick calculation result of logistics resources.

[0098] Based on this, the parameters corresponding to the basic information to be measured are obtained, which previously included:

[0099] Obtain the basic operation time reference database and factory time parameters to obtain the parameter table corresponding to the calculation logic.

[0100] Specifically, the basic operation time reference database is formed based on the stopwatch method of each unit within the enterprise to measure the time of each operation. Since the final resource calculation has already taken into account the travel time, the operation time in the parameter database does not need to take the travel time into account again. The distance of the same operation in different factories is also different. If the travel time is included in the time parameter, it will also make the time parameter unreliable.

[0101] like Figure 4 As shown, the time parameters are defined using the smallest standard unit to ensure a wider range of applicability. Each parameter has a unit, and the unit of the subsequent material flow measurement is matched with the time parameter. Since there are differences between factories and regions, users can also collect the factory time parameters of their own factory and then fill them into the table according to the same time parameter unit, which has high flexibility and ensures measurement adaptability and accuracy.

[0102] Step S103: Based on the basic calculation information and the calculation formula, obtain the quick calculation result of logistics resources.

[0103] Specifically, by inputting the basic calculation information, the system can calculate and output the quick calculation results of logistics resources based on the calculation formula.

[0104] Based on this, the calculation formula obtained according to the aforementioned calculation logic includes:

[0105] The calculation formula is as follows:

[0106] SUM = T*(C+D) / (P*L)

[0107] Where SUM represents the quick calculation result of logistics resources, T represents the flow rate, C represents the parameter, D represents the unit travel time, P represents the working hours of a single person in a single shift, and L represents the labor load.

[0108] Specifically, after inputting information such as JPH, production time, production shift, vehicle type and production ratio, output, inventory duration, and distance, the logistics resource quick calculation result is obtained according to the calculation formula.

[0109] SUM = T*(C+D) / (P*L)

[0110] SUM represents the quick calculation result of logistics resources, T represents the flow rate, C represents the parameters, D represents the unit travel time, P represents the working hours of a single person per shift, and L represents the labor load. Equipment and personnel are matched one-to-one. The unit travel time is derived from the distance in the planning scheme or the actual distance and speed, taking into account different speeds for normal personnel travel, loaded travel, and equipment travel to ensure the rationality of the calculation.

[0111] like Figure 5 As shown, the calculated results are automatically added to the resource assessment table, forming a complete resource assessment table with the input data for easy viewing by the user. Figure 6 As shown, after outputting the resource results, a planning table can be generated, taking into account the actual labor efficiency assessment of the resources. If the efficiency of certain positions is too low, the rationality of the planning scheme can be reviewed, or the merging of positions can be considered to improve efficiency, thereby achieving the goal of reducing costs and increasing efficiency.

[0112] It should be noted that the method of this embodiment can be executed by a single device, such as a computer or server. The method of this embodiment can also be applied to a distributed scenario, where multiple devices cooperate to complete the task. In such a distributed scenario, one of these devices may execute only one or more steps of the method of this embodiment, and the multiple devices will interact with each other to complete the method described.

[0113] It should be noted that the above description describes some embodiments of the present invention. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps described in the claims may be performed in a different order than that shown in the above embodiments and still achieve the desired results. Furthermore, the processes depicted in the drawings do not necessarily require a specific or sequential order to achieve the desired results. In some embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0114] The technical solutions of this invention will be clearly and completely described below with reference to the embodiments thereof. Obviously, the described embodiments are only a part of the embodiments of this invention, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.

[0115] Example 1

[0116] Example: This factory is in LOC mode, producing two car models per shift, with a shift duration of 10 hours and a JPH of 30. Calculate the amount of resources required to configure this factory.

[0117] First, obtain the basic calculation information, such as: Figure 7 and Figure 8 As shown.

[0118] The solution results are automatically output, as shown below. Figure 9 As shown.

[0119] The present invention provides a rapid calculation method for inbound logistics resources of automobile manufacturers, which has the following advantages:

[0120] 1. Simple and easy to use: It is easy for people with different business backgrounds to quickly master the knowledge of resource measurement. The model is built with the user experience fully considered and the input items of the model are reduced. Planners only need to import the basic data of the planning scheme. The intermediate measurement process has been recorded and solidified, and the measurement results can be obtained directly.

[0121] 2. High Agility: Quickly outputs calculation results, reduces the preparation time for resource allocation output in all stages of the factory process, and increases the agility of the OEM's production plan adjustment.

[0122] 3. Average calculation efficiency improved by 34%: In the resource calculation process, there are many calculation steps, nested formulas and judgment options, which consumes a lot of time. Planners need to rebuild the calculation every time. This model records and solidifies the resource calculation process of the integrated logistics model, reducing the repetitive work of planners, improving calculation efficiency and reducing the error rate: reducing the error rate of resource calculation and reducing the cost of error correction.

[0123] 4. Establish measurement standards: standardize the resource measurement process and converge the results within the technical system.

[0124] 5. Shorten the training cycle for new employees: The model uses logistics flow and process as the basis for calculation and classification. By familiarizing themselves with the model, newly hired engineers can quickly become familiar with the overall business scenario and professional knowledge of automotive logistics, thus shortening the talent training cycle.

[0125] 6. High flexibility and accuracy: In the integrated logistics model for automobiles entering the factory, the differences between different projects are mainly reflected in the differences in basic parameters and logistics distance. In this model, the basic parameters are defined as dynamic parameters. Logistics planners can refer to the values ​​and fine-tune the parameter values ​​in combination with the actual situation of the project. The logistics distance is filled in according to the actual distance between two points in each driving link, and the final resource results will be accurate.

[0126] Based on the same inventive concept, and corresponding to any of the above embodiments, the present invention also provides a rapid calculation system for inbound logistics resources of automobile manufacturers.

[0127] refer to Figure 10 The aforementioned system for rapid calculation of inbound logistics resources at automobile OEMs includes:

[0128] The information acquisition module 10 is used to acquire basic calculation information; wherein, the basic calculation information includes: basic production information and basic part information;

[0129] Formula correspondence module 11 is used to obtain the corresponding calculation formula based on the calculation basic information;

[0130] The result calculation module 12 is used to obtain the logistics resource quick calculation result based on the basic calculation information and the calculation formula.

[0131] For ease of description, the above system is described by dividing it into various modules based on their functions. Of course, in implementing this invention, the functions of each module can be implemented in one or more software and / or hardware components.

[0132] The system described in the above embodiments is used to implement a corresponding quick calculation method for inbound logistics resources of automobile manufacturers in any of the foregoing embodiments, and has the beneficial effects of the corresponding method embodiments, which will not be repeated here.

[0133] Based on the same inventive concept, corresponding to the methods of any of the above embodiments, the present invention also provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the program, it implements the method for quick calculation of inbound logistics resources of automobile manufacturers as described in any of the above embodiments.

[0134] Figure 11 This embodiment illustrates a more specific hardware structure of an electronic device, which may include a processor 1010, a memory 1020, an input / output interface 1030, a communication interface 1040, and a bus 1050. The processor 1010, memory 1020, input / output interface 1030, and communication interface 1040 are interconnected internally via the bus 1050.

[0135] The processor 1010 can be implemented using a general-purpose CPU (Central Processing Unit), microprocessor, application-specific integrated circuit (ASIC), or one or more integrated circuits, and is used to execute relevant programs to implement the technical solutions provided in the embodiments of this specification.

[0136] The memory 1020 can be implemented in the form of ROM (Read Only Memory), RAM (Random Access Memory), static storage device, dynamic storage device, etc. The memory 1020 can store the operating system and other applications. When the technical solutions provided in the embodiments of this specification are implemented by software or firmware, the relevant program code is stored in the memory 1020 and is called and executed by the processor 1010.

[0137] The input / output interface 1030 is used to connect input / output modules to realize information input and output. Input / output modules can be configured as components within the device (not shown in the figure) or externally connected to the device to provide corresponding functions. Input devices may include keyboards, mice, touchscreens, microphones, various sensors, etc., while output devices may include displays, speakers, vibrators, indicator lights, etc.

[0138] The communication interface 1040 is used to connect a communication module (not shown in the figure) to enable communication between this device and other devices. The communication module can communicate via wired means (such as USB, Ethernet cable, etc.) or wireless means (such as mobile network, WIFI, Bluetooth, etc.).

[0139] Bus 1050 includes a pathway for transmitting information between various components of the device, such as processor 1010, memory 1020, input / output interface 1030, and communication interface 1040.

[0140] It should be noted that although the above-described device only shows the processor 1010, memory 1020, input / output interface 1030, communication interface 1040, and bus 1050, in specific implementations, the device may also include other components necessary for normal operation. Furthermore, those skilled in the art will understand that the above-described device may only include the components necessary for implementing the embodiments of this specification, and not necessarily all the components shown in the figures.

[0141] The electronic device described in the above embodiments is used to implement a corresponding quick calculation method for inbound logistics resources of automobile manufacturers in any of the foregoing embodiments, and has the beneficial effects of the corresponding method embodiments, which will not be repeated here.

[0142] Those skilled in the art should understand that the discussion of any of the above embodiments is merely exemplary and is not intended to imply that the scope of the invention (including the claims) is limited to these examples; within the framework of the invention, the technical features of the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations of different aspects of the embodiments of the invention as described above, which are not provided in the details for the sake of brevity.

[0143] Any process or method description in the flowchart or otherwise herein can be understood as representing a module, segment, or portion of code comprising one or more executable instructions for implementing a particular logical function or process, and the scope of the preferred embodiments of the invention includes additional implementations in which functions may be performed not in the order shown or discussed, including substantially simultaneously or in reverse order depending on the functions involved, as will be understood by those skilled in the art to which embodiments of the invention pertain.

[0144] Additionally, to simplify the description and discussion, and to avoid obscuring the embodiments of the invention, the well-known power / ground connections to integrated circuit (IC) chips and other components may or may not be shown in the provided drawings. Furthermore, the apparatus may be shown in block diagram form to avoid obscuring the embodiments of the invention, and this also takes into account the fact that the details of implementation of these block diagram apparatuses are highly dependent on the platform on which the embodiments of the invention will be implemented (i.e., these details should be fully understood by those skilled in the art). While specific details (e.g., circuits) have been set forth to describe exemplary embodiments of the invention, it will be apparent to those skilled in the art that the embodiments of the invention may be implemented without these specific details or with variations thereof. Therefore, these descriptions should be considered illustrative rather than restrictive.

[0145] Although the invention has been described in conjunction with specific embodiments thereof, many substitutions, modifications, and variations of these embodiments will be apparent to those skilled in the art from the foregoing description. For example, other memory architectures (e.g., dynamic RAM (DRAM)) may be used with the embodiments discussed.

[0146] The embodiments of this invention are intended to cover all such substitutions, modifications, and variations falling within the broad scope of the appended claims. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the embodiments of this invention should be included within the protection scope of this invention.

Claims

1. A rapid calculation method for inbound logistics resources at automobile OEMs, characterized in that, include: Obtain basic measurement information; wherein, the basic measurement information includes: production basic information and part basic information; The corresponding calculation formula is obtained based on the basic calculation information. Based on the basic calculation information and the calculation formula, the quick calculation result of logistics resources is obtained.

2. The method for rapid calculation of inbound logistics resources of automobile manufacturers according to claim 1, characterized in that, The process of obtaining basic measurement information previously included: Establish a production basic information table and a parts basic information table.

3. The method for rapid calculation of inbound logistics resources of automobile manufacturers according to claim 2, characterized in that, The acquisition of basic measurement information includes: Receive user input of basic calculation information, and obtain the basic calculation information based on the basic calculation information, the production basic information table, and the part basic information table.

4. The method for rapid calculation of inbound logistics resources of automobile manufacturers according to claim 1, characterized in that, The step of obtaining the corresponding calculation formula based on the basic calculation information also includes: Obtain the inbound logistics operation process and derive the calculation logic based on the inbound logistics operation process; The calculation formula is obtained based on the calculation logic.

5. The method for rapid calculation of inbound logistics resources of automobile manufacturers according to claim 4, characterized in that, The process of obtaining the inbound logistics operation flow and the calculation logic derived from the inbound logistics operation flow include: Obtain the part prefix, and then obtain the part status data based on the part prefix; Based on the component status data, the weighted usage per vehicle is obtained: Q = K * J Where Q represents weighted usage per vehicle, K represents usage per vehicle, and J represents part status data; Based on the weighted average usage per vehicle, the hourly consumption of parts is obtained: P = JPH * Q Where P represents the hourly consumption of parts, JPH represents the workload per unit time, and Q represents the weighted consumption per vehicle. Based on the hourly consumption of the aforementioned parts, the material flow rate is obtained: T=P*S t Where T represents material flow rate, P represents hourly consumption of parts, and S represents material flow rate. t This indicates the standard containment number.

6. The method for rapid calculation of inbound logistics resources of automobile manufacturers according to claim 1, characterized in that, The process of obtaining the logistics resource quick calculation result based on the basic calculation information and the calculation formula includes: Obtain the parameters corresponding to the basic calculation information, and obtain the logistics resource quick calculation result based on the parameters, the basic calculation information, and the calculation formula.

7. The method for rapid calculation of inbound logistics resources of automobile manufacturers according to claim 1, characterized in that, The process of obtaining the parameters corresponding to the basic information to be measured also includes: Obtain the basic operation time reference database and factory time parameters to obtain the parameter table corresponding to the calculation logic.

8. The method for rapid calculation of inbound logistics resources of automobile manufacturers according to claim 4, characterized in that, The calculation formula obtained based on the calculation logic includes: The calculation formula is as follows: SUM = T*(C+D) / (P*L) Where SUM represents the quick calculation result of logistics resources, T represents the flow rate, C represents the parameter, D represents the unit travel time, P represents the working hours of a single person in a single shift, and L represents the labor load.

9. A rapid calculation system for inbound logistics resources of automobile OEMs, characterized in that, To implement the method for rapid calculation of inbound logistics resources of automobile manufacturers as described in claims 1-8, the method includes: The information acquisition module is used to acquire basic calculation information; wherein, the basic calculation information includes: basic production information and basic part information; The formula correspondence module is used to obtain the corresponding calculation formula based on the basic calculation information. The result calculation module is used to obtain the quick calculation result of logistics resources based on the basic calculation information and the calculation formula.

10. An apparatus 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 according to any one of claims 1 to 8.