Multi-line delivery method, multi-line delivery system, electronic equipment and readable medium

By setting the system's maximum single-selected product quantity and displaying a multi-line delivery interface in the sorting system, the problem of operators' low delivery efficiency in multi-order sorting is solved, and multiple items are delivered in a single time, improving user experience.

CN120258692AActive Publication Date: 2025-07-04ZHEJIANG HUICANG INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510728108.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-03
Publication Date
2025-07-04
Estimated Expiration
2045-06-03

AI Technical Summary

Technical Problem

In the prior art, when performing multi-order sorting, operators need to deliver multiple items in a single time, resulting in low delivery efficiency and poor experience, especially when there are many orders and large differences in goods, they rely on operator proficiency.

Method used

By presetting the maximum number of single-delivered products in the system, the one-to-one correspondence between the number of single-delivered products and the target number of times of delivery is determined, and a multi-line delivery interface is displayed on the sorting equipment to provide effective guidance to realize multiple items in a single-delivered product.

Benefits of technology

It significantly improves delivery efficiency, reduces the difficulty of delivery for users, and improves the delivery experience of users.

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Abstract

The invention discloses a multi-line delivery method, a multi-line delivery system, electronic equipment and a readable medium. An industrial personal computer receives a commodity bar code sent by sorting equipment; determining a system line splitting result according to the commodity bar code, the stored wave information and the maximum single-time delivery commodity quantity of the system, wherein the line splitting result comprises a one-to-one correspondence relationship between the single-time delivery commodity quantity and the target delivery times; the system line splitting result is stored, so that the sorting equipment can access the system line splitting result and display a corresponding multi-line delivery interface; wherein the multi-line delivery interface is used for guiding a user to deliver commodities to the sorting equipment, the multi-line delivery interface comprises a guiding information view area, and the guiding information view area displays the number of currently used commodities delivered at a time. The delivery efficiency of a user can be improved, the delivery difficulty of the user is reduced, and the delivery experience of the user is improved.
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Description

Technical Field

[0001] This application relates to the technical field of logistics sorting and delivery. Specifically, it relates to a multi-line delivery method, a multi-line delivery system, an electronic device, and a readable medium. Background Art

[0002] The intelligent three-dimensional sorting system supports various sorting modes such as complex order sorting, wave sorting, and sorting by line. Wave sorting adopts a human-machine collaboration mode, and is completed by the operator collaborating with the Warehouse Management System (WMS), Personal Digital Assistant (PDA), bag feeder, sorting robot, etc. In the wave sorting mode, multiple orders are summarized into "waves" according to rules (such as region, timeliness, commodity type, etc.), and are delivered by wave and distributed by order.

[0003] Usually, the operator single-times delivers a single commodity to the bag feeder. The more orders there are and the greater the difference in the number of commodities required for the orders, the higher the requirement for the operator's delivery quantity awareness, that is, the higher the dependence on the operator's proficiency, which will seriously affect the delivery efficiency and the operator's delivery experience.

[0004] Therefore, there is an urgent need for a better delivery method that can support single-time delivery of multiple commodities. Summary of the Invention

[0005] This application aims to solve one of the technical problems in the related art to a certain extent. For this purpose, this application provides a multi-line delivery method, a multi-line delivery system, an electronic device, and a readable medium.

[0006] As the first aspect of this application, a multi-line delivery method for an industrial control computer is provided. The method includes: Receiving a commodity barcode sent by a sorting device; Determining a system line-splitting result according to the commodity barcode, stored wave information, and the maximum number of commodities that can be delivered in a single time by the system. The line-splitting result includes a one-to-one correspondence between the number of commodities delivered in a single time and the target number of delivery times; Storing the system line-splitting result so that the sorting device can access the system line-splitting result and display a corresponding multi-line delivery interface; wherein the multi-line delivery interface is used to guide the user to deliver commodities to the sorting device, and the multi-line delivery interface includes a guidance information view area that displays the number of commodities delivered in a single time currently in use.

[0007] Optionally, the determining a system line-splitting result according to the commodity barcode, stored wave information, and the maximum number of commodities that can be delivered in a single time by the system includes: Determine the order lines to be split for the current wave according to the commodity barcode and the stored wave information, where the order lines to be split include the quantity of demanded commodities; For each of the order lines to be split, divide the quantity of demanded commodities of the order line to be split by the maximum number of commodities that can be delivered in a single shipment by the system, and determine the order line split result according to the obtained quotient and remainder; in the order line split result, the maximum number of commodities that can be delivered in a single shipment by the system is used as one of the quantities of commodities delivered in a single shipment, and the quotient is used as the target number of deliveries corresponding to the maximum number of commodities that can be delivered in a single shipment by the system. When the remainder is not 0, it is used as the other quantity of commodities delivered in a single shipment, and the target number of deliveries corresponding to the remainder includes 1 time; Summarize the order line split results of each of the order lines to be split as the system split result.

[0008] Optionally, the multi-line delivery interface further includes a commodity information view area, and the commodity information view area displays the commodity barcode, the maximum number of commodities that can be delivered in a single shipment by the system, and an interactive component for setting the temporary maximum number of commodities that can be delivered in a single shipment; after storing the system split result so that the sorting device can access the system split result and display the corresponding multi-line delivery interface, the method further includes: Receive the set value of the temporary maximum number of commodities that can be delivered in a single shipment sent by the sorting device, where the set value is obtained by the sorting device through the interactive component; In the case where it is determined that the commodity barcode has no delivery record in the current wave, determine the temporary split result according to the commodity barcode, the stored wave information, and the set value of the temporary maximum number of commodities that can be delivered in a single shipment; Store the temporary split result so that the sorting device can access the temporary split result and display the corresponding multi-line delivery interface.

[0009] Optionally, the determining the temporary split result according to the commodity barcode, the stored wave information, and the set value of the temporary maximum number of commodities that can be delivered in a single shipment includes: Determine the order lines to be split for the current wave according to the commodity barcode and the stored wave information, where the order lines to be split include the quantity of demanded commodities; For each of the order lines to be split, divide the quantity of demanded commodities of the order line to be split by the set value of the temporary maximum number of commodities that can be delivered in a single shipment, and determine the order line split result according to the obtained quotient and remainder; in the order line split result, the set value of the temporary maximum number of commodities that can be delivered in a single shipment is used as one of the quantities of commodities delivered in a single shipment, and the quotient is used as the target number of deliveries corresponding to the set value of the temporary maximum number of commodities that can be delivered in a single shipment. When the remainder is not 0, it is used as the other quantity of commodities delivered in a single shipment, and the target number of deliveries corresponding to the remainder includes 1 time; Summarize the order line splitting results of each of the to-be-split line orders as the temporary line splitting result.

[0010] Optionally, the guidance information view area further displays the remaining delivery times corresponding to the current number of single-delivery commodities used, and the method further includes: Receive the delivery record sent by the sorting device, where the operation record is sent by the sorting device to the industrial control computer after the sorting device recognizes the commodities to be delivered; Determine the association relationship between the number of delivered times and the target delivery times according to the delivery record, so that the sorting device can access the association relationship and update the multi-line delivery interface.

[0011] Optionally, the guidance information view area further displays the total number of commodities to be delivered. After receiving the delivery record sent by the sorting device, the method further includes: Determine the total number of commodities to be delivered according to the delivery record, so that the sorting device can access the total number of commodities to be delivered and update the multi-line delivery interface.

[0012] As a second aspect of the present application, there is provided a method for displaying a multi-line delivery interface for a sorting device, where the method includes: Obtain a commodity barcode; Send the commodity barcode to the industrial control computer, so that the industrial control computer determines and stores a system line splitting result according to the commodity barcode, the stored wave information, and the maximum number of single-delivery commodities in the system, where the line splitting result includes a one-to-one correspondence between the number of single-delivery commodities and the target delivery times; Access the system line splitting result stored by the industrial control computer and display a corresponding multi-line delivery interface; where the multi-line delivery interface is used to guide a user to deliver commodities to the sorting device, and the multi-line delivery interface includes a guidance information view area, and the guidance information view area displays the current number of single-delivery commodities used.

[0013] As a third aspect of the present application, there is provided a multi-line delivery system, where the multi-line delivery system includes a sorting device and an industrial control computer, The sorting device is configured to obtain a commodity barcode; send the commodity barcode to the industrial control computer; access the system line splitting result stored by the industrial control computer and display a corresponding multi-line delivery interface; where the line splitting result includes a one-to-one correspondence between the number of single-delivery commodities and the target delivery times, the multi-line delivery interface is used to guide a user to deliver commodities to the sorting device, and the multi-line delivery interface includes a guidance information view area, and the guidance information view area displays the current number of single-delivery commodities used; The industrial control computer is configured to receive the product barcodes sent by the sorting device; determine the system line-splitting result according to the product barcodes, the stored wave information, and the maximum number of products that can be delivered in a single time by the system; and store the system line-splitting result.

[0014] As a fourth aspect of the present application, there is provided an electronic device, wherein the electronic device includes: One or more processors; A memory storing one or more computer programs, which when executed by the one or more processors cause the one or more processors to implement the multi-line delivery method described in the first aspect or the second aspect of the present application.

[0015] As a fifth aspect of the present application, there is provided a computer-readable medium storing a computer program, wherein the computer program when executed by a processor implements the multi-line delivery method described in the first aspect or the second aspect of the present application.

[0016] In the multi-line delivery method provided by the present application, by presetting a maximum number of products that can be delivered in a single time by the system, multiple orders for the same product within the current wave are split into lines, obtaining a line-splitting result including the one-to-one correspondence between the number of products delivered in a single time and the number of delivery times, and by adding a multi-line delivery interface to the sorting device to display the current number of products delivered in a single time, an effective guidance for the user is formed when the user delivers products to the sorting device. It can not only achieve delivering multiple products in a single time, but also significantly reduce the user's cognitive requirement for the delivery quantity, thereby effectively improving the delivery efficiency, effectively reducing the user's delivery difficulty, and enhancing the user's delivery experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present application will be further described below with reference to the accompanying drawings: Figure 1 is a flowchart of an implementation manner of the multi-line delivery method executed on the industrial control computer side provided by an embodiment of the present application; Figure 2 is a schematic diagram of an implementation manner of the guidance information view area in the multi-line delivery interface provided by an embodiment of the present application; Figure 3 is a flowchart of another implementation manner of the multi-line delivery method executed on the industrial control computer side provided by an embodiment of the present application; Figure 4 is a flowchart of yet another implementation manner of the multi-line delivery method executed on the industrial control computer side provided by an embodiment of the present application; Figure 5 is a schematic diagram of an implementation manner of the product information view area in the multi-line delivery interface provided by an embodiment of the present application; Figure 6 It is a flowchart of another implementation manner of the multi-line delivery method executed on the industrial control computer side provided by the embodiments of the present application; Figure 7 It is a flowchart of another implementation manner of the multi-line delivery method executed on the industrial control computer side provided by the embodiments of the present application; Figure 8 It is a schematic diagram of another implementation manner of the guidance information view area in the multi-line delivery interface provided by the embodiments of the present application; Figure 9 It is a flowchart of yet another implementation manner of the multi-line delivery method executed on the industrial control computer side provided by the embodiments of the present application; Figure 10 It is a schematic diagram of yet another implementation manner of the guidance information view area in the multi-line delivery interface provided by the embodiments of the present application; Figure 11 It is a flowchart of an implementation manner of the multi-line delivery method executed on the sorting device side provided by the embodiments of the present application; Figure 12 It is a module diagram of an implementation manner of the electronic device provided by the embodiments of the present application; Figure 13 It is a schematic diagram of an implementation manner of the computer-readable medium provided by the embodiments of the present application.

[0018] Description of the reference numerals 101: Processor 102: Memory 103: I / O interface 104: Bus Detailed implementation manners The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions from beginning to end. Based on the embodiments in the implementation manners, it is intended to explain the present application and should not be construed as a limitation to the present application.

[0019] The phrase "in one embodiment" as used in this specification does not necessarily refer to the same embodiment when it appears in various positions in the specification. The "one embodiment" or "example" or "instance" cited in this specification means that the specific features, structures, or characteristics described in connection with the embodiment itself can be included in at least one embodiment disclosed in the present application.

[0020] The intelligent three-dimensional sorting system supports various sorting modes such as complex order sorting, wave sorting, and row-by-row sorting. The wave sorting adopts a human-machine collaboration mode, and the operator collaborates with the WMS, PDA, bag feeder, sorting robot, etc. to complete the sorting. In the wave sorting mode, multiple orders are summarized into "waves" according to rules (such as region, timeliness, commodity type, etc.), delivered by wave, and sorted by order.

[0021] Under normal circumstances, the operator delivers single items to the bag feeder one by one. The larger the order quantity and the greater the difference in the quantity of items required for the order, the higher the requirement for the operator's awareness of the delivery quantity, that is, the higher the dependence on the operator's proficiency. This will seriously affect the delivery efficiency and the operator's delivery experience.

[0022] In response to this, the applicant of the present application proposes to split the rows of multiple orders for the same item within the current wave by presetting a maximum single-item delivery quantity of the system, obtain a split-row result including the one-to-one correspondence between the single-item delivery quantity and the delivery times, and display the currently used single-item delivery quantity by adding a multi-row delivery interface to the sorting device, so as to form an effective guidance for the user when the user delivers items to the sorting device. It can not only achieve the delivery of multiple items at a time, but also significantly reduce the requirement for the user's awareness of the delivery quantity, thereby effectively improving the delivery efficiency, effectively reducing the delivery difficulty of the user, and enhancing the user's delivery experience.

[0023] As the first aspect of the embodiment of the present application, a multi-row delivery method for an industrial control computer is provided, as Figure 1 shown, the method may include: Step S110, receiving the product barcode sent by the sorting device; Step S120, determining a system split-row result according to the product barcode, the stored wave information, and the maximum single-item delivery quantity of the system, where the split-row result includes the one-to-one correspondence between the single-item delivery quantity and the target delivery times; Step S130, storing the system split-row result so that the sorting device can access the system split-row result and display the corresponding multi-row delivery interface; wherein, the multi-row delivery interface is used to guide the user to deliver items to the sorting device, and the multi-row delivery interface includes a guidance information view area, and the guidance information view area displays the currently used single-item delivery quantity.

[0024] Among them, it can be understood that the multi-row delivery method provided by the embodiment of the present application can be used in a multi-row delivery system, and the multi-row delivery system can at least include a sorting device and an industrial control computer. In addition, it can also include a WMS, and the WMS issues wave information to the industrial control computer and maintains the maximum single-item delivery quantity of the system.

[0025] Among them, the embodiment of the present application does not specifically limit the sorting device, and any device with the function of receiving the items delivered by the user (i.e., the delivery operator) and sorting the items into the target bins is within the protection scope of the embodiment of the present application.

[0026] Among them, the embodiments of the present application do not make any specific limitation on how the sorting device obtains the product barcode. For example, the user may be prompted to scan the code and input the product barcode through its human-computer interaction interface, or the user may be prompted to interact with the corresponding interactive component through its human-computer interaction interface (for example, click the scan code control to pop up the scan code interface, slide the window to pop up the scan code interface, manually input, etc.) to obtain the input product barcode, or the product barcode may be automatically scanned by the product placed on the sorting device.

[0027] Among them, "waves" refer to grouping orders according to specific rules (such as time, region, category, priority, etc.) to form "batches" or "waves" to efficiently perform sorting, packaging, distribution and other operations. The wave information stored in the industrial computer records the grouping of orders. Based on this and the system's maximum number of goods delivered at a time, all orders corresponding to the required product barcodes can be uniformly split to obtain the system split results.

[0028] Among them, the row splitting result includes a one-to-one correspondence between the number of goods for a single delivery and the target number of deliveries. The number of goods for a single delivery in the row splitting result may be multiple. The guidance information view area in the multi-row delivery interface will display the number of goods for a single delivery currently in use in real time, which is equivalent to displaying the number of goods for each single delivery in turn. However, the embodiment of the present application does not make any special restrictions on the specific use order of multiple quantities of goods for a single delivery. The order can be specified by an industrial computer according to certain rules, or a random order can be adopted. The order can also be specified by the user through a sorting device.

[0029] like Figure 2 , which is a schematic diagram of an implementation of a guide information view area in a multi-line delivery interface provided in an embodiment of the present application, Figure 2 The text message "Currently delivering according to 3" is displayed in the text message, "Currently delivering according to 3" means the number of goods currently being delivered in a single delivery. It should be noted that Figure 2 This is just an example, and any text, symbol or combination thereof will do as long as it can play the role of "displaying the number of goods currently being delivered in a single time".

[0030] The multi-line delivery method provided by the embodiments of the present application splits the multiple orders for the same commodity within the current wave by presetting the maximum number of commodities that can be delivered in a single time by the system, obtains a split-line result including the one-to-one correspondence between the number of commodities delivered in a single time and the number of delivery times, and displays the number of commodities delivered in a single time currently used by adding a multi-line delivery interface to the sorting device, forming an effective guidance for users when users deliver commodities to the sorting device. It can not only achieve delivering multiple commodities in a single time, but also significantly reduce the cognitive requirements for the number of commodities delivered to users, thereby effectively improving the delivery efficiency, effectively reducing the delivery difficulty for users, and enhancing the delivery experience of users.

[0031] The applicant of the present application further proposes that the demanded quantity of the commodity of the order can be divided by the maximum number of commodities that can be delivered in a single time by the system, and the quotient obtained is the target number of delivery times that the maximum number of commodities that can be delivered in a single time by the system needs to be executed. If there is a remainder, the remainder is also used as the number of commodities delivered in a single time that needs to be executed once. Correspondingly, in some embodiments, the determination of the system split-line result according to the commodity barcode, the stored wave information, and the maximum number of commodities that can be delivered in a single time by the system (i.e., involved in step S120) is as Figure 3 shown, and may include: Step S210, determine the orders to be split in the current wave according to the commodity barcode and the stored wave information, and the orders to be split include the demanded quantity of the commodity; Step S220, for each of the orders to be split, divide the demanded quantity of the commodity of the order to be split by the maximum number of commodities that can be delivered in a single time by the system, and determine the order split-line result according to the obtained quotient and remainder; in the order split-line result, the maximum number of commodities that can be delivered in a single time by the system is used as one of the numbers of commodities delivered in a single time, and the quotient is used as the target number of delivery times corresponding to the maximum number of commodities that can be delivered in a single time by the system. When the remainder is not 0, it is used as another number of commodities delivered in a single time, and the target number of delivery times corresponding to the remainder includes 1 time; Step S230, summarize the order split-line results of each of the orders to be split as the system split-line result.

[0032] It can be understood that all the orders to be split determined in step S210 are orders demanding the commodity corresponding to the commodity barcode.

[0033] For step S220, for example, if the demanded quantity of the commodity of a certain order to be split is 101 and the maximum number of commodities that can be delivered in a single time by the system is 3, then in the order split-line result of the order to be split, the total number of the numbers of commodities delivered in a single time is 2. One is 3 and the corresponding target number of delivery times is 33 times, and the other is 2 and the corresponding target number of delivery times is 1.

[0034] It can be understood that step S230 obtains the final target delivery times corresponding to the single-delivery commodity quantity by summing up the target delivery times corresponding to each occurrence of the single-delivery commodity quantity in all order line-splitting results.

[0035] In the multi-line delivery method provided by the embodiments of the present application, through the above-mentioned line-splitting steps, each obtained single-delivery commodity quantity is not greater than the system's maximum single-delivery commodity quantity, and the target delivery times required for the single-delivery commodity quantity less than the maximum single-delivery commodity quantity are also small. Finally, all the single-delivery commodity quantities and their target delivery times that need to be recognized and remembered by the user are not only small in number but also have a certain pattern, which is easy for the user to recognize and remember, can greatly reduce the requirement for the user to recognize the delivery quantity, and thus can effectively improve the delivery efficiency, effectively reduce the delivery difficulty for the user, and improve the user's delivery experience.

[0036] The applicant of the present application further proposes that in addition to being able to preset a system maximum single-delivery commodity quantity for the industrial control computer to split lines, it is also possible to consider that the user sets a temporary maximum single-delivery commodity quantity according to the actual commodity situation of the delivery scenario for the industrial control computer to split lines. Correspondingly, in some embodiments, the multi-line delivery interface further includes a commodity information view area, and the commodity information view area displays the commodity barcode, the system maximum single-delivery commodity quantity, and an interaction component for setting the temporary maximum single-delivery commodity quantity; after storing the system line-splitting result so that the sorting device can access the system line-splitting result and display the corresponding multi-line delivery interface (i.e., the one involved in step S130), as Figure 4 shown, the method may further include: Step S310, receiving the set value of the temporary maximum single-delivery commodity quantity sent by the sorting device, where the set value is obtained by the sorting device through the interaction component; Step S320, when it is determined that the commodity barcode has no delivery record in the current wave, determining a temporary line-splitting result according to the commodity barcode, the stored wave information, and the set value of the temporary maximum single-delivery commodity quantity; Step S330, storing the temporary line-splitting result so that the sorting device can access the temporary line-splitting result and display the corresponding multi-line delivery interface.

[0037] Among them, the embodiments of the present application do not make special limitations on the display content of the commodity information view area. For example, in addition to displaying the commodity barcode, the system maximum single-delivery commodity quantity, and the interaction component for setting the temporary maximum single-delivery commodity quantity, the commodity information view area may also display other commodity information such as the commodity name.

[0038] Among them, the embodiments of the present application do not make special limitations on how the sorting device obtains the set value of the temporary maximum single delivery quantity of goods through the interaction component, as long as the set value is provided by the user. For example, the sorting device can prompt the user to interact with the interaction component for setting the temporary maximum single delivery quantity of goods (such as a touch keyboard, a sliding progress bar, clicking a button to switch values, etc.) through a pop-up window reminder, an icon reminder, etc., to obtain the set value of the temporary maximum single delivery quantity of goods input by the user.

[0039] Among them, only when there is no delivery record for the goods corresponding to the commodity barcode in the current wave, the industrial control computer performs line splitting according to the set value of the temporary maximum single delivery quantity of goods, which can avoid the situation of delivery errors.

[0040] As Figure 5 shown, it is a schematic diagram of an implementation manner of the commodity information view area in the multi-line delivery interface provided by the embodiments of the present application. Figure 5 The content displayed therein includes: "Commodity barcode: 254411254" (i.e., the commodity barcode), "Commodity name: XXXXXXXXXXXX" (i.e., the commodity name), "System maximum delivery quantity: 3" (i.e., the system maximum single delivery quantity of goods), and "Temporary maximum delivery quantity: Can be set" (i.e., the setting interaction component for the temporary maximum single delivery quantity of goods, and "Can be set" corresponds to an interaction component that can interact with it). It should be noted that Figure 5 only for exemplary illustration, as long as it can play the role of "displaying the commodity barcode, the system maximum single delivery quantity of goods, and the interaction component for setting the temporary maximum single delivery quantity of goods", any combination of words, symbols or the like can be used.

[0041] In the embodiments of the present application, the principle of the industrial control computer performing line splitting according to the system maximum single delivery quantity of goods is essentially the same as the principle of performing line splitting according to the set value of the temporary maximum single delivery quantity of goods. Correspondingly, in some embodiments, determining the temporary line splitting result according to the commodity barcode, the stored wave information, and the set value of the temporary maximum single delivery quantity of goods, as Figure 6 shown, may include: Step S410, determining the order to be line-split in the current wave according to the commodity barcode and the stored wave information, where the order to be line-split includes the required quantity of goods; Step S420: For each of the to-be-split line orders, divide the quantity of the demanded goods in the to-be-split line order by the set value of the temporary maximum single-delivery quantity of goods, and determine the order split result according to the obtained quotient and remainder; in the order split result, the set value of the temporary maximum single-delivery quantity of goods is used as one of the single-delivery quantities of goods, and the quotient is used as the target delivery times corresponding to the set value of the temporary maximum single-delivery quantity of goods. When the remainder is not 0, it is used as another single-delivery quantity of goods, and the target delivery times corresponding to the remainder include 1 time. Step S430: Aggregate the order split results of each of the to-be-split line orders as the temporary split result.

[0042] Among them, how the industrial control computer specifically determines the system split result according to the commodity barcode, the stored wave information, and the system maximum single-delivery quantity of goods has been described in detail above. Here, it is the same reason, so it will not be elaborated again.

[0043] Among them, in the embodiments of the present application, the "system split result" and the "temporary split result" are only used to distinguish the split results corresponding to different maximum single-delivery quantities of goods. The temporary split result actually also includes the one-to-one correspondence between the single-delivery quantity of goods and the target delivery times.

[0044] The applicant of the present application further proposes that the guidance information view area can also display and update in real time the remaining delivery times corresponding to the currently used single-delivery quantity of goods, further guiding the user to recognize and remember the remaining delivery times, thereby further improving the delivery efficiency, reducing the delivery difficulty of the user, and enhancing the delivery experience of the user. Correspondingly, in some embodiments, the guidance information view area also displays the remaining delivery times corresponding to the currently used single-delivery quantity of goods, as Figure 7 shown, the method may further include: Step S510: Receive the delivery record sent by the sorting device, where the operation record is sent by the sorting device to the industrial control computer after the sorting device recognizes the goods to be delivered. Step S520: Determine the association relationship between the delivered times and the target delivery times according to the delivery record, so that the sorting device can access the association relationship and update the multi-line delivery interface.

[0045] Among them, it can be understood that for the currently used single-delivery quantity of goods, the corresponding remaining delivery times are the difference between the corresponding target delivery times and the corresponding delivered times.

[0046] As Figure 8As shown in the figure, it is a schematic diagram of another implementation manner of the guidance information view area in the multi-line delivery interface provided by the embodiment of the present application. Figure 8 The text information "46 deliveries remaining" is displayed. "46 deliveries remaining" is the remaining delivery times corresponding to the current single-delivery commodity quantity used. It should be noted that Figure 8 This is only an exemplary illustration. As long as it can play the role of "displaying the remaining delivery times corresponding to the current single-delivery commodity quantity", any combination of words, symbols, or the like is acceptable.

[0047] The applicant of the present application further proposes that the guidance information view area can also display and update in real time the total quantity of goods to be delivered, further guiding the user to recognize and remember the remaining delivery quantity, thereby further improving the delivery efficiency, reducing the user's delivery difficulty, and enhancing the user's delivery experience. Correspondingly, in some embodiments, the guidance information view area also displays the total quantity of goods to be delivered. After receiving the delivery record sent by the sorting device (i.e., the one involved in step S510), as Figure 9 shown, the method may further include: Step S610, determining the total quantity of goods to be delivered according to the delivery record, so that the sorting device can access the total quantity of goods to be delivered and update the multi-line delivery interface.

[0048] As Figure 10 shown, it is a schematic diagram of another implementation manner of the guidance information view area in the multi-line delivery interface provided by the embodiment of the present application. Figure 10 The text information "Deliverable quantity (143)" is displayed. "Deliverable quantity (143)" is the total quantity of goods to be delivered. It should be noted that Figure 10 This is only an exemplary illustration. As long as it can play the role of "displaying the total quantity of goods to be delivered", any combination of words, symbols, or the like is acceptable.

[0049] As the second aspect of the embodiment of the present application, a multi-line delivery interface display method for a sorting device is provided. As Figure 11 shown, the method may include: Step S710, obtaining a commodity barcode; Step S720, sending the commodity barcode to the industrial control computer, so that the industrial control computer determines and stores the system split-line result according to the commodity barcode, the stored wave information, and the system maximum single-delivery commodity quantity. The split-line result includes the one-to-one correspondence between the single-delivery commodity quantity and the target delivery times; Step S730: Access the system line-splitting result stored in the industrial control computer and display the corresponding multi-line delivery interface. The multi-line delivery interface is used to guide the user to deliver goods to the sorting device. The multi-line delivery interface includes a guidance information view area, and the guidance information view area displays the current quantity of goods delivered in a single delivery.

[0050] Among them, the multi-line delivery method executed on the sorting device side has been described together when the multi-line delivery method executed on the industrial control computer side was described above, so it will not be elaborated here.

[0051] The multi-line delivery method provided by the embodiments of the present application splits multiple orders for the same commodity within the current wave by presetting a maximum quantity of goods delivered in a single delivery by the system, obtains a line-splitting result including the one-to-one correspondence between the quantity of goods delivered in a single delivery and the number of delivery times, and displays the current quantity of goods delivered in a single delivery by adding a multi-line delivery interface to the sorting device, forming an effective guidance for the user when the user delivers goods to the sorting device. It can not only achieve delivering multiple goods in a single delivery, but also significantly reduce the cognitive requirements for the quantity of goods delivered by the user, thereby effectively improving the delivery efficiency, effectively reducing the delivery difficulty of the user, and enhancing the delivery experience of the user.

[0052] As the third aspect of the embodiments of the present application, a multi-line delivery system is provided. The multi-line delivery system includes a sorting device and an industrial control computer. The sorting device is configured to: obtain a commodity barcode; send the commodity barcode to the industrial control computer; access the system line-splitting result stored in the industrial control computer and display the corresponding multi-line delivery interface. The line-splitting result includes the one-to-one correspondence between the quantity of goods delivered in a single delivery and the target number of delivery times. The multi-line delivery interface is used to guide the user to deliver goods to the sorting device. The multi-line delivery interface includes a guidance information view area, and the guidance information view area displays the current quantity of goods delivered in a single delivery. The industrial control computer is configured to: receive the commodity barcode sent by the sorting device; determine the system line-splitting result according to the commodity barcode, the stored wave information, and the maximum quantity of goods delivered in a single delivery by the system; store the system line-splitting result.

[0053] As the fourth aspect of the embodiments of the present application, an electronic device is provided. As Figure 12 shown, the electronic device includes: One or more processors 101; A memory 102, on which one or more computer programs are stored. When the one or more computer programs are executed by the one or more processors 101, the one or more processors 101 implement the multi-line delivery method provided by the first aspect or the second aspect of the embodiments of the present application.

[0054] The electronic device may further include one or more I / O interfaces 103, which are connected between the processor 101 and the memory 102 and are configured to implement information interaction between the processor 101 and the memory 102.

[0055] Among them, the processor 101 is a device with data processing capabilities, including but not limited to a central processing unit (CPU), etc.; the memory 102 is a device with data storage capabilities, including but not limited to a random access memory (RAM, more specifically such as SDRAM, DDR, etc.), a read-only memory (ROM), an electrically erasable programmable read-only memory (EEPROM), a flash memory (FLASH); the I / O interface (read / write interface) is connected between the processor and the memory and can implement information interaction between the processor and the memory, including but not limited to a data bus (Bus), etc.

[0056] In some embodiments, the processor 101, the memory 102, and the I / O interface 103 are interconnected through a bus 104 and are further connected to other components of the computing device.

[0057] As the fifth aspect of the embodiments of the present application, as Figure 13 shown, there is provided a computer-readable medium on which a computer program is stored, wherein the computer program, when executed by a processor, implements the multi-line delivery method provided in the first aspect or the second aspect of the embodiments of the present application.

[0058] Those of ordinary skill in the art will understand that all or part of the processes of implementing the methods in the above embodiments can be completed by instructing relevant hardware through a computer program. Accordingly, the computer program can be stored in a non-volatile computer-readable storage medium, and when the computer program is executed, the methods of any of the above embodiments can be implemented. Among them, any reference to a memory, storage, database, or other medium used in the various embodiments provided in the embodiments of the present application may include non-volatile and / or volatile memories. Non-volatile memory may include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory may include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0059] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Those skilled in the art should understand that the present application includes but is not limited to the content described in the drawings and the above specific implementation manner. Any modification that does not deviate from the functional and structural principles of the present application will be included in the scope of the claims.

Claims

1. A multi-line delivery method for an industrial control computer, characterized in that, The method includes: Receiving a product barcode sent by a sorting device; Determining a system line-splitting result according to the product barcode, stored wave information, and the maximum number of products that can be delivered in a single time by the system, where the line-splitting result includes a one-to-one correspondence between the number of products delivered in a single time and the target number of delivery times; Storing the system line-splitting result so that the sorting device can access the system line-splitting result and display a corresponding multi-line delivery interface; where the multi-line delivery interface is used to guide a user to deliver products to the sorting device, and the multi-line delivery interface includes a guidance information view area that displays the number of products delivered in a single time currently in use.

2. The method according to claim 1, wherein The determining the system line-splitting result according to the product barcode, stored wave information, and the maximum number of products that can be delivered in a single time by the system includes: Determining, according to the product barcode and the stored wave information, an order to be line-split in the current wave, where the order to be line-split includes the required number of products; For each order to be line-split, dividing the required number of products of the order to be line-split by the maximum number of products that can be delivered in a single time by the system, and determining an order line-splitting result according to the obtained quotient and remainder; in the order line-splitting result, the maximum number of products that can be delivered in a single time by the system is used as one of the numbers of products delivered in a single time, and the quotient is used as the target number of delivery times corresponding to the maximum number of products that can be delivered in a single time by the system. When the remainder is not 0, it is used as another number of products delivered in a single time, and the target number of delivery times corresponding to the remainder includes 1 time; Summarizing the order line-splitting results of all orders to be line-split as the system line-splitting result.

3. The method according to claim 1, wherein The multi-line delivery interface further includes a product information view area that displays the product barcode, the maximum number of products that can be delivered in a single time by the system, and an interaction component for setting a temporary maximum number of products that can be delivered in a single time; After storing the system line-splitting result so that the sorting device can access the system line-splitting result and display a corresponding multi-line delivery interface, the method further includes: Receiving a set value of the temporary maximum number of products that can be delivered in a single time sent by the sorting device, where the set value is obtained by the sorting device through the interaction component; When it is determined that no delivery record is generated for the product barcode in the current wave, determining a temporary line-splitting result according to the product barcode, stored wave information, and the set value of the temporary maximum number of products that can be delivered in a single time; Storing the temporary line-splitting result so that the sorting device can access the temporary line-splitting result and display a corresponding multi-line delivery interface.

4. The method according to claim 3, wherein The determining the temporary line-splitting result according to the product barcode, stored wave information, and the set value of the temporary maximum number of products that can be delivered in a single time includes: Determining, according to the product barcode and the stored wave information, an order to be line-split in the current wave, where the order to be line-split includes the required number of products; For each of the to-be-split line orders, divide the quantity of the demanded goods in the to-be-split line order by the set value of the temporary maximum single-delivery quantity of goods, and determine the order split result according to the obtained quotient and remainder; in the order split result, the set value of the temporary maximum single-delivery quantity of goods is used as one of the single-delivery quantities of goods, and the quotient is used as the target delivery times corresponding to the set value of the temporary maximum single-delivery quantity of goods. When the remainder is not 0, it is used as another single-delivery quantity of goods, and the target delivery times corresponding to the remainder include 1 time. Summarize the order split results of each of the to-be-split line orders as the temporary split result.

5. The method according to any one of claims 1-4, characterized in that The guidance information view area also displays the remaining delivery times corresponding to the currently used single-delivery quantity of goods. The method further includes: Receive the delivery record sent by the sorting device, where the operation record is sent by the sorting device to the industrial control computer after the sorting device recognizes that the goods have been delivered. Determine the association relationship between the delivered times and the target delivery times according to the delivery record, so that the sorting device can access the association relationship and update the multi-line delivery interface.

6. The method according to claim 5, wherein The guidance information view area also displays the total quantity of goods to be delivered. After receiving the delivery record sent by the sorting device, the method further includes: Determine the total quantity of goods to be delivered according to the delivery record, so that the sorting device can access the total quantity of goods to be delivered and update the multi-line delivery interface.

7. A method for displaying a multi-line delivery interface, used for sorting equipment, characterized in that, The method includes: Obtain the product barcode. Send the product barcode to the industrial control computer, so that the industrial control computer determines and stores the system split result according to the product barcode, the stored wave information, and the system maximum single-delivery quantity of goods. The split result includes the one-to-one correspondence between the single-delivery quantity of goods and the target delivery times. Access the system split result stored in the industrial control computer and display the corresponding multi-line delivery interface; wherein, the multi-line delivery interface is used to guide the user to deliver goods to the sorting device, and the multi-line delivery interface includes a guidance information view area, and the guidance information view area displays the currently used single-delivery quantity of goods.

8. A multi-line delivery system, characterized in that, The multi-line delivery system includes a sorting device and an industrial control computer; the sorting device is used to obtain the product barcode; send the product barcode to the industrial control computer; access the system split result stored in the industrial control computer and display the corresponding multi-line delivery interface; wherein, the split result includes the one-to-one correspondence between the single-delivery quantity of goods and the target delivery times, the multi-line delivery interface is used to guide the user to deliver goods to the sorting device, and the multi-line delivery interface includes a guidance information view area, and the guidance information view area displays the currently used single-delivery quantity of goods; The industrial control computer is used to receive the product barcode sent by the sorting device; determine the system split result according to the product barcode, the stored wave information, and the system maximum single-delivery quantity of goods; store the system split result.

9. An electronic device, characterized in that, The electronic device includes: One or more processors; A memory storing one or more computer programs which, when executed by one or more processors, cause the one or more processors to implement the method according to any one of claims 1 - 7.

10. A computer-readable medium having a computer program stored thereon, characterized in that, The computer program, when executed by a processor, implements the method according to any one of claims 1 - 7.

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