Supply chain management system and method
Through the implementation of the supply chain management system, the management model of service station orders and cloud warehouse orders has been solved, and the problems of high logistics costs and high inventory pressure faced by retailers in remote areas have been achieved, rapid distribution and expansion of product source channels have been achieved, and operating costs have been reduced.
Patent Information
- Application Number
- CN202311726425.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-14
- Publication Date
- 2025-06-17
AI Technical Summary
The existing retail mall order model cannot effectively meet consumers' shopping needs in remote areas, resulting in high logistics costs, long transportation times, and retailers face inventory pressure and financial pressure.
Provide a supply chain management system, including retailer client, logistics trading platform, logistics distribution end and supplier end. Through the separate management of service station orders and cloud warehouse orders, rapid distribution and expansion of product source channels can be achieved.
Retailers in remote areas can receive goods quickly after placing an order, expand the source channels of goods, save logistics and transportation costs, reduce operating costs, reduce inventory pressure, and achieve zero inventory operation.
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Figure CN120163531A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of logistics deployment management, and in particular to a supply chain management system and method. Background Art
[0002] With the rapid development of science and technology and the steady improvement of the economy, the retail industry has also ushered in a major change. The traditional retail method has gradually been replaced by the new retail method. As a sales model that organically integrates the Internet and entities, the new retail has become the core link of competition among merchants under the premise that product quality and prices are becoming more and more transparent. The logistics of the order even determines the profit or loss of the order. The existing mall order model is that consumers issue orders (C-end orders), and each order is directed to form a delivery process (i.e., logistics link). The system is open to the public and the order transaction volume is high, but this brings a large logistics cost to retailers, especially in some remote areas. The existing online mall logistics system cannot be reached, or the logistics transportation time is long and the cost is high, which cannot meet the shopping needs of consumers in remote areas. If related goods are stocked in advance, it will bring inventory pressure and capital pressure. Summary of the invention
[0003] The purpose of the present invention is to provide a supply chain management system and method, so that retailers in remote areas can quickly receive goods after placing an order, expand the retailer's source of goods, save logistics and transportation costs, and at the same time reduce the retailer's operating costs and alleviate inventory pressure.
[0004] To achieve the above object, the technical solution of the present invention is achieved as follows:
[0005] In a first aspect, an embodiment of the present invention provides a supply chain management system, the supply chain management system comprising:
[0006] Retailer client, used by retailers to upload delivery order information;
[0007] The logistics transaction platform is used to obtain the order type corresponding to the delivery order information according to the delivery order information and the service station warehousing information, wherein the order type includes a service station order and a cloud warehouse order;
[0008] The logistics distribution end includes a service station unit and a cloud warehouse unit. The service station unit is used to deliver the goods to the retailer according to the service station order and collect the service station delivery information in real time; the cloud warehouse unit is used to deliver the goods to the service station according to the cloud warehouse order and collect the cloud warehouse delivery information in real time, or to send the cloud warehouse order to the supplier;
[0009] The supplier side is used to deliver the goods to the service station according to the cloud warehouse order and collect the supplier's delivery information in real time.
[0010] As one of the implementation manners, the logistics trading platform includes an order management unit, and the order management unit is used to integrate the same type of orders according to the distribution order information and split the commodities in the integrated same type of orders.
[0011] As one of the implementation manners, the order management unit includes an order receiving module, a type analysis module, an integration analysis module, and a splitting analysis module; the order receiving module is used to receive the uploaded distribution order information; the type analysis module is used to perform type analysis on the distribution order according to the distribution order information to obtain the order type; the integration analysis module is used to integrate the same type of orders according to the order type; the splitting analysis module is used to split the commodities in the integrated same type of orders according to the distribution order information.
[0012] As one of the implementation manners, the logistics trading platform further includes a logistics management unit, and the logistics management unit is used to obtain the predicted delivery information according to the real-time collected distribution information and feedback the distribution information and the predicted delivery information to the retailer.
[0013] As one of the implementation manners, the retailer client includes a login module and an upload module; the login module is used for the retailer to verify the login; the upload module uploads the distribution order information based on the return goods requirement of the retailer, wherein the distribution order information includes the goods information, location information, and time information of the distribution.
[0014] As one of the implementation manners, the service station unit includes an intelligent warehouse module and an in-station warehouse module; the intelligent warehouse module is used to monitor and manage the storage of high-value products; the in-station warehouse module is used to monitor and manage the storage of non-high-value products.
[0015] In a second aspect, an embodiment of the present invention provides a supply chain management method, and the supply chain management method includes:
[0016] The retailer uploads the distribution order information;
[0017] The logistics trading platform obtains the order type corresponding to the distribution order information according to the distribution order information and the service station warehousing information, wherein the order type includes a service station order and a cloud warehouse order;
[0018] The service station distributes the commodities to the retailer according to the service station order and collects the service station distribution information in real time; or,
[0019] The cloud warehouse distributes the commodities to the service station according to the cloud warehouse order and collects the cloud warehouse distribution information in real time; or,
[0020] The cloud warehouse sends the cloud warehouse order to the supplier;
[0021] The supplier delivers the goods to the service station according to the cloud warehouse order and collects the supplier delivery information in real time.
[0022] As one of the implementation manners, the logistics trading platform obtains the order type corresponding to the delivery order information according to the delivery order information and the service station warehousing information, including:
[0023] Integrate the same type of orders according to the delivery order information, and split the goods in the integrated same type of orders.
[0024] As one of the implementation manners, the integrating the same type of orders according to the delivery order information and splitting the goods in the integrated same type of orders includes:
[0025] Receive the uploaded delivery order information;
[0026] Conduct type analysis on the delivery order according to the delivery order information to obtain the order type;
[0027] Integrate the same type of orders according to the order type;
[0028] Split the goods in the integrated same type of orders according to the delivery order information.
[0029] As one of the implementation manners, the service station delivers the goods to the retailer according to the service station order and collects the service station delivery information in real time, including:
[0030] The logistics trading platform sends a service station pick-up code to the service station according to the service station order;
[0031] The service station staff takes out the goods from the service station warehouse according to the service station pick-up code and delivers the goods to the retailer.
[0032] As one of the implementation manners, the supplier delivers the goods to the service station according to the cloud warehouse order and collects the supplier delivery information in real time, including:
[0033] The logistics trading platform sends a warehousing code to the supplier according to the cloud warehouse order;
[0034] The supplier delivers the goods to the service station warehouse according to the warehousing code.
[0035] As one of the implementation manners, after the supplier delivers the goods to the service station according to the cloud warehouse order and collects the supplier delivery information in real time, it further includes:
[0036] The logistics trading platform sends a retailer pick-up code to the retailer according to the cloud warehouse order;
[0037] The retailer retrieves the goods from the service station warehouse according to the retailer pickup code.
[0038] A supply chain management system and method provided by an embodiment of the present invention. The supply chain management system includes: a retailer client for the retailer to upload distribution order information; a logistics trading platform for obtaining an order type corresponding to the distribution order information according to the distribution order information and service station warehousing information, where the order type includes a service station order and a cloud warehouse order; a logistics distribution end including a service station unit and a cloud warehouse unit, the service station unit for delivering goods to the retailer according to the service station order and collecting service station delivery information in real time; the cloud warehouse unit for delivering goods to the service station according to the cloud warehouse order and collecting cloud warehouse delivery information in real time, or for sending the cloud warehouse order to a supplier; a supplier end for delivering goods to the service station according to the cloud warehouse order and collecting supplier delivery information in real time. In this way, through the separate management of service station orders and cloud warehouse orders, retailers in remote areas can receive goods quickly after placing orders, expanding the commodity source channels of retailers, saving logistics transportation costs, reducing the operating costs of retailers, and alleviating inventory pressure. Description of the Drawings
[0039] Figure 1 It is a schematic structural diagram of a supply chain management system provided by an embodiment of the present invention;
[0040] Figure 2 It is a schematic flow diagram of a supply chain management method provided by an embodiment of the present invention. Detailed Embodiments
[0041] It should be noted that in this article, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "including one..." does not exclude the existence of additional identical elements in the process, method, article or device including the element. In addition, components, features, and elements with the same name in different embodiments of the present invention may have the same meaning or different meanings, and their specific meanings need to be determined based on their explanations in the specific embodiments or further in combination with the context of the specific embodiments.
[0042] It should be understood that although terms such as first, second, and third may be used herein to describe various information, such information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of this document, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Depending on the context, the word "if" as used herein may be interpreted as "when" or "while" or "in response to determining". Furthermore, as used herein, the singular forms "a", "an", and "the" are also intended to include the plural forms unless the context indicates otherwise. It should be further understood that the terms "comprising", "including" indicate the presence of the described features, steps, operations, elements, components, items, types, and / or groups, but do not exclude the presence, occurrence, or addition of one or more other features, steps, operations, elements, components, items, types, and / or groups. The terms "or" and "and / or" as used herein are interpreted inclusively, or mean any one or any combination. Thus, "A, B, or C" or "A, B, and / or C" means "any of the following: A; B; C; A and B; A and C; B and C; A, B, and C". An exception to this definition occurs only when the combination of elements, functions, steps, or operations are mutually exclusive in some way.
[0043] It should be understood that although the steps in the flowcharts in the embodiments of the present invention are shown sequentially according to the indication of the arrows, these steps are not necessarily executed sequentially in the order indicated by the arrows. Unless there is a clear indication in this document, the execution of these steps has no strict order limit, and they can be executed in other orders. Moreover, at least a part of the steps in the figure may include multiple sub-steps or multiple stages, and these sub-steps or stages are not necessarily executed at the same time, but can be executed at different times, and their execution order is not necessarily sequential, but can be executed alternately or in turn with at least a part of other steps or sub-steps or stages of other steps.
[0044] 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.
[0045] See Figure 1 , a supply chain management system provided by an embodiment of the present invention, the supply chain management system includes:
[0046] A retailer client 110 for the retailer to upload distribution order information;
[0047] Here, the client is mainly for retailers and is not open to consumers (C-side).
[0048] In one embodiment, the retailer client includes a login module and an upload module. The login module is used for the retailer to verify the login. The upload module uploads the distribution order information based on the retailer's return goods requirement. The distribution order information includes goods information, location information, and time information for distribution.
[0049] The logistics trading platform 120 is used to obtain the order type corresponding to the distribution order information according to the distribution order information and the service station warehousing information. The order type includes a service station order and a cloud warehouse order.
[0050] Here, after the retailer on the client places an order, a service station order or a cloud warehouse order is formed according to the commodity storage situation of the service station. If the commodity in the distribution order information is in stock at the service station, the order type is a service station order. If the commodity in the distribution order information is not in stock at the service station, the order type is a cloud warehouse order.
[0051] The logistics distribution end 130 includes a service station unit and a cloud warehouse unit. The service station unit is used to deliver the goods to the retailer according to the service station order and collect the service station distribution information in real time. The cloud warehouse unit is used to deliver the goods to the service station according to the cloud warehouse order and collect the cloud warehouse distribution information in real time, or to send the cloud warehouse order to the supplier.
[0052] Here, the service station is mainly established in the townships within the county area to provide services such as warehousing, logistics, and product distribution for the client retailers in the townships or urban areas. According to the received service station order, the service station management personnel directly deliver the goods to the retailer, or the retailer can directly pick up the goods at the service station to achieve same-day delivery. The cloud warehouse can be an online warehousing system. After receiving the cloud warehouse order, the cloud warehouse will feedback the distribution order information to the corresponding supplier, and the supplier will send the cloud warehouse order goods to the service station (next-day delivery). After arrival, the service station management personnel will deliver the goods to the client retailer on the day of arrival, or the retailer can directly pick up the goods at the service station. Or, the cloud warehouse can also be an offline warehousing system, mainly established in the urban area or county seat, with a commodity storage warehouse. After receiving the cloud warehouse order, the cloud warehouse directly sends the cloud warehouse order goods to the service station. After arrival, the service station management personnel will deliver the goods to the client retailer on the day of arrival, or the retailer can directly pick up the goods at the service station to achieve next-day delivery.
[0053] In one embodiment, the service station unit includes an intelligent warehouse module and an in-station warehouse module. The intelligent warehouse module is used to monitor and manage the storage situation of high-value products. The in-station warehouse module is used to monitor and manage the storage situation of non-high-value products.
[0054] Here, an intelligent warehouse and an in-station warehouse are set up in the service station. The intelligent warehouse is used to monitor and manage the storage of high-value products (such as digital products like smartphones), and the in-station warehouse is used to store non-high-value goods (such as internal and external mobile phone accessories, senior mobile phones, etc.). The intelligent warehouse and the in-station warehouse can be a front-warehouse (where the supplier stores the goods in the warehouse in advance) or a rear-warehouse (where the supplier puts the goods into the warehouse according to the order).
[0055] The supplier side 140 is used to deliver the goods to the service station according to the cloud warehouse order and collect the supplier delivery information in real time.
[0056] Here, the supplier side is mainly a 3C product (computer, communication, and consumer electronic product) supplier, and can also be a service provider.
[0057] In one embodiment, the logistics trading platform includes an order management unit, which is used to integrate the same type of orders according to the delivery order information and split the goods in the integrated same type of orders.
[0058] In one embodiment, the order management unit includes an order receiving module, a type analysis module, an integration analysis module, and a split analysis module; the order receiving module is used to receive the uploaded delivery order information; the type analysis module is used to analyze the type of the delivery order according to the delivery order information to obtain the order type; the integration analysis module is used to integrate the same type of orders according to the order type; the split analysis module is used to split the goods in the integrated same type of orders according to the delivery order information.
[0059] Specifically, an order may contain multiple types of goods. After the order receiving module receives the delivery order information uploaded by the retailer client, the type analysis module analyzes the type of the delivery order according to the delivery order information and the service station warehousing information. If the goods in the delivery order information are in stock at the service station, the order type obtained is a service station order; if the goods in the delivery order information are not in stock at the service station, the order type obtained is a cloud warehouse order. After classifying the delivery orders, the integration analysis module integrates the same type of orders according to the order type, and generates the logistics modes of the service station order and the cloud warehouse order respectively. The split analysis module splits the different types of goods in the delivery order, and then combines the quantities of the same type of goods in the same type of orders. In this way, the logistics cost is reduced by centralizing the orders, and the retailer can achieve zero inventory, greatly reducing the inventory cost.
[0060] In specific implementation, the operation mode of the service station order logistics model is as follows: When it is obtained that both the retailer M order and the retailer N order are service station orders, the retailer M order contains product A (1 piece), B (2 pieces), and C (2 pieces), and the retailer N order contains product A (2 pieces), B (1 piece), and C (3 pieces). After merging the two orders and then splitting them, two orders with a total of 11 items are obtained: A (3 pieces), B (3 pieces), and C (5 pieces). Since there are existing stocks at the service station, the service station management staff delivers the 11 items at one time, or the retailer directly picks up the goods. Since it is within the county area, same-day delivery can be achieved. In addition, the service station can also provide other services, such as broken screen insurance service, brand pick-up authorization service, etc.
[0061] In specific implementation, the operation mode of the cloud warehouse order logistics model is as follows: When it is obtained that both the retailer P order and the retailer Q order are cloud warehouse orders, the retailer P order contains product A (1 piece), B (2 pieces), and C (2 pieces), and the retailer Q order contains product A (2 pieces), B (1 piece), and C (3 pieces). After merging the two orders and then splitting them, two orders with a total of 11 items are obtained: A (3 pieces), B (3 pieces), and C (5 pieces). Since there are no existing stocks at the service station, the cloud warehouse sends the order information to the suppliers of each product, that is, 3 pieces of product A are shipped from supplier A to the service station, 3 pieces of product B are shipped from supplier B to the service station, and 5 pieces of product C are shipped from supplier C to the service station (it is also possible that both product A and B are shipped by supplier A, and the suppliers of the products are not restricted here). After the service station staff receives the goods, they directly deliver the goods to each retailer, or the retailer can directly pick up the goods, achieving delivery the next day after placing the order. Originally, only 3 logistics operations are required for the 11 items to reach the service station, significantly reducing the logistics transportation cost.
[0062] In one implementation manner, the logistics trading platform further includes a logistics management unit, and the logistics management unit is used to obtain predicted delivery information based on the real-time collected delivery information, and feedback the delivery information and the predicted delivery information to the retailer.
[0063] Specifically, the logistics management unit includes an information receiving module, an information analysis module, and an information feedback module. The information receiving module is used to receive logistics order information and location information. The information analysis module obtains the corresponding retailer client information based on the logistics order information and predicts the delivery time. The information feedback module transmits the location information and the predicted delivery information to the corresponding retailer client one by one. Here, the information receiving module is communicatively connected to the information analysis module, that is, the logistics order information and location information are received through the information receiving module, and the collected logistics order information and location information are transmitted to the information analysis module. After receiving the logistics order information and location information, the information analysis module obtains the corresponding retailer client information based on the logistics order information and predicts the delivery time. Moreover, the information analysis module is communicatively connected to the information feedback module, and the information feedback module is wirelessly communicatively connected to the retailer client. At the same time, the information analysis module transmits the obtained retailer client information and the predicted delivery time to the information feedback module. Finally, through the information feedback module, the location information and the predicted delivery information are transmitted to the corresponding retailer client one by one based on the retailer client information, realizing the interaction of distribution information and facilitating the retailer to obtain logistics information in real time.
[0064] In summary, for the supply chain management system provided by the above embodiments, through the separate management of service station orders and cloud warehouse orders, retailers in remote areas can receive goods quickly after placing orders, expanding the commodity source channels of retailers, saving logistics transportation costs, reducing the operating costs of retailers, alleviating inventory pressure, and realizing zero-inventory operation.
[0065] See Figure 2 , which is a supply chain management method provided by an embodiment of the present invention. The supply chain management method includes:
[0066] Step S201: The retailer uploads the distribution order information;
[0067] Step S202: The logistics trading platform obtains the order type corresponding to the distribution order information according to the distribution order information and the service station warehousing information, where the order type includes service station orders and cloud warehouse orders;
[0068] Step S203: The service station delivers the goods to the retailer according to the service station order and collects the service station distribution information in real time; or,
[0069] The cloud warehouse delivers the goods to the service station according to the cloud warehouse order and collects the cloud warehouse distribution information in real time; or,
[0070] The cloud warehouse sends the cloud warehouse order to the supplier;
[0071] Step S204: The supplier delivers the goods to the service station according to the cloud warehouse order and collects the supplier distribution information in real time.
[0072] In one embodiment, the logistics trading platform obtains the order type corresponding to the distribution order information according to the distribution order information and the service station warehousing information, including:
[0073] Integrate orders of the same type according to the distribution order information, and split the goods in the integrated orders of the same type.
[0074] In one embodiment, the integrating orders of the same type according to the distribution order information and splitting the goods in the integrated orders of the same type includes:
[0075] Receive the uploaded distribution order information;
[0076] Conduct type analysis on the distribution order according to the distribution order information to obtain the order type;
[0077] Integrate orders of the same type according to the order type;
[0078] Split the goods in the integrated orders of the same type according to the distribution order information.
[0079] In one embodiment, the service station delivers the goods to the retailer according to the service station order and real-time collects the service station distribution information, including:
[0080] The logistics trading platform sends a service station pick-up code to the service station according to the service station order;
[0081] The service station staff takes out the goods from the service station warehouse according to the service station pick-up code and delivers the goods to the retailer.
[0082] Here, if the retailer selects door-to-door delivery when placing an order, the logistics trading platform sends a service station pick-up code to the service station according to the service station order, and the service station staff takes out the goods from the service station warehouse with the service station pick-up code and delivers them to the retailer. The entire pick-up and delivery process is the responsibility of the service station; if the retailer selects self-pickup when placing an order, the logistics trading platform sends a service station pick-up code to the retailer according to the service station order and notifies the service station. The retailer can take out the goods from the service station warehouse by itself with the service station pick-up code, and the pick-up process is the responsibility of the retailer.
[0083] In one embodiment, the supplier delivers the goods to the service station according to the cloud warehouse order and real-time collects the supplier distribution information, including:
[0084] The logistics trading platform sends a warehousing code to the supplier according to the cloud warehouse order;
[0085] The supplier delivers the goods to the service station warehouse according to the warehousing code.
[0086] Here, the supplier delivers the goods to the service station according to the cloud warehouse order, and puts the goods into the designated service station warehouse based on the warehousing code sent by the logistics trading platform according to the cloud warehouse order. The entire warehousing process is the responsibility of the supplier.
[0087] In one embodiment, after the supplier delivers the goods to the service station according to the cloud warehouse order and real-time collects the supplier delivery information, it further includes:
[0088] The logistics trading platform sends a retailer pick-up code to the retailer according to the cloud warehouse order;
[0089] The retailer takes out the goods from the service station warehouse according to the retailer pick-up code.
[0090] Here, after the supplier puts the goods into the designated service station warehouse, if the retailer selects to pick up the goods when placing an order, the logistics trading platform sends a retailer pick-up code to the retailer according to the cloud warehouse order and notifies the service station. The retailer can take out the goods from the service station warehouse by himself / herself with the retailer pick-up code, and the pick-up process is the responsibility of the retailer; if the retailer selects door-to-door delivery when placing an order, the logistics trading platform sends the pick-up code to the service station according to the cloud warehouse order. The service station staff takes out the goods from the service station warehouse with the pick-up code and delivers them to the retailer, and the entire pick-up and delivery process is the responsibility of the service station.
[0091] In this embodiment, the supply chain management method can be implemented based on the operations of the supply chain management system in the foregoing embodiment. The implementation process of this embodiment is detailed in the description of the foregoing embodiment and will not be repeated here.
[0092] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.
[0093] In this article, the term "including", "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, and in addition to the listed elements, it may also include other elements not specifically listed.
[0094] As described above, only the specific implementation manners of the present invention are provided, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of changes or substitutions, which should all be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.
Claims
1. A supply chain management system, characterized in that, The supply chain management system includes: A retailer client for the retailer to upload distribution order information; A logistics trading platform for obtaining an order type corresponding to the distribution order information according to the distribution order information and service station warehousing information, where the order type includes service station orders and cloud warehouse orders; A logistics distribution end including a service station unit and a cloud warehouse unit. The service station unit is used to deliver goods to the retailer according to the service station order and collect service station distribution information in real time; the cloud warehouse unit is used to deliver goods to the service station according to the cloud warehouse order and collect cloud warehouse distribution information in real time, or to send the cloud warehouse order to the supplier; A supplier end for delivering goods to the service station according to the cloud warehouse order and collecting supplier distribution information in real time.
2. The supply chain management system according to claim 1, characterized in that, The logistics trading platform includes an order management unit for integrating orders of the same type according to the distribution order information and splitting the goods in the integrated orders of the same type.
3. The supply chain management system according to claim 2, characterized in that, The order management unit includes an order receiving module, a type analysis module, an integration analysis module, and a splitting analysis module; the order receiving module is used to receive the uploaded distribution order information; The type analysis module is used to perform type analysis on the distribution order according to the distribution order information to obtain the order type; The integration analysis module is used to integrate orders of the same type according to the order type; The splitting analysis module is used to split the goods in the integrated orders of the same type according to the distribution order information.
4. The supply chain management system according to claim 1, characterized in that, The logistics trading platform further includes a logistics management unit for obtaining predicted delivery information according to the distribution information collected in real time and feeding back the distribution information and the predicted delivery information to the retailer.
5. The supply chain management system according to claim 1, characterized in that, The retailer client includes a login module and an upload module. The login module is used for the retailer to verify the login; the upload module uploads the distribution order information based on the retailer's return goods requirement, where the distribution order information includes goods information, location information, and time information for distribution.
6. The supply chain management system according to claim 1, characterized in that, The service station unit includes an intelligent warehouse module and an in-station warehouse module; the intelligent warehouse module is used to monitor and manage the storage of high-value products; the in-station warehouse module is used to monitor and manage the storage of non-high-value products.
7. A supply chain management method, characterized in that, The supply chain management method includes: The retailer uploads distribution order information; The logistics trading platform obtains an order type corresponding to the distribution order information according to the distribution order information and service station warehousing information, where the order type includes service station orders and cloud warehouse orders; The service station delivers goods to the retailer according to the service station order and collects service station distribution information in real time; or The cloud warehouse delivers goods to the service station according to the cloud warehouse order and collects cloud warehouse distribution information in real time; or The cloud warehouse sends the cloud warehouse order to the supplier; The supplier delivers goods to the service station according to the cloud warehouse order and collects supplier distribution information in real time.
8. The supply chain management method according to claim 7, characterized in that, The logistics trading platform obtains an order type corresponding to the distribution order information according to the distribution order information and service station warehousing information, including: Integrate orders of the same type according to the delivery order information, and split the goods in the integrated orders of the same type.
9. The supply chain management method according to claim 8, characterized in that, The integration of orders of the same type according to the delivery order information and the splitting of goods in the integrated orders of the same type include: Receive the uploaded delivery order information; Conduct type analysis on the delivery orders according to the delivery order information to obtain the order types; Integrate orders of the same type according to the order types; Split the goods in the integrated orders of the same type according to the delivery order information.
10. The supply chain management method according to claim 7, characterized in that, The service station delivers the goods to the retailer according to the service station order and real-time collects the service station delivery information, including: The logistics trading platform sends the service station pick-up code to the service station according to the service station order; The service station staff takes out the goods from the service station warehouse according to the service station pick-up code and delivers the goods to the retailer.
11. A supply chain management method according to claim 7, characterized in that, The supplier delivers the goods to the service station according to the cloud warehouse order and real-time collects the supplier delivery information, including: The logistics trading platform sends the warehousing code to the supplier according to the cloud warehouse order; The supplier delivers the goods into the service station warehouse according to the warehousing code.
12. A supply chain management method according to claim 7, characterized in that, After the supplier delivers the goods to the service station according to the cloud warehouse order and real-time collects the supplier delivery information, it further includes: The logistics trading platform sends the retailer pick-up code to the retailer according to the cloud warehouse order; The retailer takes out the goods from the service station warehouse according to the retailer pick-up code.