Material supply chain optimization management system based on breeding industry and application method thereof

By designing a material supply chain optimization management system in the breeding industry, information sharing and intelligent matching between suppliers is achieved, the problem of inefficiency in the supply chain is solved, and the response ability to urgent needs and resource utilization efficiency are improved.

CN120562818AInactive Publication Date: 2025-08-29FOSHAN POLYTECHNIC
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Patent Information

Application Number
CN202510739473.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-04
Publication Date
2025-08-29
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing supply chain management system lacks an effective information sharing mechanism in the breeding industry, resulting in inefficient supply chains, difficult to dynamically adjust according to actual needs, and cannot respond to emergency needs in a timely manner, affecting the operation efficiency of the breeding farm.

Method used

A material supply chain optimization management system based on the aquaculture industry is designed, including a demand-side management module, a task management center and a supply-side management module. Information sharing and supply-side matching are achieved through data monitoring, communication units and display equipment, and the supply-chain response mechanism is optimized by combining user level evaluation and emergency coefficient calculation.

Benefits of technology

It realizes intelligent matching based on demand-side position and supply-side factors, quickly respond to emergency demand, reduce losses caused by supply delays, rationally utilize supply resources, and improves the efficiency and flexibility of the supply chain.

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Abstract

The invention provides a material supply chain optimization management system based on the breeding industry, which is applied to the field of supply chain information system management and comprises a demand side management module, a task management center and a supply side management module. According to the method, the position of a demand side serves as a center point, suppliers are retrieved according to a set distance, sequential matching is carried out according to the user levels of the suppliers, the matching mode can quickly find a proper supplier, especially for emergency demands, timely response can be carried out, breeding loss caused by supply delay is reduced, and in the matching process of the suppliers, the matching efficiency of the suppliers is improved. The system not only considers the position of the supplier, but also considers the user level, the type of supplied materials, the upper limit of the single supply amount of the materials and other factors.
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Description

Technical Field

[0001] The present invention relates to the field of supply chain information system management, and in particular to a material supply chain optimization management system based on the aquaculture industry. Background Art

[0002] Since the breeding industry has higher requirements on timeliness of materials, the timely distribution of breeding materials will affect the operating efficiency of the farm.

[0003] Existing supply chain management often focuses on supplier management, with the relationship between suppliers and demanders often being one-way, lacking effective information sharing mechanisms between farms and suppliers. Information such as farm inventory and animal health status cannot be accurately and promptly transmitted to suppliers, leading to information silos. Furthermore, traditional systems struggle to dynamically adjust supplier ratings or demand urgency based on actual demand fulfillment, resulting in a chronically inefficient and passive supply chain. Suppliers, however, are also unable to predict the breeding environment and the outbreak of epidemic diseases in farmed animals based on surrounding demand, allowing them to prepare materials in advance.

[0004] With the establishment of information management equipment in farms, in addition to helping farm owners gain access to information about the farm environment and the individual conditions of farmed animals, a supply chain management system that can meet the needs also needs to be built. Summary of the Invention

[0005] The purpose of the present invention is to address the existing deficiencies and propose a material supply chain optimization management system based on the aquaculture industry and its application method.

[0006] In order to overcome the deficiencies of the prior art, the present invention adopts the following technical solutions: A material supply chain optimization management system based on the aquaculture industry, including: Demand side management module, used to manage the breeding information and demand information of the demand side; Task management center, used to manage demand information and registered user information; The supplier management module is used to receive demand and manage supplier information; The task management center includes a task management unit, a user management unit, and a second communication unit. The task management unit is used to perform rating on the task demand information and generate procurement requirements. The user management unit is used to generate and record the identity information of the demander and supplier respectively. The second communication unit is used to communicate with the demander management module and the supplier management module. The demand side management module includes a data monitoring unit, a demand management unit, and a first display device. The data monitoring unit is configured to collect information about the farm and the farmed animals. The demand management unit is configured to collect and generate demand information from the demand side. The first display device is used to display images and input commands. Furthermore, the supplier management module includes a third communication unit, a supply information management unit, a second display unit, and a data monitoring unit. The first material management unit is used to record the material inventory status of the farm. The data acquisition unit is configured to collect environmental information of the farm and growth data of the farmed animals. The first communication unit is configured to realize communication transmission. Furthermore, the supplier management module includes a third communication unit, a supply information management unit, and a second display device. The third communication unit is configured to communicate with the task management center, the supply information management unit is configured to record and manage the supplier's material storage information, and the second display device is used to display images and input instructions.

[0007] The first material management unit includes an in-and-out registration device and a first data storage module. The in-and-out registration device is used to automatically identify and register the in-and-out information of materials when they are in and out of the warehouse, and at the same time send the in-and-out information to the first data storage module. The first data storage module is used to record the information of the materials held.

[0008] An application method of a material supply chain optimization management system based on the aquaculture industry, comprising: S1. Daily monitoring: monitor the demander's material inventory and farmed animal information. When the monitored material inventory meets the set quantity or a new demand event occurs, generate demand information; S2. Collect demand. Based on the demand information provided by the demander, the task management center matches the supplier with the demand information. S3. Supplier matching. After a successful match, the demand information is sent to the supplier. If the supplier chooses to confirm the match, the match is successful. S4: Order follow-up: The supplier begins to arrange production and stocking, and completes delivery within the demand plan completion time to complete the demand order; S5. Feedback and optimization: After completing the requirements, the user level is updated according to the completion of the requirements; User level update method: According to the demand urgency coefficient E of the completed demand and the urgency level comparison table, the corresponding level is mapped out; The generation method of demand urgency coefficient E is as follows: ; Where D is the current demand, T d is the planned completion time of the demand, T v is the average completion time of the demand, C is the upper limit of the material word supply of the matching supplier, and ji is the capacity adjustment coefficient of the supplier; The beneficial effects achieved by the present invention are: After collecting demand, the task management module matches suppliers based on this information. Using the demander's location as the center point, it searches for suppliers based on a set distance and matches them sequentially according to their user level. This matching method quickly finds suitable suppliers, especially for urgent needs, enabling timely responses and reducing losses caused by supply delays.

[0009] During the supplier matching process, the system considers not only the supplier's location but also factors such as their user level, available material types, and the upper limit of a single material supply. For example, for large orders, the system will allocate the demand to different suppliers based on factors such as the supplier's capacity adjustment coefficient and the upper limit of the material supply. This comprehensive matching approach ensures that supplier resources are utilized effectively while also meeting the needs of farms. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] The present invention can be further understood from the following description in conjunction with the accompanying drawings. The components in the figures are not necessarily drawn to scale, but rather the emphasis is placed on illustrating the principles of the embodiments. In different views, the same reference numerals designate corresponding parts.

[0011] Figure 1 It is a schematic block diagram showing the relationship between the various modules of the present invention.

[0012] Figure 2 The figure is a schematic block diagram of the application process of the present invention.

[0013] Figure 3 This is a schematic diagram of an emergency level comparison table according to one embodiment of the present invention.

[0014] Figure 4 Schematic diagram of monitoring the occurrence of clustering phenomenon of the present invention. DETAILED DESCRIPTION

[0015] In order to make the purpose, technical solutions and advantages of the present invention more clear, the present invention is further described in detail below in conjunction with its embodiments; it should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention. For those skilled in the art, other systems, methods and / or features of this embodiment will become apparent after reviewing the following detailed description. It is intended that all such additional systems, methods, features and advantages are included in this specification, included within the scope of the present invention, and protected by the appended claims. Additional features of the disclosed embodiments are described in the following detailed description, and these features will be apparent from the following detailed description.

[0016] The same or similar numbers in the drawings of the embodiments of the present invention correspond to the same or similar parts; in the description of the present invention, it should be understood that if there are terms such as "upper", "lower", "left", "right", etc. indicating directions or positional relationships, they are based on the directions or positional relationships shown in the drawings. This is only for the convenience of describing the present invention and simplifying the description, and does not indicate or imply that the device or component referred to must have a specific direction, be constructed and operate in a specific direction. Therefore, the terms describing the positional relationship in the drawings are only used for illustrative purposes and cannot be understood as limiting this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.

[0017] Example 1.

[0018] like Figure 1 As shown, a material supply chain optimization management system based on the aquaculture industry includes: Demand side management module, used to manage the breeding information and demand information of the demand side; Task management center, used to manage demand information and registered user information; The supplier management module is used to receive demand and manage supplier information; The task management center includes a task management unit, a user management unit, and a second communication unit. The task management unit is used to perform rating on the task demand information and generate procurement requirements. The user management unit is used to generate and record the identity information of the demander and supplier respectively. The second communication unit is used to communicate with the demander management module and the supplier management module. The demand side management module includes a data monitoring unit, a demand management unit, and a first display device. The data monitoring unit is configured to collect information about the farm and the farmed animals. The demand management unit is configured to collect and generate demand information from the demand side. The first display device is used to display images and input commands. The data monitoring unit includes a first material management unit, a data collection unit, and a first communication unit. The first material management unit is used to record the material inventory status of the farm. The data collection unit is configured to collect environmental information of the farm and growth data of the farmed animals. The first communication unit is configured to realize communication transmission. The supplier management module includes a third communication unit, a supply information management unit, and a second display device. The third communication unit is configured to communicate with the task management center. The supply information management unit is configured to record and manage the supplier's material storage information. The second display device is used to display images and input instructions.

[0019] The first material management unit includes an in-and-out registration device and a first data storage module. The in-and-out registration device is used to automatically identify and register the in-and-out information of materials when they are in and out of the warehouse, and at the same time send the in-and-out information to the first data storage module. The first data storage module is used to record the information of the materials held.

[0020] Example 2: This example is a further description of the above example. It should be understood that this example includes all the above technical features and is further described in detail: Further integration Figure 2 、 Figure 3 、 Figure 4 As shown, a material supply chain optimization management system based on the aquaculture industry includes: Demand side management module, used to manage the breeding information and demand information of the demand side; Task management center, used to manage demand information and registered user information; The supplier management module is used to receive demand and manage supplier information; The demand side management module includes a data monitoring unit, a demand management unit, and a first display device. The data monitoring unit is configured to collect information about the farm and the farmed animals. The demand management unit is configured to collect and generate demand information from the demand side. The first display device is used to display images and input commands. The data monitoring unit includes a first material management unit, a data collection unit, and a first communication unit. The first material management unit is used to record the material inventory status of the farm. The data collection unit is configured to collect environmental information of the farm and growth data of the farmed animals. The first communication unit is configured to realize communication transmission. The first material management unit includes an in-and-out registration device and a first data storage module. The in-and-out registration device is used to automatically identify and register the in-and-out information of materials when they enter and exit the warehouse, and at the same time send the in-and-out information to the first data storage module. The first data storage module is used to record the information of the materials held; The data acquisition unit includes an environment acquisition unit and a pig group acquisition unit. The environment acquisition unit includes a first camera and a thermometer. The first camera is used to collect scene images of the farm, and the thermometer is used to collect temperature data of the farm. When the temperature data of the farm is monitored to exceed the critical value, an early warning message is displayed on the first display device to remind the farm management personnel to implement cooling measures; The pig herd collection unit includes a weighing instrument, a second camera, and an identification and analysis unit. The weighing instrument is configured to collect weight information of farmed animals, the second camera is configured to collect image information of farmed animals, and the identification and analysis unit is configured to identify and analyze the collected weight information and image information. The second camera is used to collect images of farmed animals, and the collected images are analyzed to count the number of farmed animals and identify the individual characteristics of the farmed animals; The weight data of the farmed animals are collected by a weighing instrument to generate weight information, and the recognition and analysis unit processes and modifies the image collected by the second camera with the weight information to generate a weight image diagram; The weighing instrument is configured as a walkway weighing device, and the walkway weighing device is configured to weigh the farmed animals as they pass by in sequence; Through the application of the second camera and weighing instrument, the breeding scale of the demand side can be collected and analyzed; The material information includes material type, material brand, material registration time, and material remaining quantity; The demand management unit includes performing demand analysis, demand generation, demand confirmation and sending; Demand analysis: Identify and analyze the remaining amount of material inventory and the emergence of new influencing factors to generate analysis results; Demand generation: Generate new demand based on the analysis results, display the new demand information on the display device of the demand side management module, and prompt the supplier operator to view the demand; Demand confirmation and sending: The operator decides whether to confirm the sending of the demand. If confirmed, the demander management module sends the demand information to the task management center through the first communication unit; Demand information includes: demand product name, product type, demand quantity and demand plan completion time; The product categories include feed and medicines, among which the types of medicines include: antibacterials, antibiotics, antipyretics, antiparasitics, and environmental cleaning and disinfection drugs; The task management center includes a task management unit, a user management unit, and a second communication unit. The task management unit is used to perform rating on the task demand information and generate procurement requirements. The user management unit is used to generate and record the identity information of the demander and supplier respectively. The second communication unit is used to communicate with the demander management module and the supplier management module. The identity information recorded by the user management unit is divided into demander identity information and supplier identity information according to the user identity type; The identity information of the demander includes the location of the demander and the demand history; The supplier identity information includes the supplier's location, the type of materials that can be supplied, the upper limit of the single supply of materials, and the user level; The supplier management module includes a third communication unit, a supply information management unit, and a second display device. The third communication unit is configured to communicate with the task management center. The supply information management unit is configured to record and manage the supplier's material storage information. The second display device is used to display images and input instructions.

[0021] S1. Daily monitoring: monitor the demander's material inventory and farmed animal information. When the monitored material inventory meets the set quantity or a new demand event occurs, generate demand information; S2. Collect demand. Based on the demand information provided by the demander, the task management center matches the supplier with the demand information. S3. Supplier matching. After a successful match, the demand information is sent to the supplier. If the supplier chooses to confirm the match, the match is successful. S4: Order follow-up: The supplier begins to arrange production and stocking, and completes delivery within the demand plan completion time to complete the demand order; S5. Feedback and optimization. After completing the requirements, the user level is updated according to the completion of the requirements.

[0022] After collecting demand information, the task management module matches suppliers based on the demand information. Using the demander's location as the center point, it searches for suppliers based on a set distance and matches them sequentially according to their user rank. This matching method quickly finds suitable suppliers, especially for urgent needs, enabling timely responses and reducing losses to the farm due to supply delays. During the supplier matching process, the system considers not only the supplier's location but also factors such as their user rank, available material types, and the maximum single-time supply quantity. For example, for large orders, the system divides the demand volume appropriately and allocates it to different suppliers based on factors such as the supplier's capacity adjustment factor and the maximum single-time supply quantity of the material. This comprehensive matching method, which considers all supplier factors, ensures that supplier resources are utilized effectively while meeting the farm's needs. After fulfilling a demand, the system updates the user rank based on the fulfillment status of the demand. The demand urgency coefficient, E, is calculated to map a corresponding rank score. If a supplier accepts a demand but fails to fulfill it within the planned completion time, the corresponding rank score is deducted. This user level update mechanism can effectively evaluate and provide feedback on the performance of suppliers, and motivate suppliers to improve service quality.

[0023] Example 3: This example is a further description of the above example. It should be understood that this example includes all the above technical features and is further described in detail: An application method of a material supply chain optimization management system based on the aquaculture industry, comprising: S1. Daily monitoring: monitor the demander's material inventory and farmed animal information. When the monitored material inventory meets the set quantity or a new demand event occurs, generate demand information; New demands are divided into three types: usage demands, event demands, and autonomous demands; The method of generating the consumption demand is as follows: generating a consumption coefficient Ri, monitoring the consumption coefficient Ri, and generating a consumption demand when the consumption coefficient Ri is lower than the consumption threshold k; The consumption coefficient Ri is generated as follows: ; m is the daily feed consumption; s is the feed storage balance; je is the emergency coefficient adjustment coefficient, the value of the coefficient is obtained by the emergency coefficient statistical algorithm; Conditions for generating event demands: When the task management unit analyzes and finds that a specified type of drug discovery demand clustering occurs, the task management unit uses the location of the user who sent the demand as the central location and sends an event warning to the demand parties within the range set by the central location; The clustering phenomenon is determined as follows: there are N requests for the same specific pharmaceutical material within the set range and set time among the demanders who purchased the specific pharmaceutical material; S2. Collect demand. Based on the demand information provided by the demander, the task management center matches the supplier with the demand information. The supplier matching method is as follows: the demander's location is used as the center point, and the task management center searches for suppliers within the set distance as the search range, and then matches them in order according to the supplier's user level; If the demander specifies a supplier, the task management center will send the demand information to the designated supplier; If the demand can only be met by a single supplier, a one-to-one matching is performed. If it cannot be met, the demand is split and sent to different suppliers to meet the demand. S3. Supplier matching. After a successful match, the demand information is sent to the supplier. If the supplier chooses to confirm the match, the match is successful. S4: Order follow-up: The supplier begins to arrange production and stocking, and completes delivery within the demand plan completion time to complete the demand order; S5. Feedback and optimization: After completing the requirements, the user level is updated according to the completion of the requirements; User level update method: According to the demand urgency coefficient E of the completed demand, the corresponding level score is mapped. The generation method of demand urgency coefficient E is as follows: ; Where D is the current demand, T d is the planned completion time of the demand, T v is the average completion time of the demand, C is the upper limit of the material word supply of the matching supplier, and ji is the capacity adjustment coefficient of the supplier; If the supplier accepts the demand but fails to complete it within the planned completion time, the corresponding grade points will be deducted; If the average urgency coefficient of the demand side If it is greater than the threshold n, the value of je is adjusted to achieve reasonable advance notification and optimize the supply relationship.

[0024] Although the present invention has been described above with reference to various embodiments, it will be understood that many changes and modifications may be made without departing from the scope of the invention. That is, the methods, systems, and devices discussed above are examples. Various configurations may omit, replace, or add various processes or components as appropriate. For example, in alternative configurations, the methods may be performed in an order different from that described, and / or various components may be added, omitted, and / or combined. Moreover, features described with respect to certain configurations may be combined in various other configurations, such as different aspects and elements of the configurations may be combined in a similar manner. Furthermore, as technology develops, the elements therein may be updated, i.e., many of the elements are examples and do not limit the scope of the present disclosure or the claims.

[0025] Specific details are given in the description to provide a thorough understanding of the exemplary configurations, including implementations. However, the configurations can be practiced without these specific details. For example, well-known circuits, processes, algorithms, structures, and techniques have been shown without unnecessary detail to avoid obscuring the configurations. This description provides only example configurations and does not limit the scope, applicability, or configurations of the claims. Instead, the foregoing description of the configurations will provide those skilled in the art with an enabling description for implementing the described techniques. Various changes may be made to the function and arrangement of the elements without departing from the spirit or scope of the present disclosure.

[0026] In summary, it is intended that the above detailed description be considered illustrative rather than restrictive, and it should be understood that the above embodiments are intended to be merely illustrative of the present invention and not to limit the scope of protection of the present invention. After reading the contents of the present invention, a skilled person may make various changes or modifications to the present invention, and these equivalent changes and modifications also fall within the scope defined by the claims of the present invention.

Claims

1. A material supply chain optimization management system based on the aquaculture industry, characterized in that: include: Demand side management module, used to manage the breeding information and demand information of the demand side; Task management center, used to manage demand information and registered user information; The supplier management module is used to receive demand and manage supplier information; The task management center includes a task management unit, a user management unit, and a second communication unit. The task management unit is used to perform rating on the task demand information and generate procurement requirements. The user management unit is used to generate and record the identity information of the demander and supplier respectively. The second communication unit is used to communicate with the demander management module and the supplier management module. The demand side management module includes a data monitoring unit, a demand management unit and a first display device. The data monitoring unit is configured to collect information about farms and farmed animals. The demand management unit is configured to collect and generate demand information of the demand side. The first display device is used to display images and input instructions.

2. A material supply chain optimization management system based on aquaculture according to claim 1, characterized in that: The supplier management module includes a third communication unit, a supply information management unit, and a second display data monitoring unit. The first material management unit includes a first material management unit, a data acquisition unit, and a first communication unit. The first material management unit is used to record the material inventory status of the farm. The data acquisition unit is constructed to collect the environmental information of the farm and the growth data of the farmed animals. The first communication unit is constructed to realize communication transmission.

3. A material supply chain optimization management system based on aquaculture as claimed in claim 2, characterized in that: The supplier management module includes a third communication unit, a supply information management unit, and a second display device. The third communication unit is configured to communicate with the task management center. The supply information management unit is configured to record and manage the supplier's material storage information. The second display device is used to display images and input instructions.

4. A material supply chain optimization management system based on aquaculture as claimed in claim 3, characterized in that: The first material management unit includes an in-and-out registration device and a first data storage module. The in-and-out registration device is used to automatically identify and register the in-and-out information of materials when they are in and out of the warehouse, and at the same time send the in-and-out information to the first data storage module. The first data storage module is used to record the information of the materials held.

5. The method for applying the material supply chain optimization management system based on the aquaculture industry as claimed in claim 4 comprises: S1. Daily monitoring: monitor the demander's material inventory and farmed animal information. When the monitored material inventory meets the set quantity or a new demand event occurs, generate demand information; S2. Collect demand. Based on the demand information provided by the demander, the task management center matches the supplier with the demand information. S3. Supplier matching. After a successful match, the demand information is sent to the supplier. If the supplier chooses to confirm the match, the match is successful. S4: Order follow-up: The supplier begins to arrange production and stocking, and completes delivery within the demand plan completion time to complete the demand order; S5. Feedback and optimization: After completing the requirements, the user level is updated according to the completion of the requirements; User level update method: According to the demand urgency coefficient E of the completed demand and the urgency level comparison table, the corresponding level is mapped out; The generation method of demand urgency coefficient E is as follows: ; Where D is the current demand, T d is the planned completion time of the demand, T v is the average completion time of the demand, C is the upper limit of the material word supply of the matching supplier, and ji is the capacity adjustment coefficient of the supplier.

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