Method and device for cross-library distribution, electronic equipment and medium

By identifying cargo information and displaying and executing distribution tasks on terminal devices or intelligent distribution and transportation equipment, the problem of low distribution efficiency and errors caused by the diverse types of goods in logistics distribution centers is solved, and an efficient and accurate distribution process is achieved.

CN120975697APending Publication Date: 2025-11-18BEIJING JINGDONG YUANSHENG TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202410607651.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-16
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

When conducting cross-warehouse operations at logistics distribution centers, the types of goods are diverse and vary greatly, making manual sorting inefficient, prone to errors, and difficult to trace.

Method used

By identifying cargo information, the distribution information of similar cargo is determined, and the distribution task is displayed and executed on terminal equipment or intelligent distribution transportation equipment to generate distribution records.

Benefits of technology

It improves dissemination efficiency, reduces the probability of errors, enables traceability of the dissemination process, saves time in obtaining dissemination tags, and avoids tag matching errors.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120975697A_ABST
    Figure CN120975697A_ABST
Patent Text Reader

Abstract

The invention relates to a warehouse-crossing distribution method and device, electronic equipment and a medium, and the method applied to terminal equipment comprises the steps: carrying out the recognition of a target to-be-distributed cargo corresponding to a current distribution task, and obtaining the cargo recognition information; according to the distribution and distribution data and the cargo identification information, determining target distribution information corresponding to the same type of cargos of the target cargos to be distributed and displaying the target distribution information; the target distribution information comprises distribution starting point information corresponding to goods of the same type, and comprises associated goods receiving container information or transfer area information; the target distribution area is used as a distribution terminal point; receiving an interface interaction operation in a distribution process; the distribution process is executed based on the target distribution information; and according to the interface interaction operation, generating a target distribution record of the same type of goods. According to the invention, a plurality of distribution personnel can carry the terminal equipment to synchronously distribute a plurality of types of goods, so that the distribution efficiency is improved, the probability of manual distribution errors can be reduced, and the tracing of the distribution process is facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of warehouse logistics, and in particular, to a cross-warehouse distribution method and device, electronic equipment and medium. BACKGROUND

[0002] In the field of warehouse logistics, improving the efficiency of goods transportation and reducing the cost of warehouse storage is the focus of continuous improvement of technology. In some supply chain scenarios, the mode based on cross-warehouse operation is used to reduce the cost of warehouse personnel operation, improve the delivery efficiency of goods, and improve the turnover efficiency of goods. Cross-warehouse operation refers to the storage and management of goods (such as goods corresponding to each order) in the logistics link without passing through the intermediate warehouse (for example, omitting the process of placing goods on the shelf, coding, binding storage relationship for management, and taking goods out of the shelf). In some logistics transfer centers, the goods are temporarily stored and transferred from one transportation tool to another transportation tool. Since cross-warehouse operation can effectively reduce the time from receiving goods to delivering goods and the occupation of warehouse storage space, it helps to improve the efficiency of goods transportation and reduce the cost of goods storage.

[0003] In the process of implementing the present disclosure, the inventors have found that at least the following technical problems exist in the related art: When cross-warehouse operation is performed in a logistics transfer center (which can also be described as a goods collection area or other similar expressions), the received goods are usually unloaded and manually distributed to designated areas, and then the goods in the designated areas are quickly transported away. In actual cross-warehouse distribution operation, the types of goods are different, some have box packaging, some do not have box packaging, some have different sizes (such as potatoes with different total weights and carrying packaging, some are packaged in bags, and some are carried in boxes with different specifications), and some categories cannot be mixed (such as fresh flowers that cannot be placed with other goods to prevent being crushed). Therefore, in actual cross-warehouse distribution operation, there are problems such as low efficiency of manual distribution, difficulty in timely detecting and tracing errors in distribution, and the like. SUMMARY

[0004] To solve the above technical problems or at least partially solve the above technical problems, embodiments of the present disclosure provide a cross-warehouse distribution method, device, electronic equipment and medium.

[0005] In a first aspect, embodiments of the present disclosure provide a method for cross-warehouse distribution. The method is applied to a terminal device, and the method comprises: identifying target goods to be distributed corresponding to a current distribution task to obtain goods identification information; determining target distribution information corresponding to goods of the same type as the target goods to be distributed according to distribution data and the goods identification information, and displaying the target distribution information; the target distribution information comprises: distribution starting point information of the goods of the same type, including associated container information or transfer area information; a target distribution area as a distribution end point and a corresponding target distribution quantity; receiving interface interaction operations in a distribution process; the distribution process is executed based on the target distribution information; and generating a target distribution record of the goods of the same type according to the interface interaction operations.

[0006] According to embodiments of the present disclosure, the target distribution areas are independent of each other in space or time according to attribute differences of corresponding goods to be distributed; the target distribution area corresponding to the goods to be distributed of the same attribute comprises a plurality of target distribution sub-areas, and the target distribution quantity is a quantity of each target distribution sub-area; the attribute of the goods to be distributed comprises at least one of the following: category, volume, and stackability; the target distribution information further comprises: a preset distribution order, which is used to indicate a sequence of the target distribution sub-areas in a same distribution process. The receiving of the interface interaction operations in the distribution process comprises: receiving a region identification instruction for a starting distribution sub-area; identifying the starting distribution sub-area according to the region identification instruction to obtain starting region information and display the starting region information on an interface; displaying region information and a target distribution quantity corresponding to a current distribution sub-area on the interface according to the preset distribution order and a distribution jump instruction; the current distribution sub-area is any one of the plurality of target distribution sub-areas; receiving quantity input information or a goods scanning instruction for a distribution sub-area; and displaying an actual distribution quantity according to the quantity input information or a scanning result of the execution of the goods scanning instruction.

[0007] According to embodiments of the present disclosure, the receiving of the interface interaction operations in the distribution process further comprises: receiving a distribution confirmation instruction for a current distribution sub-area; verifying whether region information of the current distribution sub-area is consistent with region information displayed on the interface and whether an actual distribution quantity is consistent with the target distribution quantity according to the distribution confirmation instruction; in a case where both the region information and the quantity are consistent, determining that the current distribution sub-area is distributed; and in a case where at least one of the region information or the quantity is inconsistent, displaying an inconsistency prompt information.

[0008] According to an embodiment of the present disclosure, the target distribution area corresponding to the to-be-distributed goods of the same attribute comprises a plurality of target distribution sub-areas; the attribute of the to-be-distributed goods comprises at least one of the following: category, volume, stackability; the target distribution information further comprises: a preset distribution sequence, the preset distribution sequence being used to indicate the sequence of the target distribution sub-areas in the same distribution process; and the target distribution record is used to record the actual distribution area, the actual distribution quantity, the distribution path and the distribution time of the same type of goods. The preset distribution sequence is an updated distribution sequence, which is obtained in the following manner: according to the distribution path and the distribution time of the same type of goods of a plurality of users after optimization, or according to the distribution path and the distribution time of a plurality of same type of goods of a same user after optimization, or according to the distribution path and the distribution time of a plurality of same type of goods of a plurality of users after optimization.

[0009] According to an embodiment of the present disclosure, in the case that the distribution starting point information comprises the transfer area information, the method further comprises: identifying the area where the target to-be-distributed goods are located to obtain the identified transfer area information corresponding to the target to-be-distributed goods; determining the target transfer area information corresponding to the target to-be-distributed goods according to the transfer allocation relationship; the target transfer area information is a target distribution transfer area or an occupation time period for the target distribution transfer area; the transfer allocation relationship represents the distribution transfer area allocated to the to-be-distributed goods or the occupation time period of the distribution transfer area for the to-be-distributed goods; verifying whether the identified transfer area information is consistent with the target transfer area information; in the case that the verification is inconsistent, storing the inconsistent state into the target distribution record corresponding to the target to-be-distributed goods.

[0010] According to an embodiment of the present disclosure, in the transfer allocation relationship, different distribution transfer areas or different time periods of the same distribution transfer area are allocated to the to-be-distributed goods based on the attribute difference of the to-be-distributed goods; the attribute comprises at least one of the following: category, volume, stackability.

[0011] According to an embodiment of the present disclosure, in the case that the distribution starting point information comprises the transfer area information, the method further comprises: obtaining the receiving information, the receiving information comprising: the goods information of the to-be-distributed goods, and the receiving container information corresponding to the to-be-distributed goods; allocating different distribution transfer areas or different time periods of the same distribution transfer area to the to-be-distributed goods according to the attribute difference of the to-be-distributed goods to obtain the transfer allocation relationship; the attribute of the to-be-distributed goods comprises at least one of the following: category, volume, stackability; generating and displaying the transfer prompt information according to the transfer allocation relationship, the transfer prompt information being used to prompt the user to transfer the to-be-distributed goods from the receiving container to the corresponding allocated distribution transfer area for storage.

[0012] According to an embodiment of the present disclosure, the method further comprises: after the same type of goods of the target goods to be distributed is distributed, claiming the next distribution task; and determining the target goods to be distributed in the next distribution task according to the distribution data, and displaying corresponding goods prompt information.

[0013] In a second aspect, embodiments of the present disclosure provide a method for inter-warehouse distribution. The method is applied to an intelligent distribution transport device with a loading space, and comprises: identifying target goods to be distributed corresponding to a current distribution task to obtain goods identification information; determining target distribution information corresponding to the same type of goods of the target goods to be distributed according to distribution data and the goods identification information; the target distribution information comprises: distribution starting point information corresponding to the same type of goods, containing associated receiving container information or transfer area information; a target distribution area as a distribution end point and a corresponding target distribution quantity. The target distribution information is presented on a display interface of the intelligent distribution transport device, and a user is prompted to load goods; or, the target distribution information is used to automatically load the goods. Placement goods information in the loading space is determined. A distribution process of the same type of goods is executed according to the target distribution information and the placement goods information, and execution information is recorded. The target distribution record of the same type of goods is generated according to the execution information of the distribution process.

[0014] According to an embodiment of the present disclosure, the target distribution areas are independent of each other in space or time according to attribute differences of the corresponding to-be-distributed goods; the target distribution area corresponding to the to-be-distributed goods of the same attribute comprises a plurality of target distribution sub-areas, and the target distribution quantity is the quantity of each target distribution sub-area; the attribute of the to-be-distributed goods comprises at least one of the following: category, volume, and stackability; and the target distribution information further comprises a preset distribution sequence, which is used to indicate the order of the target distribution sub-areas in the same distribution process. According to the target distribution information and the placement goods information, the distribution process of the same type of goods is performed, comprising: determining the quantity of the loaded goods in the same type of goods according to the placement goods information; in the case that the quantity is less than the total quantity of the plurality of target distribution sub-areas, distributing a plurality of intelligent distribution transport devices to perform the current distribution task or setting the transport times of the same intelligent distribution transport device to obtain distribution information; determining the target distribution sub-area list that satisfies the quantity of the loaded goods in each intelligent distribution transport device or each transport of the same intelligent distribution transport device according to the distribution information; determining the distribution execution sequence of each target distribution sub-area in the target distribution sub-area list according to the target distribution sub-area list and the preset distribution sequence; and planning the transport, unloading and return route of the loaded goods according to the distribution execution sequence to obtain the distribution route corresponding to the same type of goods; and performing the distribution process of the same type of goods according to the distribution route.

[0015] In a third aspect, embodiments of the present disclosure provide an inter-warehouse distribution device. The device comprises a first identification module, a first distribution information determination module, a first display module, and a first record generation module. The first identification module is configured to identify target to-be-distributed goods corresponding to a current distribution task to obtain goods identification information. The first distribution information determination module is configured to determine target distribution information corresponding to the same type of goods of the target to-be-distributed goods according to distribution data and the goods identification information. The first display module is configured to display the target distribution information, wherein the target distribution information comprises distribution starting point information corresponding to the same type of goods, which comprises associated receiving container information or transfer area information; target distribution area as a distribution end point and corresponding target distribution quantity. The first display module is further configured to receive interface interaction operations in a distribution process, wherein the distribution process is performed based on the target distribution information. The first record generation module is configured to generate target distribution records of the same type of goods according to the interface interaction operations.

[0016] In a fourth aspect, embodiments of the present disclosure provide an intelligent distribution transport device for inter-warehouse distribution. The intelligent distribution transport device has a loading space, and includes a second identification module, a second distribution information determination module, a second display module, a placement information determination module, a distribution execution module, and a second record generation module. Alternatively, the intelligent distribution transport device includes a second identification module, a second distribution information determination module, a loading module, a placement information determination module, a distribution execution module, and a second record generation module. The second identification module is configured to identify a target to-be-distributed cargo corresponding to a current distribution task to obtain cargo identification information. The second distribution information determination module is configured to determine target distribution information of a same-type cargo of the target to-be-distributed cargo according to distribution data and the cargo identification information, wherein the target distribution information includes distribution starting point information of the same-type cargo, a target distribution area serving as a distribution end point, and a target distribution quantity corresponding to the target distribution area. The second display module is configured to present the target distribution information on a display interface of the intelligent distribution transport device and prompt a user to load the cargo. The loading module is configured to automatically load the cargo according to the target distribution information. The placement information determination module is configured to determine placement cargo information in the loading space. The distribution execution module is configured to execute a distribution process of the same-type cargo according to the target distribution information and the placement cargo information and record execution information. The second record generation module is configured to generate a target distribution record of the same-type cargo according to the execution information of the distribution process.

[0017] In a fifth aspect, embodiments of the present disclosure provide an electronic device. The electronic device includes a processor, a communication interface, a memory, and a communication bus, wherein the processor, the communication interface, and the memory complete communication with each other through the communication bus. The memory is configured to store a computer program. The processor is configured to execute the program stored on the memory to implement the inter-warehouse distribution method.

[0018] In a sixth aspect, embodiments of the present disclosure provide a computer-readable storage medium. The computer-readable storage medium stores a computer program, and the computer program is executed by a processor to implement the inter-warehouse distribution method.

[0019] Some embodiments of the present disclosure provide the above technical solutions with at least some or all of the following advantages.

[0020] In the cross-warehouse distribution process, the terminal device obtains the goods identification information (for example, containing the goods information and the associated receiving container) by identifying the target goods to be distributed, and determines and displays the target distribution information corresponding to the same type of goods of the target goods to be distributed according to the distribution data and the goods identification information. Since the goods to be distributed are distributed according to the type and the terminal device presents the target distribution information to the user (for example, the distributor) at any time and anywhere, multiple distributors can carry the terminal device to simultaneously distribute multiple types of goods, improve the distribution efficiency, and timely prompt the distribution error through the interface interaction operation in the distribution process to reduce the probability of manual distribution error. At the same time, the generated target distribution record is convenient for tracing the distribution process. Moreover, the distributor does not need to go to the distribution task printing machine to print the distribution paper label corresponding to each distribution task, effectively saving the time required for walking back and forth to obtain the distribution paper label, and avoiding the matching error execution of the distribution task and the user caused by the different distributors taking the wrong distribution paper label and other problems that are not convenient for tracing. In an implementation scenario, the user can carry the terminal device to perform the cross-warehouse distribution work.

[0021] Some embodiments of the present disclosure provide the above technical solutions with at least some or all of the following advantages:

[0022] In the inter-warehouse distribution process, the intelligent distribution transportation device identifies the target to-be-distributed goods corresponding to the obtained goods identification information (for example, containing goods information and associated receiving containers), and determines the target distribution information corresponding to the same type of goods of the target to-be-distributed goods according to the distribution data and the goods identification information. The user and the intelligent distribution transportation device can be loaded in a cooperative manner. The display interface of the intelligent distribution transportation device presents the target distribution information and prompts the user to load the goods. Alternatively, the intelligent distribution transportation device can automatically load the goods according to the target distribution information. After loading, the placed goods information in the loading space is determined, the target distribution information and the placed goods information are used to execute the distribution process of the same type of goods and record the execution information, and the target distribution record of the same type of goods is generated according to the execution information of the distribution process. Since the to-be-distributed goods are distributed according to types, multiple types of goods can be distributed by multiple intelligent distribution transportation devices at the same time, improving the distribution efficiency. The same type of goods can be distributed by one intelligent distribution transportation device through at least one distribution process, or by multiple intelligent distribution transportation devices through multiple distribution processes. During the distribution process, the intelligent distribution transportation device can strictly follow the target distribution information to reduce the probability of distribution errors. The target distribution record generated can realize the traceability of the distribution execution process. Even if the intelligent distribution transportation device makes a mistake, the target distribution record can be checked, and the distribution execution process can be traced and analyzed to find the reason for subsequent improvement. The distribution personnel do not need to go to the distribution task printer to print the distribution paper labels corresponding to each distribution task, effectively saving the time required for walking back and forth to obtain the distribution paper labels, and avoiding the matching errors of the distribution tasks and users caused by different distribution personnel taking the wrong distribution paper labels, and other problems such as inconvenience in tracing. BRIEF DESCRIPTION OF DRAWINGS

[0023] The accompanying drawings, which are incorporated into and form a part of the specification, illustrate an embodiment consistent with the present disclosure and, together with the description, serve to explain the principles of the disclosure.

[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure or the prior art, the accompanying drawings needed to be used in the embodiments or related description will be briefly introduced. Obviously, for those skilled in the art, other drawings can also be obtained without creative labor based on these drawings.

[0025] Figure 1A The system architecture of the inter-warehouse distribution method suitable for an embodiment of the present disclosure is schematically shown.

[0026] Figure 1AA system architecture of a method for cross-warehouse distribution suitable for another embodiment of the present disclosure is schematically shown;

[0027] Figure 2 A flow chart of a method for cross-warehouse distribution according to an embodiment of the present disclosure is schematically shown;

[0028] Figure 3 State schematic diagrams of corresponding visual interfaces in the implementation process of a method for cross-warehouse distribution according to an embodiment of the present disclosure are schematically shown, (a) is a first state schematic diagram of a visual interface presented before scanning goods; (b) is a second state schematic diagram of displaying goods identification information after scanning the target goods to be distributed; (c) is a third state schematic diagram presented when distributing in each sub-distribution area of the store based on the forward order; (d) is a fourth state schematic diagram presented when distributing in the sub-distribution area of the store based on the reverse order;

[0029] Figure 4 A schematic diagram of the area identification code of each sub-distribution area contained in the distribution area and the forward or reverse distribution order between the sub-distribution areas according to an embodiment of the present disclosure is schematically shown;

[0030] Figure 5 A flow chart of a method for cross-warehouse distribution according to another embodiment of the present disclosure is schematically shown;

[0031] Figure 6 A flow chart of a method for cross-warehouse distribution according to another embodiment of the present disclosure is schematically shown;

[0032] Figure 7 A flow chart of a method for cross-warehouse distribution applied to intelligent distribution transportation equipment according to an embodiment of the present disclosure is schematically shown;

[0033] Figure 8 A structural block diagram of an electronic device provided by an embodiment of the present disclosure is schematically shown. DETAILED DESCRIPTION

[0034] The current common way is manual cross-docking distribution operation. A distribution task printer is generally arranged in a logistics transfer center (which can also be described as a collection area or other similar expressions). The distribution personnel generally need to go to the distribution task printer to print a paper label to realize the collection of the distribution task. The paper label carries the details of the distribution task, and the distribution personnel can perform the distribution operation according to the content on the paper label. However, during the execution of multiple distribution tasks, the distribution personnel needs to go back and forth between the distribution task printer and the distribution operation site, which is time-consuming. In addition, in some implementation scenarios, different distribution personnel take the wrong distribution paper label, which leads to the matching error of the distribution task and the user, so that the distribution error caused by the misoperation personnel (wrongly assigned user) cannot be traced.

[0035] In addition, when performing cross-docking operation in the logistics transfer center, the received goods are generally unloaded and manually distributed to the designated area, and then the goods in the designated area are quickly transported away. In actual cross-docking distribution operation, the types of goods are different, some have box packaging, some do not have box packaging, some have different sizes (such as potatoes, which have differences in total weight and bearing packaging, some are packaged in bags, and some are boxed and the specifications of the boxes may differ), and some categories cannot be mixed (for example, flowers cannot be placed together with other goods to prevent being crushed); therefore, in actual cross-docking distribution operation, there are problems such as low manual distribution efficiency, difficulty in timely detecting and tracing distribution errors, etc.

[0036] Therefore, the embodiments of the present disclosure provide a cross-docking distribution method, device, electronic equipment and medium. In an implementation manner, the above cross-docking distribution method is applied to a terminal device, and the implementation scenario can be manual distribution operation with the terminal device. The above method comprises: identifying target goods to be distributed corresponding to a current distribution task to obtain goods identification information; determining target distribution information corresponding to the same type of goods of the target goods to be distributed according to distribution data and the above goods identification information and displaying the target distribution information; the target distribution information comprises: distribution starting point information corresponding to the same type of goods, containing associated container information or transfer area information; target distribution area as a distribution end point and corresponding target distribution quantity; receiving interface interaction operation in the distribution process; the distribution process is executed based on the target distribution information; and generating target distribution records of the same type of goods according to the interface interaction operation.

[0037] The method can be used by multiple distribution personnel to carry out the distribution of multiple types of goods simultaneously with the terminal device, improve the distribution efficiency, and timely prompt the distribution error through the interface interaction operation in the distribution process to reduce the error probability of manual distribution; and the generated target distribution records facilitate the tracing of the distribution process.

[0038] In another embodiment, the above-mentioned cross-docking method is applied to the smart cross-docking transportation device with a loading space, and the implementation scenario can be the cross-docking operation performed by the smart cross-docking transportation device. In the above-mentioned method, the target goods to be cross-docked corresponding to the current cross-docking task are identified to obtain goods identification information. According to the dispatch cross-docking data and the above-mentioned goods identification information, target cross-docking information corresponding to the same type of goods of the above-mentioned target goods to be cross-docked is determined; the target cross-docking information includes: cross-docking starting point information corresponding to the same type of goods, containing associated delivery container information or transfer area information; target cross-docking area as a cross-docking end point and corresponding target cross-docking quantity. The above-mentioned target cross-docking information is presented on the display interface of the smart cross-docking transportation device, and the user is prompted to load the goods; or, according to the above-mentioned target cross-docking information, the goods are automatically loaded. The placement goods information in the above-mentioned loading space is determined. According to the above-mentioned target cross-docking information and the above-mentioned placement goods information, the cross-docking process of the same type of goods is executed and the execution information is recorded. According to the execution information of the cross-docking process, the target cross-docking record of the same type of goods is generated.

[0039] The method can be used to synchronize the cross-docking of multiple types of goods by multiple smart cross-docking transportation devices, thereby improving the cross-docking efficiency; the same type of goods can be cross-docked by one smart cross-docking transportation device through at least one cross-docking process, or by multiple smart cross-docking transportation devices through multiple cross-docking processes. During the cross-docking, the smart cross-docking transportation device can strictly perform according to the target cross-docking information, thereby reducing or avoiding the probability of cross-docking errors; and the target cross-docking record generated at the same time can realize the traceability of the cross-docking execution process.

[0040] To make the objects, technical solutions, and advantages of the embodiments of the present disclosure clearer, the technical solutions in the embodiments of the present disclosure will be described clearly and completely below with reference to the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only a part of the embodiments of the present disclosure, rather than all the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present disclosure.

[0041] Figure 1A The system architecture suitable for the cross-docking method of an embodiment of the present disclosure is schematically shown.

[0042] Reference Figure 1AAs shown, the system architecture 100a applicable to the cross-warehouse distribution method of an embodiment of the present disclosure includes a terminal device 110 and a first server 120, the first server 120 and the terminal device 110 communicate with each other based on a network, the first server 120 is configured to provide service support for data processing of the terminal device 110, for example, a warehouse logistics application is installed on the terminal device 110, the warehouse logistics application is configured to implement the cross-warehouse distribution method, and the first server 120 is configured to provide service support for the warehouse logistics application.

[0043] The first user 101 can carry the terminal device 110 to perform the cross-warehouse distribution work, that is, a manual work mode, during which the first user 101 can manually carry or manually operate a trolley to perform the cross-warehouse distribution work, and the terminal device 110 implements the cross-warehouse distribution method provided by the first embodiment of the present disclosure. Figure 1A In some embodiments, a pentagon is used to represent the distribution transport subject, which can be a person or a trolley (which needs to be manually operated).

[0044] The terminal device 110 can be a mobile electronic device, such as but not limited to a smart phone, a handheld terminal (PDA), a tablet device, etc.

[0045] Figure 1B The system architecture applicable to the cross-warehouse distribution method of another embodiment of the present disclosure is schematically shown.

[0046] Referring to Figure 1B As shown, the system architecture 100b applicable to the cross-warehouse distribution method of another embodiment of the present disclosure includes a smart distribution transport device 130 with a loading space and a second server 140. The second server 140 and the smart distribution transport device 130 communicate with each other based on a network, and the second server 140 is configured to provide service support for data processing of the smart distribution transport device 130, for example, a warehouse logistics application is installed on the smart distribution transport device 130, the warehouse logistics application is configured to implement the cross-warehouse distribution method, and the second server 140 is configured to provide service support for the warehouse logistics application.

[0047] In some embodiments, the smart distribution transport device 130 itself supports cargo loading and unloading functions, and the cross-warehouse distribution method can be automatically executed by the smart distribution transport device 130; in other embodiments, due to different types of goods and different loading and unloading requirements, manual assistance is required for cargo loading and unloading to ensure the quality of the goods; or the smart distribution transport device 130 does not support the cargo loading and unloading function, and a second user 102 can be arranged to load and unload the goods during the distribution work, and the corresponding personnel for loading and unloading the goods can be arranged at the departure point and the destination of the goods.

[0048] Referring to Figure 1A and Figure 1B , a regional structure diagram of the logistics transfer center 103 is also shown, which includes a receiving area and a distribution area. The receiving area includes a plurality of receiving containers, such as the receiving containers C1-C4 shown in Figure 1A and Figure 1B , which have storage spaces for storing goods. The distribution area serves as a distribution end point, and each distribution area is independent of each other in space or time according to the attributes of the goods to be distributed. The attributes of the goods to be distributed include, but are not limited to, at least one of the following: category, volume, stackability. The spatial independence refers to the separation between spatial ranges, and the temporal independence refers to the occupation of different time periods for the same spatial range.

[0049] For example, Figure 1A and Figure 1B , the distribution areas F1, F2, and F3 are used to distribute goods according to their categories. The distribution area F1 is used to place large-sized goods with box packaging, the distribution area F2 is used to place small-sized goods with or without packaging, and the distribution area F3 is used to store fresh flowers or seafood with high transportation time efficiency and not recommended to be stacked.

[0050] In some embodiments, the distribution area corresponding to the goods to be distributed with the same attribute includes a plurality of distribution sub-areas, which are located in the same space or time period. For example, as shown in Figure 1A or Figure 1B , the distribution area F1 includes three distribution sub-areas, namely F11-F13; the distribution area F2 includes three distribution sub-areas, namely F21-F23; and the distribution area F3 includes three distribution sub-areas, namely F31-F33. The goods stored in the distribution sub-areas F11, F12, and F13 are used for corresponding warehouse-to-store delivery to store 1, store 2, and store 3, respectively. The goods stored in the distribution sub-areas F21, F22, and F23 are used for corresponding warehouse-to-store delivery to store 1, store 2, and store 3, respectively. The goods stored in the distribution sub-areas F31, F32, and F33 are used for corresponding warehouse-to-store delivery to store 1, store 2, and store 3, respectively. It can be understood that the number of stores and the number of distribution sub-areas here are only examples and can be adjusted according to actual conditions.

[0051] In some implementation scenarios, during the receiving stage, the goods can be stored in the corresponding receiving containers by the receiving personnel, and the receiving personnel can use electronic devices to upload the receiving association relationship between the goods and the corresponding receiving containers to the server (for example, corresponding to Figure 1AThe first service end 120) illustrated in the figure; or the goods are stored in the corresponding receiving container by the intelligent handling robot in the receiving stage, and the corresponding receiving association relationship is uploaded to the service end (for example Figure 1B The second service end 140) illustrated in the figure.

[0052] The first example embodiment of the present disclosure provides a method for inter-warehouse distribution. The method of the present embodiment can be applied to Figure 1A The terminal device 110 in the example system architecture 100a.

[0053] Figure 1B A flowchart of the method for inter-warehouse distribution according to an embodiment of the present disclosure is schematically shown.

[0054] Referring to Figure 2 The method for inter-warehouse distribution applied to the terminal device provided by the present embodiment includes the following steps: S210, S220, S230 and S240.

[0055] In step S210, the target goods to be distributed corresponding to the current distribution task are identified to obtain the goods identification information.

[0056] In some inter-warehouse distribution scenarios, the goods to be distributed are transported from the receiving area to the transit area, and then the goods stored in the transit area are transported to the target distribution sub-area in the distribution area, and then the goods stored in the target distribution sub-area are transported to the corresponding store.

[0057] The above-mentioned transit area refers to a storage space divided on the ground, for example, different areas can be indicated by setting visual boundaries.

[0058] The transit area can be divided into multiple sub-areas according to the attribute difference of the goods to be distributed, referring to Figure 2 and Figure 1A The transit sub-areas Z1-Z3 illustrated in the dashed box in the figure. By storing goods to be distributed with the same attribute in the same transit sub-area, it is avoided that goods to be distributed with different attribute types are mixed and placed, which causes inconvenience in the placing process and the process of taking goods from the transit area to the distribution area, and even causes damage to the goods (such as fresh flower goods or strawberries, mangoes, etc. that avoid collision); by setting the transit area, the storage time of the goods in the receiving container can also be shortened, and the goods can be transferred to the open space in time, avoiding damage to the quality of the goods caused by long storage time of the goods in the receiving container (such as fresh flowers, fruits that are not easy to store, seafood, etc. that have very high requirements for the time efficiency of transportation).

[0059] In other cross-warehouse distribution scenarios, there is no need to set up a transit area. The goods to be distributed are directly moved from the receiving area to the target distribution sub-area within the distribution area, and then the goods stored in the target distribution sub-area are transported to the corresponding stores.

[0060] In the two cross-warehouse distribution scenarios mentioned above, the distribution starting point for the first cross-warehouse distribution scenario is the transit area; the distribution starting point for the second cross-warehouse distribution scenario is the receiving area.

[0061] In some embodiments, the aforementioned cargo identification information includes, but is not limited to: cargo information of the target cargo to be distributed and associated receiving container.

[0062] Cargo information may include cargo identification (such as cargo barcode, cargo name), cargo type, etc.

[0063] The first user (e.g., a broadcasting personnel) 101 can use a terminal device at the broadcasting starting point to scan the goods to be broadcast (i.e., the target goods to be broadcast). For example, if there is a barcode on the goods, the corresponding goods information can be obtained by identifying the barcode. The associated receiving container corresponding to the goods information can be obtained from the receiving association stored in the first server. The above goods information and associated receiving container information can then be presented on the terminal device through a visual interface.

[0064] Figure 1B The diagram illustrates the state of the visualization interface corresponding to the implementation of the cross-store distribution method according to an embodiment of the present disclosure: (a) is a first state diagram of the visualization interface before scanning goods; (b) is a second state diagram of displaying goods identification information after scanning the target goods to be distributed; (c) is a third state diagram of distribution in the distribution sub-area of ​​the store based on the forward order; and (d) is a fourth state diagram of distribution in the distribution sub-area of ​​the store based on the reverse order.

[0065] For example, refer to Figure 3 As shown in (a), the visual interface of terminal device 110 before scanning the goods presents the following fields: container number, product code, product name, store name, store order, quantity to be distributed, and actual quantity distributed. The product code and product name can be identified and filled in after terminal device 110 scans the target goods to be distributed. The associated receiving container is determined through the obtained receiving relationship, and the information of the associated receiving container is filled into the container number field. Figure 3 The second state is illustrated in (b). By displaying cargo identification information on the visual interface of the terminal device 110, the first user 101 (e.g., a distribution personnel) can view and verify the cargo to be distributed and the corresponding associated receiving container.

[0066] At step S220, according to the distribution dispatch data and the above-mentioned goods identification information, the target dispatch information corresponding to the same type of goods of the target goods to be dispatched is determined and displayed.

[0067] The distribution dispatch data can be data obtained by the terminal device 110 from the first server 120. In some embodiments, the distribution dispatch data can be dispatch data associated with the current dispatch task. In other embodiments, the distribution dispatch data can be dispatch data of the logistics circulation center, containing dispatch data corresponding to each dispatch task. After the terminal device obtains the distribution dispatch data, the target dispatch information corresponding to the same type of goods can be matched according to the goods information of the target goods to be dispatched.

[0068] As an example, the distribution dispatch data contains a set of detailed data associated with the following: commodity name, commodity corresponding dispatch starting point information, store name, store id, and the number of goods to be dispatched corresponding to each store. The correspondence between each store and the dispatch sub-area is known. In some embodiments, the above-mentioned distribution dispatch data can also contain a preset dispatch order, which is used to indicate the order of each dispatch sub-area in the same dispatch process.

[0069] In some embodiments, the distribution dispatch data is obtained by the following method: the store issues a purchase order, which includes the goods and the corresponding quantity required by the store; the server loads the purchase order data into the cross-warehouse pool, including the goods information and the purchase store information; the purchaser issues a purchase order according to the purchase store information; the goods are received in the warehouse, and the operation of receiving the goods is completed; the server automatically matches and calculates the goods in the purchase order with the goods in the cross-warehouse pool, calculates the number of goods that can be cross-warehoused for each store, and generates the distribution dispatch data.

[0070] The above-mentioned target dispatch information includes: the dispatch starting point information corresponding to the same type of goods, including associated receiving container information or transit area information; the target dispatch area as the dispatch end point and the corresponding target dispatch quantity.

[0071] In some embodiments, the above-mentioned target dispatch area is independent of each other in space or time according to the attribute difference of the corresponding goods to be dispatched. The target dispatch area corresponding to the same attribute of the goods to be dispatched contains multiple target dispatch sub-areas, and the above-mentioned target dispatch quantity is the quantity of each target dispatch sub-area. The attributes of the above-mentioned goods to be dispatched include at least one of the following: category, volume, and stackability.

[0072] The same type of goods of the target goods to be split is the same type of goods required by different stores in the split process, and specifically includes but is not limited to the same brand, the same model, the same style, etc. The specific type granularity can be changed according to the actual split efficiency needs. If the number of goods to be split in the current split task is not large and the types are more, the same type of goods can be divided based on a more general (or described as broad) classification. When the split quantity is large and the type is less, the same type of goods can be divided based on a more specific classification.

[0073] In some embodiments, the target goods to be split is a box of product number yyyy drinking water, and the corresponding same type of goods can be XX brand drinking water. The corresponding target split information can be that store 1 needs 3 boxes of XX brand drinking water, store 2 needs 2 boxes of XX brand drinking water, and store 3 needs 5 boxes of XX brand drinking water. Since the split sub-regions corresponding to each store are determined, the target split sub-regions and the target split quantities of the XX brand drinking water can be determined as follows: the split sub-region-store 1-3 boxes; the split sub-region-store 2-2 boxes; and the split sub-region-store 3-5 boxes.

[0074] In some embodiments, the target goods to be split is a box of product number yyyy drinking water, and the corresponding same type of goods can be XX brand drinking water. The corresponding target split information can be that store 1 needs 3 boxes of XX brand drinking water, store 2 needs 2 boxes of XX brand drinking water, and store 3 needs 5 boxes of XX brand drinking water. Since the split sub-regions corresponding to each store are determined, the target split sub-regions and the target split quantities of the XX brand drinking water can be determined as follows: the split sub-region-store 1-3 boxes; the split sub-region-store 2-2 boxes; and the split sub-region-store 3-5 boxes.

[0075] The purpose of displaying the target split information on the terminal device is to prompt the first user (e.g., a split personnel) 101 to carry what type of goods, how many quantities, and transport from which split starting point to which split ending point. In this scenario, the split personnel's split work content is to place goods on a split transport device (e.g., in the form of a trolley, a flatbed trailer, etc.) and transport the goods. The first user 101 can take a certain amount of goods from the split starting point according to the displayed target split information and place them on the split transport device, and transport the split transport device from the split starting point to the split ending point. According to the size of the one-time transport capacity, the same type of goods corresponding to the scanned goods can be transported to the split ending point based on one or more round trips. And unload the corresponding quantity of goods in the corresponding target split sub-region.

[0076] In step S230, an interface interaction operation in the split process is received; the split process is performed based on the target split information.

[0077] The first user 101 performs the distribution process based on the target distribution information displayed on the terminal device 110. In which, the distribution process of multiple types of goods can be performed synchronously by multiple users, for example, user A performs the distribution process of XX brand drinking water, and the distribution end point of the distribution process corresponds to Figure 3 the distribution area F1; user B performs the distribution process of potatoes with packaging bags, and the distribution end point of the distribution process corresponds to Figure 1A the distribution area F2; and user C performs the distribution process of crabs, and the distribution end point of the distribution process corresponds to Figure 1A the distribution area F3.

[0078] Figure 1A The area identification code of each distribution sub-area contained in the distribution area and the forward or reverse distribution sequence diagram between the distribution sub-areas according to an embodiment of the present disclosure are schematically shown.

[0079] As an example, in the distribution process of XX brand drinking water performed by user A, the distribution transport device can be used to transport 5 boxes of drinking water at a time, and the first 5 boxes of drinking water are transported from the distribution starting point (which can be the XX brand drinking water corresponding to the receiving container, or the XX brand drinking water corresponding to the distribution transit area) to the distribution area F1, and then the 5 boxes of drinking water are unloaded to the distribution sub-area of store 1 and the distribution sub-area of store 2, respectively; and the second transport of another 5 boxes of drinking water is unloaded to the distribution sub-area of store 3. Referring to Figure 4 , the distribution sub-areas of 13 stores are schematically shown in a state of being arranged in a U shape in space, and the area identification code corresponding to the distribution sub-area of each store is shown, for example, the area identification code of the distribution sub-area of store 1 is numbered as 20120231. The interface interaction operation of user A during the first distribution of 5 boxes of drinking water can include the following cases: after arriving at the distribution sub-area of store 1, user A can scan the area identification code 20120231 of the distribution sub-area of store 1 using the terminal device, and the recognized area information is displayed on the terminal device of user A as the target distribution sub-area 1, and the corresponding distribution quantity is 3 boxes; referring to Figure 4As shown in (c), the identified area information is converted into the corresponding store name for distribution, and the quantity to be distributed is also displayed in the visualization interface. After the user clicks the "Store Details" function button, all the goods information that need to be distributed for that store can be displayed. Users can distribute goods in the current distribution area (here corresponding to the distribution sub-area of ​​store 1, i.e., the target distribution sub-area 1 displayed on the terminal device) according to the area information and the quantity to be distributed displayed on the terminal device, and manually fill in the quantity distributed during the distribution process in the corresponding "Actual Distribution Quantity" field, or use the terminal device to scan and automatically identify the actual distribution quantity after the current area is distributed. Afterwards, User A can use their terminal device to scan the area identification code 20120232 of the distribution sub-area of ​​Store 2. The identified area information will be displayed on User A's terminal device as the target distribution sub-area 2, with a corresponding distribution quantity of 2 boxes. User A will then distribute the goods in the current distribution area (here corresponding to the distribution sub-area of ​​Store 2, i.e., the target distribution sub-area 1 displayed on the terminal device) according to the area information and distribution quantity displayed on the terminal device. User A can manually fill in the distribution quantity during the distribution process in the "Actual Distribution Quantity" field, or automatically identify the actual distribution quantity by scanning with the terminal device after the current area has been distributed. After User A transports another 5 boxes of drinking water to the distribution sub-area of ​​Store 3 for the second time, the corresponding interface operation can be understood by referring to the previous description process, and will not be repeated here.

[0080] Understandably, in order to improve the efficiency of split-broadcast execution, the capacity of transport vehicles can be increased or the parallelism of cargo transportation within the same time period can be improved.

[0081] Reference Figure 3 (c) and (d) and Figure 3 As shown, the aforementioned target recast information also includes a preset recast order, which indicates the order in which target recast sub-regions occur within the same recast process. Recast execution can be guided in either forward or reverse order. Within a recast task, the relative order between different recast sub-regions can be pre-configured. The preset recast order is configured based on objectives such as shortening the recast execution path and reducing recast execution time, and can be continuously optimized and adjusted based on the actual execution data of each recast task.

[0082] For example, in some embodiments, the preset distribution order is an updated distribution order, which is obtained by optimizing the distribution paths and distribution time consumptions of the same type of goods by multiple users, or by optimizing the distribution paths and distribution time consumptions of multiple same types of goods by the same user, or by optimizing the distribution paths and distribution time consumptions of multiple same types of goods by multiple users. The process can be performed by the first server corresponding to the terminal device and synchronized to the terminal device.

[0083] In some embodiments, the interface interaction operation in the receiving distribution process includes: receiving a region identification instruction for the starting distribution sub-region; identifying the starting distribution sub-region according to the region identification instruction to obtain starting region information and display it on the interface; displaying the region information corresponding to the current distribution sub-region and the target distribution quantity on the interface according to the preset distribution order and the distribution jump instruction; the current distribution sub-region is any one of the multiple target distribution sub-regions; receiving quantity input information or a goods scanning instruction for the distribution sub-region; displaying the actual distribution quantity according to the quantity input information or the scanning result of the goods scanning instruction.

[0084] Figure 4 The last function key and the next function key according to the preset distribution order in the forward order and the reverse order are also respectively shown in (c) and (d). Based on the function key, the first user only needs to scan the region identification code corresponding to the starting distribution sub-region, and then the terminal device is regarded as receiving the distribution jump instruction by operating the last function key or the next function key presented on the terminal device, without the need for the first user to scan each distribution sub-region, thereby reducing the scanning workload and improving the intelligent operation degree. In other embodiments, the function key can not be provided, and the user can scan each distribution sub-region in sequence based on the terminal device in the distribution implementation process. After identifying the current distribution sub-region and presenting the corresponding information, if a scanning action on a new distribution sub-region is detected, it is regarded as receiving the distribution jump instruction, and the region information corresponding to the next scanned distribution sub-region is presented.

[0085] In some embodiments, the terminal device supports switching of the preset distribution order between the forward order and the reverse order, for example, the default is the forward order, and the forward and reverse orders are switched by pressing the F1 key of the terminal device (for example, a PDA device).

[0086] In order to ensure that multiple distribution tasks interfere with each other as little as possible, the preset distribution sequence corresponding to different distribution tasks can be flexibly adjusted. Specifically, the initial distribution sub-area of each user scanning the region identification code of the store can be dynamically allocated according to the time, so that the distribution sub-areas of the same store are executed by the users in a scattered manner. The scattered execution can be scattered in time or scattered in space.

[0087] In some embodiments, due to the settings of the previous function key and the next function key, the first user only needs to operate the terminal device and walk to the corresponding area to distribute the corresponding number of goods in the actual distribution process. However, when the first user distributes a large number of goods or the actual current distribution area of the first user is inconsistent with the distribution area displayed by the terminal device due to a mistake, the user may make a distribution error when referring to the target distribution data (for example Figure 3 the number of distribution to be distributed in (c) of FIG. 6) displayed on the terminal device. Therefore, the embodiments of the present disclosure further set a logic for confirming the distribution of the current distribution sub-area. Corresponding to the scanning confirmation function key in (c) and (d) of FIG. 6, the distribution confirmation can be performed based on the function key, so as to timely check whether the current distribution sub-area is consistent with the actual distribution sub-area, whether the actual distribution quantity is consistent with the number of distribution to be distributed in the current distribution sub-area, and the like, to ensure that each distribution sub-area is correctly distributed and timely discovers and prompts the distribution error. Figure 3

[0088] For example, in some embodiments, the above interface interaction operation in the distribution process further includes: receiving a distribution confirmation instruction for the current distribution sub-area; verifying whether the region information of the current distribution sub-area is consistent with the region information displayed on the interface and whether the actual distribution quantity is consistent with the target distribution quantity according to the distribution confirmation instruction; in the case that both the region information and the quantity are consistent, determining that the distribution of the current distribution sub-area is completed; and in the case that at least one of the region information or the quantity is inconsistent, displaying a distribution inconsistency prompt information.

[0089] The above distribution inconsistency prompt information is used to prompt the user in the case of quantity inconsistency or region information inconsistency, so as to facilitate the user to timely discover the distribution error situation such as region information inconsistency or quantity inconsistency in the distribution process; thereby, the information displayed on the terminal device can be timely updated to be consistent with the actually implemented information, and the actual distribution quantity can be consistent with the target distribution quantity.

[0090] In step S240, the target distribution record of the same type of goods is generated according to the above interface interaction operation.

[0091] ​The target distribution record records the actual distribution area and the actual distribution quantity of the same type of goods. In some embodiments, the target distribution record can also record the distribution time consumption, the distribution path, etc. of the same type of goods.

[0092] The terminal device can record the distribution path and the distribution time consumption of each distributor (an example of a user), where the distribution path refers to a distribution route corresponding to the completion of a distribution task on a distribution list, for example, the distribution route includes: from the distribution starting point to the distribution ending point → then return to the new distribution starting point → again to the distribution ending point corresponding to the new distribution starting point, etc. The distribution order can be associated with the type of goods distributed or can be the same for all types of goods.

[0093] Since the above interface interaction operation is interacted with the actual process of the first user (for example, a distributor) performing distribution, the actual distribution area and the actual distribution quantity can reflect the actual execution of the distribution process, and the target distribution record generated based thereon facilitates subsequent verification and tracing of the distribution work of the distributor; moreover, it can guide relevant information and timely prompt errors during the distribution execution process, etc., thereby improving the distribution efficiency while effectively reducing the probability of manual distribution errors.

[0094] In the embodiment including steps S210-S240, in the inter-warehouse distribution process, the terminal device obtains the goods identification information (for example, including the goods information and the associated receiving container) by identifying the target goods to be distributed, and determines and displays the target distribution information corresponding to the same type of goods of the target goods to be distributed according to the distribution data and the goods identification information. Since the goods to be distributed are distributed according to the type and the target distribution information is presented to the user (for example, a distributor) at any time and any place based on the terminal device, multiple distributors can carry the terminal device to simultaneously distribute multiple types of goods, thereby improving the distribution efficiency, timely prompting distribution errors through interface interaction during the distribution process, and reducing the probability of manual distribution errors. The generated target distribution record facilitates the tracing of the distribution process; moreover, the distributor does not need to go to a distribution task printer to print a distribution paper label corresponding to each distribution task, thereby effectively saving the time consumption required for going back and forth to obtain the distribution paper label, avoiding the matching error execution of the distribution task and the user caused by the distributor taking the wrong distribution paper label, and other problems such as inconvenience in tracing. In one implementation scenario, the user can carry the terminal device to perform inter-warehouse distribution.

[0095] Figure 3 A flowchart of a method of inter-warehouse distribution according to another embodiment of the present disclosure is schematically shown.

[0096] In some embodiments, in the case that the above-mentioned distribution starting point information contains transit area information, i.e., the distribution starting point is a distribution transit area, the method for cross-warehouse distribution, in addition to the above-mentioned steps S210-S240, further comprises the following steps: S510, S520, S530 and S540, for simplicity, only steps S510-S540 are shown in Figure 5 For the same target to-be-distributed goods, step S510 can be executed before step S210 or synchronously with step S210; the inconsistent state in step S540 can be stored in the state log of the target distribution record.

[0097] In step S510, the area where the target to-be-distributed goods is located is identified, and the above-mentioned identified transit area information corresponding to the target to-be-distributed goods is obtained.

[0098] In step S520, according to the transit allocation relationship, the target transit area information corresponding to the target to-be-distributed goods is determined. The target transit area information is the target distribution transit area or the occupation period for the target distribution transit area; and the transit allocation relationship represents the distribution transit area allocated to the to-be-distributed goods or the occupation period of the to-be-distributed goods for the distribution transit area.

[0099] In step S530, it is verified whether the identified transit area information is consistent with the target transit area information.

[0100] In step S540, in the case of inconsistency, the inconsistent state is stored in the target distribution record corresponding to the target to-be-distributed goods.

[0101] Based on the verification logic of the above-mentioned steps S510-S540, it can be verified whether the actual transfer process of the to-be-distributed goods from the receiving container to the transit area is consistent with the corresponding relationship stored in the server, and the supervision and traceability of the goods transit process can be realized.

[0102] In some embodiments, in the above-mentioned transit allocation relationship, different distribution transit areas or different time periods of the same distribution transit area are allocated to the to-be-distributed goods based on the attribute differences of the to-be-distributed goods; the above-mentioned attributes include at least one of the following: category, volume, stackability.

[0103] In some embodiments, in the case that the above-mentioned distribution starting point information contains transit area information, i.e., the distribution starting point is a distribution transit area, after the receiving stage and before the distribution stage (performing the distribution process on the goods in the transit sub-area), there is a transfer stage, in which the goods need to be transferred from the receiving area to the transit area, specifically, the goods are transferred from a certain receiving container to the transit sub-area. In some application scenarios, the transfer stage can be performed by the distribution personnel, and the corresponding transfer logic can be set in the terminal device corresponding to the distribution operation function. In other application scenarios, the transfer stage can also be performed by the receiving personnel, and the corresponding transfer logic can be set in the terminal device corresponding to the receiving operation function.

[0104] The following embodiments are exemplified by the process of the distribution personnel performing the transfer stage.

[0105] Figure 5 A flowchart of a method of cross-dock distribution according to yet another embodiment of the present disclosure is schematically shown.

[0106] In some embodiments, in addition to including the above-mentioned steps S210-S240, or including the above-mentioned steps S210-S240 and S510-S540, the method of cross-dock distribution further includes the following steps: S610, S620 and S630, for simplicity, only steps S610-S630 are shown in Figure 6

[0107] In step S610, receiving information is obtained, the receiving information containing: goods information of goods to be distributed, receiving container information corresponding to the goods to be distributed.

[0108] In step S620, according to the attribute differences of the above-mentioned goods to be distributed, different distribution transit areas or different time periods of the same distribution transit area are allocated to the above-mentioned goods to be distributed, to obtain a transit allocation relationship.

[0109] The attributes of the above-mentioned goods to be distributed include at least one of the following: category, volume, stackability. For example, as shown in Figure 6 The distribution transit area Z is divided into multiple transit sub-areas Z1-Z3.

[0110] In step S630, according to the above-mentioned transit allocation relationship, transfer prompt information is generated and displayed, the transfer prompt information being used to prompt a user to transfer the above-mentioned goods to be distributed from the receiving container to the corresponding allocated distribution transit area for storage.

[0111] ​In the embodiment comprising the above steps S610-S630, the same type of goods to be distributed are stored in the same transfer sub-area, so as to avoid the inconvenience of placing and taking the goods from the transfer sub-area to the distribution area due to the mixed storage of goods with different attribute types, and even damage to the goods (such as fresh flowers, strawberries, mangoes, and other goods that are not allowed to be knocked, etc.). By setting the transfer sub-area, the storage time of the goods in the receiving container can be shortened, and the goods can be transferred to the open space in time, so as to avoid the damage to the quality of the goods caused by the long storage time of the goods in the receiving container (such as fresh flowers, fruits that are not easy to store, seafood, and other goods that have very high requirements for the time efficiency of transfer).

[0112] In each of the above embodiments, the method can further include the following steps: after the distribution of the same type of goods of the target goods to be distributed is completed, claiming the next distribution task; determining the target goods to be distributed included in the next distribution task according to the distribution data, and displaying the corresponding goods prompt information.

[0113] The action of claiming can be automatically executed by the terminal device after completing the previous distribution task or triggered by a person, for example, by setting a function key corresponding to the next task on the terminal device, and the user triggers the claim by clicking the function key. After claiming the next distribution task, the display interface corresponding to the previous distribution task is cleared, and the target goods to be distributed included in the next distribution task are presented according to the distribution data, and the corresponding goods prompt information is displayed. For example, the detailed data of the next distribution task is presented.

[0114] A second embodiment of the present disclosure provides a cross-warehouse distribution method. The above method is applied to an intelligent distribution transport device with a loading space, for example, an intelligent distribution vehicle or other devices with distribution transport functions, etc. The specific execution logic of the present embodiment is similar to that of the first embodiment, and the difference lies in that the present embodiment is independently executed by the intelligent distribution transport device, and does not need to be carried by a person to distribute. Figure 1A The intelligent distribution transport device 130 in the system architecture 100b of the example, which can be specifically a distribution intelligent vehicle or other devices with distribution transport functions, etc. The specific execution logic of the present embodiment is similar to that of the first embodiment, and the difference lies in that the present embodiment is independently executed by the intelligent distribution transport device, and does not need to be carried by a person to distribute.

[0115] In the present embodiment, the loading and unloading process of the goods can be executed by the intelligent distribution transport device; or can be manually loaded and unloaded.

[0116] Figure 1B The flowchart of the cross-warehouse distribution method applied to the intelligent distribution transport device according to an embodiment of the present disclosure is schematically shown.

[0117] Referring to Figure 7As shown, the method for inter-warehouse distribution applied to the intelligent distribution transportation device provided by the embodiments of the present disclosure includes the following steps: S710, S720, S731 or S732, S740, S750, S760.

[0118] In step S710, the target goods to be distributed corresponding to the current distribution task are identified to obtain goods identification information.

[0119] In step S720, the target distribution information corresponding to the same type of goods of the target goods to be distributed is determined according to the distribution data and the above-mentioned goods identification information.

[0120] The above-mentioned target distribution information includes: distribution starting point information of the same type of goods, containing associated receiving container information or transfer area information; target distribution area as the distribution end point and corresponding target distribution quantity.

[0121] In step S731, the above-mentioned target distribution information is presented on the display interface of the intelligent distribution transportation device, and the user is prompted to load the goods; or in step S732, the goods are automatically loaded according to the above-mentioned target distribution information.

[0122] In this embodiment, the target distribution information can be displayed on the intelligent distribution transportation device or not displayed. If displayed, part or all of the information can be displayed, for example, part of the information such as which target goods to be distributed are placed in the intelligent distribution transportation device and how many are placed, which is used to prompt the distribution personnel to perform the operation of loading the goods; in this implementation scenario, the loading personnel need to be equipped at the distribution starting point. In addition, displaying the information of the distribution end point is also helpful for the unloading personnel equipped at the distribution end point to check the types and quantities of the goods carried on the intelligent distribution transportation device, which are consistent with the displayed information.

[0123] If not displayed, the intelligent distribution transportation device can automatically load and unload the goods according to the target distribution information.

[0124] In step S740, the placed goods information in the loading space is determined.

[0125] It can be recognized by the built-in camera of the intelligent distribution transportation device, or the placed goods information can be input into the intelligent distribution transportation device after being loaded by the distribution personnel; or the loading information can be input based on other devices after being loaded by the distribution personnel, and the loading information is sent to the intelligent distribution transportation device by the other devices.

[0126] In step S750, the distribution process of the same type of goods is executed and the execution information is recorded according to the above-mentioned target distribution information and the above-mentioned placed goods information.

[0127] In some embodiments, the target distribution areas are independent of each other in space or time according to differences in attributes of the goods to be distributed; the target distribution areas corresponding to the goods to be distributed of the same attribute comprise a plurality of target distribution sub-areas, and the target distribution quantity is the number of each target distribution sub-area; the attributes of the goods to be distributed comprise at least one of the following: category, volume, stackability; and the target distribution information further comprises a preset distribution sequence, which is used to indicate the order of the target distribution sub-areas in the same distribution process.

[0128] In some embodiments, in step S750, the distribution process of the same type of goods is performed according to the target distribution information and the placed goods information, comprising:

[0129] According to the placed goods information, the number of loaded goods in the same type of goods is determined;

[0130] In the case where the number is less than the total number of the plurality of target distribution sub-areas, a plurality of intelligent distribution transport devices are allocated to perform the current distribution task or the transport times of the same intelligent distribution transport device are set to obtain allocation information;

[0131] According to the allocation information, a target distribution sub-area list satisfied by the number of loaded goods in each intelligent distribution transport device or each transport of the same intelligent distribution transport device is determined;

[0132] According to the target distribution sub-area list and the preset distribution sequence, a distribution execution sequence corresponding to each target distribution sub-area in the target distribution sub-area list is determined;

[0133] According to the distribution execution sequence, the transport, unloading and return route of the loaded goods are planned to obtain a distribution route corresponding to the same type of goods;

[0134] According to the distribution route, the distribution process of the same type of goods is performed.

[0135] In some embodiments, the distribution route comprises: the distribution execution sequence of each target distribution sub-area in the target distribution sub-area list; the departure path and the return path corresponding to one round trip; and the information of multiple round trips.

[0136] In step S760, according to the execution information of the distribution process, a target distribution record of the same type of goods is generated.

[0137] In the embodiment comprising steps S710-S760, in the cross-warehouse distribution process, the intelligent distribution transport device identifies the target to-be-distributed goods corresponding to the obtained goods identification information (for example, comprising goods information and associated receiving containers), and determines target distribution information corresponding to the same type of goods of the target to-be-distributed goods according to the distribution data and the goods identification information. The loading of the to-be-distributed goods can be performed in a cooperative manner of the user and the intelligent distribution transport device. The display interface of the intelligent distribution transport device presents the target distribution information and prompts the user to load the goods. Alternatively, the intelligent distribution transport device can automatically load the goods according to the target distribution information. After loading, the placed goods information in the loading space is determined. According to the target distribution information and the placed goods information, the distribution process of the same type of goods is performed and the execution information is recorded. According to the execution information of the distribution process, the target distribution record of the same type of goods is generated. Since the to-be-distributed goods are distributed according to the type, multiple types of goods can be distributed by multiple intelligent distribution transport devices at the same time, which improves the distribution efficiency. The same type of goods can be distributed by one intelligent distribution transport device through at least one distribution process, or by multiple intelligent distribution transport devices through multiple distribution processes. During the distribution process, the intelligent distribution transport device can strictly perform according to the target distribution information, reducing the probability of distribution errors. The generated target distribution record can realize the traceability of the distribution execution process. Even if the intelligent distribution transport device makes a mistake, the target distribution record can be checked, and the distribution execution process can be traced and analyzed to find the reason for subsequent improvement. The distribution personnel do not need to go to the distribution task printer to print the distribution paper labels corresponding to each distribution task, effectively saving the time required for walking back and forth to obtain the distribution paper labels, and avoiding the matching errors of the distribution tasks and the users caused by different distribution personnel taking the wrong distribution paper labels, and other problems such as inconvenience in tracing.

[0138] More related details of the present embodiment can be analogously referred to the related description of the first embodiment, which will not be repeated here.

[0139] The third exemplary embodiment of the present disclosure provides a cross-warehouse distribution device.

[0140] The above device comprises a first identification module, a first distribution information determination module, a first display module, and a first record generation module.

[0141] The first identification module is used to identify the target to-be-distributed goods corresponding to the current distribution task to obtain goods identification information.

[0142] The first distribution information determination module is used to determine target distribution information corresponding to the same type of goods of the target to-be-distributed goods according to the distribution data and the goods identification information.

[0143] The first display module is configured to display the target distribution information, which includes distribution starting point information corresponding to the same type of goods, and associated container information or transit area information, a target distribution area as a distribution end point, and a corresponding target distribution quantity.

[0144] The first display module is further configured to receive interface interaction operations in a distribution process, and the distribution process is performed based on the target distribution information.

[0145] The first record generation module is configured to generate a target distribution record of the same type of goods according to the interface interaction operations.

[0146] According to an embodiment of the present disclosure, when the distribution starting point information includes transit area information, the device further includes a region identification module, a transit area determination module, and a region consistency verification module.

[0147] The region identification module is configured to identify a region where a target to-be-distributed good is located, to obtain identification transit area information corresponding to the target to-be-distributed good.

[0148] The transit area determination module is configured to determine target transit area information corresponding to the target to-be-distributed good according to a transit allocation relationship, and the target transit area information is a target distribution transit area or an occupation time period for the target distribution transit area, and the transit allocation relationship indicates a distribution transit area allocated to a to-be-distributed good or an occupation time period of a to-be-distributed good for a distribution transit area.

[0149] The region consistency verification module is configured to verify whether the identification transit area information is consistent with the target transit area information.

[0150] The first record generation module is further configured to, in a case where the verification is inconsistent, store an inconsistent state into a target distribution record corresponding to the target to-be-distributed good.

[0151] According to an embodiment of the present disclosure, when the distribution starting point information includes transit area information, the device further includes a container information acquisition module, a transit allocation module, and a transfer prompting module.

[0152] The container information acquisition module is configured to acquire container information, and the container information includes good information of a to-be-distributed good and container information corresponding to the to-be-distributed good.

[0153] The transit allocation module is configured to allocate different distribution transit areas or different time periods of the same distribution transit area to the to-be-distributed goods according to attribute differences of the to-be-distributed goods, so as to obtain a transit allocation relationship. The attributes of the to-be-distributed goods include at least one of the following: category, volume, and stackability.

[0154] The transit prompting module is configured to generate and display transit prompting information according to the transit allocation relationship. The transit prompting information is used to prompt a user to transfer the to-be-distributed goods from the receiving container to the corresponding allocated distribution transit area for storage.

[0155] According to an embodiment of the present disclosure, the device further includes a task claiming module and a task detail display module.

[0156] The task claiming module is configured to claim a next distribution task after distribution of the same type of goods of the target to-be-distributed goods is completed.

[0157] The task detail display module is configured to determine target to-be-distributed goods included in the next distribution task according to the distribution assignment data and display corresponding goods prompting information.

[0158] More details and benefits of the present embodiment can be referred to the related description of the first embodiment, which will not be repeated here.

[0159] A fourth exemplary embodiment of the present disclosure provides an intelligent distribution transportation equipment for inter-warehouse distribution.

[0160] The intelligent distribution transportation equipment has a loading space, and includes a second identification module, a second distribution information determination module, a second display module, a placement information determination module, a distribution execution module, and a second record generation module.

[0161] Alternatively, the intelligent distribution transportation equipment includes a second identification module, a second distribution information determination module, a loading module, a placement information determination module, a distribution execution module, and a second record generation module.

[0162] The second identification module is configured to identify target to-be-distributed goods corresponding to a current distribution task to obtain goods identification information.

[0163] The second distribution information determination module is configured to determine target distribution information corresponding to the same type of goods of the target to-be-distributed goods according to the distribution assignment data and the goods identification information. The target distribution information includes distribution starting point information corresponding to the same type of goods, which includes associated receiving container information or transit area information; a target distribution area as a distribution end point and a corresponding target distribution quantity.

[0164] The second display module is configured to display the target distribution information on a display interface of the intelligent distribution transportation device and prompt a user to load the goods.

[0165] The loading module is configured to automatically load the goods according to the target distribution information.

[0166] The placement information determination module is configured to determine the placement information of the goods in the loading space.

[0167] The distribution execution module is configured to execute the distribution process of the same type of goods according to the target distribution information and the placement information of the goods and record the execution information.

[0168] The second record generation module is configured to generate the target distribution record of the same type of goods according to the execution information of the distribution process.

[0169] More details of the embodiment can be combined with the related descriptions of the first to third embodiments, which will not be repeated here.

[0170] Any number of the functional modules included in the inter-warehouse distribution device and the intelligent distribution transportation device can be combined in one module, or any one of the modules can be split into multiple modules. Alternatively, at least part of the functions of one or more of the modules can be combined with at least part of the functions of other modules, and implemented in one module. At least one of the functional modules included in the inter-warehouse distribution device and the intelligent distribution transportation device can be at least partially implemented as a hardware circuit, such as a field programmable gate array (FPGA), a programmable logic array (PLA), a system on chip, a system on board, a system on package, an application specific integrated circuit (ASIC), or any other reasonable way of hardware or firmware by integrating or packaging circuits, or implemented in any one of software, hardware and firmware or in an appropriate combination of any number of them. Alternatively, at least one of the functional modules included in the inter-warehouse distribution device and the intelligent distribution transportation device can be at least partially implemented as a computer program module that can perform corresponding functions when the computer program module is run.

[0171] A fifth exemplary embodiment of the present disclosure provides an electronic device.

[0172] Figure 7 A structural block diagram of an electronic device provided by an embodiment of the present disclosure is schematically shown.

[0173] Reference Figure 8 Figure 8As shown, the electronic device 800 provided by the embodiment of the present disclosure includes a processor 801, a communication interface 802, a memory 803 and a communication bus 804, wherein the processor 801, the communication interface 802 and the memory 803 complete the communication among each other through the communication bus 804; the memory 803 is used for storing a computer program; and the processor 801 is used for executing the program stored on the memory to implement the method for inter-repository distribution as described above.

[0174] The sixth exemplary embodiment of the present disclosure also provides a computer readable storage medium. The computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the method for inter-repository distribution as described above.

[0175] The computer readable storage medium can be included in the device or apparatus described in the above embodiments; or can exist separately and not be assembled into the device or apparatus. The computer readable storage medium carries one or more programs, and the one or more programs are executed to implement the method according to the embodiments of the present disclosure.

[0176] According to the embodiments of the present disclosure, the computer readable storage medium can be a non-volatile computer readable storage medium, which can include but is not limited to: a portable computer diskette, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any appropriate combination thereof. In the present disclosure, the computer readable storage medium can be any tangible medium that contains or stores a program, which can be used by or in connection with an instruction execution system, apparatus or device.

[0177] It should be noted that in the technical solutions provided by the embodiments of the present disclosure, the collection, collection, update, analysis, processing, use, transmission, storage and the like of user personal information are in line with the provisions of relevant laws and regulations, are used for legal purposes, and do not violate public order and good customs. Necessary measures are taken for user personal information to prevent illegal access to user personal information data, and to maintain user personal information security, network security and national security.

[0178] It has to be noted that, in the present document, relational terms are intended only to convey a possible relationship between elements or

[0179] The above description is merely that of the specific embodiments of the present disclosure and therefore is not intended to limit the present disclosure. Various modifications made to the embodiments of the present disclosure will be apparent to those skilled in the art to which the present disclosure pertains, and such modifications are not to be interpreted within the scope or spirit of the present disclosure. Therefore, the present disclosure will not be limited to the embodiments shown herein but will be construed to include all the modifications, equivalents, and alternatives falling within the scope and spirit of the present disclosure.

Claims

1. A method for cross-database distribution, characterized in that, Applied to a terminal device, the method includes: Identify the target goods to be distributed for the current distribution task and obtain goods identification information; Based on the distribution and distribution data and the cargo identification information, the target distribution information corresponding to the same type of cargo as the target cargo to be distributed is determined and displayed; the target distribution information includes: the distribution start point information corresponding to the same type of cargo, including associated receiving container information or transit area information; the target distribution area as the distribution endpoint and the corresponding target distribution quantity; Receive interface interaction operations during the subcast process; the subcast process is executed based on the target subcast information; Based on the interface interaction, a target distribution record for the same type of goods is generated.

2. The method according to claim 1, characterized in that, The target distribution areas are spatially or temporally independent based on the attribute differences of the corresponding goods to be distributed; the target distribution area corresponding to the goods to be distributed with the same attribute includes multiple target distribution sub-areas, and the number of target distributions is the number for each target distribution sub-area; the attributes of the goods to be distributed include at least one of the following: category, volume, stackability. The target subcast information also includes: a preset subcast order, which is used to indicate the order of target subcast regions in the same subcast process; The interface interaction operations during the receiving and distributing process include: Receive the region identification instruction for the initial sub-region; The starting sub-region is identified according to the region identification instruction, and the starting region information is obtained and displayed on the interface; According to the preset sub-cast order and sub-cast jump instruction, the interface displays the area information and target sub-cast quantity corresponding to the current sub-region; the current sub-region is any one of the multiple target sub-regions. Receive quantity input information or cargo scanning instructions for the distributed sub-area; The actual number of shipments is displayed based on the input information or the scan results of the cargo scanning command.

3. The method according to claim 2, characterized in that, The interface interaction operations during the receiving and distributing process also include: Receive a subcast confirmation command for the current subcast sub-region; According to the split-cast confirmation instruction, verify whether the area information of the current split-cast sub-area is consistent with the area information displayed on the interface, and verify whether the actual split-cast quantity is consistent with the target split-cast quantity; If the regional information and quantity are consistent, the current sub-region sub-region sub-casting is confirmed to be complete. If at least one of the regional information or quantity is inconsistent, a distributing inconsistency prompt message will be displayed.

4. The method according to claim 1, characterized in that, The target distribution area corresponding to the goods to be distributed with the same attribute includes multiple target distribution sub-areas; the attributes of the goods to be distributed include at least one of the following: category, volume, stackability; The target subcast information also includes: a preset subcast order, which is used to indicate the order of target subcast regions in the same subcast process; The target distribution record is used to record the actual distribution area, actual distribution quantity, distribution path, and distribution time of the same type of goods; The preset dissemination order is the updated dissemination order, obtained through the following method: This can be obtained by optimizing the distribution paths and distribution times for the same type of goods by multiple users, or by optimizing the distribution paths and distribution times for multiple types of goods by the same user, or by optimizing the distribution paths and distribution times for multiple types of goods by multiple users.

5. The method according to any one of claims 1-4, characterized in that, If the rebroadcast origin information includes transit area information, the method further includes: The area where the target goods to be distributed are located is identified to obtain the identification transit area information corresponding to the target goods to be distributed; Based on the transit allocation relationship, the target transit area information corresponding to the target goods to be distributed is determined; the target transit area information is the target distribution transit area, or the time period occupied for the target distribution transit area; the transit allocation relationship indicates the distribution transit area allocated to the goods to be distributed, or the time period occupied by the goods to be distributed for the distribution transit area; Verify whether the identified transit area information is consistent with the target transit area information; In the event of a discrepancy, the discrepancy will be stored in the target distribution record corresponding to the target goods to be distributed.

6. The method according to claim 5, characterized in that, In the aforementioned transit allocation relationship, different transit transit areas or different time periods of the same transit transit area are allocated to the goods to be distributed based on the differences in their attributes. The attribute includes at least one of the following: category, volume, stackability.

7. The method according to claim 1, characterized in that, If the rebroadcast origin information includes transit area information, the method further includes: Obtain receiving information, which includes: goods information of goods to be distributed, and receiving container information corresponding to the goods to be distributed; Based on the differences in the attributes of the goods to be distributed, different distribution transit areas or different time periods of the same distribution transit area are assigned to the goods to be distributed to obtain a transit allocation relationship; the attributes of the goods to be distributed include at least one of the following: category, volume, stackability; Based on the transfer allocation relationship, a transfer prompt message is generated and displayed. The transfer prompt message is used to prompt the user to transfer the goods to be distributed from the receiving container to the corresponding allocated distribution transfer area for storage.

8. The method according to claim 1, characterized in that, Also includes: After the same type of goods to be distributed to the target goods have been distributed, the next distribution task is claimed. Based on the distribution and distribution data, the target goods to be distributed in the next distribution task are determined and the corresponding goods prompt information is displayed.

9. A method for cross-database distribution, characterized in that, The method, applied to intelligent distribution and transportation equipment with loading space, includes: Identify the target goods to be distributed for the current distribution task and obtain goods identification information; Based on the distribution and distribution data and the cargo identification information, the target distribution information corresponding to the same type of cargo as the target cargo to be distributed is determined; the target distribution information includes: distribution start point information corresponding to the same type of cargo, including associated receiving container information or transit area information; the target distribution area as the distribution endpoint and the corresponding target distribution quantity; The target distribution information is displayed on the screen interface of the intelligent distribution transportation equipment, and the user is prompted to load the goods; or, the goods are automatically loaded according to the target distribution information. Determine the cargo placement information within the loading space; Based on the target distribution information and the placed goods information, execute the distribution process of the same type of goods and record the execution information; Based on the execution information of the distribution process, a target distribution record for the same type of goods is generated.

10. The method according to claim 9, characterized in that, The target distribution areas are spatially or temporally independent based on the attribute differences of the corresponding goods to be distributed; the target distribution area corresponding to the goods to be distributed with the same attribute includes multiple target distribution sub-areas, and the number of target distributions is the number for each target distribution sub-area; the attributes of the goods to be distributed include at least one of the following: category, volume, stackability. The target subcast information also includes: a preset subcast order, which is used to indicate the order of target subcast regions in the same subcast process; Based on the target distribution information and the placed goods information, the distribution process for the same type of goods is executed, including: Based on the cargo placement information, determine the quantity of cargo already loaded among the same type of cargo; If the number is less than the sum of the numbers corresponding to the multiple target sub-regions, multiple intelligent sub-region transport devices are allocated to execute the current sub-region task or the transport frequency of the same intelligent sub-region transport device is set to obtain allocation information. Based on the allocation information, determine the list of target sub-regions that satisfy the quantity of goods loaded in each intelligent broadcasting transport device or in each transport of the same intelligent broadcasting transport device. Based on the target sub-region list and the preset sub-region order, determine the sub-region execution order corresponding to each target sub-region in the target sub-region list; Based on the broadcast execution order, the transportation, unloading, and return routes of the loaded goods are planned to obtain the broadcast routes corresponding to the same type of goods; According to the distribution route, the distribution process for the same type of goods is executed.

11. A device for cross-database distribution, characterized in that, include: The first identification module is used to identify the target goods to be distributed corresponding to the current distribution task and obtain goods identification information; The first distribution information determination module is used to determine the target distribution information corresponding to the same type of goods as the target goods to be distributed, based on the distribution data and the goods identification information. The first display module is used to display the target distribution information; the target distribution information includes: distribution start information corresponding to the same type of goods, including associated receiving container information or transit area information; The target subcast area and the corresponding target subcast quantity serve as the endpoint for subcasting; The first display module is also used to receive interface interaction operations during the subcast process; the subcast process is executed based on the target subcast information; The first record generation module is used to generate target distribution records of the same type of goods based on the interface interaction operation.

12. A smart distribution and transportation device for cross-warehouse distribution, characterized in that, The intelligent distribution and transportation equipment has a loading space, including: The second identification module is used to identify the target goods to be distributed corresponding to the current distribution task and obtain goods identification information; The second distribution information determination module is used to determine the target distribution information corresponding to the same type of goods as the target goods to be distributed, based on the distribution data and the goods identification information; the target distribution information includes: distribution start point information corresponding to the same type of goods, including associated receiving container information or transit area information; the target distribution area as the distribution endpoint and the corresponding target distribution quantity; The second display module is used to present the target distribution information on the display interface of the intelligent distribution transportation equipment and prompt the user to load the goods; or, the loading module is used to automatically load the goods according to the target distribution information. The placement information determination module is used to determine the placement information of the goods within the loading space; The splitting execution module is used to execute the splitting process of the same type of goods according to the target splitting information and the placed goods information, and record the execution information; The second record generation module is used to generate target distribution records for the same type of goods based on the execution information of the distribution process.

13. An electronic device, characterized in that, It includes a processor, a communication interface, a memory, and a communication bus, wherein the processor, the communication interface, and the memory communicate with each other through the communication bus; Memory, used to store computer programs; A processor, when executing a program stored in memory, implements the method of any one of claims 1-10.

14. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the method of any one of claims 1-10.