Grain supply chain management and control platform based on industrial internet identification analysis system

By installing data acquisition sensors on grain production and processing equipment and assigning them unique identifiers, the problems of incomplete equipment data collection and chaotic transmission have been solved, enabling real-time control and data sharing of the grain supply chain and improving management efficiency.

CN121879274APending Publication Date: 2026-04-17BEIJING TECH & BUSINESS UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
BEIJING TECH & BUSINESS UNIV
Filing Date
2023-06-05
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In the current grain supply chain management process, incomplete data collection from equipment and chaotic data transmission affect the effectiveness of management.

Method used

Data acquisition sensors are installed on grain production and processing equipment, and unique identifiers are assigned to them through data identification modules. The data acquisition unit transmits the data to the production control platform, which then parses and updates the displayed data and shares it through the industrial internet to achieve data interconnection.

Benefits of technology

It enables complete control of the grain supply chain, allowing managers to acquire and filter data in real time, actively control equipment, support video surveillance, and achieve interconnection through a data sharing platform.

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Abstract

The invention discloses a grain supply chain management and control platform based on an industrial internet identification analysis system, and relates to the technical field of grain supply chains. The platform comprises a data acquisition unit, a production management and control platform and an online sharing platform, the data acquisition unit acquires production data of production and processing equipment in real time through a data acquisition sensor, endows the production data with a unique identifier and sends the unique identifier to the production management and control platform; the production management and control platform decodes the identifier of each piece of production data according to a pre-stored identifier analysis code, obtains equipment and time for collecting the production data, updates and displays the equipment and time in real time, and also provides a control instruction module to actively control each piece of production processing equipment; and the online sharing platform receives the data sent by the production management and control platform through the industrial internet for sharing. According to the established management and control platform, real-time acquisition of various data, automatic refreshing of real-time data, active control of equipment, data interconnection and intercommunication and the like are realized, and effective management and control of a grain supply chain can be realized.
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Description

Technical Field

[0001] This invention relates to the field of grain supply chain technology, specifically to a grain supply chain management and control platform based on the Industrial Internet identifier resolution system. Background Technology

[0002] The food supply chain refers to the network structure formed by all upstream and downstream organizations in the process of food production and circulation, from the procurement of food production materials to the production and processing of food, and finally to the provision of food and services to end consumers.

[0003] Grain processing refers to the business activities of transforming raw grains into semi-finished or finished grains, or vice versa. The entire grain production and processing process involves various equipment, and the operational data of this equipment affects the quality and grade of grain production. Furthermore, effective management and control of the grain supply chain is a crucial component. However, current grain supply chain management suffers from incomplete data collection on the equipment used in grain production and processing, and the collected data is prone to confusion when transmitted to the production management platform, impacting the effectiveness of management. Therefore, how to effectively manage the grain supply chain has become a critical issue that urgently needs to be addressed in my country's grain supply chain technology field. Summary of the Invention

[0004] To address existing issues in grain supply chain management, this invention provides a grain supply chain management platform based on the Industrial Internet Identifier Resolution System. Following the entire grain production and processing process, data acquisition sensors are installed on production and processing equipment to collect various production data at each stage of production and processing. This establishes a production management platform that can acquire various data in real time, automatically refresh real-time data, and actively control equipment switching speeds, etc. The acquired data can be shared with an online sharing platform via the Industrial Internet, achieving data interconnection and interoperability.

[0005] This invention provides a grain supply chain management platform based on the Industrial Internet identifier resolution system, comprising a data acquisition unit, a production management platform, and an online sharing platform, wherein:

[0006] The data acquisition unit comprises data acquisition sensors and a data identification module. Data acquisition sensors are installed on production and processing equipment at each stage of grain production and processing. These sensors collect production data in real time and transmit it to the data identification module. The data identification module assigns a unique identifier to each piece of production data. This identifier is generated by combining the equipment's data code with the acquisition time code. The data acquisition unit then transmits the uniquely identified production data to the production control platform.

[0007] The production control platform comprises a database module, a data parsing module, a data update module, and a control command module. The platform stores received data in the database module. The database module also stores the unique identifier parsing code for each production and processing equipment. The data parsing module reads the unique identifier parsing code from the database module, decodes the identifier of each piece of production data, obtains the equipment and time that collected the data, and sends it to the data update module. The data update module updates the production data of the corresponding equipment in real time based on the newly received set of "equipment-collection time-production data". Users actively control each production and processing equipment through the control command module, which sends equipment control commands to the production equipment.

[0008] The online sharing platform receives production data and control instructions from various production and processing equipment sent by the production management and control platform through the industrial internet, and sets data sharing permissions.

[0009] Furthermore, the data acquisition unit also includes a video monitoring module, which acquires real-time monitoring videos of each stage of the grain production and processing process and transmits them to the production control platform. The production control platform then displays the monitoring videos to the user.

[0010] Furthermore, the production control platform is also equipped with an information display module and an information filtering module; the information filtering module is used to filter and set the equipment production data to be displayed; the information display module is used to display the equipment production data, monitoring videos and equipment control commands.

[0011] Furthermore, the data acquisition unit is also equipped with a first communication module for information exchange between the data acquisition unit and the production control platform.

[0012] Furthermore, the production control platform is also equipped with a second communication module, which is used to realize information interaction between the production control platform and the data acquisition unit, as well as between the production control platform and the online sharing platform.

[0013] Compared with known public technologies, the technical solution provided by this invention has the following beneficial effects:

[0014] This invention discloses a grain supply chain management platform based on an industrial internet identifier resolution system, which realizes a complete grain supply chain management mechanism. In this platform, data acquisition sensors collect data from equipment at each stage of the grain production and processing process. A data identification module assigns a unique identifier to the collected production data and transmits it to the production management platform. Upon receiving the production data, the production management platform uses a data parsing module to parse the data according to the unique identifier resolution code pre-stored in the database. A data update module then updates and displays the parsed data, enabling real-time acquisition and automatic data updates for easy viewing by management personnel. Simultaneously, a monitoring video module acquires video information during the production process and transmits it to the production management platform via a first communication module for management viewing. Furthermore, management personnel can use an information filtering module to set filtered information for display and can actively control equipment switching speeds through a control command module. All acquired data can be shared with an online sharing platform via the industrial internet, achieving data interconnection and interoperability. Attached Figure Description

[0015] Figure 1 This is a framework diagram of the grain supply chain management platform based on the Industrial Internet identifier resolution system of the present invention;

[0016] Figure 2 This is a block diagram showing the modular composition of the data acquisition unit in the grain supply chain management platform of the present invention;

[0017] Figure 3 This is a diagram showing the module composition of the production control platform in the grain supply chain management platform of the present invention.

[0018] In the picture:

[0019] 100 - Data acquisition unit; 110 - Data acquisition sensor; 120 - Data identification module; 130 - First communication module;

[0020] 140 - Monitoring video module; 200 - Production control platform; 210 - Secondary communication module; 220 - Data parsing module;

[0021] 230 - Data Update Module; 240 - Database Module; 250 - Information Display Module; 260 - Information Filtering Module;

[0022] 270 - Control command module; 300 - Online sharing platform. Detailed Implementation

[0023] The technical solution of the present invention will now be clearly and completely described in conjunction with the accompanying drawings and embodiments.

[0024] In the description of this invention, it should be noted that the terms "upper," "lower," "inner," "outer," "top / bottom," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0025] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "sleeved / connected," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0026] like Figure 1 As shown, the grain supply chain management platform based on the Industrial Internet identifier resolution system provided by this invention includes a data acquisition unit 100, a production management platform 200, and an online sharing platform 300. Specifically: the data acquisition unit 100 is used to collect various production data from each stage of the grain production and processing process, and to assign identifiers to different production data; the production management platform 200 is used to parse the received production data, update and display the parsed production data in real time, and actively control the switching of equipment; the production management platform 200 is connected to the data acquisition unit 100; the online sharing platform 300 is used to receive the acquired production data through the Industrial Internet and share the received data online.

[0027] In this embodiment of the invention, throughout the entire grain production and processing process, the data acquisition unit 100 collects data from the equipment at each stage of production, assigns a unique identifier to the collected production data, and then transmits it to the production control platform 200. Furthermore, the data acquisition unit 100 also acquires video information from each stage of the grain production and processing process in real time and transmits it to the production control platform 200 for management personnel to view. Figure 2As shown, the data acquisition unit 100 includes a data acquisition sensor 110 and a data identification module 120, with the data identification module 120 connected to the data acquisition sensor 110. The data acquisition sensor 110 is installed on the production and processing equipment at each stage of the grain production and processing process. The data acquisition sensor 110 collects production data from the production and processing equipment in real time, acquiring various production data from each stage of the grain production and processing process, and transmits the collected production data to the data identification module 120. The data identification module 120 assigns identification tags to the different collected production data according to predefined settings.

[0028] The data identification module 120 assigns a unique identifier to each piece of production data. In one embodiment of the invention, the identification is implemented as follows: each production and processing equipment in each stage has a unique data code, and the production data of the equipment is generated using the equipment's data code plus the collection time code to create a unique identifier.

[0029] In addition, the data acquisition unit 100 also includes a first communication module 130 and a monitoring video module 140. The first communication module 130 is used to realize information interaction between the data acquisition unit 100 and the production control platform 200. The first communication module 130 is connected to the data identification module 120, and the data identification module 120 transmits production data with unique identifiers to the production control platform 200 through the first communication module 130. The monitoring video module 140 is used to acquire video information in real time during the grain production and processing process. The monitoring video module 140 is connected to the first communication module 130 and transmits the video information to the production control platform 200 through the first communication module 130.

[0030] After receiving tagged production data, the production control platform 200 parses the received data according to the unique identifier parsing code pre-stored in the database, updates the parsed data, and displays it. This allows for real-time acquisition and automatic updating of data, facilitating management viewing. Furthermore, management personnel can set filtered information for display through the production control platform 200 and actively control equipment switching speeds, among other things. The acquired data can be shared with the online sharing platform 300 via the Industrial Internet, achieving data interconnectivity.

[0031] like Figure 3As shown, the production control platform 200 includes a second communication module 210, a data parsing module 220, a data update module 230, and a database module 240. The second communication module 210 is used to realize information interaction between the production control platform 200, the data acquisition unit 100, and the online sharing platform 300. The data parsing module 220 is used to parse the received production data and is connected to the second communication module 210. The data update module 230 is used to update the displayed production data in real time and is connected to the data parsing module 220. The database module 240 is used to store the received data and store preset identifier parsing information; the database module 240 is connected to the second communication module 210, the data parsing module 220, and the data update module 230.

[0032] The production control platform 200 receives tagged production data and production process videos sent by the data acquisition unit 100 via the second communication module 210 and stores them in the database module 240. The database module 240 also pre-stores the identification and resolution information of each production and processing equipment. Each received production data is transmitted to the data parsing module 220 for processing. The data parsing module 220, combined with the pre-stored identification and resolution information in the database module 240, parses the unique identifier of each piece of production data, obtains the equipment and time that collected the data, and then transmits it to the data update module 230. Upon receiving new data, the data update module 230 updates the data for the corresponding production equipment, enabling the interface to obtain various data in real time and automatically refresh the real-time data.

[0033] In this embodiment of the invention, the production control platform 200 further includes an information display module 250 and an information filtering module 260. The information display module 250 is used to display various production data, monitoring video information, and control command information, and is connected to the data update module 230. The information filtering module 260 is used to filter the production data to be displayed, and is connected to the information display module 250. The information display module 250 receives data decoded by the data update module 230 and can update the production data and status of the corresponding equipment in real time for management personnel to view. Simultaneously, management personnel can filter the displayed content through the information filtering module 260 according to their needs, and then the information display module 250 will display it.

[0034] In addition, the production control platform 200 also includes a control command module 270, which is used to actively control each production device. The control command module 270 is connected to the second communication module 210 and the information display module 250. Managers can actively control the on / off state, speed, and other settings of the equipment through the control command module 270. The control command module 270 sends equipment control commands to the production equipment through the second communication module 210, and also sends the equipment control commands to the information display module 250 for real-time display.

[0035] The online sharing platform 300 receives and stores data sent by the production control platform 200 through the industrial internet. The data includes production data of each production and processing equipment, control instructions of the equipment, and monitoring videos of each production link. Sharing permissions are set for the data, and data sharing is carried out to further realize the interconnection of data.

[0036] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments that can be applied to other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the protection scope of the present invention.

Claims

1. A grain supply chain management and control platform based on the Industrial Internet identifier resolution system, characterized in that, It includes a data acquisition unit (100), a production control platform (200), and an online sharing platform (300); The data acquisition unit (100) includes a data acquisition sensor (110) and a data identification module (120); wherein the data acquisition sensor (110) is installed on the production and processing equipment at each stage of grain production and processing, the data acquisition sensor (110) collects the production data of the equipment in real time and transmits it to the data identification module (120); the data identification module (120) assigns a unique identifier to different production data; the identifier is generated by the equipment's data code + acquisition time code; the data acquisition unit (100) transmits the production data with the unique identifier to the production control platform (200); The production control platform (200) includes a database module (240), a data parsing module (220), a data update module (230), and a control command module (270). The production control platform (200) stores the received data into the database module (240), which also stores the unique identifier parsing code of each production and processing equipment. The data parsing module (220) reads the unique identifier parsing code from the database module (240), decodes the identifier of each piece of production data, obtains the equipment and time that collected the production data, and sends it to the data update module (230). The data update module (230) updates the production data of the corresponding equipment in real time according to the newly received set of "equipment-collection time-production data". The user actively controls each production and processing equipment through the control command module (270), and the control command module (270) sends the equipment control command to the production equipment. The online sharing platform (300) receives production data and control instructions from the production control platform (200) via the industrial internet and sets data sharing permissions to share the data.

2. The grain supply chain management platform according to claim 1, characterized in that, The data acquisition unit (100) further includes a monitoring video module (140), which acquires monitoring videos of each stage of the grain production and processing process in real time and transmits them to the production control platform (200).

3. The grain supply chain management platform according to claim 1 or 2, characterized in that, The production control platform (200) is also equipped with an information display module (250) and an information filtering module (260). The information filtering module (260) is used to filter and set the equipment production data to be displayed, and the information display module (250) is used to display the equipment production data, monitoring video and equipment control commands.

4. The grain supply chain management platform according to claim 1, characterized in that, Both the data acquisition unit (100) and the production control platform (200) are equipped with communication modules.