Data processing method and device in commodity object circulation process and electronic equipment

By establishing a circulation process database and edge collection equipment, we can achieve full-time tracking of commodity circulation and automatic data processing, solve the problem of commodity circulation information isolation, improve circulation efficiency and the uniformity of data management, and is suitable for high-turnover retail models.

CN120707032AInactive Publication Date: 2025-09-26KUNSHAN SIMAIER PACKAGING PROD
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Patent Information

Application Number
CN202510848375.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-09-26
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing data processing methods for the commodity object circulation process are relatively backward. Commodity circulation information is isolated between different systems, making it impossible to achieve full-process workflow monitoring. Switching between multiple operating systems is time-consuming and labor-intensive, and automation transformation is difficult. It is not suitable for business environments with high-turnover retail models.

Method used

A data processing method for the commodity object circulation process is adopted, including data collection and evaluation information association during the commodity warehousing, storage and distribution process, to establish a circulation process database, and realize automatic data processing and unified management through the main control system and edge acquisition equipment.

Benefits of technology

It realizes the full-time tracking of commodity circulation, improves circulation efficiency, realizes unified management and optimization of data, reduces the proportion of manual participation, and is suitable for high-turnover retail models.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of supply chains, in particular to a data processing method and device for a commodity object circulation process and electronic equipment, and the data processing method for the commodity object circulation process comprises the following steps: storing a commodity, distributing a unique code, and associating seller circulation information of the commodity and first evaluation information of a seller; when the commodity is stored, obtaining intermediate circulation information and second evaluation information of the commodity through a preset edge collection device; during commodity distribution, performing data tracking to obtain buyer circulation information of the commodity and third evaluation information of the buyer; and establishing a circulation process database, and performing circulation tracking and optimization management of the commodities according to the circulation process database. According to the invention, full-time tracking of commodity circulation can be realized, automatic processing of data generated in commodity circulation is realized by monitoring the workflow of commodity circulation, the commodity circulation efficiency is improved, and circulation tracking and optimization management of commodities can be carried out according to the circulation process database.
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Description

Technical Field

[0001] The present invention relates to the field of supply chain technology, and in particular to a data processing method, device and electronic equipment for the commodity circulation process. Background Art

[0002] With the continuous development of the internet, the retail industry is facing unprecedented management pressure. With the rise of high-turnover retail models, the circulation of goods is accelerating. More and more goods need to be sold from factories to consumers in a shorter period of time. With the normal circulation of goods as the basic premise, it is particularly important to supervise the circulation process of goods. The circulation process of goods involves the mutual cooperation between multiple operating systems. Different operating systems need to implement task processing and data maintenance for different circulation links. Therefore, whether it is online or offline sales, the tremendous pressure brought by the rapid circulation of goods is unbearable for traditional manual processing or simple e-commerce systems. At the same time, the existing management system has information isolation between upstream and downstream, and it is impossible to achieve full-process workflow monitoring. The multiple data that monitoring personnel need to pay attention to may be distributed in different operating systems. Supervision requires switching between multiple operating systems, which is highly complex, time-consuming and labor-intensive. At the same time, abnormal events are prone to occur due to information asynchrony, resulting in waste of resources and high operating costs. Summary of the Invention

[0003] The technical problem to be solved by the present invention is that the existing data processing method for the commodity object circulation process is relatively backward, and the commodity circulation information is isolated from each other between different systems, which makes it impossible to achieve full-process workflow monitoring. Switching between multiple operating systems is time-consuming and labor-intensive, and automation transformation is difficult. It is not suitable for the business environment of a high-turnover retail model.

[0004] To solve the above technical problems, the first aspect of the present invention adopts the following technical solution: a data processing method for a commodity object circulation process, comprising the following steps:

[0005] When a product enters the warehouse, it is assigned a unique code, and the seller's circulation information and the seller's first review information are associated with the product;

[0006] When storing goods, the intermediate flow information and second evaluation information of the goods are obtained through the preset edge collection device;

[0007] When distributing goods, data tracking is performed to obtain the buyer flow information and the buyer's third-party evaluation information of the goods;

[0008] Establish a circulation process database, store the seller's circulation information, first evaluation information, intermediate circulation information, second evaluation information, buyer's circulation information and third evaluation information in the circulation process database, and track and optimize the circulation of goods based on the circulation process database.

[0009] When the present invention is working, it can realize the full-time tracking of commodity circulation, realize the automatic processing of data generated in commodity circulation by monitoring the workflow of commodity circulation, and improve the efficiency of commodity circulation. At the same time, it can also establish a circulation process library to count the circulation information and evaluation information of the commodity throughout its life cycle, realize the unified management of data, and facilitate the circulation tracking and optimized management of commodities according to the circulation process database.

[0010] As a preference, when a product is put into storage, a unique code is assigned, and the seller's circulation information and the seller's first review information are associated, the following steps are used:

[0011] A1: Design the code based on the preset coding rules, assign a unique code to each product, and generate a readable label to attach to the product;

[0012] A2: Collect the seller's circulation information and first evaluation information. The seller's circulation information includes the product's outbound status, product transportation status, and product inbound status. The first evaluation information includes the product's metadata, traceability track, and compliance documents. Use the knowledge graph to establish a relationship network between the product's unique code and the seller's circulation information and first evaluation information, and store it in the circulation process database.

[0013] Preferably, step A2 further includes the following steps: when the goods are put into storage, the seller's circulation information and first evaluation information in the circulation process database are called by the preset main control system, and real-time data stream processing is performed in combination with the preset data processing algorithm to monitor abnormal events. When an abnormal event is monitored, the automated processing steps are executed.

[0014] Preferably, when obtaining the intermediate flow information and the second evaluation information of the commodity through the preset edge collection device, the following steps are adopted:

[0015] B1: Deploy several edge data collection devices, including inbound and outbound scanning devices, environmental detection systems, and edge computing units. All of these edge data collection devices communicate with the pre-set master control system.

[0016] B2: The main control system controls the corresponding edge collection devices to collect the storage status of the goods and obtain intermediate flow information. At the same time, the main control system processes the information sent back by the edge collection devices through a preset data processing algorithm, performs real-time abnormal event monitoring, integrates the monitoring data to generate second evaluation information, and stores it in the flow process database.

[0017] Preferably, step B2 further includes the following steps: the edge acquisition device also includes a staff terminal, and when the main control system monitors an abnormal event, it assists the staff in determining the abnormal event and performing corresponding processing by connecting to the staff terminal.

[0018] Preferably, step B2 further includes the following steps: deploying an edge vision model, which monitors the goods in real time according to a preset evaluation index system, automatically collects the associated data of the goods during storage at all times, and pre-processes the associated data before transmitting it back to the flow process database of the main control system.

[0019] As a preferred method, when distributing goods, the following steps are used to track data and obtain buyer flow information and third-party evaluation information of the goods:

[0020] C1: When an order is generated, an identification ID is created for the buyer based on their information. An associated record is created based on the unique code of the purchased product. The product is sold to the buyer, and the buyer's transaction information, including the product's sales status, is recorded to complete the transaction.

[0021] C2: After the product is sold, a buyer feedback mechanism is established to collect buyer feedback information, obtain third-party evaluation information, and store it in the circulation process database.

[0022] As a preference, the circulation of goods is tracked and optimized according to the circulation process database. The following steps are adopted to deploy a large model for commodity management, and to track the data of the entire circulation process of goods in combination with the circulation process database. When the processing steps are output and executed according to the monitored abnormal events, an optimization plan for optimizing the management of commodity circulation is output at the same time.

[0023] To solve the above technical problems, the second aspect of the present invention adopts the following technical solution: a data processing system for commodity circulation, applying the above-mentioned data processing method for commodity object circulation, comprises:

[0024] The main control system is used to monitor the entire flow of goods and transfer data to track and optimize the flow of goods;

[0025] The circulation process database is used to store the seller circulation information, first evaluation information, intermediate circulation information, second evaluation information, buyer circulation information and third evaluation information of the product;

[0026] The edge collection system is used to deploy several edge collection devices to achieve full-time status collection of goods;

[0027] Communication system, used to realize data transmission between the main control system and the edge acquisition system;

[0028] The buyer feedback module is used to track buyer feedback information after the product is sold.

[0029] In order to solve the above-mentioned technical problems, the second aspect of the present invention adopts the following technical solution: an electronic device, applying the data processing method for the commodity object circulation process as described above: comprising a processor and a memory for storing executable program code, the processor being connected to the memory, and the processor running a program corresponding to the executable program code by reading the executable program code stored in the memory, so as to execute the data processing method for the commodity object circulation process as described above.

[0030] The beneficial technical effects of the present invention include:

[0031] The present invention can realize the full-time tracking of commodity circulation, realize the automatic processing of data generated in commodity circulation by monitoring the workflow of commodity circulation, and improve the efficiency of commodity circulation. At the same time, it can also establish a circulation process library to count the circulation information and evaluation information of the commodity throughout its life cycle, realize the unified management of data, and facilitate the circulation tracking and optimized management of commodities based on the circulation process database.

[0032] Other features and advantages of the present invention will be disclosed in detail in the following specific embodiments and drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] The present invention will be further described below with reference to the accompanying drawings:

[0034] Figure 1 A workflow diagram of a data processing method, device, and electronic device for a commodity object circulation process;

[0035] Figure 2 This is a workflow diagram for obtaining the intermediate flow information and second evaluation information of goods through the preset edge collection device. DETAILED DESCRIPTION

[0036] The following is an explanation and description of the technical solutions of the embodiments of the present invention in conjunction with the drawings of the embodiments of the present invention. However, the following embodiments are only preferred embodiments of the present invention and are not exhaustive. Based on the embodiments in the implementation manner, other embodiments obtained by those skilled in the art without creative work are all within the scope of protection of the present invention.

[0037] In the following description, terms such as "inside", "outside", "up", "down", "left", "right", etc. that indicate directions or positional relationships are only used to facilitate the description of the embodiments and simplify the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operate in a specific direction. Therefore, they should not be understood as limiting the present invention.

[0038] Example 1:

[0039] See also Figure 1This embodiment discloses a data processing method for a commodity object circulation process, comprising the following steps:

[0040] When a product enters the warehouse, it is assigned a unique code, and the seller's circulation information and the seller's first review information are associated with the product;

[0041] When storing goods, the intermediate flow information and second evaluation information of the goods are obtained through the preset edge collection device;

[0042] When distributing goods, data tracking is performed to obtain the buyer flow information and the buyer's third-party evaluation information of the goods;

[0043] Establish a circulation process database, store the seller's circulation information, first evaluation information, intermediate circulation information, second evaluation information, buyer's circulation information and third evaluation information in the circulation process database, and track and optimize the circulation of goods based on the circulation process database.

[0044] When this embodiment is working, it can realize the full-time tracking of commodity circulation, realize the automatic processing of data generated in commodity circulation by monitoring the workflow of commodity circulation, and improve the efficiency of commodity circulation. At the same time, it can also establish a circulation process library to count the circulation information and evaluation information of the commodity throughout its life cycle, realize unified data management, and facilitate the circulation tracking and optimized management of commodities based on the circulation process database.

[0045] In specific implementation, when goods are put into storage, unique codes are assigned, and the seller's circulation information and the seller's first review information are associated, the following steps are taken:

[0046] A1: Design the code based on the preset coding rules, assign a unique code to each product, and generate a readable label to attach to the product;

[0047] A2: Collect the seller's circulation information and first evaluation information. The seller's circulation information includes the product's outbound status, product transportation status, and product inbound status. The first evaluation information includes the product's metadata, traceability track, and compliance documents. Use the knowledge graph to establish a relationship network between the product's unique code and the seller's circulation information and first evaluation information, and store it in the circulation process database.

[0048] When working, the code is designed through the preset coding rules, a unique code is assigned to each product, and a readable label is generated and attached to the product. The following steps are adopted: when the order is triggered, the seller picks the goods and generates a unique code for each product. In the specific implementation, structured codes can be generated according to the supplier ID, product category ID, warehousing timestamp, etc., and several random anti-collision codes can be added. After the unique code is generated, a readable label is attached to the product through a printing or writing device, so that in the subsequent product circulation, the staff can view the relevant information of the product at any time through the staff terminal.

[0049] Preferably, the seller's flow information includes the commodity outbound status, commodity transportation status and commodity inbound status. For example, fresh commodities require higher storage conditions due to their short insurance period. Therefore, monitoring the commodity outbound status, commodity transportation status and commodity inbound status throughout the process can timely detect abnormal events. In step A2, the following steps are also included: when the commodity enters the warehouse, the seller's flow information and first evaluation information in the flow process database are called by the preset main control system, and real-time data stream processing is performed in combination with the preset data processing algorithm to monitor abnormal events. When an abnormal event is monitored, an automated processing step is executed. For example, when abnormal events such as refrigeration failure during transportation, too long warehousing time, damage during the initial inspection of incoming quality occur, they can be optimized and managed by the preset data processing algorithm or further through the commodity management large model. For example, when the commodity is damaged, a loss report can be automatically generated for return or loss reporting, etc., avoiding the proportion of manual participation, reducing labor costs and additional losses.

[0050] In specific implementation, the first evaluation information includes the metadata, traceability track and compliance documents of the product. More specifically, it includes supplier ID, product production batch, place of origin, raw material traceability, transportation tool ID, inspection timestamp, quality inspection report, contract information, etc. This information is stored in the circulation process database and optimized through preset data processing algorithms or further through the product management model. For example, when the product information is different from the contract information or the supplier qualification expires, the warehousing process is automatically interrupted without contacting the relevant responsible person for confirmation. When it is determined that it fails, the return procedure is executed. Through automated workflow monitoring, two-way verification of physical and data can be achieved, thereby improving work efficiency.

[0051] Preferably, when obtaining the intermediate flow information and the second evaluation information of the product through the preset edge collection device, the following steps are adopted:

[0052] B1: Deploy several edge data collection devices, including inbound and outbound scanning devices, environmental detection systems, and edge computing units. All of these edge data collection devices communicate with the pre-set master control system.

[0053] B2: The main control system controls the corresponding edge collection devices to collect the storage status of the goods and obtain intermediate flow information. At the same time, the main control system processes the information returned by the edge collection devices through a preset data processing algorithm, performs real-time abnormal event monitoring, and integrates the monitoring data to generate secondary evaluation information. During operation, the secondary evaluation information includes possible abnormal events of the goods, buyer evaluations of the goods, and staff evaluations, and is stored in the flow process database.

[0054] In specific implementation, the edge collection equipment includes various collection devices. For example, the in-and-out scanning equipment can adopt a machine vision scanning system to determine the in-and-out status of the goods by archiving images. Preferably, the edge vision model can be deployed in the edge computing unit, so that the edge vision model can monitor the goods in real time according to the preset evaluation index system, automatically collect the related data of the goods during storage at all times, pre-process the related data and send it back to the flow process database of the main control system, which can realize the edge detection of the goods, thereby reducing the system pressure and improving the overall response speed. For example, when the goods are stored, the edge vision model can be combined with the environmental information of the environmental detection system to make more accurate judgments. Changes in goods can effectively improve the speed of identifying abnormal events. Preferably, step B2 also includes the following steps: the edge acquisition device also includes a staff terminal. When the main control system monitors an abnormal event, it assists the staff in determining the abnormal event and corresponding processing by connecting to the staff terminal. When an abnormal event is detected in a product, the staff terminal can be used to promptly remind the staff to go for manual confirmation and processing. In the retail industry, when an abnormal event is detected, the sales status of the abnormal product can be interrupted according to the unique code of the abnormal product, making it impossible for the buyer to ship the product out of the warehouse, thereby avoiding the sale of abnormal products. It has high real-time performance and ensures user experience.

[0055] Better,

[0056] In this embodiment, when distributing goods, the following steps are used to track data and obtain buyer flow information and third-party evaluation information of the goods:

[0057] C1: When an order is generated, an identification ID is created for the buyer based on their information. An associated record is created based on the unique code of the purchased product. The product is sold to the buyer, and the buyer's transaction information, including the product's sales status, is recorded to complete the transaction.

[0058] C2: After the product is sold, a buyer feedback mechanism is established to collect buyer feedback information, obtain third-party evaluation information, and store it in the circulation process database.

[0059] Preferably, when tracking and optimizing the circulation of goods according to the circulation process database, the following steps are adopted: deploying a large commodity management model, combining the circulation process database to track data of the entire circulation process of the goods, outputting processing steps and executing them according to the monitored abnormal events, and outputting an optimization plan for optimizing the management of commodity circulation. During the specific implementation, several optimization goals can be set, and the model capabilities and performance of the large commodity management model can be adjusted through pre-training, and the model can be deployed in the main control system to monitor the entire circulation process of the goods. It is suitable for the management of goods with increasingly faster circulation speeds, reduces the proportion of manual participation, has all-time and all-weather monitoring capabilities, and can effectively improve economic benefits.

[0060] Example 2:

[0061] See also Figure 2 This embodiment provides a data processing device for commodity circulation, which applies the data processing method for commodity object circulation process described in the above embodiment, including:

[0062] The main control system is used to monitor the entire flow of goods and transfer data to track and optimize the flow of goods;

[0063] The circulation process database is used to store the seller circulation information, first evaluation information, intermediate circulation information, second evaluation information, buyer circulation information and third evaluation information of the product;

[0064] The edge collection system is used to deploy several edge collection devices to achieve full-time status collection of goods;

[0065] Communication system, used to realize data transmission between the main control system and the edge acquisition system;

[0066] The buyer feedback module is used to track buyer feedback information after the product is sold.

[0067] In specific implementation, the edge acquisition equipment includes in-and-out scanning equipment, environmental detection system and edge computing unit, and more specifically also includes label scanning module, machine vision scanning system, NFC sensing unit, temperature and humidity detection module, air quality detection module, weighing unit, etc. Each part is connected to the main control module through the communication module. In specific implementation, the communication module can select any suitable communication device according to actual needs, such as Internet of Things unit, mobile gateway, etc., which can realize the deployment of the edge acquisition module on the circulation path of the goods.

[0068] Example 3:

[0069] This embodiment provides an electronic device that applies the data processing method for the commodity object circulation process described in the above embodiment: it includes a processor and a memory for storing executable program code, the processor is connected to the memory, and the processor runs the program corresponding to the executable program code by reading the executable program code stored in the memory, so as to execute the data processing method for the commodity object circulation process described in the above embodiment.

[0070] The beneficial technical effects of this embodiment include: the present invention can realize full-time tracking of commodity circulation, realize automatic processing of data generated in commodity circulation by monitoring the workflow of commodity circulation, improve the efficiency of commodity circulation, and at the same time, can also establish a circulation process library to count the circulation information and evaluation information of the commodity throughout its life cycle, realize unified data management, and facilitate commodity circulation tracking and optimized management based on the circulation process database.

[0071] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Those skilled in the art will understand that the present invention includes, but is not limited to, the contents described in the drawings and the above specific embodiments. Any modifications that do not deviate from the functional and structural principles of the present invention are intended to be included within the scope of the claims.

Claims

1. A data processing method for a commodity object circulation process, characterized in that: The following steps are involved: When a product enters the warehouse, it is assigned a unique code, and the seller's circulation information and the seller's first review information are associated with the product; When storing goods, the intermediate flow information and second evaluation information of the goods are obtained through the preset edge collection device; When distributing goods, data tracking is performed to obtain the buyer flow information and the buyer's third-party evaluation information of the goods; Establish a circulation process database, store the seller's circulation information, first evaluation information, intermediate circulation information, second evaluation information, buyer's circulation information and third evaluation information in the circulation process database, and track and optimize the circulation of goods based on the circulation process database.

2. The data processing method for the commodity object circulation process according to claim 1, characterized in that: When a product is put into storage, a unique code is assigned, and the product's seller circulation information and the seller's first review information are associated, the following steps are used: A1: Design the code based on the preset coding rules, assign a unique code to each product, and generate a readable label to attach to the product; A2: Collect the seller's circulation information and first evaluation information. The seller's circulation information includes the product's outbound status, product transportation status, and product inbound status. The first evaluation information includes the product's metadata, traceability track, and compliance documents. Use the knowledge graph to establish a relationship network between the product's unique code and the seller's circulation information and first evaluation information, and store it in the circulation process database.

3. The data processing method for the commodity object circulation process according to claim 2, characterized in that: In step A2, the following steps are also included: when the goods are put into the warehouse, the seller's circulation information and first evaluation information in the circulation process database are called by the preset main control system, and real-time data stream processing is performed in combination with the preset data processing algorithm to monitor abnormal events. When an abnormal event is monitored, the automated processing steps are executed.

4. The data processing method for the commodity object circulation process according to claim 1, characterized in that: When obtaining the intermediate flow information and second evaluation information of the product through the preset edge collection device, the following steps are taken: B1: Deploy several edge data collection devices, including inbound and outbound scanning devices, environmental detection systems, and edge computing units. All of these edge data collection devices communicate with the pre-set master control system. B2: The main control system controls the corresponding edge collection devices to collect the storage status of the goods and obtain intermediate flow information. At the same time, the main control system processes the information sent back by the edge collection devices through a preset data processing algorithm, performs real-time abnormal event monitoring, integrates the monitoring data to generate second evaluation information, and stores it in the flow process database.

5. The data processing method for the commodity object circulation process according to claim 4, characterized in that: In the step B2, the following steps are also included: the edge acquisition device also includes a staff terminal. When the main control system monitors an abnormal event, it assists the staff in determining the abnormal event and performing corresponding processing by connecting to the staff terminal.

6. The data processing method for commodity object circulation process according to claim 4, characterized in that: In the step B2, the following steps are also included: deploying an edge vision model, the edge vision model monitors the goods in real time according to a preset evaluation index system, automatically collects the related data of the goods during storage at all times, pre-processes the related data, and then returns it to the flow process database of the main control system.

7. The data processing method for commodity object circulation process according to claim 1, characterized in that: When distributing goods, the following steps are used to track the buyer flow information and the buyer's third-party evaluation information of the goods: C1: When an order is generated, an identification ID is created for the buyer based on their information. An associated record is created based on the unique code of the purchased product. The product is sold to the buyer, and the buyer's transaction information, including the product's sales status, is recorded to complete the transaction. C2: After the product is sold, a buyer feedback mechanism is established to collect buyer feedback information, obtain third-party evaluation information, and store it in the circulation process database.

8. The data processing method for commodity object circulation process according to claim 1, characterized in that: The circulation of goods is tracked and optimized according to the circulation process database. The following steps are adopted to deploy the large commodity management model, and to track the data of the entire circulation process of goods in combination with the circulation process database. When the processing steps are output and executed according to the monitored abnormal events, the optimization plan for optimizing the management of commodity circulation is output at the same time.

9. A data processing system for commodity circulation, applying the data processing method for commodity circulation according to any one of claims 1 to 7, characterized in that: include: The main control system is used to monitor the entire flow of goods and transfer data to track and optimize the flow of goods; The circulation process database is used to store the seller circulation information, first evaluation information, intermediate circulation information, second evaluation information, buyer circulation information and third evaluation information of the product; The edge collection system is used to deploy several edge collection devices to collect the status of goods at all times; Communication system, used to realize data transmission between the main control system and the edge acquisition system; The buyer feedback module is used to track buyer feedback information after the product is sold.

10. An electronic device, using the data processing method for the commodity object circulation process according to any one of claims 1 to 7, characterized in that: It includes a processor and a memory for storing executable program code, the processor is connected to the memory, and the processor runs a program corresponding to the executable program code by reading the executable program code stored in the memory, so as to execute the data processing method for the commodity object circulation process as described in any one of claims 1 to 7.