Order management method and system for a fresh flower sales platform

By analyzing order information on the flower sales platform, formulating reasonable bouquet packaging logic, and using image recognition and natural language processing technology, the flower sales platform ensures the quality of flower materials and delivery timeliness when processing a large number of orders, and achieves efficient and accurate order processing and production process optimization.

CN119784479BActive Publication Date: 2025-06-10HUAWA NETWORK TECH CO LTD
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Patent Information

Application Number
CN202510294488.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2025-06-10
Estimated Expiration
2045-03-13

AI Technical Summary

Technical Problem

When modern flower sales platforms handle large quantities of orders, it is difficult to ensure the quality of flowers and delivery time, and the existing order management system cannot effectively intervene in this issue.

Method used

By obtaining pending orders, analyzing order information to determine bouquet information, formulating reasonable bouquet packaging logic, and calculating the amount to be packed based on the order delivery time and storage space, and finally determining the combination production plan. This solution uses image recognition and natural language processing technology to accurately extract the types, quantity and arrangement relationships of bouquets, ensure the beauty and stability of the bouquets, and optimize resource utilization to improve production efficiency.

Benefits of technology

A scientific and reasonable judgment of flower orders is achieved, artificial errors are reduced, and the accuracy and efficiency of order processing are improved, ensuring that the bouquets are in the best state during production and delivery.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to the technical field of order management, and particularly to an order management method and system for a fresh flower sales platform. The method includes: obtaining an order to be processed; analyzing the order to be processed to determine bouquet information; analyzing the bouquet information to determine the bouquet packaging logic; determining the current quantity to be packaged according to the order to be processed; and determining a combined production plan according to the bouquet packaging logic and the current quantity to be packaged. Through the above solution, it can directly replace manual judgment of fresh flower orders, which is more scientific and reasonable, and can also avoid errors caused by manual judgment and reduce the probability of errors.
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Description

Technical Field

[0001] This application relates to the technical field of order management, and particularly to an order management method and system for a fresh flower sales platform. Background Art

[0002] The order management of modern fresh flower sales platforms usually can only achieve simple inbound and outbound and collection. In the processing of a large number of orders for fresh flower sales, how to ensure the quality of flower materials and the timeliness of delivery is crucial, which is also beyond the reach of existing order management systems.

[0003] Traditional fresh flower delivery management methods mainly rely on manual experience for judgment. This method is prone to errors and inefficient in processing large-scale orders. Summary of the Invention

[0004] This application provides an order management method and system for a fresh flower sales platform to solve the above problems.

[0005] In a first aspect, this application provides an order management method for a fresh flower sales platform, and the method includes:

[0006] Obtain an order to be processed; analyze the order to be processed to determine bouquet information;

[0007] Analyze the bouquet information to determine the bouquet packing logic;

[0008] Determine the current quantity to be packed according to the order to be processed;

[0009] Determine a combined production plan according to the bouquet packing logic and the current quantity to be packed.

[0010] Through this solution, all order information to be processed is quickly collected. Through image recognition and natural language processing technologies, information such as the types, quantities, and arrangement relationships of the flower materials of the bouquet are accurately extracted. According to the bouquet information, a reasonable packing logic is formulated, including the size and shape of the flower mud, the cutting length of the flower materials, the spraying degree, etc., to ensure the beauty and stability of the bouquet. Combining the delivery time of the order and the available space in the warehouse, the number of bouquets to be packed currently is calculated to avoid excessive packing resulting in the inability to preserve the freshness of the fresh flowers. Similar orders are grouped together to formulate an optimal production plan, reducing resource waste and improving production efficiency. Through the above solution, it can directly replace manual judgment for fresh flower orders, which is more scientific and reasonable, and can also avoid errors caused by manual judgment and reduce the error probability.

[0011] Optionally, the order to be processed includes an order picture, and the analyzing the order to be processed to determine the bouquet information includes:

[0012] Determine the flower material type and material information according to the order picture;

[0013] Analyze the order picture to obtain the picture analysis result, and determine the arrangement relationship and floral material craftsmanship among several floral materials according to the picture analysis result.

[0014] Take the floral material type, the material information, the arrangement relationship, and the floral material craftsmanship as the bouquet information.

[0015] Through this solution, improve the picture quality, reduce noise interference, and provide clearer image data for floral material recognition. Accurately identify the types of floral materials in the picture to provide basic floral material information for bouquet making. Precisely count the quantity of each type of floral material to ensure the accurate preparation of materials for bouquet making. Determine the spatial relationship and hierarchical structure among the floral materials to provide guidance for the arrangement design of the bouquet. Analyze the craftsmanship requirements such as trimming, bundling, and decorating of the floral materials to provide craftsmanship guidance for bouquet making. Identify and extract the information of the packaging materials to ensure that the packaging of the bouquet meets the requirements. Integrate all bouquet-related information into a complete bouquet information data.

[0016] Optionally, the picture analysis result includes the quantity of floral materials; analyzing the bouquet information to determine the bouquet packing logic includes:

[0017] Determine the size and shape of the flower foam according to the arrangement relationship and the quantity of floral materials;

[0018] Analyze the arrangement relationship to determine the trimming length of each floral material;

[0019] Determine the spraying degree according to the floral material craftsmanship;

[0020] Determine the material placement information according to the material information and the picture analysis result;

[0021] Determine the bouquet packing logic according to the size and shape of the flower foam, the trimming length, the spraying degree, and the material placement information.

[0022] Through this solution, ensure that the flower foam can adapt to the arrangement and quantity of the floral materials, provide stable support for the bouquet, and at the same time reduce the demand for refrigerated space. Precisely trim the floral materials to meet the design requirements, improve the overall aesthetics and satisfaction of the bouquet. Through the spraying process, enhance the color and texture of the floral materials, improve the visual effect of the bouquet, and at the same time protect the floral materials from damage. Optimize the placement of materials to ensure the cleanliness and aesthetics of the bouquet packaging, and at the same time reduce material waste. Form a set of standardized bouquet packing processes, improve production efficiency, reduce human errors, and ensure that the bouquet remains in the best state during production and delivery.

[0023] Optionally, determining the current quantity to be packed according to the order to be processed includes:

[0024] Analyze the order to be processed and determine the document submission time for each order to be processed;

[0025] Obtain the fresh flower storage information, analyze the fresh flower storage information, and determine the available storage space;

[0026] Determine the current quantity to be packed according to the available storage space and the document submission time.

[0027] Through this solution, by analyzing the order time information, the urgency of each order can be grasped to ensure on-time delivery. Identifying the actual situation of the storage space helps to reasonably arrange the storage and packing of flower materials, avoiding order backlogs caused by insufficient space. Combining the storage capacity and order time requirements can scientifically plan the number of flower bouquets to be packed in the current time period and optimize the production process.

[0028] Optionally, the step of determining the current quantity to be packed according to the available storage space and the document submission time includes:

[0029] Obtain the order placement information and determine the delivery requirements according to the order placement information;

[0030] Determine the freshness degree of the fresh flowers according to the delivery requirements;

[0031] Determine the packing time according to the document submission time and the freshness degree of the fresh flowers;

[0032] Determine the current quantity to be packed according to the packing time and the available storage space.

[0033] Through this solution, order information can be quickly collected to ensure the accuracy of order processing. Clearly defining the delivery time and other requirements provides a basis for fresh flower preservation and delivery to ensure meeting expectations. According to the requirements for the freshness of fresh flowers in the order information, refrigeration and preservation measures are reasonably arranged to maintain the quality of fresh flowers and improve satisfaction. Ensure that the fresh flowers are packed in the best state, avoiding the decline in the quality of fresh flowers caused by early or late packing, which affects the experience. According to the actual storage capacity and order processing time, reasonably plan the quantity to be packed to avoid waste of resources caused by over-packing and ensure on-time delivery.

[0034] Optionally, the step of determining the combined production plan according to the flower bouquet packing logic and the current quantity to be packed includes:

[0035] Determine the design complexity of each order to be processed according to the flower bouquet packing logic;

[0036] Determine the packing duration according to the design complexity;

[0037] Analyze the flower bouquet packing logic to determine whether there are at least two orders to be processed with the same design method;

[0038] If it exists, at least two orders to be processed are combined according to the document submission time, and a combined production plan for the at least two orders to be processed is generated according to the bouquet packing logic.

[0039] Through this solution, by evaluating the design complexity of orders, resources and time can be reasonably allocated, orders with high complexity can be preferentially processed to ensure the smoothness of the production process. Accurately estimating the packing time for each order helps to better plan the production schedule and human resources and avoid production bottlenecks. Identifying orders with the same design method can reduce repetitive work and improve production efficiency. By combining orders with the same design method, mass production can be carried out, the number of times of switching production lines can be reduced, and production efficiency can be improved. Generating a production plan for combined orders makes the production process more standardized and systematic, reduces the possibility of errors, and at the same time improves the order processing speed.

[0040] Optionally, the method further includes:

[0041] Determine the production efficiency of the order to be processed according to the packing consumption duration;

[0042] Obtain the order quantity of the order to be processed at the current moment;

[0043] Determine whether to accept the order according to the production efficiency and the order quantity.

[0044] Through this solution, by analyzing the packing consumption duration, the production efficiency of each order is quantified, so as to more accurately predict the production capacity and delivery time and optimize the production process. Real-time obtaining of the order quantity helps to identify the current production pressure and resource requirements. Combining the production efficiency and the order quantity to make a decision on whether to accept a new order can avoid improper order processing due to insufficient resources or over-commitment.

[0045] Optionally, the determining the design complexity of each order to be processed according to the bouquet packing logic includes:

[0046] Determine the cutting time consumption of each flower material according to the flower material quantity and the cutting length;

[0047] Obtain spraying equipment information, and determine the spraying amount per unit time according to the spraying equipment information;

[0048] Determine the spraying time consumption according to the spraying degree and the spraying amount per unit time;

[0049] Analyze the material placement information and determine the deformation process of each material;

[0050] Determine the material adjustment time consumption and the material placement time consumption according to the deformation process;

[0051] Determine the difficulty of flower foam cutting according to the shape and size of the flower foam;

[0052] Determine the time required for flower foam cutting according to the difficulty of flower foam cutting;

[0053] Determine the design complexity of each order to be processed according to the cutting time, spraying time, material adjustment time, flower foam cutting time, and material placement time.

[0054] Through this solution, by quantifying the cutting time, the production process can be better planned to ensure that each type of flower material can be cut within the specified time, thus avoiding production delays. Collecting information about the spraying equipment helps identify the working efficiency of the equipment. By determining the spraying volume, the spraying work can be accurately planned to ensure that the spraying work can be completed efficiently. According to the spraying time, the time for the spraying work can be reasonably arranged to ensure that the spraying work can be completed on time. By analyzing the material placement information, the design requirements of the flower bouquet can be better analyzed. By calculating the material adjustment and placement time, the time for the material placement work can be accurately planned to ensure that the material placement work can be completed on time. By evaluating the difficulty of flower foam cutting, the flower foam cutting work can be arranged to ensure that the flower foam cutting work can be completed efficiently. According to the flower foam cutting time, the time for the flower foam cutting work can be reasonably arranged to ensure that the flower foam cutting work can be completed on time. By comprehensively calculating the cutting time, spraying time, material adjustment time, flower foam cutting time, and material placement time, the design complexity of each order can be accurately evaluated.

[0055] Optionally, when determining the design complexity of each order to be processed according to the cutting time, spraying time, material adjustment time, flower foam cutting time, and material placement time, refer to the following formula:

[0056] ;

[0057] Where represents the design complexity of each order to be processed; represents the cutting time of the th flower material; represents the number of flower materials; represents the influence degree of the cutting time of the flower materials on the design complexity of each order to be processed; represents the influence degree of the flower foam cutting time on the design complexity of each order to be processed; represents the flower foam cutting time; represents the influence degree of the material adjustment time on the design complexity of each order to be processed; represents the number of materials; represents the material adjustment time of each material; Indicates the degree of influence of the spraying time consumption on the design complexity of each order to be processed; Indicates the spraying time consumption; Indicates the degree of influence of the material placement time consumption on the design complexity of each order to be processed; Indicates the material placement time consumption of each material.

[0058] Through this solution, by collecting the cutting time consumption data, the actual time for flower material processing can be accurately identified. Calculating the total cutting time consumption helps to evaluate the total workload of flower material processing. Setting the influence degree of cutting time consumption helps to evaluate the order complexity according to the length of cutting time. By calculating the contribution value, the influence of cutting time consumption on the order complexity is quantified. Collecting the spraying time consumption data helps to analyze the efficiency of the spraying link. Setting the influence degree of spraying time consumption helps to evaluate the order complexity according to the length of spraying time. By calculating the contribution value, the influence of spraying time consumption on the order complexity is quantified. Collecting the material adjustment time consumption data helps to analyze the efficiency of the material adjustment link. Calculating the total adjustment time consumption helps to evaluate the total workload of material adjustment. Setting the influence degree of material adjustment time consumption helps to evaluate the order complexity according to the length of material adjustment time. By calculating the contribution value, the influence of material adjustment time consumption on the order complexity is quantified. Collecting the flower foam cutting time consumption data helps to analyze the efficiency of the flower foam cutting link. Setting the influence degree of flower foam cutting time consumption helps to evaluate the order complexity according to the length of flower foam cutting time. Setting the influence degree of flower foam cutting time consumption helps to evaluate the order complexity according to the length of flower foam cutting time. Collecting the material placement time consumption data helps to analyze the efficiency of the material placement link. Calculating the total placement time consumption helps to evaluate the total workload of material placement. Setting the influence degree of material placement time consumption helps to evaluate the order complexity according to the length of material placement time. By calculating the contribution value, the influence of material placement time consumption on the order complexity is quantified. By calculating the design complexity of the order, orders can be managed more effectively, the production process can be optimized, production efficiency can be improved, and high-quality fresh flower products can be ensured to be delivered on time.

[0059] In a second aspect, the present application provides an order management system for a fresh flower sales platform, and the system includes:

[0060] An order analysis module, configured to obtain an order to be processed; analyze the order to be processed to determine flower bouquet information;

[0061] An information analysis module, configured to analyze the flower bouquet information to determine the flower bouquet packing logic;

[0062] A packing analysis module, configured to determine the current quantity to be packed according to the order to be processed;

[0063] A production combination module, configured to determine a combination production plan according to the flower bouquet packing logic and the current quantity to be packed.

[0064] Optionally, when the order to be processed includes an order picture and the order analysis module analyzes the order to be processed to determine the bouquet information, it is used for:

[0065] Determine the type of flower materials and material information according to the order picture;

[0066] Analyze the order picture to obtain a picture analysis result, and determine the arrangement relationship and flower material process among several flower materials according to the picture analysis result;

[0067] Use the type of flower materials, the material information, the arrangement relationship and the flower material process as the bouquet information.

[0068] Optionally, when the picture analysis result includes the quantity of flower materials, and the information analysis module analyzes the bouquet information to determine the bouquet packing logic, it is used for:

[0069] Determine the size and shape of the flower mud according to the arrangement relationship and the quantity of flower materials;

[0070] Analyze the arrangement relationship to determine the cutting length of each flower material;

[0071] Determine the spraying degree according to the flower material process;

[0072] Determine the material placement information according to the material information and the picture analysis result;

[0073] Determine the bouquet packing logic according to the size and shape of the flower mud, the cutting length, the spraying degree and the material placement information.

[0074] Optionally, when the packing analysis module determines the current quantity to be packed according to the order to be processed, it is used for:

[0075] Analyze the order to be processed to determine the delivery time of each order to be processed;

[0076] Obtain the fresh flower storage information, analyze the fresh flower storage information, and determine the available storage space;

[0077] Determine the current quantity to be packed according to the available storage space and the delivery time.

[0078] Optionally, when the packing analysis module determines the current quantity to be packed according to the available storage space and the delivery time, it is used for:

[0079] Obtain the order placement information, and determine the receiving requirements according to the order placement information;

[0080] Determine the freshness degree of fresh flowers according to the receiving requirements;

[0081] Determine the packing time according to the document submission time and the freshness preservation degree of the fresh flowers;

[0082] Determine the current quantity to be packed according to the packing time and the available storage space.

[0083] Optionally, when determining the combined production plan according to the bouquet packing logic and the current quantity to be packed, the production combination module is used for:

[0084] Determine the design complexity of each order to be processed according to the bouquet packing logic;

[0085] Determine the packing consumption duration according to the design complexity;

[0086] Analyze the bouquet packing logic to determine whether there are at least two orders to be processed with the same design method;

[0087] If so, combine at least two orders to be processed according to the document submission time, and generate a combined production plan for the at least two orders to be processed according to the bouquet packing logic.

[0088] Optionally, the order management system of the fresh flower sales platform includes an order receiving judgment module, which is used for:

[0089] Determine the production efficiency of the order to be processed according to the packing consumption duration;

[0090] Obtain the order quantity of the order to be processed at the current moment;

[0091] Determine whether to receive the order according to the production efficiency and the order quantity.

[0092] Optionally, when determining the design complexity of each order to be processed according to the bouquet packing logic, the production combination module is used for:

[0093] Determine the cutting time of each flower material according to the quantity of the flower materials and the cutting length;

[0094] Obtain the spraying equipment information, and determine the spraying quantity per unit time according to the spraying equipment information;

[0095] Determine the spraying time according to the spraying degree and the spraying quantity per unit time;

[0096] Analyze the material placement information to determine the deformation process of each material;

[0097] Determine the material adjustment time and the material placement time according to the deformation process;

[0098] Determine the difficulty of flower mud cutting according to the shape and size of the flower mud;

[0099] Determine the time required for flower mud cutting according to the difficulty of flower mud cutting;

[0100] Determine the design complexity of each order to be processed according to the cutting time, the spraying time, the material adjustment time, the flower mud cutting time, and the material placement time.

[0101] Optionally, the production combination module determines the design complexity of each order to be processed according to the cutting time, the spraying time, the material adjustment time, the flower mud cutting time, and the material placement time, referring to the following formula:

[0102] ;

[0103] Wherein, represents the design complexity of each order to be processed; represents the cutting time of the th flower material; represents the number of the flower materials; represents the influence degree of the cutting time of the flower materials on the design complexity of each order to be processed; represents the influence degree of the flower mud cutting time on the design complexity of each order to be processed; represents the flower mud cutting time; represents the influence degree of the material adjustment time on the design complexity of each order to be processed; represents the number of materials; represents the material adjustment time of each material; represents the influence degree of the spraying time on the design complexity of each order to be processed; represents the spraying time; represents the influence degree of the material placement time on the design complexity of each order to be processed; represents the material placement time of each material. BRIEF DESCRIPTION OF THE DRAWINGS

[0104] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained according to these drawings without creative efforts.

[0105] Figure 1 It is a schematic diagram of an application scenario provided by an embodiment of the present application;

[0106] Figure 2Flowchart of an order management method for a fresh flower sales platform provided by an embodiment of the present application;

[0107] Figure 3 Schematic structural diagram of an order management system for a fresh flower sales platform provided by an embodiment of the present application. Detailed implementation manners

[0108] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Apparently, the described embodiments are some but not all of the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.

[0109] In addition, the term "and / or" in this article is only a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can represent: A exists alone, A and B exist simultaneously, and B exists alone. In addition, the character " / " in this article generally represents an "or" relationship between the associated objects before and after, unless otherwise specified.

[0110] The embodiments of the present application will be further described in detail below with reference to the accompanying drawings of the specification.

[0111] The order management of modern fresh flower sales platforms usually can only achieve simple inbound and outbound and collection. In the processing of a large number of orders for fresh flower sales, how to ensure the quality of flower materials and the timeliness of delivery is crucial, which is also beyond the reach of existing order management systems.

[0112] Traditional fresh flower delivery management methods mainly rely on manual experience for judgment. This method is prone to errors and has low efficiency when dealing with large-scale orders.

[0113] Based on this, the present application provides an order management method and system for a fresh flower sales platform, which includes obtaining orders to be processed, analyzing the orders to be processed to determine bouquet information, analyzing the bouquet information to determine the bouquet packing logic, determining the current quantity to be packed according to the orders to be processed, and determining a combined production plan according to the bouquet packing logic and the current quantity to be packed. All orders to be processed can be quickly collected. Through image recognition and natural language processing technologies, information such as the types, quantities, and arrangement relationships of the flower materials in the bouquet can be accurately extracted. According to the bouquet information, a reasonable packing logic can be formulated, including the size and shape of the flower foam, the cutting length of the flower materials, the spraying degree, etc., to ensure the beauty and stability of the bouquet. Combining the delivery time of the order and the available space in the warehouse, the number of bouquets to be packed currently can be calculated to avoid over-packing that may cause the fresh flowers to lose freshness. Similar orders can be combined together to formulate an optimal production plan, reducing resource waste and improving production efficiency. Through the above solution, it can directly replace manual judgment of fresh flower orders, which is more scientific and reasonable, and can also avoid errors caused by manual judgment, reducing the error probability.

[0114] Figure 1 FIG. 4 is a schematic diagram of an application scenario provided by the present application. In the fresh flower sales scenario, the method provided by the present application is applied to obtain orders to be processed, analyze the orders to be processed to determine bouquet information, analyze the bouquet information to determine the bouquet packing logic, determine the current quantity to be packed according to the orders to be processed, and determine a combined production plan according to the bouquet packing logic and the current quantity to be packed.

[0115] Specifically, the method provided by the present application is applied to any server. The server interacts with the fresh flower order management system to quickly collect all order information to be processed in the fresh flower order management system. Through image recognition and natural language processing technologies, information such as the types, quantities, and arrangement relationships of the flower materials in the bouquet can be accurately extracted. According to the bouquet information, a reasonable packing logic can be formulated, including the size and shape of the flower foam, the cutting length of the flower materials, the spraying degree, etc., to ensure the beauty and stability of the bouquet. Combining the delivery time of the order and the available space in the warehouse, the number of bouquets to be packed currently can be calculated to avoid over-packing that may cause the fresh flowers to lose freshness. Similar orders can be combined together to formulate an optimal production plan, reducing resource waste and improving production efficiency. Through the above solution, it can directly replace manual judgment of fresh flower orders, which is more scientific and reasonable, and can also avoid errors caused by manual judgment, reducing the error probability. The specific implementation method can refer to the following embodiments.

[0116] Figure 2 FIG. 11 is a flowchart of an order management method for a fresh flower sales platform provided by an embodiment of the present application. The method of this embodiment can be applied to the server in the above scenario. As Figure 2 shown, the method includes:

[0117] S201. Obtain the order to be processed; analyze the order to be processed and determine the bouquet information;

[0118] The order to be processed can be an order on a fresh flower sales platform that has not been processed or is waiting to be processed.

[0119] Specifically, the platform collects order information such as customized pictures and order details to be processed from various channels. Use image recognition technology to process the order pictures, identify features such as flower material types, colors, and shapes. Classify and count the flower materials through a deep learning model to determine the types and quantities of flower materials. According to the image analysis results, further determine the arrangement relationship of the flower materials, the overall structure of the bouquet, and the required material information. Use natural language processing technology to analyze the provided text description to determine the bouquet information.

[0120] S202. Analyze the bouquet information and determine the bouquet packing logic;

[0121] The bouquet information can be the types, quantities, colors, arrangement methods of the flower materials extracted from the order to be processed, as well as the required packaging materials and processes.

[0122] The bouquet packing logic can be the specific packing steps and methods formulated according to the bouquet information to ensure the integrity and beauty of the bouquet during transportation and delivery.

[0123] Specifically, according to the bouquet information, analyze and determine the size and shape of the flower foam, the cutting length of the flower materials, the spraying degree, etc. of the bouquet packing logic. Use an optimization algorithm to determine the best plan for material placement to reduce packaging time and costs.

[0124] S203. Determine the current quantity to be packed according to the order to be processed;

[0125] Specifically, analyze the order submission time, obtain the status of available storage space and refrigeration facilities and other fresh flower warehousing information. According to the warehousing information and the order submission time, calculate the current quantity to be packed to ensure that the bouquet can be delivered in the best state.

[0126] S204. Determine the combined production plan according to the bouquet packing logic and the current quantity to be packed.

[0127] The current quantity to be packed can be the number of bouquets that need to be packed within a certain period of time.

[0128] The combined production plan can be a plan to combine multiple similar orders for mass production.

[0129] Specifically, according to the bouquet packing logic and the current quantity to be packed, combine similar orders and formulate a combined production plan. Consider the design complexity and the duration of packing consumption, and optimize the order production process.

[0130] Through this solution, all pending order information can be quickly collected. Through image recognition and natural language processing technologies, information such as the types, quantities, and arrangement relationships of the flower materials in the bouquet can be accurately extracted. Based on the bouquet information, a reasonable packing logic is formulated, including the size and shape of the floral foam, the cutting lengths of the flower materials, the spraying degree, etc., to ensure the beauty and stability of the bouquet. Combining the delivery time of the order and the available space in the warehouse, the number of bouquets to be packed currently is calculated to avoid over-packing, which may cause the fresh flowers to lose freshness. Similar orders are grouped together to formulate an optimal production plan, reducing resource waste and improving production efficiency. Through the above solution, the judgment of fresh flower orders can be directly substituted for manual work, which is more scientific and reasonable. Moreover, it can also avoid the errors caused by manual judgment and reduce the error probability. Through the above solution, the judgment of fresh flower orders can be directly substituted for manual work, which is more scientific and reasonable. Moreover, it can also avoid the errors caused by manual judgment and reduce the error probability.

[0131] In some embodiments, according to the order picture, the flower material type and material information are determined; the order picture is analyzed to obtain a picture analysis result, and based on the picture analysis result, the arrangement relationship and flower material process among several flower materials are determined; the flower material type, material information, arrangement relationship, and flower material process are used as the bouquet information.

[0132] The order picture can be a picture submitted on a fresh flower sales platform for customizing a bouquet.

[0133] The flower material type can be the types of various flowers such as roses, lilies, carnations, etc. used in the bouquet.

[0134] The material information can be non-flower materials such as wrapping paper, ribbon, floral foam, etc. used in the process of making the bouquet.

[0135] The picture analysis result can be data and conclusions such as the recognition result, quantity statistics, and arrangement relationship of the flower materials obtained by analyzing the order picture.

[0136] The arrangement relationship can be the relative positions and hierarchical structures of various flower materials in the bouquet.

[0137] The flower material process can be processing methods such as trimming, bundling, and dyeing of the flower materials during the production process.

[0138] Specifically, preprocess the order pictures by resizing the pictures, enhancing image clarity, removing noise, etc. Use image recognition technology to analyze the preprocessed pictures and identify the types of flower materials in the pictures. Through image segmentation and counting technology, count the quantity of each type of flower material in the pictures. Use image processing technology to analyze the positional relationship of the flower materials in the pictures and determine the arrangement order and hierarchical structure among the flower materials. According to the shape, color, and arrangement of the flower materials, analyze the required processes such as pruning, bundling, and decoration. Identify the packaging materials such as paper and ribbon in the pictures and extract relevant information such as color and material. Integrate the identified flower material types, quantities, arrangement relationships, flower material processes, and material information into bouquet information data.

[0139] Through this solution, improve the picture quality, reduce noise interference, and provide clearer image data for flower material recognition. Accurately identify the types of flower materials in the pictures and provide basic flower material information for bouquet making. Precisely count the quantity of each type of flower material to ensure the accurate preparation of materials for bouquet making. Determine the spatial relationship and hierarchical structure among the flower materials to provide guidance for the arrangement design of the bouquet. Analyze the process requirements such as pruning, bundling, and decoration of the flower materials to provide process guidance for bouquet making. Identify and extract the information of the packaging materials to ensure that the packaging of the bouquet meets the requirements. Integrate all bouquet-related information into complete bouquet information data.

[0140] In some embodiments, determine the size and shape of the floral foam according to the arrangement relationship and the quantity of flower materials; analyze the arrangement relationship to determine the cutting length of each flower material; determine the spraying degree according to the flower material process; determine the material placement information according to the material information and the picture analysis results; determine the bouquet packing logic according to the size of the floral foam, the shape of the floral foam, the cutting length, the spraying degree, and the material placement information.

[0141] The quantity of flower materials can be the number of main flower materials and auxiliary flower materials used in the bouquet.

[0142] The size of the floral foam can fix the volume or size of the floral foam according to the size of the bouquet and the quantity of flower materials.

[0143] The shape of the floral foam can be any shape suitable for bouquet design, such as round or square of the floral foam.

[0144] The cutting length can be the cutting length of the flower material from the bottom to the top.

[0145] The spraying degree can be the thickness and uniformity of the color or substance sprayed on the surface of the flower material.

[0146] The material placement information can be the placement position and method of non-flower material such as wrapping paper, ribbon, and ornaments used in the process of making the bouquet.

[0147] Specifically, according to the quantity and arrangement relationship of flower materials, an algorithm is used to calculate the size and shape of the required floral foam to ensure that the flower materials can be stably fixed on the floral foam. Analyze the position and proportion of the flower materials in the picture, and calculate the cutting length of each flower material to meet the design requirements of the bouquet. According to the requirements of the flower material process, determine the spraying color, coating thickness and other spraying degrees of the flower materials. According to the material information and the analysis results of the picture, determine the placement positions and methods of packaging materials, ornaments and other materials. Integrate the floral foam size, floral foam shape, flower material cutting length, spraying degree and material placement information together to form a complete bouquet packaging logic.

[0148] Through this solution, ensure that the floral foam can adapt to the arrangement and quantity of flower materials, provide stable support for the bouquet, and at the same time reduce the demand for refrigerated space. Precisely cut the flower materials to meet the design requirements, improve the overall aesthetics and satisfaction of the bouquet. Through the spraying process, enhance the color and texture of the flower materials, improve the visual effect of the bouquet, and at the same time protect the flower materials from damage. Optimize the placement of materials to ensure the cleanliness and aesthetics of the bouquet packaging, and at the same time reduce material waste. Form a set of standardized bouquet packaging processes, improve production efficiency, reduce human errors, and ensure that the bouquet remains in the best condition during production and delivery.

[0149] In some embodiments, analyze the orders to be processed, and determine the delivery time of each order to be processed; obtain the fresh flower storage information, analyze the fresh flower storage information, and determine the available storage space; according to the available storage space and the delivery time, determine the current quantity to be packed.

[0150] The delivery time can be the time when the order is expected to be received or the deadline for committing to deliver the order.

[0151] The fresh flower storage information can be detailed information about the space capacity, flower material types and quantities, storage conditions, etc. of fresh flower storage facilities such as refrigerators and warehouses.

[0152] The available storage space can be the storage space in the fresh flower storage facility that is unoccupied and available for storing the flower materials of new orders.

[0153] Specifically, extract detailed information such as the submission time and expected delivery time of the orders to be processed from the order management system. Collect real-time data such as the refrigerated space capacity of the fresh flower storage, the current quantity and types of stored flower materials. Analyze the storage data, calculate the current available free positions in the refrigerators and the storage space in the temporary storage areas. According to the delivery time of each order and the available storage space, use sorting algorithms or priority queues to sort the orders, and give priority to processing the orders that are about to expire. According to the sorting results and the limitations of the storage space, determine the number of bouquets that can be packed within a certain period of time, that is, the current quantity to be packed.

[0154] Through this solution, by analyzing the order time information, it is possible to grasp the urgency of each order and ensure on-time delivery. Identifying the actual situation of the storage space helps to reasonably arrange the storage and packing of flower materials, avoiding order backlogs caused by insufficient space. Combining the storage capacity and the order time requirements can scientifically plan the number of flower bouquets to be packed in the current time period and optimize the production process.

[0155] In some embodiments, order placement information is obtained. According to the order placement information, the receiving requirements are determined; according to the receiving requirements, the freshness degree of the fresh flowers is determined; according to the delivery time and the freshness degree of the fresh flowers, the packing time is determined; according to the packing time and the available storage space, the current quantity to be packed is determined.

[0156] The order placement information can be order details such as contact information, receiving address, selected types and quantities of flower materials, flower bouquet design requirements, and submission time submitted on the fresh flower sales platform.

[0157] The receiving requirements can be specific requirements for the receiving time, location, and method of the order.

[0158] The freshness degree of the fresh flowers can be the degree of freshness that the fresh flowers need to maintain during storage and transportation.

[0159] The packing time can be the time point from when the flower bouquet is made to when it is packed and ready for delivery.

[0160] Specifically, receiving address, delivery time, special requirements and other order placement information are extracted from order management. The order placement information is analyzed to determine receiving requirements such as the expected delivery time and whether cold chain delivery is required. According to the receiving requirements, the degree of freshness that the fresh flowers need to maintain is determined. Combining the delivery time and the freshness degree of the fresh flowers, the optimal packing time for the flower bouquet is calculated to ensure that the fresh flowers are still fresh when delivered. Considering the packing time and the available storage space, the number of flower bouquets that can be packed in the current time period is calculated.

[0161] Through this solution, order information is quickly collected to ensure the accuracy of order processing. The receiving time and other requirements are clarified, providing a basis for fresh flower preservation and delivery to ensure that expectations are met. According to the requirements for the freshness of the fresh flowers in the order information, refrigeration and preservation measures are reasonably arranged to maintain the quality of the fresh flowers and improve satisfaction. Ensure that the fresh flowers are packed in the best state, avoiding a decline in the quality of the fresh flowers caused by early or late packing, which affects the experience. According to the actual storage capacity and order processing time, the quantity to be packed is reasonably planned to avoid waste of resources caused by over-packing, and at the same time ensure on-time delivery.

[0162] In some embodiments, according to the bouquet packaging logic, determine the design complexity of each order to be processed; according to the design complexity, determine the packaging consumption duration; analyze the bouquet packaging logic to determine whether there are at least two orders to be processed with the same design method; if so, combine at least two orders to be processed according to the order submission time, and generate a combined production plan for at least two orders to be processed according to the bouquet packaging logic.

[0163] The design complexity can be the degree of complexity in aspects such as the types, quantities, collocation methods of the flower materials required when making a bouquet, and the overall shape of the bouquet.

[0164] The packaging consumption duration can be the time required from the completion of bouquet production to the completion of packaging.

[0165] The same design method can mean that two or more bouquets are similar in terms of the types, quantities, collocation methods of the flower materials, and the overall shape.

[0166] Specifically, analyze the types, quantities, arrangement relationships of the flower materials of each order to be processed, as well as the required materials and processes, and evaluate its design complexity according to the bouquet packaging logic. According to the design complexity, use a preset standard to estimate the packaging consumption duration of each order. By comparing the design characteristics of the orders to be processed, identify the orders with the same design method. According to the urgency of the order submission time, decide whether to combine the orders with the same design method to optimize the production process. Combine the bouquet packaging logic and the order combination to generate a production plan for the combined orders.

[0167] Through this solution, by evaluating the design complexity of the orders, resources and time can be reasonably allocated, giving priority to processing orders with high complexity to ensure the smoothness of the production process. Accurately estimating the packaging time for each order helps to better plan the production plan and human resources, avoiding production bottlenecks. Identifying orders with the same design method reduces repetitive work and improves production efficiency. By combining orders with the same design method, batch production can be carried out, reducing the number of times of switching production lines and improving production efficiency. Generating a production plan for the combined orders makes the production process more standardized and systematic, reducing the possibility of errors and at the same time improving the order processing speed.

[0168] In some embodiments, according to the packaging consumption duration, determine the production efficiency of the order to be processed; obtain the order quantity of the order to be processed at the current moment; according to the production efficiency and the order quantity, determine whether to accept the order.

[0169] The production efficiency can be the ability to complete an order within a certain period of time.

[0170] The current moment can be the real-time state of order processing.

[0171] The order quantity can be the total number of orders to be processed or already processed within a certain time range.

[0172] Specifically, extract the data on the packing consumption time of each order to be processed from the order management. Using the packing consumption time data and combining with historical production data, calculate the production efficiency of each order. Query the order management in real time to obtain the number of orders to be processed at the current moment. Combine the production efficiency and the current order quantity to evaluate whether there are sufficient resources and capabilities to accept orders.

[0173] Through this solution, by analyzing the packing consumption time, quantify the production efficiency of each order, so as to more accurately predict the production capacity and delivery time, and optimize the production process. Obtaining the order quantity in real time helps to identify the current production pressure and resource requirements. Combine the production efficiency and the order quantity to make a decision on whether to accept new orders, and avoid improper order processing due to insufficient resources or over-commitment.

[0174] In some embodiments, determine the cutting time of each flower material according to the quantity and cutting length of the flower materials; obtain the spraying equipment information, and determine the spraying amount per unit time according to the spraying equipment information; determine the spraying time according to the spraying degree and the spraying amount per unit time; analyze the material placement information and determine the deformation process of each material; determine the material adjustment time and the material placement time according to the deformation process; determine the difficulty of flower mud cutting according to the shape and size of the flower mud; determine the flower mud cutting time according to the difficulty of flower mud cutting; determine the design complexity of each order to be processed according to the cutting time, spraying time, material adjustment time, flower mud cutting time and material placement time.

[0175] The cutting time can be the time required to cut the flower materials from the whole into the required length and shape.

[0176] The spraying equipment information can be various technical parameters and performance indicators such as the spraying speed, spraying range, equipment capacity, maintenance requirements, etc. of the spraying equipment.

[0177] The spraying amount per unit time can be the amount of spraying that can be completed within a certain time period.

[0178] The spraying amount can be the number of sprayings that the spraying equipment can handle per unit time.

[0179] The spraying time can be the time required to complete the spraying of the flower materials.

[0180] The deformation process can be the morphological changes that the materials experience during the production process.

[0181] The material adjustment time can be the time required to adjust the position, correct the shape or combine and match the materials during the production process.

[0182] The material placement time can be the time required to place the materials at the specified positions.

[0183] The difficulty of flower foam cutting can be the level of difficulty of the cutting work evaluated according to the hardness of the flower foam and the efficiency of the cutting tool.

[0184] The time taken for flower foam cutting can be the time required to complete the flower foam cutting work.

[0185] Specifically, according to the types and cutting lengths of the flower materials, combined with the characteristics of the flower materials and the capabilities of the cutting equipment, calculate the cutting time for each type of flower material. Obtain relevant parameters such as the spraying speed and spraying range of the spraying equipment from the operation manual or production records of the spraying equipment. According to the information of the spraying equipment, calculate the spraying volume that the spraying equipment can handle per unit time. According to the spraying degree and the spraying volume per unit time, calculate the time required to complete the spraying. Analyze the placement methods and deformation processes of materials such as flower foam and flower racks used in the flower bouquet design. According to the placement information and deformation process of the materials, calculate the time required for material adjustment and placement. According to the shape and size of the flower foam and the characteristics of the cutting tool, evaluate the difficulty of flower foam cutting. According to the difficulty of flower foam cutting and the efficiency of the cutting tool, calculate the time required for flower foam cutting. Add up the cutting time, spraying time, material adjustment time, flower foam cutting time, and material placement time, etc., to obtain the design complexity of each order to be processed.

[0186] Through this solution, by quantifying the cutting time, the production process can be better planned to ensure that each type of flower material can be cut within the specified time, thus avoiding production delays. Collecting information about the spraying equipment helps to identify the working efficiency of the equipment. By determining the spraying volume, the spraying work can be accurately planned to ensure that the spraying work can be completed efficiently. According to the spraying time, the time for the spraying work can be reasonably arranged to ensure that the spraying work can be completed on time. By analyzing the material placement information, the design requirements of the flower bouquet can be better analyzed. By calculating the time for material adjustment and placement, the time for the material placement work can be accurately planned to ensure that the material placement work can be completed on time. By evaluating the difficulty of flower foam cutting, arrange the flower foam cutting work to ensure that the flower foam cutting work can be completed efficiently. According to the flower foam cutting time, the time for the flower foam cutting work can be reasonably arranged to ensure that the flower foam cutting work can be completed on time. By comprehensively calculating the cutting time, spraying time, material adjustment time, flower foam cutting time, and material placement time, accurately evaluate the design complexity of each order.

[0187] ;

[0188] Among them, represents the design complexity of each order to be processed; represents the th cutting time of the flower material; represents the quantity of the flower materials; Indicates the degree of influence of the cutting time of the flower materials on the design complexity of each order to be processed; Indicates the degree of influence of the cutting time of the flower foam on the design complexity of each order to be processed; Indicates the cutting time of the flower foam; Indicates the degree of influence of the material adjustment time on the design complexity of each order to be processed; Indicates the quantity of materials; Indicates the material adjustment time of each material; Indicates the degree of influence of the spraying time on the design complexity of each order to be processed; Indicates the spraying time; Indicates the degree of influence of the material placement time on the design complexity of each order to be processed; Indicates the material placement time of each material.

[0189] The degree of influence can be the impact strength of a certain factor on the overall effect or result.

[0190] The quantity of materials can be the total number of various materials used in the order.

[0191] Specifically, collect the cutting time data of each flower material from the production records. Add up the cutting times of each flower material to obtain the total cutting time of the flower materials. Set the degree of influence of the cutting time on the design complexity. Multiply the total cutting time of the flower materials by the degree of influence of the cutting time to obtain the contribution value of the cutting time to the design complexity. Collect the spraying time data from the production records of the spraying equipment. Set the degree of influence of the spraying time on the design complexity. Multiply the spraying time by the degree of influence of the spraying time to obtain the contribution value of the spraying time to the design complexity. Collect the material adjustment time data of each material from the production records. Add up the material adjustment times of each material to obtain the total material adjustment time. Set the degree of influence of the material adjustment time on the design complexity. Multiply the total material adjustment time by the degree of influence of the material adjustment time to obtain the contribution value of the material adjustment time to the design complexity. Collect the cutting time data of the flower foam from the production records. Set the degree of influence of the cutting time of the flower foam on the design complexity. Multiply the cutting time of the flower foam by the degree of influence of the cutting time of the flower foam to obtain the contribution value of the cutting time of the flower foam to the design complexity. Collect the material placement time data of each material from the production records. Add up the material placement times of each material to obtain the total material placement time. Set the degree of influence of the material placement time on the design complexity. Multiply the total material placement time by the degree of influence of the material placement time to obtain the contribution value of the material placement time to the design complexity. Add up the contribution values of the cutting time, spraying time, material adjustment time, cutting time of the flower foam, and material placement time to obtain the design complexity of each order to be processed.

[0192] Through this solution, by collecting the data of the cutting time consumption, the actual time of flower material processing can be accurately identified. Calculating the total cutting time consumption helps to evaluate the total workload of flower material processing. Setting the influence degree of cutting time consumption helps to evaluate the order complexity according to the length of cutting time. By calculating the contribution value, the influence of cutting time consumption on the order complexity is quantified. Collecting the data of spraying time consumption helps to analyze the efficiency of the spraying link. Setting the influence degree of spraying time consumption helps to evaluate the order complexity according to the length of spraying time. By calculating the contribution value, the influence of spraying time consumption on the order complexity is quantified. Collecting the data of material adjustment time consumption helps to analyze the efficiency of the material adjustment link. Calculating the total adjustment time consumption helps to evaluate the total workload of material adjustment. Setting the influence degree of material adjustment time consumption helps to evaluate the order complexity according to the length of material adjustment time. By calculating the contribution value, the influence of material adjustment time consumption on the order complexity is quantified. Collecting the data of flower mud cutting time consumption helps to analyze the efficiency of the flower mud cutting link. Setting the influence degree of flower mud cutting time consumption helps to evaluate the order complexity according to the length of flower mud cutting time. Setting the influence degree of flower mud cutting time consumption helps to evaluate the order complexity according to the length of flower mud cutting time. Collecting the data of material placement time consumption helps to analyze the efficiency of the material placement link. Calculating the total placement time consumption helps to evaluate the total workload of material placement. Setting the influence degree of material placement time consumption helps to evaluate the order complexity according to the length of material placement time. By calculating the contribution value, the influence of material placement time consumption on the order complexity is quantified. By calculating the design complexity of the order, the order can be managed more effectively, the production process can be optimized, the production efficiency can be improved, and high-quality fresh flower products can be delivered on time.

[0193] Figure 3 As shown in the structural schematic diagram of an order management system for a fresh flower sales platform provided by an embodiment of the present application, Figure 3 As shown, the order management system 300 of the fresh flower sales platform in this embodiment includes: an order analysis module 301, an information analysis module 302, a packaging analysis module 303, and a production combination module 304.

[0194] The order analysis module 301 is used to obtain the order to be processed; analyze the order to be processed to determine the bouquet information;

[0195] The information analysis module 302 is used to analyze the bouquet information to determine the bouquet packaging logic;

[0196] The packaging analysis module 303 is used to determine the current quantity to be packaged according to the order to be processed;

[0197] The production combination module 304 is used to determine the combination production plan according to the bouquet packaging logic and the current quantity to be packaged.

[0198] Optionally, the order to be processed includes an order picture. When the order analysis module 301 analyzes the order to be processed and determines the bouquet information, it is used for:

[0199] Determine the flower material type and material information according to the order picture;

[0200] Analyze the order picture to obtain a picture analysis result, and determine the arrangement relationship and flower material process among several flower materials according to the picture analysis result;

[0201] Use the flower material type, the material information, the arrangement relationship, and the flower material process as the bouquet information.

[0202] Optionally, the picture analysis result includes the quantity of flower materials. When the information analysis module 302 analyzes the bouquet information and determines the bouquet packing logic, it is used for:

[0203] Determine the size and shape of the flower mud according to the arrangement relationship and the quantity of flower materials;

[0204] Analyze the arrangement relationship to determine the cutting length of each flower material;

[0205] Determine the spraying degree according to the flower material process;

[0206] Determine the material placement information according to the material information and the picture analysis result;

[0207] Determine the bouquet packing logic according to the size of the flower mud, the shape of the flower mud, the cutting length, the spraying degree, and the material placement information.

[0208] Optionally, when the packing analysis module 303 determines the current quantity to be packed according to the order to be processed, it is used for:

[0209] Analyze the order to be processed to determine the delivery time of each order to be processed;

[0210] Obtain the fresh flower storage information, analyze the fresh flower storage information, and determine the available storage space;

[0211] Determine the current quantity to be packed according to the available storage space and the delivery time.

[0212] Optionally, when the packing analysis module 303 determines the current quantity to be packed according to the available storage space and the delivery time, it is used for:

[0213] Obtain the order placement information and determine the receiving requirements according to the order placement information;

[0214] Determine the freshness preservation degree of the fresh flowers according to the receiving requirements;

[0215] Determine the packing time according to the document submission time and the freshness preservation degree of the fresh flowers;

[0216] Determine the current quantity to be packed according to the packing time and the available storage space.

[0217] Optionally, when determining the combined production plan according to the bouquet packing logic and the current quantity to be packed, the production combination module 304 is used for:

[0218] Determine the design complexity of each order to be processed according to the bouquet packing logic;

[0219] Determine the packing consumption duration according to the design complexity;

[0220] Analyze the bouquet packing logic to determine whether there are at least two orders to be processed with the same design method;

[0221] If so, combine at least two orders to be processed according to the document submission time, and generate a combined production plan for the at least two orders to be processed according to the bouquet packing logic.

[0222] Optionally, the order management system 300 of the fresh flower sales platform includes an order receiving judgment module 305, which is used for:

[0223] Determine the production efficiency of the order to be processed according to the packing consumption duration;

[0224] Obtain the order quantity of the order to be processed at the current moment;

[0225] Determine whether to receive the order according to the production efficiency and the order quantity.

[0226] Optionally, when determining the design complexity of each order to be processed according to the bouquet packing logic, the production combination module 304 is used for:

[0227] Determine the cutting time of each flower material according to the quantity of flower materials and the cutting length;

[0228] Obtain the spraying equipment information, and determine the spraying quantity per unit time according to the spraying equipment information;

[0229] Determine the spraying time according to the spraying degree and the spraying quantity per unit time;

[0230] Analyze the material placement information to determine the deformation process of each material;

[0231] Determine the material adjustment time and the material placement time according to the deformation process;

[0232] Determine the difficulty of flower mud cutting according to the shape and size of the flower mud;

[0233] Determine the time taken for flower mud cutting according to the difficulty of flower mud cutting.

[0234] Determine the design complexity of each order to be processed according to the cutting time, the spraying time, the material adjustment time, the flower mud cutting time, and the material placement time.

[0235] Optionally, the production combination module 304 determines the design complexity of each order to be processed according to the cutting time, the spraying time, the material adjustment time, the flower mud cutting time, and the material placement time, referring to the following formula:

[0236] ;

[0237] Wherein, represents the design complexity of each order to be processed; represents the cutting time of the th flower material; represents the quantity of the flower materials; represents the influence degree of the cutting time of the flower materials on the design complexity of each order to be processed; represents the influence degree of the flower mud cutting time on the design complexity of each order to be processed; represents the flower mud cutting time; represents the influence degree of the material adjustment time on the design complexity of each order to be processed; represents the quantity of materials; represents the material adjustment time of each material; represents the influence degree of the spraying time on the design complexity of each order to be processed; represents the spraying time; represents the influence degree of the material placement time on the design complexity of each order to be processed; represents the material placement time of each material.

[0238] The system of this embodiment can be used to execute the method of any of the above embodiments, and its implementation principle and technical effects are similar, which will not be elaborated here.

Claims

1. An order management method for a flower selling platform, characterized in that: include: Get pending orders; Analyze the pending order and determine the bouquet information; Analyze the bouquet information and determine bouquet packaging logic; Determine the current quantity to be packaged according to the pending orders; Determine a combination production plan according to the bouquet packaging logic and the current amount to be packaged; The step of determining a combination production plan according to the bouquet packaging logic and the current amount to be packaged includes: Determine the design complexity of each pending order based on the bouquet packaging logic; Determine the time required for packaging based on the complexity of the design; Analyze the bouquet packaging logic to determine whether there are at least two pending orders with the same design method; If so, combining at least two pending orders according to the order delivery time, and generating a combination production plan for the at least two pending orders according to the bouquet packaging logic; Determining the design complexity of each pending order according to the bouquet packaging logic includes: Determine the time required to cut each flower based on the number of flowers and the cutting length; Acquire spraying equipment information, and determine the spraying amount per unit time according to the spraying equipment information; Determine the spraying time according to the spraying degree and the spraying amount per unit time; Analyze material placement information and determine the deformation process of each material; According to the deformation process, determine the material adjustment time and material placement time; Determine the difficulty of cutting the floral mud according to its shape and size; Determining the time consumption of the floral mud cutting according to the difficulty of the floral mud cutting; The design complexity of each order to be processed is determined based on the cutting time, the spraying time, the material adjustment time, the floral mud cutting time and the material placement time.

2. The method according to claim 1, characterized in that The pending order includes an order picture, and the step of analyzing the pending order to determine the bouquet information includes: Determine the flower type and material information based on the order picture; Analyze the order picture to obtain a picture analysis result, and determine the arrangement relationship between the plurality of flowers and the flower material craftsmanship according to the picture analysis result; The flower type, the material information, the arrangement relationship and the flower craftsmanship are used as the bouquet information.

3. The method according to claim 2, characterized in that The image analysis result includes the number of flowers; and the step of analyzing the bouquet information and determining the bouquet packaging logic includes: Determine the size and shape of the floral mud according to the arrangement relationship and the number of flowers; Analyze the arrangement relationship to determine the cutting length of each flower material; Determine the degree of spraying according to the flower material process; Determine material placement information according to the material information and the image analysis result; The bouquet packaging logic is determined according to the size of the floral mud, the shape of the floral mud, the cutting length, the spraying degree and the material placement information.

4. The method according to claim 3, characterized in that Determining the current quantity to be packaged according to the pending orders includes: Analyze the pending orders and determine the delivery time of each pending order; Acquire flower storage information, analyze the flower storage information, and determine available storage space; The current amount to be packaged is determined based on the available storage space and the delivery time.

5. The method according to claim 4, characterized in that The determining the current amount to be packaged according to the available storage space and the delivery time includes: Obtain order information, and determine delivery requirements based on the order information; Determine the degree of freshness of flowers according to the delivery requirements; Determine the packing time according to the delivery time and the freshness of the flowers; The current amount to be packaged is determined according to the packaging time and the available storage space.

6. The method according to claim 5, characterized in that The method further comprises: Determining the production efficiency of the pending order according to the packaging time consumed; Get the number of pending orders at the current moment; Determine whether to accept the order based on the production efficiency and the order quantity.

7. The method according to claim 6, characterized in that The design complexity of each pending order is determined based on the cutting time, the spraying time, the material adjustment time, the floral mud cutting time and the material placement time, referring to the following formula: Where C represents the design complexity of each pending order; T i represents the time consumed for cutting the i-th flower material; n represents the number of flowers; w1 represents the degree of influence of the time consumed for cutting the flower material on the design complexity of each pending order; w2 represents the degree of influence of the time consumed for cutting the floral mud on the design complexity of each pending order; T s represents the time consumption of cutting the floral mud; w3 represents the influence of the material adjustment time consumption on the design complexity of each pending order; M represents the material quantity; D i represents the material adjustment time of each material; w4 represents the influence of the spraying time on the design complexity of each pending order; T f represents the time consumption of spraying; w5 represents the influence of the time consumption of material placement on the design complexity of each pending order; P i Indicates the time taken to place each material.

8. An order management system for a flower selling platform, characterized in that: The method as claimed in any one of claims 1 to 7 comprises: An order analysis module is used to obtain pending orders; analyze the pending orders and determine bouquet information; An information analysis module, used to analyze the bouquet information and determine the bouquet packaging logic; A packaging analysis module, used to determine the current amount to be packaged according to the pending orders; The production combination module is used to determine the combination production plan according to the bouquet packaging logic and the current amount to be packaged.

Citation Information

Patent Citations

  • Customized commodity ordering method and device, storage medium and electronic equipment

    CN114372842A