Logistics information management method and device

By generating and updating the target image of the goods at the logistics node, it solves the problem that users find it difficult to understand the appearance information of the goods in real time during transportation, and achieves a more specific and intuitive logistics information display, optimizing the user experience.

CN119990951APending Publication Date: 2025-05-13BEIJING JINGDONG QIANSHITECHNOLOGY CO LTD
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Patent Information

Application Number
CN202311507738.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-13
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

It is difficult for existing logistics platforms to provide users with more specific and intuitive logistics information during cargo transportation, resulting in users being unable to understand the appearance and transportation status of the goods in real time, affecting the user experience.

Method used

By generating the target image of the goods to be transported at the preset logistics node, and updating the panoramic logistics information, responding to the user's image viewing request and displaying the target image, the user can view the appearance information of the goods during transportation.

Benefits of technology

Users can view the color, size, material, packaging specifications and other information of the goods in real time during transportation, improve user experience, and reduce misunderstandings and additional costs caused by insufficient information during transportation.

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Abstract

The invention discloses a logistics information management method and device, and relates to the technical field of logistics transportation. A specific embodiment of the logistics information management method comprises the steps of generating a target image of a to-be-transported cargo in response to the fact that the to-be-transported cargo is located at a preset logistics node; according to the target image, panoramic logistics information of the to-be-transported goods is updated; and in response to a received image viewing request of the to-be-transported cargo, obtaining a target image from the updated panoramic logistics information, and displaying the obtained target image to a front-end page. According to the embodiment, the panoramic logistics information is updated by using the target image of the to-be-transported cargo, so that a user can conveniently check the target image of the to-be-transported cargo, the user can query more specific and more visual logistics information in the cargo transportation process, and the user experience is optimized.
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Description

Technical Field

[0001] The present invention relates to the field of logistics and transportation technology, and in particular to a logistics information management method and device. Background Art

[0002] In order to protect user privacy and prevent user information leakage, logistics platforms usually display logistics information in text form, including: transportation time, transportation location, transportation route, courier information, etc. Based on logistics information, users can know the current location of the goods and the progress of the goods transportation. After receiving the goods, users can see the appearance information of the goods such as size, color, material, as well as the packaging specifications of the goods, damage, etc. Summary of the invention

[0003] In view of this, an embodiment of the present invention provides a method and device for managing logistics information, which can enable users to view the actual appearance of goods during transportation, obtain more specific and intuitive logistics information, and optimize user experience.

[0004] To achieve the above object, according to a first aspect of an embodiment of the present invention, a method for managing logistics information is provided, comprising:

[0005] In response to the cargo to be transported being at a preset logistics node, generating a target image of the cargo to be transported;

[0006] According to the target image, updating the panoramic logistics information of the goods to be transported;

[0007] In response to receiving the image viewing request for the goods to be transported, a target image is obtained from the updated panoramic logistics information, and the obtained target image is displayed on the front-end page.

[0008] Optionally, the panoramic logistics information includes: node logistics information of the goods to be transported at each logistics node; updating the panoramic logistics information of the goods to be transported according to the target image includes:

[0009] Determine the logistics node where the goods to be transported are located, and generate basic logistics information of the goods to be transported according to the logistics node;

[0010] The basic logistics information and the target image are associated, and the association result is used as the node logistics information of the goods to be transported at the logistics node.

[0011] Optionally, before acquiring the target image from the updated panoramic logistics information, the method further includes: determining a target logistics node corresponding to the image viewing request;

[0012] Acquiring a target image from the updated panoramic logistics information includes: acquiring a target image of the goods to be transported at the target logistics node from the updated panoramic logistics information.

[0013] Optionally, after displaying the acquired target image on the front-end page, the method further includes:

[0014] In response to receiving the image operation request, corresponding operation parameters are obtained, the target image is adjusted according to the operation parameters, and the adjusted target image is displayed on the front-end page.

[0015] Optionally, the method further comprises:

[0016] In response to receiving a transportation termination request for the cargo to be transported, acquiring a feature image of the cargo to be transported;

[0017] Determining whether the characteristic image meets a preset transportation termination condition;

[0018] When the characteristic image meets the preset transportation termination condition, a first prompt message is sent to prompt the termination of the transportation process of the goods to be transported.

[0019] Optionally, before acquiring the characteristic image of the goods to be transported, the method further comprises: splitting the target image of the goods to be transported into a plurality of plane images;

[0020] Acquiring the characteristic image of the goods to be transported includes: in response to receiving an image screening request, screening out the characteristic image of the goods to be transported from the multiple plane images.

[0021] Optionally, judging whether the characteristic image meets a preset transportation termination condition includes:

[0022] Use a preset image detection model to detect the feature image;

[0023] It is determined whether the characteristic image meets a preset transportation termination condition according to the detection result of the characteristic image.

[0024] Optionally, when the characteristic image meets a preset transportation termination condition, the method further includes:

[0025] Determine the logistics node where the goods to be transported are located, and send a second prompt message to the logistics node, so that the logistics node manually reviews the goods to be transported;

[0026] In response to receiving the manual review result, pushing the manual review result to the initiator of the transportation termination request;

[0027] In the case that the initiator of the transport termination request cancels the transport termination request, a third prompt message is sent to the logistics node to prompt the node to continue transporting the goods to be transported.

[0028] Optionally, the feature image includes target features of the goods to be transported, and the method further includes:

[0029] Determine a target image from which the feature image is separated, and use the target image from which the feature image is separated as a first target image;

[0030] Acquire a target image of the goods to be transported generated before the first target image is generated, and use the target image of the goods to be transported generated before the first target image is generated as a second target image;

[0031] Comparing the first target image and the second target image, and determining a historical target image including the target feature and having the earliest generation time;

[0032] The logistics nodes that generate the historical target image are marked.

[0033] Optionally, generating the target image of the goods to be transported includes:

[0034] When the goods to be transported are at a logistics node before packaging, obtaining physical information of the goods to be transported;

[0035] When the goods to be transported are at a logistics node after packaging, obtaining package information of the goods to be transported;

[0036] A target image of the goods to be transported is generated according to the entity information and the package information; or a target image of the goods to be transported is generated according to the package information.

[0037] According to a second aspect of an embodiment of the present invention, there is provided a logistics information management device, comprising:

[0038] A generating module, configured to generate a target image of the goods to be transported in response to the goods to be transported being at a preset logistics node;

[0039] An updating module, used for updating the panoramic logistics information of the goods to be transported according to the target image;

[0040] The display module is used to obtain a target image from the updated panoramic logistics information in response to receiving an image viewing request for the goods to be transported, and display the obtained target image on a front-end page.

[0041] Optionally, the panoramic logistics information includes: node logistics information of the goods to be transported at each logistics node; updating the panoramic logistics information of the goods to be transported according to the target image includes:

[0042] Determine the logistics node where the goods to be transported are located, and generate basic logistics information of the goods to be transported according to the logistics node;

[0043] The basic logistics information and the target image are associated, and the association result is used as the node logistics information of the goods to be transported at the logistics node.

[0044] Optionally, the device further comprises: a first determination module, configured to determine a target logistics node corresponding to the image viewing request;

[0045] Acquiring a target image from the updated panoramic logistics information includes: acquiring a target image of the goods to be transported at the target logistics node from the updated panoramic logistics information.

[0046] Optionally, the device further comprises:

[0047] The adjustment module is used to obtain corresponding operation parameters in response to receiving an image operation request, adjust the target image according to the operation parameters, and display the adjusted target image on the front-end page.

[0048] Optionally, the device further comprises:

[0049] A first acquisition module, configured to acquire a feature image of the cargo to be transported in response to receiving a transportation termination request of the cargo to be transported;

[0050] A determination module, used to determine whether the characteristic image meets a preset transportation termination condition;

[0051] The first prompt module is used to send a first prompt message to prompt the termination of the transportation process of the goods to be transported when the characteristic image meets the preset transportation termination condition.

[0052] Optionally, the device further comprises: a splitting module, used to split the target image of the goods to be transported into a plurality of plane images;

[0053] Acquiring the characteristic image of the goods to be transported includes: in response to receiving an image screening request, screening out the characteristic image of the goods to be transported from the multiple plane images.

[0054] Optionally, judging whether the characteristic image meets a preset transportation termination condition includes:

[0055] Use a preset image detection model to detect the feature image;

[0056] It is determined whether the characteristic image meets a preset transportation termination condition according to the detection result of the characteristic image.

[0057] Optionally, the device further comprises:

[0058] A second prompting module is used to determine the logistics node where the goods to be transported are located, and send a second prompting message to the logistics node, so that the logistics node manually reviews the goods to be transported;

[0059] A push module, configured to push the manual review result to the initiator of the transport termination request in response to receiving the manual review result;

[0060] A third prompting module is used to send a third prompting message to the logistics node to prompt the node to continue transporting the goods to be transported when the initiator of the transport termination request cancels the transport termination request.

[0061] Optionally, the feature image includes target features of the goods to be transported, and the device further includes:

[0062] A second determination module is used to determine a target image from which the feature image is separated, and to use the target image from which the feature image is separated as a first target image;

[0063] A second acquisition module is used to acquire a target image of the goods to be transported generated before the first target image is generated, and use the target image of the goods to be transported generated before the first target image is generated as a second target image;

[0064] A comparison module, used for comparing the first target image and the second target image, and determining a historical target image including the target feature and having the earliest generation time;

[0065] A marking module is used to mark the logistics nodes that generate the historical target image.

[0066] Optionally, generating the target image of the goods to be transported includes:

[0067] When the goods to be transported are at a logistics node before packaging, obtaining physical information of the goods to be transported;

[0068] When the goods to be transported are at a logistics node after packaging, obtaining package information of the goods to be transported;

[0069] A target image of the goods to be transported is generated according to the entity information and the package information; or a target image of the goods to be transported is generated according to the package information.

[0070] According to a third aspect of an embodiment of the present invention, there is provided an electronic device, including:

[0071] one or more processors;

[0072] a storage device for storing one or more programs,

[0073] When the one or more programs are executed by the one or more processors, the one or more processors implement the method described in any one of the above embodiments.

[0074] According to a fourth aspect of an embodiment of the present invention, a computer-readable medium is provided, on which a computer program is stored, and when the program is executed by a processor, the method described in any one of the above embodiments is implemented.

[0075] One embodiment of the above invention has the following advantages or beneficial effects: using the target image of the goods to be transported to update the panoramic logistics information, which is convenient for users to view the target image of the goods to be transported, and can enable users to view the color, size, material, packaging specifications and other appearance information of the goods during the operation of the goods, so as to obtain more specific and intuitive logistics information and optimize the user experience; generating a corresponding target image at each logistics node can enable users to more intuitively understand the specific information of the goods at each logistics node, avoid discovering problems with the goods after receiving the goods, and further optimize the user experience; adjusting the display angle of the target image can enable users to view the goods in the target image from multiple angles, so that users can fully Understand the specific information of the goods from all angles to meet the needs of users to view the goods from various angles; send prompt information when the feature image meets the conditions for transport termination, so that users can terminate the transport of goods according to the problems of the goods shown in the target image, reduce transportation costs and labor costs, and avoid initiating returns after receiving the goods; use image detection models to detect feature images to improve the accuracy and efficiency of feature image detection; prompt logistics nodes for manual review, which can further identify goods that do not need to be terminated for transportation, reduce the rate of termination of transportation of goods, and reduce transportation costs and labor costs; compare target images with target features, which can quickly determine historical target images and provide technical support for determining the responsibility of logistics nodes.

[0076] The further effects of the above-mentioned non-conventional optional manner will be described below in conjunction with the specific implementation manner. BRIEF DESCRIPTION OF THE DRAWINGS

[0077] The accompanying drawings are used to better understand the present invention and do not constitute an improper limitation of the present invention.

[0078] Figure 1 is a schematic diagram of the main process of the method for managing logistics information according to an embodiment of the present invention;

[0079] Figure 2 is a schematic diagram of a panoramic logistics information page according to a reference embodiment of the present invention;

[0080] Figure 3 is a schematic diagram of panoramic image comparison according to a reference embodiment of the present invention;

[0081] Figure 4 It is a schematic diagram of the overall process of a method for managing logistics information according to a reference embodiment of the present invention;

[0082] Figure 5 It is a schematic diagram of the main process of a method for managing logistics information according to a reference embodiment of the present invention;

[0083] Figure 6 is a schematic diagram of the main process of a method for managing logistics information according to another reference embodiment of the present invention;

[0084] Figure 7 is a schematic diagram of main modules of a logistics information management device according to an embodiment of the present invention;

[0085] Figure 8 is an exemplary system architecture diagram to which embodiments of the present invention may be applied;

[0086] Fig. 9 It is a schematic diagram of the structure of a computer system of a terminal device or a server suitable for implementing an embodiment of the present invention. DETAILED DESCRIPTION

[0087] The following is a description of exemplary embodiments of the present invention in conjunction with the accompanying drawings, including various details of the embodiments of the present invention to facilitate understanding, which should be considered as merely exemplary. Therefore, it should be recognized by those of ordinary skill in the art that various changes and modifications may be made to the embodiments described herein without departing from the scope and spirit of the present invention. Similarly, for clarity and conciseness, the description of well-known functions and structures is omitted in the following description.

[0088] It should be noted that in the technical solution of the present invention, the collection, use, storage, sharing and transfer of user personal information involved are in compliance with the provisions of relevant laws and regulations, and it is necessary to inform the user and obtain the user's consent or authorization. When applicable, the user's personal information is de-identified and / or anonymized and / or encrypted.

[0089] In order to protect user privacy and prevent user information leakage, logistics platforms usually display logistics information in text form, including: transportation time, transportation location, transportation route, courier information, etc. Based on logistics information, users can know the current location of the goods and the progress of the goods transportation. After receiving the goods, users can see the appearance information of the goods such as size, color, material, as well as the packaging specifications of the goods, damage, etc.

[0090] Users cannot know the specific information of goods during the logistics process, which prolongs the time for users to view the actual goods. Especially in bad weather and long transportation routes, users cannot see the actual goods for a long time, which can easily cause negative emotions and bring bad user experience. In the case of goods not matching the description or goods damaged during transportation, users can only discover and initiate returns after receiving the goods, which increases transportation costs and labor costs.

[0091] In view of this, according to a first aspect of an embodiment of the present invention, a method for managing logistics information is provided.

[0092] Figure 1 FIG. 1 is a schematic diagram of the main process of the method for managing logistics information according to an embodiment of the present invention. Figure 1 As shown, the logistics information management method according to the embodiment of the present invention mainly includes the following steps S101 to S103.

[0093] Step S101, in response to the goods to be transported being at a preset logistics node, generating a target image of the goods to be transported.

[0094] The cargo transportation process involves multiple logistics nodes, including: printing order nodes, picking nodes, scanning nodes, packaging nodes, sorting nodes, transportation nodes, etc., among which some logistics nodes are repeated. For example, the cargo transportation process involves multiple logistics sites, including: starting logistics sites, one or more transit logistics sites, and delivery logistics sites. Different logistics sites include the same logistics nodes, such as picking nodes, scanning nodes, etc. The execution subject of the embodiment of the present invention selects a preset logistics node from the above multiple logistics nodes, and detects the cargo to be transported at the preset logistics node. When the cargo to be transported is detected, it means that the cargo to be transported is currently at the preset logistics node, and then uses a pre-set panoramic camera device to shoot the cargo to be transported to generate a target image of the cargo to be transported, or the execution subject of the embodiment of the present invention sends a prompt message to the staff, and the staff uses the panoramic camera device to shoot the cargo to be transported to generate a target image of the cargo to be transported. The above panoramic camera device is part of the execution subject of the embodiment of the present invention.

[0095] The target image is a panoramic image (Panoramic Photo, or Panorama). Specifically, a panoramic image refers to a photo that conforms to the normal effective visual angle of human eyes or includes the peripheral vision of both eyes, or even includes a 360-degree full scene shooting range. A panoramic image uses a wide-angle display method to fully display the full view of the goods to be transported, and simulates the two-dimensional plane map including the goods to be transported into a three-dimensional space where the goods to be transported exist, so that users can see every side and every part of the goods to be transported.

[0096] Preferably, before generating a panoramic image of the goods to be transported, the execution subject of the embodiment of the present invention inquires about the authorization information of the goods to be transported. If the authorization information of the goods to be transported is found, it means that the consignor and consignee of the goods to be transported are aware of and agree that the execution subject of the embodiment of the present invention generates a panoramic image of the goods to be transported, and the execution subject of the embodiment of the present invention continues to generate a panoramic image of the goods to be transported; if the authorization information of the goods to be transported is not found, it means that the consignor and consignee of the goods to be transported are unaware of or do not agree that the execution subject of the embodiment of the present invention generates a panoramic image of the goods to be transported, and the execution subject of the embodiment of the present invention does not generate a panoramic image of the goods to be transported. More preferably, if the authorization information of the goods to be transported is not found, when displaying the logistics information of the goods to be transported, the execution subject of the embodiment of the present invention applies for authorization to the viewer of the logistics information (i.e., the consignor or consignee of the goods to be transported), explains the role of the panoramic image to the viewer of the logistics information, and enables the viewer of the logistics information to grant the execution subject of the embodiment of the present invention the right to generate a panoramic image of the goods to be transported.

[0097] For example, an e-commerce platform ships goods from a warehouse to a consumer, and the warehouse management system delivers the goods to be transported to the warehouse exit for packaging and dispatch according to the consumer's order; before the goods to be transported are transported to the warehouse exit, the goods to be transported pass through the execution subject of the embodiment of the present invention, and after the execution subject of the embodiment of the present invention detects the goods to be transported, a panoramic camera device is used to shoot each side of the goods to be transported to obtain multiple images of the goods to be transported, and the panoramic camera device synthesizes the multiple images of the goods to be transported to obtain a panoramic image of the goods to be transported; after the panoramic image of the goods to be transported is generated, the goods to be transported are packaged, packaged, dispatched, etc. For another example, A mails goods to B, and after the courier obtains the goods to be transported from A, the courier places the goods to be transported on the execution subject of the embodiment of the present invention, so that the execution subject of the embodiment of the present invention detects the goods to be transported and starts the panoramic camera device, and then the courier uses the panoramic camera device to shoot the goods to be transported to generate a panoramic image of the goods to be transported; after the panoramic image of the goods to be transported is generated, the goods to be transported are packaged, packaged, and transported.

[0098] Generate a panoramic image of the goods to be transported, which can record the complete appearance of the goods to be transported and provide a data basis for the subsequent display of the panoramic image of the goods to be transported, so that users can view the size, color, material, packaging specifications and other logistics information of the goods to be transported through the panoramic image, thereby optimizing the user experience.

[0099] Step S102: updating the panoramic logistics information of the goods to be transported according to the target image.

[0100] After obtaining the panoramic image of the goods to be transported (i.e., the target image), the panoramic image of the goods to be transported is added to the panoramic logistics information of the goods to be transported, the panoramic logistics information includes: basic logistics information and panoramic image information of the goods to be transported, wherein the basic logistics information includes: logistics operations performed on the goods to be transported, the execution time of each logistics operation, information of the courier responsible for delivering the goods to be transported, etc., and the panoramic image information includes: the panoramic image of the goods to be transported and the basic information of the panoramic image, wherein the basic information of the panoramic image includes: the shooting time, shooting location, exposure, resolution, etc. of the panoramic image. The panoramic image and the basic information of the panoramic image are encapsulated together, specifically, after obtaining the panoramic image, the panoramic image is added to the panoramic image information of the panoramic logistics information.

[0101] Exemplarily, the panoramic logistics information includes a basic logistics information list and a panoramic image list. After the panoramic image is generated, the generated panoramic image is added to the panoramic image list. The panoramic images in the panoramic image list are arranged in ascending order of generation time. In another exemplary embodiment, the panoramic logistics information consists of only one list, which includes basic logistics information and panoramic image information. Specifically, the basic logistics information and panoramic image information in the list are arranged in ascending order of generation time. After the panoramic image is generated, the generated panoramic image is directly added to the end of the list.

[0102] It should be noted that there may be one or more panoramic images of the goods to be transported. For example, a panoramic image of the goods to be transported is generated when the goods are shipped from the warehouse or when the courier obtains the goods to be transported; for another example, in the process of inter-provincial and inter-city transportation, a panoramic image of the goods to be transported is generated every time when the goods arrive from one province or city to another province or city; for another example, a panoramic image of the goods to be transported is generated every time a certain period of time (for example, 12 hours, 1 day, etc.); for another example, a panoramic image of the goods to be transported is generated every time a certain transportation distance (for example, 10 kilometers, 100 kilometers, etc.). Each time a panoramic image of the goods to be transported is generated, the panoramic logistics information of the goods to be transported is updated.

[0103] Updating the panoramic logistics information of the goods to be transported according to the panoramic images and adding the panoramic images of the goods to be transported to the logistics information expressed in pure text can increase the amount of information of the panoramic logistics information of the goods to be transported and make the content of the panoramic logistics information richer, so that users can understand the size, color, material, packaging specifications and other logistics information of the goods to be transported based on the panoramic logistics information, thereby optimizing the user experience.

[0104] According to a reference embodiment of the present invention, the panoramic logistics information includes: node logistics information of the goods to be transported at each logistics node. The logistics nodes include: warehouses for storing the goods to be transported, logistics sites for transferring the goods to be transported, etc. There is one or more logistics nodes for the goods to be transported. When the goods to be transported pass through each logistics node, corresponding logistics information will be generated, namely, node logistics information. The node logistics information of each logistics node includes: basic logistics information and a panoramic image of the logistics node.

[0105] When updating the panoramic logistics information of the goods to be transported based on the panoramic image, a panoramic image of the goods to be transported is generated each time the goods to be transported passes through a logistics node. Specifically, the logistics node where the goods to be transported is located is determined, and the basic logistics information and panoramic image of the goods to be transported at the logistics node are generated; the basic logistics information and the panoramic image of the logistics node are associated, and the associated result is used as the node logistics information of the goods to be transported at the logistics node.

[0106] The panoramic image of the same logistics node is associated with the basic logistics information. For example, the panoramic logistics information is composed of only one list, the number of elements of the list is equal to the number of logistics nodes passed by the goods to be transported, and each element in the list is an array of length 2, which includes the basic logistics information and panoramic image of the same logistics node; or, each element in the list is a mapping table, the key and value of the mapping table are the basic logistics information and panoramic image of the same logistics node respectively.

[0107] It should be noted that before generating a panoramic image of the goods to be transported at each logistics node, the execution subject of the embodiment of the present invention queries the authorization information associated with the logistics node, and generates a global image of the goods to be transported at the logistics node when the authorization information of the logistics node is queried. That is, the consignee or consignor of the goods to be transported can authorize each logistics node and flexibly decide whether to generate a panoramic image of the goods to be transported at each logistics node.

[0108] Exemplarily, the logistics nodes through which the goods to be transported pass include: logistics node A1, logistics node A2, and logistics node A3, wherein logistics node A1 and logistics node A3 have authorization information, and therefore, panoramic images of the goods to be transported are generated only at logistics node A1 and logistics node A3; when passing through logistics node A1, the panoramic logistics information of the goods to be transported includes: {'node_A1':'[basicMsg1,photo1]'}, when passing through logistics node A2, the panoramic logistics information of the goods to be transported includes: {'node_A1':'[basicMsg1,photo1]'; 'node_A2':'[basicMsg1,null]'}, when passing through logistics node A3, the panoramic logistics information of the goods to be transported includes: {'node_A1':'[basicMsg1,photo1]'} [basicMsg1,photo1]'; 'node_A2':'[basicMsg2,null]'; 'node_A3':'[basicMsg3,photo3]'}, wherein, "'node_A1':'[basicMsg1,photo1]'" indicates that the panoramic logistics information at logistics node A1 includes: basic logistics information 1 and panoramic image 1, "'node_A2':'[basicMsg2,null]'" indicates that the panoramic logistics information at logistics node A2 includes: basic logistics information 2 (the panoramic image is a null value), and "'node_A3':'[basicMsg3,photo3]'" indicates that the panoramic logistics information at logistics node A3 includes: basic logistics information 3 and panoramic image 3.

[0109] Generating corresponding panoramic images at each logistics node enables users to intuitively understand the specific information of the goods at each logistics node, avoiding discovering problems with the goods after receiving them, and further optimizing the user experience.

[0110] Step S103, in response to receiving the image viewing request of the goods to be transported, obtaining the target image from the updated panoramic logistics information, and displaying the obtained target image on the front-end page.

[0111] The execution subject of the embodiment of the present invention parses the received image viewing request, determines the goods to be transported corresponding to the image viewing request, obtains the panoramic logistics information of the goods to be transported, obtains the panoramic image of the goods to be transported (i.e., the target image) from the panoramic logistics information, and displays the panoramic image of the goods to be transported on the front-end page. For example, when there are multiple panoramic images of the goods to be transported, the multiple panoramic images of the goods to be transported are arranged in order from small to large or from large to small according to the generation time, and the arranged panoramic images are displayed on the front-end page. The initiator of the image viewing request can adjust the arrangement order of the multiple panoramic images on the front-end page. The panoramic image on the front-end page can be enlarged, reduced, rotated, etc.

[0112] Exemplarily, during the transportation of the goods to be transported, the executing entity of the embodiment of the present invention receives an image viewing request for the goods to be transported. At this time, three panoramic images of the goods to be transported have been generated, specifically including: panoramic image B1, panoramic image B2 and panoramic image B3, wherein the three panoramic images are arranged in descending order of generation time, and the arranged panoramic images are displayed on the front-end page. The initiator of the image viewing request first sees the panoramic image with the largest generation time (i.e., the most recent generation) on the front-end page, so that the initiator of the image viewing request can understand the latest transportation status of the goods to be transported.

[0113] Displaying a panoramic image of the goods to be transported on the front-end page allows users to check the size, color, material, packaging specifications, etc. of the goods to be transported before receiving the goods, thereby improving the user experience; it allows users to discover in advance that the goods to be transported are not the same as described or are damaged due to transportation before receiving the goods, which is conducive to improving the efficiency of after-sales processing of the goods to be transported.

[0114] According to a reference embodiment of the present invention, before obtaining the panoramic image from the updated panoramic logistics information, the method further includes: parsing the image viewing request to determine the target logistics node corresponding to the image viewing request, that is, the image viewing request is associated with a logistics node. When the target logistics node is determined, a panoramic image of the goods to be transported at the target logistics node is obtained from the updated panoramic logistics information, and the panoramic image of the target logistics node is displayed on the front-end page.

[0115] Figure 2 is a schematic diagram of a panoramic logistics information page according to a reference embodiment of the present invention. For example, Figure 2As shown, the panoramic logistics information page 201 includes multiple panoramic logistics information such as: ordered, in warehouse processing, and in transit. Among them, after the picking of the goods to be transported is completed, the execution subject of the embodiment of the present invention scans the goods to be transported and generates a panoramic image 1 of the goods to be transported. After the goods to be transported are transported to the logistics node 1, the execution subject of the embodiment of the present invention scans the goods to be transported and generates a panoramic image 2 of the goods to be transported; the panoramic image of the goods to be transported is displayed on the panoramic logistics information page 201 together with the basic logistics information. Click "Panoramic Image 1" on the panoramic logistics information page to view the panoramic image 1 of the goods to be transported. Click "Panoramic Image 2" on the panoramic logistics information page to view the panoramic image 2 of the goods to be transported. The user can zoom in, zoom out, translate, rotate, and adjust the display angle of the panoramic image of the goods to be transported on the front-end page.

[0116] As another example, during the transportation of the goods to be transported, the execution subject of the embodiment of the present invention receives an image viewing request for the goods to be transported. At this time, the goods to be transported have passed through three logistics nodes, specifically including: logistics node C1, logistics node C2 and logistics node C3, each logistics node is associated with a panoramic image, namely: panoramic image D1, panoramic image D2 and panoramic image D3; the image viewing request is parsed to obtain the parameter: logistics node C3, then the logistics node C3 is taken as the target logistics node, and the panoramic image of the goods to be transported at the target logistics node is obtained, that is, the panoramic image D3 that is associated with the logistics node C3.

[0117] Based on the image viewing request, a panoramic image of the target logistics node of the goods to be transported is displayed to the user, which enables the user to intuitively understand the specific information of the goods at each logistics node, enriches the content of the node logistics information of each logistics node, and further optimizes the user experience.

[0118] According to another reference embodiment of the present invention, after displaying the acquired panoramic image on the front-end page, the method further includes: in response to receiving an image operation request, parsing the image operation request, acquiring corresponding operation parameters, and adjusting the panoramic image according to the acquired operation parameters. Specifically, the operation parameters include: the zoom ratio, reduction ratio, brightness change value, rotation angle, rotation direction, etc. of the panoramic image; according to the above operation parameters, the panoramic image is zoomed in, reduced, brightness is adjusted, and the display viewing angle of the goods to be transported in the panoramic image is adjusted to achieve the effect of rotating the goods for transportation. After adjusting the panoramic image according to the operation parameters, the adjusted panoramic image is displayed on the front-end page. Thereby, the interaction between the panoramic image displayed on the front-end page and the initiator of the image operation request is realized. Exemplarily, when a user swipes the front page displaying a panoramic image, the execution subject of an embodiment of the present invention receives an image operation request sent from the front page, and the execution subject of the embodiment of the present invention adjusts the panoramic image according to the image operation request. Specifically, the display angle of the goods to be transported is rotated along the swiping direction with the goods to be transported as the axis and the distance between the current display angle and the goods to be transported as the radius, thereby changing the display angle of the goods to be transported on the panoramic image, and then the adjusted panoramic image is displayed on the front page to replace the previously displayed panoramic image before adjustment. From the user's perspective, this is equivalent to rotating the goods to be transported on the front page. Another exemplary example is that when a user stretches the panoramic image displayed on the front page, the execution subject of an embodiment of the present invention enlarges the proportion of the panoramic image, or reduces the distance between the display angle and the goods to be transported according to the received image operation request, and then displays the adjusted panoramic image on the front page to replace the previously displayed panoramic image before adjustment. From the user's perspective, this is equivalent to bringing the goods to be transported closer to the front page.

[0119] Adjusting the display angle of the panoramic image can enable users to view the goods in the panoramic image from multiple angles, so that users can fully understand the specific information of the goods and meet the needs of users to view the goods from various angles.

[0120] According to a reference embodiment of the present invention, the method further includes: in response to receiving a transportation termination request for the goods to be transported, obtaining a characteristic image of the goods to be transported, the characteristic image is a plane image including the goods to be transported, for example, when the user is viewing the panoramic image of the goods to be transported, the user takes a screenshot of the panoramic image of the goods to be transported, and the plane image including the goods to be transported can be obtained, and then the user sends a transportation termination request to the execution subject of the embodiment of the present invention, the transportation termination request carries a screenshot of the panoramic image of the goods to be transported, and the execution subject of the embodiment of the present invention parses the transportation termination request and obtains the screenshot of the panoramic image of the goods to be transported by the user, that is, the characteristic image of the goods to be transported is obtained. There can be one or more characteristic images of the goods to be transported.

[0121] After obtaining the feature image of the goods to be transported, it is determined whether the feature image meets the preset transportation termination conditions. For example, the feature image is annotated using a preset image annotation model, the image annotation model is trained using a large number of damaged goods images, the annotation result of the feature image is obtained, and it is determined whether the feature image has annotation information, that is, it is determined whether the damaged position is marked on the feature image. In the case where the feature image has annotation information and the damaged position is marked, it means that the goods to be transported are damaged, and it is determined that the feature image meets the preset transportation termination conditions. For another example, it is determined whether the annotation information of the feature image is greater than or equal to a preset quantity threshold, and whether the annotated area of ​​the feature image is greater than or equal to a preset area threshold. In the case where the annotation information is greater than or equal to the quantity threshold or the annotated area is greater than or equal to the area threshold, it means that the damage to the goods to be transported is relatively serious, and it is determined that the feature image meets the preset transportation termination conditions.

[0122] When the feature image meets the pre-set transportation termination conditions, the logistics node where the goods to be transported are currently located is determined, and a first prompt message is sent to the logistics node, prompting the logistics node to terminate the transportation process for the goods to be transported, that is, the goods to be transported will no longer be transported to the next logistics node.

[0123] Exemplarily, a user takes a screenshot of a panoramic image of the goods to be transported to obtain a characteristic image of the goods to be transported, and the executive body of an embodiment of the present invention displays a problem feedback page to the user. The user sends a transportation termination request for the goods to be transported to the executive body of the embodiment of the present invention through the problem feedback page, and the transportation termination request carries the characteristic image of the goods to be transported; the executive body of the embodiment of the present invention assigns the characteristic image to a preset image annotation model to obtain an annotation result of the characteristic image; the preset quantity threshold is 3, and the area threshold is 5, and the annotation result of the characteristic image is parsed to obtain a characteristic image annotation quantity of 4 and an annotation area of ​​3; since the annotation quantity of the characteristic image is greater than the preset quantity threshold, it is determined that the characteristic image meets the preset transportation termination conditions, and a first prompt message is sent to the logistics node where the goods to be transported are located, prompting the logistics node to terminate the transportation process of the goods to be transported.

[0124] According to another reference embodiment of the present invention, before acquiring the characteristic image of the goods to be transported, the method further includes: using image segmentation technology to split the panoramic image of the goods to be transported into multiple plane images. An image segmentation technology applicable to an embodiment of the present invention includes: splitting the panoramic image according to multiple display perspectives of the panoramic image, splitting the panoramic image into multiple plane images, each plane image viewing the view of the goods to be transported from a display perspective, for example, when the goods to be transported is a cube, the panoramic image is split into 6 plane images, each plane image includes a face of the cube; for another example, when the goods to be transported is a sphere, the panoramic image is split into 2 plane images, and the 2 plane images are symmetrical with respect to the center of the sphere.

[0125] When acquiring the characteristic image of the goods to be transported, in response to receiving the image screening request, the characteristic image of the goods to be transported is screened from the multiple plane images that have been split. Exemplarily, the execution subject of the embodiment of the present invention displays the multiple plane images that have been split (each plane image has a unique image code) to the user, and the user makes a selection. After the user makes the selection, the image screening request with the image code is sent to the execution subject of the embodiment of the present invention. The execution subject of the embodiment of the present invention parses the image screening request to obtain the image code, and determines the characteristic image of the goods to be transported according to the image code.

[0126] According to the user's selection results of multiple plane images, the characteristic image of the goods to be transported is determined, and the characteristic image of the goods to be transported can be flexibly determined; the user is allowed to screen the characteristic image, which reduces the user's operation difficulty and improves the user experience. The characteristic image obtained by the image segmentation technology is clearer.

[0127] According to another reference embodiment of the present invention, judging whether the feature image meets the preset transportation termination conditions includes: using a preset image detection model to detect the feature image, and the image detection model applicable to the embodiment of the present invention includes: yolov5 model and models improved thereon, etc. Specifically, the pre-set image detection model is pre-processed using panoramic images of multiple historical goods to be transported (i.e., goods to be transported that have completed the transportation process), and the panoramic images of the multiple historical goods to be transported are split into plane images using image segmentation technology, and the multiple plane images of the historical goods to be transported are used as training data to train the pre-processed image detection model, and the feature image is input into the trained image detection model to obtain the detection result of the feature image.

[0128] Preferably, when preprocessing and training the image detection model, the panoramic images and plane images are classified according to the type of goods to be transported. The types of goods to be transported include: bulk, containerized, glass products, metal products, plastic products, etc. The image detection model is preprocessed using panoramic images of different categories, and the image detection model is trained using plane images of different categories to improve the detection accuracy of the image detection model for feature images.

[0129] According to the detection result of the feature image, it is judged whether the feature image meets the preset transportation termination conditions. Specifically, the detection result is the damage probability of the goods to be transported. The damage level of the goods to be transported is determined according to the damage probability. According to the damage level of the goods to be transported, it is judged whether the goods to be transported meet the transportation termination conditions. Exemplarily, the detection result of the feature image is obtained, and the damage probability of the goods to be transported is 0.7. The association between the preset damage probability p and the damage level includes: 0≤p≤0.3, then the damage level is "no damage"; 0.3<p≤0.6, then the damage level is "slightly damaged", 0.6<p≤1, then the damage level is "severely damaged", therefore, according to the above association relationship, the damage level of the goods to be transported is determined to be "severely damaged", and it is determined that the feature image meets the transportation termination conditions. It should be noted that the association between the damage probability and the damage level is configurable.

[0130] The panoramic image is used to preprocess the image detection model, the planar images split from the panoramic image are used to train the feature images, and the preprocessed and trained image detection model is used to detect the feature images, thereby improving the accuracy and efficiency of feature image detection.

[0131] According to another reference embodiment of the present invention, when the characteristic image meets the preset transportation termination conditions, the method also includes: determining the logistics node where the goods to be transported are currently located, sending a second prompt message to the logistics node, prompting the staff of the logistics node to manually review the goods to be transported. Specifically, when the damage probability of the characteristic image is greater than or equal to the preset probability threshold, it may indicate that the goods to be transported have been damaged, and the staff of the logistics station where the goods to be transported are currently located will reconfirm the goods to be transported. For different types of goods to be transported, the same detection result may represent different actual damage levels. For example, a "slightly damaged" box of water may only have one or two bottles of water damaged, and a "slightly damaged" display may not be able to display the picture normally, so manual review is required. When the damage probability of the characteristic image is less than the preset probability threshold, it means that the goods to be transported are not damaged, and there is no need for manual review, and the detection result of the characteristic image can be directly fed back to the user.

[0132] After the staff manually reviews the goods to be transported, the manual review results are sent to the executive body of the embodiment of the present invention. The executive body of the embodiment of the present invention pushes the received manual review results to the initiator of the transport termination request (for example, the consignee who requests to stop the transport), so that the initiator of the transport termination request knows the manual review results of the goods to be transported. The initiator of the transport termination request can cancel the transport termination request. Specifically, the initiator of the transport termination request sends a cancellation request to the executive body of the embodiment of the present invention to cancel the transport termination request for the goods to be transported. The executive body of the embodiment of the present invention sends a third prompt message to the logistics node where the goods to be transported are currently located, prompting the logistics node to continue transporting the goods to be transported.

[0133] Prompting logistics nodes to conduct manual review can further identify goods that do not need to be terminated for transportation, reduce the rate of terminated transportation of goods, reduce misjudgment of the degree of damage to the goods being transported, and reduce transportation costs and labor costs.

[0134] According to another reference embodiment of the present invention, the feature image includes the target feature of the goods to be transported, and the target feature is the damage feature of the goods to be transported, and the target feature includes: cracks, scratches, folds, notches, fragments, depressions, etc. The method also includes: determining the panoramic image from which the feature image is split, and using the panoramic image from which the feature image is split as the first panoramic image. Obtaining the panoramic image of the goods to be transported generated before the first panoramic image is generated, and using the panoramic image of the goods to be transported generated before the first panoramic image is generated as the second panoramic image. For example, the goods to be transported have passed through 4 logistics nodes, and each logistics node has generated a panoramic image of the goods to be transported, which are sorted from small to large in the order of generation, including: panoramic image E1, panoramic image E2, panoramic image E3, panoramic image E4; the feature image is obtained by splitting the panoramic image E4, then the panoramic image E4 is the first panoramic image, and the panoramic image E2 and the panoramic image E3 include the target feature of the feature image, then the panoramic image E2 and the panoramic image E3 are the second panoramic image.

[0135] The first panoramic image and the second panoramic image are compared to determine the target panoramic image with the earliest generation time including the target features. Specifically, the first panoramic image and the second panoramic image are sorted according to the generation time of the panoramic images to determine the panoramic image with the earliest generation time, that is, the historical target image. The logistics node that generated the historical target image is determined, and the logistics node is marked. The historical target image with the earliest generation time including the target features is the panoramic image that records the target features earliest. Therefore, the target features are generated before the historical target image is generated, that is, the goods to be transported are damaged before the historical target image is generated. Therefore, the logistics node that generates the historical target image should bear certain responsibilities for the damage of the goods to be transported. The execution subject of the embodiment of the present invention marks the logistics node, which can provide data support for the determination of responsibility for the damage of the goods to be transported and improve the efficiency and accuracy of the determination of responsibility.

[0136] Figure 3 is a schematic diagram of panoramic image comparison according to a reference embodiment of the present invention. Figure 3As shown, the transportation route of the goods to be transported includes: from logistics node 1 to logistics node 2, from logistics node 2 to logistics node 3, and from logistics node 3 to logistics node 4; the user checks the panoramic image 304 of logistics node 4 and finds that there is a target feature (i.e., a triangle on panoramic image 304) on the feature image of panoramic image 304, and the target feature indicates that the goods to be transported have been damaged; taking panoramic image 304 as the first panoramic image, checking the panoramic images of the first three logistics nodes, it is determined that panoramic image 302 and panoramic image 303 also have the same target feature as panoramic image 304 (i.e., a triangle on panoramic image 302 and panoramic image 303), therefore, panoramic image 302 and panoramic image 303 are taken as the second panoramic image; according to the above transportation route, it can be seen that the generation time of panoramic image 302 is earlier than that of panoramic image 303 and panoramic image 304, therefore, panoramic image 302 is the panoramic image with the target feature and the earliest generation time, and taking panoramic image 302 as the historical target image, it can be further known that logistics node 2 is largely responsible for the damage of the goods to be transported.

[0137] By comparing panoramic images with target features, it is possible to quickly determine the historical target image, and then determine the logistics node where the goods to be transported were located when they were damaged, providing technical support for determining the responsibility of the logistics node.

[0138] According to a reference embodiment of the present invention, before generating a panoramic image of the goods to be transported, the logistics node where the goods to be transported are located is first determined. For example, multiple logistics nodes are pre-set, including: printing order node, picking node, scanning node, packaging node, sorting node, transportation node, etc. In the case where the goods to be transported are in a logistics node before packaging, for example, in the case where the goods to be transported are in a picking node or a scanning node, the entity information of the goods to be transported is obtained. The entity information of the goods to be transported is the size, color, material, shape and other information related to the entity of the goods to be transported. The entity information represents the real appearance of the goods to be transported.

[0139] When the goods to be transported are at a logistics node after packaging, for example, when the goods to be transported are at a sorting node or a transportation node, the package information of the goods to be transported is obtained. Since the goods to be transported have been packaged and packed at this time, the package information of the goods to be transported is the appearance information of the goods to be transported after packaging and packaging. The package information represents the actual appearance of the goods to be transported after packaging.

[0140] When generating a target image of the goods to be transported (ie, a panoramic image), the panoramic image of the goods to be transported is generated based on the acquired entity information and package information; or, the panoramic image of the goods to be transported is generated based only on the acquired package information. Exemplarily, the consignee or consignor of the goods to be transported sends a confidentiality request to the execution subject of the embodiment of the present invention, requesting that the appearance information such as the size, color, and material of the goods to be transported be kept confidential. The execution subject of the embodiment of the present invention generates a confidentiality clause associated with the goods to be transported according to the confidentiality request; before generating a panoramic image of the goods to be transported, the confidentiality clause associated with the goods to be transported is queried according to the goods code of the goods to be transported. If the confidentiality clause is found, the goods to be transported are first packaged, and then the package information of the packaged goods to be transported is obtained, and a panoramic image of the goods to be transported is generated according to the package information; if the confidentiality clause is not found, before packaging the goods to be transported, the entity information of the goods to be transported is first obtained, and a physical panoramic image of the goods to be transported is generated according to the entity information, and then the goods to be transported are packaged, and then the package information of the packaged goods to be transported is obtained, and a package panoramic image of the goods to be transported is generated according to the package information, and the physical panoramic image and the package panoramic image are used as the panoramic image of the goods to be transported. When the packaged goods to be transported pass through each logistics node, a package panoramic image of the packaged goods to be transported is generated.

[0141] When the user applies for confidentiality of the goods to be transported, the goods are packed first and then a panoramic image is generated, which can ensure that the appearance information of the goods to be transported is not leaked. While meeting the user's confidentiality needs, the user can know the packaging specifications of the goods to be transported and whether the goods to be transported are damaged.

[0142] Figure 4 FIG. 1 is a schematic diagram of the overall process of a method for managing logistics information according to a reference embodiment of the present invention. Figure 4As shown, it is determined whether the authorization information of the goods to be transported is obtained. If the authorization information of the goods to be transported is not obtained, only the basic logistics information of the goods to be transported is generated. If the authorization information of the goods to be transported is obtained, it is determined whether the confidentiality clause of the goods to be transported is obtained. If the confidentiality clause of the goods to be transported is obtained, a panoramic image of the goods to be transported is generated first, and then the goods to be transported are packaged. If the confidentiality clause of the goods to be transported is not obtained, the goods to be transported are packaged first, and then a panoramic image of the packaged goods to be transported is generated; panoramic logistics information of the goods to be transported is generated according to the panoramic image, and the user can view the panoramic logistics information and panoramic image during the transportation of the goods to be transported; a panoramic image of the goods to be transported is generated once each time the goods pass through a logistics node, and the panoramic logistics information of the goods to be transported at the logistics node is generated; when a transportation termination request is received, it is determined whether the feature image carried by the transportation termination request meets the transportation termination condition. If the transportation termination condition is met, the transportation process of the goods to be transported is terminated; if the transportation termination condition is not met, the goods to be transported are transported until the goods to be transported are signed for.

[0143] Figure 5 FIG. 1 is a schematic diagram of the main process of a method for managing logistics information according to a reference embodiment of the present invention. Figure 5 As shown, the logistics information management method may include:

[0144] Step S501, in response to the cargo to be transported being at a preset logistics node, generating a panoramic image of the cargo to be transported;

[0145] Step S502, determining the logistics node where the goods to be transported are located, and generating basic logistics information of the goods to be transported at the logistics node;

[0146] Step S503, associating the basic logistics information with the panoramic image, and using the association result as the node logistics information of the goods to be transported at the logistics node;

[0147] Step S504, using the node logistics information of the goods to be transported at the logistics node to update the panoramic logistics information of the goods to be transported;

[0148] Step S505, receiving an image viewing request of the goods to be transported, obtaining a panoramic image from the updated panoramic logistics information, and displaying the obtained panoramic image on the front-end page;

[0149] Step S506, in response to receiving the image operation request, obtaining corresponding operation parameters, adjusting the panoramic image according to the operation parameters, and displaying the adjusted panoramic image on the front-end page.

[0150] The specific implementation content of the logistics information management method of the above-mentioned reference embodiment of the present invention has been described in detail in the logistics information management method described above, so the repeated content will not be described here.

[0151] Figure 6 FIG. 1 is a schematic diagram of the main process of a method for managing logistics information according to another reference embodiment of the present invention. Figure 6 As shown, the logistics information management method may include:

[0152] Step S601, in response to the cargo to be transported being at a preset logistics node, generating a panoramic image of the cargo to be transported;

[0153] Step S602, updating the panoramic logistics information of the goods to be transported according to the panoramic image;

[0154] Step S603, in response to receiving the image viewing request of the goods to be transported, obtaining a panoramic image from the updated panoramic logistics information, and displaying the obtained panoramic image on the front-end page;

[0155] Step S604, in response to receiving a transportation termination request for the goods to be transported, acquiring a feature image of the goods to be transported;

[0156] Step S605, judging whether the characteristic image meets the transportation termination condition, if so, jumping to step S606, otherwise, jumping to step S609;

[0157] Step S606, determining the logistics node where the goods to be transported are located, and sending a second prompt message to the logistics node, so that the logistics node manually reviews the goods to be transported;

[0158] Step S607, in response to receiving the manual review result, push the manual review result to the initiator of the transportation termination request;

[0159] Step S608, determining whether a request to cancel the transportation of the goods to be transported is received, if so, jumping to step S609, otherwise, jumping to step S610;

[0160] Step S609, sending a third prompt message to the logistics node where the goods to be transported are located, prompting to continue transporting the goods to be transported;

[0161] Step S610, sending a first prompt message to prompt the logistics node where the goods to be transported are located to terminate the transportation process of the goods to be transported.

[0162] The specific implementation content of the logistics information management method of another reference embodiment of the present invention has been described in detail in the logistics information management method described above, so the repeated content will not be described here.

[0163] Figure 7 is a schematic diagram of the main modules of the logistics information management device according to an embodiment of the present invention, such as Figure 7 As shown, the logistics information management device 700 mainly includes:

[0164] A generating module 701, configured to generate a target image of the goods to be transported in response to the goods to be transported being at a preset logistics node;

[0165] An updating module 702, configured to update the panoramic logistics information of the goods to be transported according to the target image;

[0166] The display module 703 is used to obtain a target image from the updated panoramic logistics information in response to receiving an image viewing request for the goods to be transported, and display the obtained target image on the front-end page.

[0167] According to a reference embodiment of the present invention, the panoramic logistics information includes: node logistics information of the goods to be transported at each logistics node; according to the target image, updating the panoramic logistics information of the goods to be transported includes:

[0168] Determine the logistics node where the goods to be transported are located, and generate basic logistics information of the goods to be transported according to the logistics node;

[0169] The basic logistics information and the target image are associated, and the association result is used as the node logistics information of the goods to be transported at the logistics node.

[0170] According to another reference embodiment of the present invention, the logistics information management device 700 further includes: a first determination module, configured to determine a target logistics node corresponding to the image viewing request;

[0171] Acquiring a target image from the updated panoramic logistics information includes: acquiring a target image of the goods to be transported at the target logistics node from the updated panoramic logistics information.

[0172] According to another reference embodiment of the present invention, the logistics information management device 700 further includes:

[0173] The adjustment module is used to obtain corresponding operation parameters in response to receiving an image operation request, adjust the target image according to the operation parameters, and display the adjusted target image on the front-end page.

[0174] According to another reference embodiment of the present invention, the logistics information management device 700 further includes:

[0175] A first acquisition module, configured to acquire a feature image of the cargo to be transported in response to receiving a transportation termination request of the cargo to be transported;

[0176] A determination module, used to determine whether the characteristic image meets a preset transportation termination condition;

[0177] The first prompt module is used to send a first prompt message to prompt the termination of the transportation process of the goods to be transported when the characteristic image meets the preset transportation termination condition.

[0178] According to another reference embodiment of the present invention, the logistics information management device 700 further includes: a splitting module, used to split the target image of the goods to be transported into multiple plane images;

[0179] Acquiring the characteristic image of the goods to be transported includes: in response to receiving an image screening request, screening out the characteristic image of the goods to be transported from the multiple plane images.

[0180] According to a reference embodiment of the present invention, judging whether the characteristic image meets the preset transportation termination condition includes:

[0181] Use a preset image detection model to detect the feature image;

[0182] It is determined whether the characteristic image meets a preset transportation termination condition according to the detection result of the characteristic image.

[0183] According to another reference embodiment of the present invention, the logistics information management device 700 further includes:

[0184] A second prompting module is used to determine the logistics node where the goods to be transported are located, and send a second prompting message to the logistics node, so that the logistics node manually reviews the goods to be transported;

[0185] A push module, configured to push the manual review result to the initiator of the transport termination request in response to receiving the manual review result;

[0186] A third prompting module is used to send a third prompting message to the logistics node to prompt the node to continue transporting the goods to be transported when the initiator of the transport termination request cancels the transport termination request.

[0187] According to another reference embodiment of the present invention, the feature image includes the target features of the goods to be transported, and the logistics information management device 700 further includes:

[0188] A second determination module is used to determine a target image from which the feature image is separated, and to use the target image from which the feature image is separated as a first target image;

[0189] A second acquisition module is used to acquire a target image of the goods to be transported generated before the first target image is generated, and use the target image of the goods to be transported generated before the first target image is generated as a second target image;

[0190] A comparison module, used for comparing the first target image and the second target image, and determining a historical target image including the target feature and having the earliest generation time;

[0191] A marking module is used to mark the logistics nodes that generate the historical target image.

[0192] According to another reference embodiment of the present invention, generating the target image of the goods to be transported includes:

[0193] When the goods to be transported are at a logistics node before packaging, obtaining physical information of the goods to be transported;

[0194] When the goods to be transported are at a logistics node after packaging, obtaining package information of the goods to be transported;

[0195] A target image of the goods to be transported is generated according to the entity information and the package information; or a target image of the goods to be transported is generated according to the package information.

[0196] It should be noted that the specific implementation content of the logistics information management device in the embodiment of the present invention has been described in detail in the logistics information management method described above, so the repeated content will not be described here.

[0197] According to the technical solution of the embodiment of the present invention, the panoramic logistics information is updated using the target image of the goods to be transported, which is convenient for users to view the target image of the goods to be transported, and can enable users to view the appearance information such as the color, size, material, and packaging specifications of the goods during the operation of the goods, so as to obtain more specific and intuitive logistics information and optimize the user experience; generating a corresponding target image at each logistics node can enable users to more intuitively understand the specific information of the goods at each logistics node, avoid discovering problems with the goods after receiving the goods, and further optimize the user experience; adjusting the display perspective of the target image can enable users to view the goods in the target image from multiple angles, so that users can fully understand the goods. to meet the needs of users to view goods from various angles; when the feature image meets the conditions for transport termination, a prompt message is sent, which enables the user to terminate the transport of goods according to the goods problems shown in the target image, thereby reducing transportation costs and labor costs and avoiding initiating returns after receiving the goods; the image detection model is used to detect feature images to improve the accuracy and efficiency of feature image detection; the logistics nodes are prompted for manual review, which can further identify goods that do not need to be terminated for transportation, reduce the rate of goods termination, and reduce transportation costs and labor costs; the target images with target features are compared to quickly determine the historical target images, providing technical support for the determination of responsibility for logistics nodes.

[0198] According to a third aspect of an embodiment of the present invention, there is provided an electronic device, comprising: one or more processors; a storage device for storing one or more programs, wherein when the one or more programs are executed by the one or more processors, the one or more processors implement the method provided by the first aspect of the embodiment of the present invention.

[0199] According to a fourth aspect of an embodiment of the present invention, a computer-readable medium is provided, on which a computer program is stored, and when the program is executed by a processor, the method provided by the first aspect of the embodiment of the present invention is implemented.

[0200] Figure 8 An exemplary system architecture 800 is shown to which the method for managing logistics information or the device for managing logistics information according to the embodiment of the present invention can be applied.

[0201] like Figure 8 As shown, system architecture 800 may include terminal devices 801, 802, 803, a network 804, and a server 805. Network 804 is used to provide a medium for communication links between terminal devices 801, 802, 803 and server 805. Network 804 may include various connection types, such as wired, wireless communication links, or optical fiber cables, etc.

[0202] Users can use terminal devices 801, 802, and 803 to interact with server 805 through network 804 to receive or send messages, etc. Various communication client applications can be installed on terminal devices 801, 802, and 803, such as information management applications, information query applications, search applications, instant messaging tools, email clients, social platform software, etc. (only examples).

[0203] The terminal devices 801 , 802 , and 803 may be various electronic devices having a display screen and supporting web browsing, including but not limited to smart phones, tablet computers, laptop computers, desktop computers, and the like.

[0204] Server 805 may be a server that provides various services, such as a background management server (for example only) that supports requests for logistics information management sent from upstream terminal devices 801, 802, and 803. The background management server may generate a panoramic image of the goods to be transported in response to the goods to be transported being at a preset logistics node; update the panoramic logistics information of the goods to be transported based on the panoramic image; obtain a panoramic image from the updated panoramic logistics information in response to receiving an image viewing request for the goods to be transported, and display the obtained panoramic image on the front-end page; and feedback the logistics information management situation (for example only) to the terminal device.

[0205] It should be noted that the logistics information management method provided in the embodiment of the present invention is generally executed by the server 805, and accordingly, the logistics information management device is generally set in the server 805. The logistics information management method provided in the embodiment of the present invention can also be executed by the terminal devices 801, 802, and 803, and accordingly, the logistics information management device can be set in the terminal devices 801, 802, and 803.

[0206] It should be understood that Figure 8 The number of terminal devices, networks and servers in the embodiment is only for illustration. Any number of terminal devices, networks and servers may be provided according to implementation requirements.

[0207] Reference below Fig. 9 , which shows a schematic diagram of the structure of a computer system 900 of a terminal device suitable for implementing an embodiment of the present invention. Fig. 9 The terminal device shown is only an example and should not bring any limitation to the functions and scope of use of the embodiments of the present invention.

[0208] like Fig. 9As shown, the computer system 900 includes a central processing unit (CPU) 901, which can perform various appropriate actions and processes according to a program stored in a read-only memory (ROM) 902 or a program loaded from a storage part 908 into a random access memory (RAM) 903. In the RAM 903, various programs and data required for the operation of the system 900 are also stored. The CPU 901, the ROM 902, and the RAM 903 are connected to each other via a bus 904. An input / output (I / O) interface 905 is also connected to the bus 904.

[0209] The following components are connected to the I / O interface 905: an input section 906 including a keyboard, a mouse, etc.; an output section 907 including a cathode ray tube (CRT), a liquid crystal display (LCD), etc., and a speaker, etc.; a storage section 908 including a hard disk, etc.; and a communication section 909 including a network interface card such as a LAN card, a modem, etc. The communication section 909 performs communication processing via a network such as the Internet. A drive 910 is also connected to the I / O interface 905 as needed. A removable medium 911, such as a magnetic disk, an optical disk, a magneto-optical disk, a semiconductor memory, etc., is installed on the drive 910 as needed, so that a computer program read therefrom is installed into the storage section 908 as needed.

[0210] In particular, according to the embodiments disclosed in the present invention, the process described above with reference to the flowchart can be implemented as a computer software program. For example, the embodiments disclosed in the present invention include a computer program, which includes a computer program carried on a computer-readable medium, and the computer program includes a program code for executing the method shown in the flowchart. In such an embodiment, the computer program can be downloaded and installed from the network through the communication part 909, and / or installed from the removable medium 911. When the computer program is executed by the central processing unit (CPU) 901, the above-mentioned functions defined in the system of the embodiment of the present invention are executed.

[0211] It should be noted that the computer-readable medium shown in the embodiment of the present invention may be a computer-readable signal medium or a computer-readable storage medium or any combination of the above two. The computer-readable storage medium may be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or device, or any combination of the above. More specific examples of computer-readable storage media may include, but are not limited to: an electrical connection with one or more wires, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. In an embodiment of the present invention, a computer-readable storage medium may be any tangible medium containing or storing a program that can be used by or in combination with an instruction execution system, device or device. In an embodiment of the present invention, a computer-readable signal medium may include a data signal propagated in a baseband or as part of a carrier wave, which carries a computer-readable program code. This propagated data signal may take a variety of forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the above. The computer-readable signal medium may also be any computer-readable medium other than a computer-readable storage medium, which may send, propagate or transmit a program for use by or in conjunction with an instruction execution system, apparatus or device. The program code contained on the computer-readable medium may be transmitted using any appropriate medium, including but not limited to: wireless, wire, optical cable, RF, etc., or any suitable combination of the above.

[0212] The flow chart and block diagram in the accompanying drawings illustrate the possible architecture, function and operation of the system, method and computer program according to various embodiments of the present invention. In this regard, each box in the flow chart or block diagram can represent a module, a program segment, or a part of a code, and the above-mentioned module, program segment, or a part of a code contains one or more executable instructions for realizing the specified logical function. It should also be noted that in some alternative implementations, the functions marked in the box can also occur in a different order from the order marked in the accompanying drawings. For example, two boxes represented in succession can actually be executed substantially in parallel, and they can sometimes be executed in the opposite order, depending on the functions involved. It should also be noted that each box in the block diagram or flow chart, and the combination of the boxes in the block diagram or flow chart can be implemented with a dedicated hardware-based system that performs a specified function or operation, or can be implemented with a combination of dedicated hardware and computer instructions.

[0213] The modules involved in the embodiments of the present invention may be implemented by software or hardware. The modules described may also be set in a processor, for example, it may be described as: a processor includes a generation module, an update module, and a display module, wherein the names of these modules do not constitute a limitation on the modules themselves in some cases, for example, the generation module may also be described as a "module for generating a panoramic image of the goods to be transported".

[0214] As another aspect, an embodiment of the present invention further provides a computer-readable medium, which may be included in the device described in the above embodiment; or it may exist independently without being assembled into the device. The above computer-readable medium carries one or more programs, and when the above one or more programs are executed by a device, the device implements the following method: in response to the goods to be transported being at a preset logistics node, a panoramic image of the goods to be transported is generated; based on the panoramic image, the panoramic logistics information of the goods to be transported is updated; in response to receiving an image viewing request for the goods to be transported, a panoramic image is obtained from the updated panoramic logistics information, and the obtained panoramic image is displayed on the front-end page.

[0215] According to the technical solution of the embodiment of the present invention, the panoramic logistics information is updated using the target image of the goods to be transported, which is convenient for users to view the target image of the goods to be transported, and can enable users to view the appearance information such as the color, size, material, and packaging specifications of the goods during the operation of the goods, so as to obtain more specific and intuitive logistics information and optimize the user experience; generating a corresponding target image at each logistics node can enable users to more intuitively understand the specific information of the goods at each logistics node, avoid discovering problems with the goods after receiving the goods, and further optimize the user experience; adjusting the display perspective of the target image can enable users to view the goods in the target image from multiple angles, so that users can fully understand the goods. to meet the needs of users to view goods from various angles; when the feature image meets the conditions for transport termination, a prompt message is sent, which enables the user to terminate the transport of goods according to the goods problems shown in the target image, thereby reducing transportation costs and labor costs and avoiding initiating returns after receiving the goods; the image detection model is used to detect feature images to improve the accuracy and efficiency of feature image detection; the logistics nodes are prompted for manual review, which can further identify goods that do not need to be terminated for transportation, reduce the rate of goods termination, and reduce transportation costs and labor costs; the target images with target features are compared to quickly determine the historical target images, providing technical support for the determination of responsibility for logistics nodes.

[0216] The above specific implementations do not constitute a limitation on the protection scope of the embodiments of the present invention. It should be understood by those skilled in the art that various modifications, combinations, sub-combinations and substitutions may occur depending on design requirements and other factors. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the embodiments of the present invention should be included in the protection scope of the embodiments of the present invention.

Claims

1. A method for managing logistics information, characterized in that: include: In response to the goods to be transported being at a preset logistics node, generating a target image of the goods to be transported; According to the target image, updating the panoramic logistics information of the goods to be transported; In response to receiving the image viewing request for the goods to be transported, a target image is obtained from the updated panoramic logistics information, and the obtained target image is displayed on the front-end page.

2. The method according to claim 1, characterized in that The panoramic logistics information includes: node logistics information of the goods to be transported at each logistics node; according to the target image, updating the panoramic logistics information of the goods to be transported includes: Determine the logistics node where the goods to be transported are located, and generate basic logistics information of the goods to be transported according to the logistics node; The basic logistics information and the target image are associated, and the association result is used as the node logistics information of the goods to be transported at the logistics node.

3. The method according to claim 2, characterized in that Before acquiring the target image from the updated panoramic logistics information, the method further includes: determining a target logistics node corresponding to the image viewing request; Acquiring a target image from the updated panoramic logistics information includes: acquiring a target image of the goods to be transported at the target logistics node from the updated panoramic logistics information.

4. The method according to claim 1, characterized in that After displaying the acquired target image on the front-end page, the method further includes: In response to receiving the image operation request, corresponding operation parameters are obtained, the target image is adjusted according to the operation parameters, and the adjusted target image is displayed on the front-end page.

5. The method according to claim 1, characterized in that The method further comprises: In response to receiving a transportation termination request for the cargo to be transported, acquiring a feature image of the cargo to be transported; Determining whether the characteristic image meets a preset transportation termination condition; When the characteristic image meets the preset transportation termination condition, a first prompt message is sent to prompt the termination of the transportation process of the goods to be transported.

6. The method according to claim 5, characterized in that Before acquiring the characteristic image of the goods to be transported, the method further includes: splitting the target image of the goods to be transported into a plurality of plane images; Acquiring the characteristic image of the goods to be transported includes: in response to receiving an image screening request, screening out the characteristic image of the goods to be transported from the multiple plane images.

7. The method according to claim 5, characterized in that Determining whether the characteristic image meets the preset transportation termination condition includes: Use a preset image detection model to detect the feature image; It is determined whether the characteristic image meets a preset transportation termination condition according to the detection result of the characteristic image.

8. The method according to claim 5, characterized in that When the characteristic image meets the preset transportation termination condition, the method further includes: Determine the logistics node where the goods to be transported are located, and send a second prompt message to the logistics node, so that the logistics node manually reviews the goods to be transported; In response to receiving the manual review result, pushing the manual review result to the initiator of the transportation termination request; In the case that the initiator of the transport termination request cancels the transport termination request, a third prompt message is sent to the logistics node to prompt the node to continue transporting the goods to be transported.

9. The method according to claim 6, characterized in that The feature image includes target features of the goods to be transported, and the method further includes: Determine a target image from which the feature image is separated, and use the target image from which the feature image is separated as a first target image; Acquire a target image of the goods to be transported generated before the first target image is generated, and use the target image of the goods to be transported generated before the first target image is generated as a second target image; Comparing the first target image and the second target image, and determining a historical target image including the target feature and having the earliest generation time; The logistics nodes that generate the historical target image are marked.

10. The method according to claim 1, characterized in that Generating a target image of the goods to be transported, including: When the goods to be transported are at a logistics node before packaging, obtaining physical information of the goods to be transported; When the goods to be transported are at a logistics node after packaging, obtaining package information of the goods to be transported; A target image of the goods to be transported is generated according to the entity information and the package information; or a target image of the goods to be transported is generated according to the package information.

11. A logistics information management device, characterized in that: include: A generating module, configured to generate a target image of the goods to be transported in response to the goods to be transported being at a preset logistics node; An updating module, used for updating the panoramic logistics information of the goods to be transported according to the target image; The display module is used to obtain a target image from the updated panoramic logistics information in response to receiving an image viewing request for the goods to be transported, and display the obtained target image on a front-end page.

12. An electronic device, characterized in that: include: One or more processors; A storage device for storing one or more programs, When the one or more programs are executed by the one or more processors, the one or more processors implement the method according to any one of claims 1 to 10.

13. A computer readable medium having a computer program stored thereon, characterized in that: When the program is executed by a processor, the method according to any one of claims 1 to 10 is implemented.

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