Warehouse Interface Display Control Method, Device, Equipment and Storage Medium

By dynamically updating the icons of the warehouse storage space, the problem of misinformation of information and cross-paths during material storage is solved, and efficient and flexible material management is achieved.

CN119414995BActive Publication Date: 2025-07-11HIMIT (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202411448110.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-07-11
Estimated Expiration
2044-10-17

AI Technical Summary

Technical Problem

In the existing warehouse management system, the material storage process is cumbersome, and it is easy to cause misinformation of information, repeated labor, path crossing and difficult storage, especially when there are too many materials, it is difficult to manage efficiently.

Method used

By dynamically updating the icons corresponding to the physical storage space, matching the icons according to the actual storage status, generating and displaying the storage status of the material, providing index and path guidance, and reducing manual planning and path crossing.

Benefits of technology

It realizes flexibility and efficiency of material storage, avoids information misinformation and path crossover, improves storage efficiency, and reduces repetitive labor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a method, device, equipment and storage medium for controlling the display of a warehousing interface, belonging to the technical field of intelligent production, and controlling the display interface to be dynamically updated according to the actual storage status of different storage spaces in the warehouse. The method includes: setting a certain number of original icons according to the number of multiple physical storage spaces; performing a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, so as to obtain a display icon of the component materials; the icon matched with the specific physical storage space includes an original icon or an icon after the original icon has been subjected to at least one preset operation; using the display icon as a first interface, generating and displaying the state of the component materials stored in the specific physical storage space on the first interface.
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Description

Technical Field

[0001] This application relates to the field of intelligent production technology, and particularly relates to a method, device, equipment, and storage medium for controlling the display of a warehouse interface. Background Art

[0002] In the field of the material warehouse system of production enterprises, fixed shelves are usually arranged for different goods for display and storage. For example, a table or a system is set up to establish the corresponding relationship between the goods and the shelves. When there is a storage requirement for goods, they enter the warehouse. For example, when the supplier delivers materials, the workers first classify the materials delivered by the supplier, then query the shelves corresponding to each category of materials, and then transport the materials to the corresponding shelves.

[0003] In the above process, when there are too many materials, multiple people are required for handling. However, based on confidentiality requirements, usually only one person can query the shelves corresponding to different materials. Therefore, after the warehouse administrator queries the shelves corresponding to the materials, the supplier delivery personnel are arranged to be responsible for the transportation of their respective materials. The entire warehousing process is very cumbersome. It requires specific confidentiality personnel to query the location of the materials, and the warehouse administrator also needs to assign tasks to others. Therefore, information mistransmission or information misunderstanding is likely to occur during the entire process; if only the warehouse administrator conducts warehousing, the warehouse management personnel will repeat heavy physical labor to transport the materials to fixed positions, resulting in low efficiency.

[0004] Moreover, the storage locations of the materials are fixed, and the driving paths of the handling workers are diverse. There may even be a situation where the handling paths cross, causing the workers carrying heavy objects to meet and avoid each other, which is likely to result in unsafe scenarios; since other materials are stored fixedly on other shelves, when the quantity of a certain material is too large and the fixedly arranged shelves cannot accommodate it, it is difficult to store the excess materials. The current warehouse management system is difficult to provide a solution to the above problems. Summary of the Invention

[0005] This application aims to provide a method, device, equipment, and storage medium for controlling the display of a storage interface, which can dynamically update the control display interface according to the actual storage status of different storage spaces in the warehouse, thereby liberating the constraints on the storage methods and storage contents of goods.

[0006] In a first aspect, in one embodiment, a storage interface display control method is provided and applied to an electronic device. The method includes: setting a certain number of original icons according to the number of multiple physical storage spaces; performing a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, to obtain a display icon of the component materials; the icon matched with the specific physical storage space includes an original icon or an icon after the original icon has undergone at least one preset operation; using the display icon as a first interface, generating and displaying the state of the component materials stored in the specific physical storage space on the first interface.

[0007] In one embodiment, performing a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, to obtain the display icon of the component materials, includes:

[0008] When the state of the specific physical storage space is vacant at the current time and a target component material is detected; selecting any unoccupied original icon and binding it to the target component material, and determining the bound original icon as the display icon of the target component material; the target component material is any component material placed in the specific physical storage space.

[0009] In one embodiment, the preset operation includes a splitting operation. Performing a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, to obtain the display icon of the component materials, includes:

[0010] When the specific physical storage space is not vacant and a target component material is detected, comparing whether the target component material is the same as the original component materials originally stored in the specific physical storage space; the target component material is any component material placed in the specific physical storage space;

[0011] If the target component material is different from the original component materials, performing the splitting operation on the display icon of the original component materials;

[0012] Splitting the display icon of the original component materials to obtain a new icon area, and determining the new icon area as the display icon of the target component material.

[0013] In one embodiment, the method further includes:

[0014] Receiving a keyword input by a user;

[0015] Search for the component materials to be selected that match the keyword, and match the associated component materials of the materials to be selected;

[0016] Among the multiple icons currently displayed on the interface, query the target display icons corresponding to the component materials to be selected and the associated component materials respectively;

[0017] Create multiple copy icons of the target display icons, and set the display positions of the copy icons within the pre-set area range;

[0018] Taking the display icon as the first interface, generate and display the status of the component materials stored in the specific physical storage space on the first interface, including:

[0019] Display multiple target display icons within the pre-set area range. Taking the target display icon as the first interface, generate and display the status of the target component materials on the first interface.

[0020] In one embodiment, the method further includes:

[0021] Allocate the original display positions on the display interface for each physical storage space;

[0022] Receive the keyword input by the user, and search for the component materials to be selected that match the keyword;

[0023] If there are multiple target physical storage spaces corresponding to the component materials to be selected, query the original display positions of the multiple target physical storage spaces;

[0024] Taking the display icon as the first interface, generate and display the status of the component materials stored in the specific physical storage space on the first interface, including:

[0025] If there are at least two adjacent target physical storage spaces among the original display positions of the multiple target physical storage spaces, merge and display the corresponding display icons of the adjacent target physical storage spaces;

[0026] Taking the merged display icon as the first interface, generate and display the status of the component materials to be selected on the first interface.

[0027] In one embodiment, the method further includes;

[0028] Obtain the storage vacancies of the specific physical storage space;

[0029] When it is detected that component materials are placed in the specific physical storage space, perform a subtraction operation on the number of storage vacancies to update the number of storage vacancies;

[0030] Taking the display icon as the first interface, generating and displaying on the first interface the status of the component materials stored in the specific physical storage space, including:

[0031] Generating and displaying on the display icon the numbers of the component materials in the specific physical storage space;

[0032] When receiving a first preset operation on the display icon by the user, generating a second interface;

[0033] Displaying on the second interface the updated storage vacancies.

[0034] In one embodiment, the method further includes:

[0035] Establishing the corresponding relationship of the actual position of the specific physical storage space in the physical space;

[0036] Taking the display icon as the first interface, generating and displaying on the first interface the status of the component materials stored in the specific physical storage space, including:

[0037] Generating and displaying on the display icon the numbers of the component materials stored in the specific physical storage space;

[0038] When receiving a second preset operation on the display icon by the user, generating a third interface;

[0039] Generating on the third interface a driving path indicating the user's current position to the actual position.

[0040] In a second aspect, in one embodiment, a warehousing interface display control device is provided, and the device includes:

[0041] An icon setting module, configured to set a certain number of original icons according to the number of multiple physical storage spaces;

[0042] An icon operation module, configured to perform a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the status change of the specific physical storage space, to obtain a display icon of the component materials; the icon matched with the specific physical storage space includes an original icon or an icon after the original icon has gone through at least one preset operation;

[0043] An icon generation module, configured to take the display icon as the first interface, and generate and display on the first interface the status of the component materials stored in the specific physical storage space.

[0044] In a third aspect, an embodiment of the present application further provides a computing electronic device, in which a program executable by a processor is stored, and when the program executable by the processor is executed by the processor, it is used to implement the warehousing interface display control method as described above.

[0045] In a fourth aspect, an embodiment of the present application further provides a computing storage medium, including a computer program or computer instructions. The computer storage medium stores computer instructions, and the computer instructions cause the computer to execute the warehousing interface display control method as described above.

[0046] The beneficial effects of the present application are as follows:

[0047] In the embodiment of the present application, by dynamically updating the icons corresponding to the physical storage spaces, an index is established for the stored materials. Based on the display of the current stored materials in the icons, users can clearly understand the current status of each shelf and the storage locations of different materials, making it unnecessary to pre-plan which physical storage space should store which goods. Since there is no fixed location for the goods to be stored, for incoming goods, they can be stored in the vacant shelf that is currently closest to the entrance or the least confidential at present. Since there is no need to place the goods on a fixed shelf, the intersection of paths is avoided, and the occurrence of chaotic situations is circumvented. Description of the Drawings

[0048] Figure 1 is a flowchart of the steps of the warehousing interface display control method proposed in the embodiment of the present application;

[0049] Figure 2 is a schematic diagram of another example of storing materials in the physical storage space in the present application;

[0050] Figure 3 is a schematic diagram of an example of generating and displaying display icons in the present application;

[0051] Figure 4 is a schematic diagram of the display after performing a splitting operation on the display icon in an example of the present application;

[0052] Figure 5 is a schematic diagram of the position in the preset area range in an example of the present application;

[0053] Figure 6 is a schematic diagram of the combined display of the display icons in an example of the present application;

[0054] Figure 7 is a functional module diagram of the warehousing interface display control device proposed in the embodiment of the present application. Detailed Embodiments

[0055] The present application will be further described in detail below through specific embodiments in conjunction with the accompanying drawings. Similar elements in different embodiments are labeled with related similar element numbers. In the following embodiments, many detailed descriptions are provided to enable a better understanding of the present application. However, those skilled in the art can easily recognize that some of the features can be omitted in different situations, or can be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification, which is to avoid overwhelming the core part of the present application with excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the descriptions in the specification and general technical knowledge in the field.

[0056] In addition, the features, operations, or characteristics described in the specification can be combined in any appropriate manner to form various embodiments. At the same time, the steps or actions in the method description can also be reordered or adjusted in a manner obvious to those skilled in the art. Therefore, the various sequences in the specification and drawings are only for clearly describing a certain embodiment and do not mean a necessary sequence, unless it is stated that a certain sequence must be followed.

[0057] The serial numbers assigned to the components in this article, such as "first", "second", etc., are only used to distinguish the described objects and do not have any sequential or technical meaning. And the "connection" and "coupling" mentioned in the present application, unless otherwise specified, both include direct and indirect connection (coupling).

[0058] Figure 1 is a flowchart of the steps of a warehousing interface display control method proposed in an embodiment of the present application, which is applied to an electronic device. The electronic device includes a calculator with a display, a server, etc., as Figure 1 shown, and the steps include:

[0059] S11: Set a certain number of original icons according to the number of multiple physical storage spaces.

[0060] The number of original icons can be greater than or equal to the number of multiple physical storage spaces.

[0061] During the implementation process, a graphics library can be preset. The graphics library stores graphic combinations. When editing, the hit graphic combinations are called from the graphics library. The number of graphic combinations is the same as the number of physical storage spaces to generate a script. When executing, the corresponding script is selected and run according to the program logic. The script calls a function to execute the corresponding function and display the icon. Or it can be implemented in other ways in the display technology field, and the embodiments of the present application do not make limitations.

[0062] The physical storage space can include entities such as shelves and storage cabinets for storing materials.

[0063] S12: Perform a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, so as to obtain the display icon of the component materials.

[0064] The icon matched with the specific physical storage space includes the original icon or the icon after the original icon has gone through at least one preset operation.

[0065] Figure 2 It is a schematic diagram of storing another example material of the present application in a physical storage space. As Figure 2 shown, the scanner held by the worker scans the physical storage space. On the page entering the physical storage space, basic operations such as starting scanning, ending scanning, receiving messages, and displaying messages can be selected. After the component materials pass through the scanner, the corresponding relationship between the materials and the physical storage space is established, and a message is sent to the electronic device. When the electronic device detects the component materials, if it determines that the current component materials can be stored in the physical storage space, a message indicating the determined storage can be returned. The worker receives the returned message and continues to store the component materials.

[0066] The specific physical storage space is any physical storage space. That is, for any shelf, according to whether the shelf stores materials at the current time, an icon is matched for the shelf. If the shelf did not store materials before the current time and materials are detected to be stored in the shelf at the current time, an icon is allocated for the shelf, and different display strategies are performed on the allocated icon according to the category, name, and function of the stored materials.

[0067] In actual warehousing, according to the materials placed on the shelf and the state of the materials, the association relationship between the original icon and the shelf is updated in real time, and then an index for material storage is provided for the user based on the display of the icon. Thus, the worker can store the warehoused materials in any convenient empty shelf with dynamically updated icons. Therefore, the original icons in the graphics library do not need to be pre-bound to fixed shelves, providing support for flexible warehousing operations.

[0068] S13: Use the display icon as the first interface, and generate and display the state of the component materials stored in the specific physical storage space on the first interface.

[0069] The state of the component materials can be information such as the number, type, and name of the component materials used to indicate the component materials. At the same time, the first interface can also generate and display the number of the specific physical storage space to indicate which specific shelf stores the component materials.

[0070] The embodiment of the present application establishes an index for stored materials by dynamically updating the icons corresponding to the physical storage spaces. Based on the display of the currently stored materials in the icons, the user can clearly understand the current status of each shelf and the storage locations of different materials, making it unnecessary to plan in advance which physical storage space should store which goods. Since there is no mandatory location for the goods to be stored, incoming goods can be stored on the empty shelves that are closest to the entrance or on the shelves that least need to be kept confidential. Since there is no need to place the goods on fixed shelves, the intersection of paths is avoided and confusion is prevented.

[0071] In one example, for a specific physical storage space, after executing step S13, if the outbound information uploaded by the scanner is received, it is calculated that all materials originally stored in the specific physical storage space are used, and the specific physical storage space is vacant again, the electronic device unbinds the display icon from the specific physical storage space, releases the display icon to the database, and other physical storage spaces can occupy the display icon.

[0072] In one example, different original positions can be assigned to shelves, and the specific assignment can be based on the actual arrangement of the shelves. For example, a display area with the same shape as the warehouse can be drawn by proportionally reducing the warehouse area. If shelf A and shelf B are adjacent in the warehouse, then in the original display position in the display area, the display icon corresponding to shelf A is adjacent to the display icon corresponding to shelf B.

[0073] This embodiment of the application proposes a specific implementation method of executing step S12:

[0074] Based on the current status information of the specific physical storage space, step S12 may be executed to optionally execute the following sub-steps:

[0075] S121: When the status of the specific physical storage space is vacant at the current time and the target component material is detected; select any unoccupied original icon to bind with the target component material, and determine that the bound original icon is the display icon of the target component material; the target component material is any component material placed in the specific physical storage space.

[0076] After the original icon is bound to the target component material, the shelf where the target component material is placed at the current time is also bound to the original icon.

[0077] In the scenario of unified storage of idle warehouses, each physical storage space is vacant, or the materials on a shelf are put into use on the production line and a shelf is vacant again, the icon matched by a specific physical storage space is any original icon that is not occupied by other physical storage spaces. The preset operation is to bind the vacant physical storage space to the original icon.

[0078] Figure 3 This is a schematic diagram showing the generation and display of icons in an example of this application. As Figure 3 shown, the display interface is divided into three original display positions, namely (x0 - x1, y0 - y1), (x2 - x3, y2 - y3), and (x4 - x5, y4 - y5). According to the actual placement position of the shelves in the warehouse, the original display position assigned to Shelf 1 is (x0 - x1, y0 - y1), the original display position of Shelf 1 is (x2 - x3, y2 - y3), and the original display position of Shelf 3 is (x4 - x5, y4 - y5); T 1 At time T, Shelf 3 and Shelf 2 are vacant, so there are no corresponding icons for Shelf 3 and Shelf 2, and no icons are displayed at (x2 - x3, y2 - y3) and (x4 - x5, y4 - y5). The material stored on Shelf 1 is the material numbered PGG70. Therefore, there is a display icon for Shelf 1, and this display icon is used to display on the first interface the material stored on Shelf 1 at 1 time T as PGG70; T 2 At time T, it is detected that the material numbered PGD60 starts to be placed on Shelf 2. The icon matching the vacant shelf is the currently idle original icon. An operation of binding the currently idle original icon and Shelf 2 is performed to determine a certain idle original icon as the display icon of Shelf 2, and this display icon is used to display on the first interface the material stored on Shelf 2 at 2 time T as PGD60, T 2 At time T, icons are displayed at both (x0 - x1, y0 - y1) and (x2 - x3, y2 - y3), and no icon is displayed at (x4 - x5, y4 - y5). The icons displayed on the display interface give an index. PGD60 is stored on Shelf 2, and PGG70 is stored on Shelf 1. In this example, the preset operation includes the operation of binding the currently idle original icon and the physical storage space.

[0079] In the embodiments of this application, different positions on the display interface are lit up as the actual warehousing progress. Based on the generation of icons displayed at different positions on the display interface, the warehousing progress of the user can be indicated. The user can obtain in real time the information about which material is stored on which shelf, and at the same time, the unnecessary communication between the warehouse administrator and the delivery workers during warehousing can be omitted. The workers sequentially place the materials of the same batch on the idle shelves, and the scanned information enters the system. The system automatically assigns original icons to the shelves and establishes the corresponding relationship between the warehoused materials and the icons, and the display interface displays the materials stored on the shelf.

[0080] With the upgrade of the production line, the use of materials may change. Some materials are consumed more, and some are consumed less. At this time, there are some empty spaces on some shelves and insufficient empty spaces on some shelves. Based on the goods stored in the shelves in real time, the embodiments of the present application update the display of the icons. Based on the above basic technical solution, the embodiments of the present application can flexibly realize the sharing of shelves without the need for manual re-planning of the shelves and moving the goods according to the re-planned storage method, thus avoiding the waste of labor.

[0081] The preset operation includes a splitting operation. Based on the current status information of a specific physical storage space, step S12 is executed to select and run the following sub-steps:

[0082] S12-1: When the specific physical storage space is not empty and the target component material is detected, compare whether the target component material is the same as the original component material originally stored in the specific physical storage space; the target component material is any component material placed in the specific physical storage space.

[0083] In this embodiment, the icon matching the specific physical storage space includes the display icon originally corresponding to the specific physical storage space.

[0084] S12-2: If the target component material is different from the original component material, perform the splitting operation on the display icon of the original component material.

[0085] During actual operation, the display icon of the specific physical storage space can be directly divided into regions. Any region after division is the display icon corresponding to the original component material, and the other region is the display icon corresponding to the newly stored target component material.

[0086] S12-3: Split the display icon of the original component material to obtain a new icon region, and determine the new icon region as the display icon of the target component material.

[0087] Therefore, before step S12, the step of judging the state of the specific physical storage space can also be executed. The states of the specific physical storage space include empty, some storage positions are empty, and all storage positions are occupied.

[0088] In an example of the present application, when a scanner set in the physical storage space detects that there is a material being placed, the electronic device receives a message and obtains whether there is already a material stored in the physical storage space. If there is already a material stored in the physical storage space and it is the same as the currently scanned material, a relaxation message is sent to the scanner to indicate that the user can store materials based on this physical storage space, or the channel for placing materials in this physical storage space can be controlled to open to receive the new material.

[0089] Further, the electronic device can obtain whether the physical storage space already stores materials, and can also obtain the storage vacancies in the physical storage space; each time a component material is detected to be placed in the specific physical storage space, a subtraction operation is performed on the number of the storage vacancies to update the number of the storage vacancies; during the execution of step S13, when the user performs a first preset operation on the display icon, a second interface can be generated. The first preset operation, the second preset operation, and the third preset operation can be one of a click operation, a long-press operation, a double-click operation, and a swipe operation. It is only necessary that the operation types corresponding to the first preset operation, the second preset operation, and the third preset operation are different. For example, if the first preset operation is a click operation, then the second preset operation and the third preset operation are one of a long-press operation, a double-click operation, and a swipe operation.

[0090] The second interface can be a floating icon or a pop-up page.

[0091] The updated storage vacancies are displayed on the second interface.

[0092] Figure 4 This is a schematic diagram of the display after performing a splitting operation on the display icon in an example of the present application. If the scanner scans that the target component material newly stored on shelf 1 is A, the information of A is sent to the electronic device. The electronic device retrieves the information and compares that the material originally stored on shelf 1 is B. The display icon 1 of material B is displayed on the display interface. A is inconsistent with B. Further, since the storage and removal of component materials at any time are recorded, the electronic device can retrieve the historical record and calculate the average quantity of material B on shelf 1 in the historical time. If the average quantity is lower than half of the storage vacancies on shelf 1, the electronic device can send a message to the scanner, and the scanner displays a prompt allowing warehousing. After the user sees the prompt and determines the operation of material A, the scanner uploads the information of all warehoused material A to the electronic device. The electronic device performs a splitting operation on the display icon 1 corresponding to shelf 1, or can be regarded as performing a splitting operation on the display icon bound to material B, and obtains display icon 1.1 and display icon 1.2, and display icon 1.1 and display icon 1.2 are displayed on the display interface.

[0093] The embodiment of the present application can dynamically update the display icon according to the materials actually stored in the physical storage space. Based on the above basic technical solution, the embodiment of the present application can also uniformly display the storage shelves of mutually related component materials.

[0094] Another method for controlling the display of the warehousing interface in the present application includes the steps:

[0095] S21: Set a certain number of original icons according to the number of multiple physical storage spaces.

[0096] S22: For each physical storage space, according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, perform a preset operation on the icon corresponding to the specific physical storage space to obtain the display icon of the component materials, and obtain the display icon corresponding to each component material that has completed warehousing, so as to obtain the display icon corresponding to the designated physical storage space where each component material that has completed warehousing is stored.

[0097] S23: Receive the keyword input by the user.

[0098] S24: Search for the component materials to be selected that match the keyword, and match the associated component materials of the materials to be selected.

[0099] The keyword can be the finished product name, material name, material use, etc. Before feeding, the database stores multiple materials required for producing the finished product; if the keyword is the finished product name, after receiving the keyword, retrieve the database information, and set the multiple materials required for producing the same finished product as the component materials to be selected for the finished product. If there are multiple component materials to be selected, determine that the multiple component materials to be selected are associated component materials with each other. The multiple materials required for producing the same finished product stored in the database can also be set to be in an associated material relationship with each other. If the keyword is the material name or material use, after receiving the keyword, retrieve the database information, match the component materials to be selected corresponding to the keyword, and retrieve the multiple materials that are the associated component materials of the component materials to be selected.

[0100] S25: Among the multiple icons currently displayed on the interface, query the target display icons corresponding to the component materials to be selected and the associated component materials respectively.

[0101] S26: Create multiple copy icons of the target display icons, and set the display position of the copy icons within the area range set in advance.

[0102] The area range set in advance can be other positions on the display interface. For example, draw a display area 1 with the same shape as the warehouse by reducing the warehouse area in proportion. The area range set in advance can be the position above the display area 1. Figure 5 It is a schematic diagram of the position of the area range set in advance in an example of this application. Among them, the display area 1 is the area set in advance on the terminal display interface for displaying display icons. The associated component materials found for the material to be selected include Material 1, Material 2, and Material 3. The display area 2 is the area range set in advance, and the copy icons are displayed in the display area 2, which can prominently and centrally display the storage positions of the associated component materials related to the keyword, eliminating the need for the user to search for materials one by one and providing convenience for the user.

[0103] In one example, the first interface can also be a floating icon, a pop-up window, etc.

[0104] S27: Display a plurality of target display icons within the preset area range, use the target display icons as the first interface, and generate and display the status of the target component materials on the first interface.

[0105] In an embodiment of the present application, the display icons corresponding to the shelves storing the same component materials can also be combined and displayed, so as to reduce the number of display icons and make it more convenient for users to view. Another storage interface display control method of the present application includes the steps:

[0106] S31: Set a certain number of original icons according to the number of a plurality of physical storage spaces.

[0107] S32: For each physical storage space, perform a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, so as to obtain the display icon of the component materials.

[0108] S33: Allocate an original display position on the display interface for each physical storage space.

[0109] S34: Receive the keyword input by the user, and search for the to-be-selected component materials that match the keyword.

[0110] S35: If there are multiple target physical storage spaces corresponding to the to-be-selected component materials, query the original display positions of the multiple target physical storage spaces.

[0111] S36: If there are at least two adjacent target physical storage spaces among the original display positions of the multiple target physical storage spaces, combine and display the display icons corresponding to the adjacent target physical storage spaces.

[0112] If the original display positions of the multiple target physical storage spaces are not adjacent to each other, the display is still performed at the original display position of the physical storage space where the to-be-selected component materials are located, and no operation is performed on the display icons.

[0113] S37: Use the combined display icon as the first interface, and generate and display the status of the to-be-selected component materials on the first interface.

[0114] Figure 6 It is a schematic diagram of combining and displaying display icons in an example of the present application, as Figure 6As shown, after the materials are warehoused, each material is assigned a display icon. Therefore, the shelves storing each material respectively correspond to different display icons. Among them, shelves 5, 6, and 9 all store the material with the number PCB40. Based on the keywords input by the user, the icon corresponding to PCB40 is found, and the icon corresponding to PCB40 can be highlighted to prompt the user of the storage location of PCB40. The user needs to browse 3 display positions to obtain all the actual storage positions of PCB40. After querying the original display positions of multiple target physical storage spaces, it is determined whether the original display positions of multiple target physical storage spaces are adjacent. It is obtained that shelves 5 and 6 are adjacent. Therefore, the icons corresponding to shelves 5 and 6 are merged and displayed. After the merged display, the user only needs to browse two display positions to obtain all the actual storage positions of PCB40. In the specific implementation process, the graphics library can be called to expand the area of the display icon corresponding to shelf 5 to cover the area of the display icon corresponding to shelf 6 to achieve this, or other methods in the display technology field can be used to achieve this. The embodiments of the present application do not make restrictions.

[0115] The embodiments of the present application can also generate other display interfaces after receiving specific operations of the user, such as floating icons, pop-up windows, etc. On the basis of uniformly displaying which physical storage space each material is stored in, more detailed information of the component materials is displayed based on further selections of the user.

[0116] Therefore, before the embodiments of the present application further execute step S11, step S10 can also be executed: establishing the corresponding relationship of the actual position of a specific physical storage space in the physical space. The actual position in the physical space can be information such as GPS positioning.

[0117] Furthermore, when executing step S13, the number of the component materials stored in the specific physical storage space can be generated and displayed in the display icon; when receiving the second preset operation of the user on the display icon, a third interface is generated; a driving path from the current position of the user to the actual position is generated in the third interface.

[0118] Exemplarily, the third interface can be a map interface. When receiving the second preset operation of the user on the display icon, the operation of the map module is started, and the interface for displaying the map is jumped to, and a driving path from the current position of the user to the actual position is generated.

[0119] Thus, even for an employee who receives warehouse management work for the first time, the physical storage space where the selected component material is stored can be determined through the display icon displayed on the display interface. And after receiving the confirmation operation of the user on the selected component material, it can be further jumped to the map interface to generate a driving path. Based on the indication of the driving path, the user can find the position of the entity storage control where the component material is stored.

[0120] Figure 7 It is a functional module diagram of the warehousing interface display control device proposed in an embodiment of the present application. As Figure 7 shown, the warehousing interface display control device includes:

[0121] An icon setting module 71, configured to set a certain number of original icons according to the number of multiple physical storage spaces;

[0122] An icon operation module 72, configured to perform a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, to obtain a display icon of the component materials; the icon matched with the specific physical storage space includes an original icon or an icon after at least one preset operation on the original icon;

[0123] An icon generation module 73, configured to use the display icon as a first interface, and generate and display the state of the component materials stored in the specific physical storage space on the first interface.

[0124] Figure 7 For the warehousing interface display control device provided in the shown embodiment, its implementation principle and technical effects can be further referred to the relevant descriptions in the embodiment of the refrigeration system operation control method based on the digital twin technology.

[0125] Optionally, the icon operation module is specifically configured to, when the state of the specific physical storage space is vacant at the current time and a target component material is detected, select any unoccupied original icon to bind with the target component material, and determine the bound original icon as the display icon of the target component material; the target component material is any component material placed in the specific physical storage space.

[0126] Optionally, the icon operation module includes:

[0127] A detection sub-module, configured to, when the specific physical storage space is not vacant and a target component material is detected, compare whether the target component material is the same as the original component material originally stored in the specific physical storage space; the target component material is any component material placed in the specific physical storage space;

[0128] A splitting operation sub-module, configured to, if the target component material is different from the original component material, perform the splitting operation on the display icon of the original component material; split the display icon of the original component material to obtain a new icon area, and determine the new icon area as the display icon of the target component material.

[0129] Optionally, the device further includes:

[0130] A receiving module, configured to receive a keyword input by a user;

[0131] A matching module, configured to find the to-be-selected component materials that match the keywords, and match the associated component materials of the to-be-selected materials;

[0132] An associated material query module, configured to query the target display icons corresponding to the to-be-selected component materials and the associated component materials respectively among a plurality of icons currently displayed on the interface;

[0133] A copy creation module, configured to create copy icons of the plurality of target display icons, and set the display positions of the copy icons within a preset area range;

[0134] The icon generation module is specifically configured to display a plurality of target display icons within the preset area range, use the target display icons as the first interface, and generate and display the status of the target component materials on the first interface.

[0135] Optionally, the device further includes:

[0136] A position allocation module, configured to allocate an original display position on the display interface for each physical storage space;

[0137] A search module, configured to search for the to-be-selected component materials that match the keywords after receiving the keywords input by the user;

[0138] A position query module, configured to query the original display positions of a plurality of target physical storage spaces if the target physical storage space corresponding to the to-be-selected component materials is multiple;

[0139] The icon generation module is specifically configured to, if there are at least two adjacent target physical storage spaces among the original display positions of the plurality of target physical storage spaces, merge and display the corresponding display icons of the adjacent target physical storage spaces; use the merged display icon as the first interface, and generate and display the status of the to-be-selected component materials on the first interface.

[0140] Optionally, the device includes:

[0141] A counting module, configured to obtain the storage vacancies of the specific physical storage space; when it is detected that component materials are placed in the specific physical storage space, perform a subtraction operation on the number of the storage vacancies to update the number of the storage vacancies;

[0142] The icon generation module is specifically configured to generate and display the numbers of the component materials in the specific physical storage space on the display icon; when receiving a first preset operation on the display icon, generate a second interface; and display the updated storage vacancies on the second interface.

[0143] Optionally, the device includes:

[0144] A relationship establishment module for establishing a corresponding relationship between the actual position of the specific physical storage space in the physical space;

[0145] The icon generation module is specifically configured to generate and display the numbers of the component materials stored in the specific physical storage space in the display icon; when receiving a second preset operation on the display icon, generate a third interface; and generate a driving path indicating the user's current position to the actual position in the third interface.

[0146] Regarding the various modules / units included in each device described in the above embodiments, they can be software modules / units, or hardware modules / units, or can also be partially software modules / units and partially hardware modules / units. For example, for each device applied to or integrated into a chip, the various modules / units it includes can all be implemented in a hardware manner such as circuits, or at least some of the modules / units can be implemented in the form of software programs that run on a processor integrated inside the chip, and the remaining part of the modules / units can be implemented in a hardware manner such as circuits; for each device applied to or integrated into a chip module, the various modules / units it includes can all be implemented in a hardware manner such as circuits, and different modules / units can be located in the same component (such as a chip, a circuit module, etc.) or different components of the chip module, or at least some of the modules / units can be implemented in the form of software programs that run on a processor integrated inside the chip module, and the remaining part of the modules / units can be implemented in a hardware manner such as circuits; for each device applied to or integrated into an electronic terminal device, the various modules / units it includes can all be implemented in a hardware manner such as circuits, and different modules / units can be located in the same component (such as a chip, a circuit module, etc.) or different components inside the electronic terminal device, or at least some of the modules / units can be implemented in the form of software programs that run on a processor integrated inside the electronic terminal device, and the remaining (if any) part of the modules / units can be implemented in a hardware manner such as circuits.

[0147] An embodiment of the present application provides a computer-readable storage medium, on which a program is stored, and the stored program includes methods that can be loaded and processed by a processor in any of the above embodiments.

[0148] Those skilled in the art can understand that all or part of the functions of the various methods in the above embodiments can be implemented in a hardware manner or in a computer program manner. When all or part of the functions in the above embodiments are implemented in a computer program manner, the program can be stored in a computer-readable storage medium, which can include: read-only memory, random access memory, magnetic disks, optical disks, hard disks, etc. The above functions can be realized by the computer executing the program. For example, the program is stored in the memory of the device, and when the processor executes the program in the memory, the above-mentioned all or part of the functions can be realized. In addition, when all or part of the functions in the above embodiments are implemented in a computer program manner, the program can also be stored in storage media such as a server, another computer, magnetic disk, optical disk, flash drive or mobile hard disk, and saved to the memory of the local device by downloading or copying, or the system of the local device can be updated in version. When the processor executes the program in the memory, all or part of the functions in the above embodiments can be realized.

[0149] The above uses specific examples to elaborate on the present application, which is only used to help understand the present application and is not intended to limit the present application. For those skilled in the art of the present application, according to the idea of the present application, several simple deductions, deformations or substitutions can also be made.

Claims

1. A method for controlling the display of a warehousing interface, characterized in that, Applied to an electronic device, the method includes: Setting a certain number of original icons according to the number of multiple physical storage spaces; Performing a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, to obtain a display icon of the component materials; the icon matched with the specific physical storage space includes an original icon or an icon after the original icon has been subjected to at least one preset operation; Using the display icon as the first interface, generating and displaying the state of the component materials stored in the specific physical storage space on the first interface; The preset operation includes a splitting operation. Performing a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, to obtain the display icon of the component materials, includes: When the specific physical storage space is not empty and a target component material is detected, comparing whether the target component material is the same as the original component material originally stored in the specific physical storage space; the target component material is any component material placed in the specific physical storage space; If the target component material is different from the original component material, performing the splitting operation on the display icon of the original component material; Splitting the display icon of the original component material to obtain a new icon area, and determining the new icon area as the display icon of the target component material.

2. The method according to claim 1, wherein Performing a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, to obtain the display icon of the component materials, includes: When the state of the specific physical storage space is empty at the current time and a target component material is detected; selecting any unoccupied original icon to bind with the target component material, and determining the bound original icon as the display icon of the target component material; the target component material is any component material placed in the specific physical storage space.

3. The method according to claim 1, wherein The method further includes: Receiving a keyword input by the user; Searching for the component materials to be selected that match the keyword, and matching the associated component materials of the component materials to be selected; Among the multiple icons currently displayed on the interface, querying the target display icons corresponding to the component materials to be selected and the associated component materials respectively; Creating copy icons of the multiple target display icons, and setting the display positions of the copy icons within a pre-set area range; Using the display icon as the first interface, generating and displaying the state of the component materials stored in the specific physical storage space on the first interface, includes: Displaying multiple target display icons within the pre-set area range, using the target display icons as the first interface, and generating and displaying the state of the target component materials on the first interface.

4. The method according to claim 1, characterized in that, The method further includes: Allocating an original display position on the display interface for each physical storage space; Receiving a keyword input by the user, and searching for the component materials to be selected that match the keyword; If there are multiple target physical storage spaces corresponding to the component materials to be selected, query the original display positions of the multiple target physical storage spaces; Taking the display icon as the first interface, generate and display on the first interface the status of the component materials stored in the specific physical storage space, including: If there are at least two adjacent target physical storage spaces among the original display positions of the multiple target physical storage spaces, merge and display the display icons corresponding to the adjacent target physical storage spaces; Taking the merged display icon as the first interface, generate and display on the first interface the status of the component materials to be selected.

5. The method according to claim 1, characterized in that The method further includes; Obtain the storage vacancies of the specific physical storage space; When it is detected that component materials are placed in the specific physical storage space, perform a subtraction operation on the number of the storage vacancies and update the number of the storage vacancies; Taking the display icon as the first interface, generate and display on the first interface the status of the component materials stored in the specific physical storage space, including: Generate and display on the display icon the numbers of the component materials in the specific physical storage space; When receiving a first preset operation on the display icon by the user, generate a second interface; Display the updated storage vacancies on the second interface.

6. The method according to claim 1, characterized in that, The method further includes: Establish the corresponding relationship of the actual position of the specific physical storage space in the physical space; Taking the display icon as the first interface, generate and display on the first interface the status of the component materials stored in the specific physical storage space, including: Generate and display on the display icon the numbers of the component materials stored in the specific physical storage space; When receiving a second preset operation on the display icon by the user, generate a third interface; Generate on the third interface a driving route indicating the user's current position to the actual position.

7. A storage interface display control device, characterized in that, Set in an electronic device, the device includes: An icon setting module, configured to set a certain number of original icons according to the number of multiple physical storage spaces; An icon operation module, configured to perform a preset operation on the icon matched with the specific physical storage space according to the component materials actually stored in the specific physical storage space at the current time and the state change of the specific physical storage space, to obtain a display icon of the component materials; the icon matched with the specific physical storage space includes an original icon or an icon after the original icon has gone through at least one preset operation; An icon generation module, configured to take the display icon as the first interface and generate and display on the first interface the status of the component materials stored in the specific physical storage space.

8. A computing device, characterized in that, Includes at least one processor and at least one memory connected to the processor; the memory stores program instructions for being executed by the processor, and the processor can execute the method according to any one of claims 1 to 6 by invoking the program instructions.

9. A computer storage medium storing computer instructions, characterized in that, The computer instructions cause the computer to execute the method according to any one of claims 1 to 6.

Citation Information

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