A method and apparatus for updating waybill information

By using Bluetooth base stations at logistics stations to verify the distance and compatibility of waybill processing terminals, the problem of false handover in express delivery is solved, ensuring the accurate transmission of waybill data and the monitoring of delivery timeliness, and improving the user experience of logistics services.

CN119539641BActive Publication Date: 2026-07-17BEIJING JINGDONG QIANSHITECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
BEIJING JINGDONG QIANSHITECHNOLOGY CO LTD
Filing Date
2023-08-30
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In the logistics process, when couriers and transfer personnel or warehouse managers hand over packages via QR codes, there may be false handovers, resulting in discrepancies between the logistics service and the actual information, affecting the supervision of delivery timeliness and user experience.

Method used

The distance between the waybill processing terminal and the logistics station is determined by using Bluetooth base stations set up at the logistics station, and the terminal compatibility is verified by pre-configured terminal information. Waybill data is transmitted only when the terminal is within a preset range to ensure the authenticity and validity of data handover.

Benefits of technology

It ensures accurate transmission of waybill data within a preset range, guarantees effective monitoring of delivery timeliness by the logistics system, and improves the user experience of logistics services.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119539641B_ABST
    Figure CN119539641B_ABST
Patent Text Reader

Abstract

This invention discloses a method and apparatus for updating waybill information, relating to the field of logistics technology. One specific embodiment of the method includes: determining a first distance between a first waybill processing terminal and a second waybill processing terminal and a logistics station; determining, based on the first distance, whether the first and second waybill processing terminals have reached the logistics station; if they have reached the logistics station, determining, based on pre-configured terminal information, whether the first and second waybill processing terminals are matched; if the first and second waybill processing terminals are matched, instructing them to transmit waybill data to update the waybill information. This embodiment enables the back-end logistics system to effectively monitor delivery timeliness based on waybill information, thereby ensuring a better user experience for logistics services.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of logistics technology, and in particular to a method and apparatus for updating waybill information. Background Technology

[0002] In the existing logistics process, the courier hands over the collected packages to the transfer officer at the pick-up point or to the warehouse manager at the distribution station (or business site). The transfer officer or warehouse manager uses a mobile or Wi-Fi network to scan the QR code provided by the courier to obtain the package information, then counts the packages according to the package information, and finally confirms the information, thus completing the package handover.

[0003] However, the parties involved in this type of package handover may complete a fake handover by sending a QR code image to each other without ever meeting in person. This results in a discrepancy between the actual logistics service received by the user and the real logistics information notification. Furthermore, the back-end logistics system cannot effectively monitor delivery time based on the fake handover data, thus directly or indirectly affecting the user experience of the logistics service. Summary of the Invention

[0004] In view of this, embodiments of the present invention provide a waybill information update method and apparatus. The method utilizes a Bluetooth base station located at a logistics station to determine a first distance between a first waybill processing terminal and a second waybill processing terminal and the logistics station. Based on the first distance, it determines whether the first and second waybill processing terminals have reached the logistics station. If the first and second waybill processing terminals have reached the logistics station, it determines whether the first and second waybill processing terminals are matched based on pre-configured terminal information. If the first and second waybill processing terminals are matched, they are instructed to transmit waybill data to update the waybill information. This ensures that the first and second waybill processing terminals can only transmit waybill data within a preset range of the logistics station, avoiding the handover of waybill tasks outside the preset range. This allows the back-end logistics system to effectively monitor delivery time based on waybill information, thereby guaranteeing the user experience of the logistics service.

[0005] To achieve the above objectives, according to one aspect of the present invention, a method for updating waybill information is provided.

[0006] An embodiment of the present invention provides a waybill information update method, comprising: determining a first distance between a first waybill processing terminal and a second waybill processing terminal and the logistics station using a Bluetooth base station installed at the logistics station; determining whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station based on the first distance; if the first waybill processing terminal and the second waybill processing terminal have reached the logistics station, determining whether the first waybill processing terminal and the second waybill processing terminal are matched based on pre-configured terminal information; if the first waybill processing terminal and the second waybill processing terminal are matched, instructing the first waybill processing terminal and the second waybill processing terminal to transmit waybill data to update the waybill information.

[0007] Optionally, determining the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station using a Bluetooth base station installed at the logistics station includes: sending a broadcast data packet using the Bluetooth base station; receiving distance information fed back by the first waybill processing terminal and the second waybill processing terminal after receiving the broadcast data packet; and determining the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station based on the distance information.

[0008] Optionally, the pre-configured terminal information is configured in the Bluetooth base station. Determining whether the first waybill processing terminal and the second waybill processing terminal match based on the pre-configured terminal information includes: obtaining the pre-configured terminal information from the configuration library of the Bluetooth base station; determining the terminal identifiers of the first waybill processing terminal and the second waybill processing terminal; and determining whether the first waybill processing terminal and the second waybill processing terminal match based on the pre-configured terminal information and the terminal identifiers.

[0009] Optionally, instructing the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission includes: determining whether a second distance between the first waybill processing terminal and the second waybill processing terminal is less than a second preset threshold; when the second distance is less than the second preset threshold, sending a waybill data transmission instruction to the first waybill processing terminal and the second waybill processing terminal to enable the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission.

[0010] Optionally, sending a waybill data transmission instruction to the first waybill processing terminal and the second waybill processing terminal to enable the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission includes: sending a data transmission instruction to the first waybill processing terminal and sending a data reception instruction to the second waybill processing terminal, so that the first waybill processing terminal sends waybill data to the second waybill processing terminal in response to the data transmission instruction, and the second waybill processing terminal receives the waybill data in response to the data reception instruction, thereby completing the waybill data transmission.

[0011] Optionally, the method provided by the present invention further includes: receiving the waybill data transmission results fed back by the first waybill processing terminal and the second waybill processing terminal; and synchronizing the waybill data transmission results to the logistics system to realize the updating of waybill information in the logistics system.

[0012] To achieve the above objectives, according to another aspect of the present invention, a waybill information updating device is provided.

[0013] An embodiment of the present invention provides a waybill information updating device, comprising:

[0014] The distance calculation module is used to determine the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station using a Bluetooth base station set up at the logistics station; and to determine whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station based on the first distance.

[0015] The terminal matching module is used to determine whether the first waybill processing terminal and the second waybill processing terminal are matched based on pre-configured terminal information when the first waybill processing terminal and the second waybill processing terminal arrive at the logistics station.

[0016] The data transmission module is used to instruct the first waybill processing terminal and the second waybill processing terminal to transmit waybill data when the first waybill processing terminal and the second waybill processing terminal are matched, so as to update the waybill information.

[0017] To achieve the above objectives, according to another aspect of the present invention, a waybill information update system is provided.

[0018] An embodiment of the present invention provides a waybill information update system, comprising: the waybill information update device as described in claim 7, a first waybill processing terminal, and a second waybill processing terminal, wherein...

[0019] The waybill information update device is used to determine a first distance between a first waybill processing terminal and a second waybill processing terminal and the logistics station using a Bluetooth base station installed at the logistics station; determine whether the first waybill processing terminal and the second waybill processing terminal have arrived at the logistics station based on the first distance; if the first waybill processing terminal and the second waybill processing terminal have arrived at the logistics station, determine whether the first waybill processing terminal and the second waybill processing terminal are matched based on pre-configured terminal information; if the first waybill processing terminal and the second waybill processing terminal are matched, instruct the first waybill processing terminal and the second waybill processing terminal to transmit waybill data to update the waybill information.

[0020] To achieve the above objectives, according to another aspect of the present invention, an electronic device for updating waybill information is provided.

[0021] An electronic device for updating waybill information according to an embodiment of the present invention includes: one or more processors; and 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 a waybill information updating method according to an embodiment of the present invention.

[0022] To achieve the above objectives, according to another aspect of the present invention, a computer-readable storage medium is provided.

[0023] An embodiment of the present invention provides a computer-readable storage medium having a computer program stored thereon, wherein the program, when executed by a processor, implements a waybill information update method according to an embodiment of the present invention.

[0024] One embodiment of the above invention has the following advantages or beneficial effects: A first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station is determined using a Bluetooth base station installed at the logistics station; based on the first distance, it is determined whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station; if the first waybill processing terminal and the second waybill processing terminal have reached the logistics station, it is determined whether the first waybill processing terminal and the second waybill processing terminal are matched according to pre-configured terminal information; if the first waybill processing terminal and the second waybill processing terminal are matched, they are instructed to transmit waybill data to update the waybill information. This ensures that the first waybill processing terminal and the second waybill processing terminal can only transmit waybill data within a preset range of the logistics station, avoiding the handover of waybill tasks outside the preset range. This allows the back-end logistics system to effectively monitor delivery time based on waybill information, thereby guaranteeing the user experience of the logistics service.

[0025] The further effects of the aforementioned unconventional alternative methods will be explained below in conjunction with specific implementation methods. Attached Figure Description

[0026] The accompanying drawings are provided to better understand the invention and are not intended to unduly limit the scope of the invention. Wherein:

[0027] Figure 1 This is a schematic diagram illustrating the main steps of a waybill information update method according to an embodiment of the present invention;

[0028] Figure 2 This is a schematic diagram of a waybill task handover according to an embodiment of the present invention;

[0029] Figure 3 This is a schematic diagram of a waybill task handover according to an embodiment of the present invention;

[0030] Figure 4 This is a schematic diagram illustrating the main steps of a waybill information update method according to an embodiment of the present invention;

[0031] Figure 5 This is a schematic diagram of the main modules of a waybill information updating device according to an embodiment of the present invention;

[0032] Figure 6 This is a schematic diagram of the main modules of a waybill information update system according to an embodiment of the present invention;

[0033] Figure 7 This is an exemplary system architecture diagram in which embodiments of the present invention can be applied;

[0034] Figure 8 This is a schematic diagram of the structure of a computer system suitable for implementing terminal devices or servers of the present invention. Detailed Implementation

[0035] The following description, in conjunction with the accompanying drawings, illustrates exemplary embodiments of the present invention, including various details to aid understanding. These details should be considered merely exemplary. Therefore, those skilled in the art will recognize that various changes and modifications can be made to the embodiments described herein without departing from the scope and spirit of the invention. Similarly, for clarity and brevity, descriptions of well-known functions and structures are omitted in the following description.

[0036] It should be noted that the collection, gathering, updating, analysis, processing, use, transmission, and storage of user personal information involved in this disclosed technical solution all comply with relevant laws and regulations, are used for legitimate purposes, and do not violate public order and good morals. Necessary measures are taken to prevent unauthorized access to user personal information data and to safeguard user personal information security, network security, and national security.

[0037] It should be noted that, unless otherwise specified, the embodiments of the present invention and the technical features thereof can be combined with each other.

[0038] Figure 1 This is a schematic diagram illustrating the main steps of the waybill information update method according to an embodiment of the present invention.

[0039] like Figure 1 As shown, the waybill information update method of this invention mainly includes the following steps:

[0040] Step S101: Use the Bluetooth base station set up at the logistics station to determine the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station.

[0041] This invention uses the handover of waybill tasks at logistics stations (such as logistics business stations, logistics distribution stations, and logistics transfer points) as an example to elaborate on the waybill data update method of this invention. The execution subject of the waybill information update method of this invention is a waybill task handover system for waybill task handover, which is an application system based on a Bluetooth base station.

[0042] The parties involved in the handover of waybill tasks can be the pickup clerk and the transferor, the dispatcher and the transferor, or the transferor and the warehouse keeper. The first waybill processing terminal (hereinafter referred to as the first terminal) can be used by any one of the pickup clerk, dispatcher, transferor, or warehouse keeper to conduct waybill task handover work. Correspondingly, the users of the second waybill processing terminal (hereinafter referred to as the second terminal) correspond to the users of the first terminal. For example, if the user of the first terminal is a pickup clerk, then the user of the second terminal is a transferor; if the user of the first terminal is a transferor, then the user of the second terminal is a pickup clerk, dispatcher, or warehouse keeper.

[0043] Generally, the handover of waybills between pickup clerks and transfer clerks, and between delivery clerks and transfer clerks, takes place at the transfer point. The handover of waybills between transfer clerks and warehouse staff takes place at the distribution center or sales station. Figure 2As shown, but not limited to the above situations. Waybill task handover refers to one party sending waybill information to another party and handing over the corresponding waybill package to the other party, and the other party confirming receipt of the waybill package based on the waybill information. For example, the pickup clerk sends the collected waybill information to the transfer clerk and hands over the corresponding waybill package to the transfer clerk.

[0044] Figure 3 This diagram illustrates the handover of waybills at a transfer point. To standardize the handover location, for example, by designating pickup clerk A (or delivery clerk D) and transfer clerk A1 to hand over waybills at transfer point B, a Bluetooth base station is set up at transfer point B. The Bluetooth base station determines the distance between the first terminal (corresponding to pickup clerk A (or delivery clerk D)) and transfer point B, as well as the distance between the second terminal (corresponding to transfer clerk A1) and transfer point B. Based on the calculated distances, it is determined whether the first and second terminals are within the coverage area of ​​the Bluetooth base station at transfer point B. Once both the pickup clerk (or delivery clerk D) and the transfer clerk are within the coverage area of ​​the Bluetooth base station, the waybill handover begins. Figure 3 The circle in the diagram illustrates the coverage area of ​​the Bluetooth base station. The coverage area of ​​the Bluetooth base station can be set according to actual needs, and can be set to a radius of 50 meters centered on the Bluetooth base station. Understandably, at smaller connection points (usually smaller sites), a smaller radius can be set, such as within 10 meters; at larger distribution centers, sales stations, or other larger logistics sites, a larger radius can be set, such as 20 meters, 30 meters, or 40 meters.

[0045] The Bluetooth base station in this embodiment of the invention can be a Bluetooth beacon-based base station.

[0046] To determine whether the first terminal and the second terminal have entered the logistics station, i.e., whether they have entered the coverage area of ​​the Bluetooth base station, in one embodiment of the present invention, the step of using the Bluetooth base station set up at the logistics station to determine the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station includes: using the Bluetooth base station to send a broadcast data packet; receiving distance information fed back by the first waybill processing terminal and the second waybill processing terminal after receiving the broadcast data packet; and determining the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station based on the distance information.

[0047] Broadcast data packets are sent via a Bluetooth base station. The first and second terminals receive the broadcast data packets through their respective applications corresponding to the Bluetooth base station. They parse the received data packets to obtain the base station identifier and the received signal strength indicator value. Based on the base station identifier, the logistics station corresponding to the Bluetooth base station can be identified. Based on the received signal strength indicator value, the distance between the terminals and the logistics station can be determined. Finally, the distance between the terminals and the logistics station is sent to the application system of the Bluetooth base station, namely the waybill task handover system (hereinafter referred to as the handover system). The handover system determines whether the terminals have arrived at the logistics station based on the received distances between the first and second terminals and the logistics station.

[0048] Step S102: Based on the first distance, determine whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station.

[0049] Based on the coverage area configured by the Bluetooth base station and the distance between the first terminal and the second terminal and the logistics station, it is determined whether both the first terminal and the second terminal have reached the logistics station.

[0050] Step S103: When the first waybill processing terminal and the second waybill processing terminal arrive at the logistics station, determine whether the first waybill processing terminal and the second waybill processing terminal are matched according to the pre-configured terminal information.

[0051] After confirming that the first terminal and the second terminal have entered the logistics station, the terminal information configured in the Bluetooth base station configuration library is used to verify their identity to determine whether the handover personnel corresponding to the first terminal and the second terminal are the handover personnel belonging to the logistics station, and to verify whether the two parties are the same handover parties corresponding to the same handover task.

[0052] To verify the identity of the personnel handling the handover, in one embodiment of the present invention, the pre-configured terminal information is configured in the Bluetooth base station. The step of determining whether the first waybill processing terminal and the second waybill processing terminal match based on the pre-configured terminal information includes: obtaining the pre-configured terminal information from the configuration library of the Bluetooth base station; determining the terminal identifiers of the first waybill processing terminal and the second waybill processing terminal; and determining whether the first waybill processing terminal and the second waybill processing terminal match based on the pre-configured terminal information and the terminal identifiers.

[0053] The Bluetooth base station is configured with information on the personnel involved in the handover at the logistics station, such as pick-up operators, pickup operators, and delivery operators, and the corresponding relationships between these personnel are also configured. Generally, one pick-up operator coordinates with multiple pickup operators and / or delivery operators. The configuration information can be set so that pick-up operator C corresponds to pickup operators C1, C2, and C3, and delivery operators C4 and C5. It is understood that the pickup operator and the delivery operator can be the same person; that is, one person in the handover process has two roles: pickup operator and delivery operator.

[0054] Obtain the pre-configured terminal information in the Bluetooth base station and determine the terminal identifiers corresponding to the first terminal and the second terminal. Based on the configuration information and terminal identifiers, verify whether the first terminal and the second terminal belong to the logistics station, that is, whether the two people holding the terminal are the handover personnel belonging to the logistics station. Then determine whether the first terminal and the second terminal are two terminals corresponding to the same handover task, that is, whether the two people holding the terminal are the two parties to the same handover task.

[0055] Step S104: When the first waybill processing terminal and the second waybill processing terminal are matched, instruct the first waybill processing terminal and the second waybill processing terminal to transmit waybill data to update the waybill information.

[0056] After verifying the identities of both parties involved in the handover, in order to ensure the safety of the waybill items and clarify the handover responsibilities, the two parties need to conduct the handover face-to-face. Therefore, in one embodiment of the present invention, instructing the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission includes: determining whether a second distance between the first waybill processing terminal and the second waybill processing terminal is less than a second preset threshold; when the second distance is less than the second preset threshold, sending a waybill data transmission instruction to the first waybill processing terminal and the second waybill processing terminal to enable the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission.

[0057] By utilizing the positioning function of the Bluetooth base station, the distance between the first and second terminals is determined to be within a preset threshold, thus confirming whether the handover is currently in a face-to-face situation as stipulated by business rules. The purpose of requiring face-to-face handover is not only to ensure data exchange at a designated location, but also to ensure the quantity and condition of the items on the waybill, and to prevent loss. Once it is confirmed that the parties are face-to-face, a data transmission instruction, i.e., a handover instruction, is sent to both the first and second terminals to enable data exchange and item inventory and verification.

[0058] To facilitate data handover between the two parties, in one embodiment of the present invention, sending a waybill data transmission instruction to the first waybill processing terminal and the second waybill processing terminal to enable them to transmit waybill data includes: sending a data transmission instruction to the first waybill processing terminal and a data reception instruction to the second waybill processing terminal, so that the first waybill processing terminal sends waybill data to the second waybill processing terminal in response to the data transmission instruction, and the second waybill processing terminal receives the waybill data in response to the data reception instruction, thereby completing the waybill data transmission.

[0059] The first terminal and the second terminal must first establish a data connection, based on which waybill data is transmitted. In this embodiment of the invention, the data connection between the first terminal and the second terminal can be established via a mobile network or a WiFi network, or it can be established via a Bluetooth connection established by the Bluetooth modules mounted on both terminals. The advantage of using a Bluetooth connection is that waybill data transmission is unaffected even in situations with poor network signal at the logistics station, thus maintaining the efficiency of waybill task handover.

[0060] During the handover of waybills, the handover system sends a data transmission instruction to both the first and second terminals. This instruction indicates the identifier of the waybill task to be handed over. In response to the instruction, the first terminal sends the waybill data corresponding to the task identifier to the second terminal. The second terminal then receives the waybill data from the first terminal, also based on the task identifier. The second terminal then checks the waybill number under the received task, verifies the items provided by the other party, and confirms the handover of the waybill task.

[0061] In one embodiment of the present invention, in response to the data transmission instruction, the first terminal sends a corresponding waybill task identification code, such as a QR code, to the second terminal according to the waybill task identifier, so that the second terminal can obtain waybill data by scanning and identifying the waybill task identification code.

[0062] While the second terminal confirms the handover of the waybill task, it feeds back the handover result to the handover system. After receiving the confirmation of the waybill task handover from the second terminal, the first terminal also feeds back the handover result of the waybill task to the handover system.

[0063] In one embodiment of the present invention, the method provided by the present invention further includes: receiving the waybill data transmission results fed back by the first waybill processing terminal and the second waybill processing terminal; and synchronizing the waybill data transmission results to the logistics system to realize the updating of waybill information in the logistics system.

[0064] The handover system sends the handover results received from the first and second terminals to the logistics system. The logistics system determines the waybill task to be handed over based on the received handover results and updates the logistics information of the waybill corresponding to the waybill task, thereby realizing the update of the waybill logistics information.

[0065] The following explanation will further illustrate the method of updating waybill information, using the waybill task handover at a logistics station as an example. Figure 4 This is a schematic diagram illustrating the main steps of the waybill information update method according to an embodiment of the present invention.

[0066] like Figure 4 As shown, the waybill information update method of this invention mainly includes the following steps:

[0067] Step S401: Use the Bluetooth base station of the physical site to send broadcast data packets.

[0068] Step S402: Use broadcast data packets to determine whether the first waybill processing terminal and the second waybill processing terminal have entered the logistics station. If yes, proceed to step S403; if no, proceed to step S401.

[0069] Step S403: Verify the identity of the first and second waybill processing terminals.

[0070] Step S404: Determine that the first and second waybill processing terminals are the terminals corresponding to the two parties in the handover.

[0071] Step S405: Determine whether the distance between the first and second waybill processing terminals is less than the second preset threshold. If yes, proceed to step S406; otherwise, proceed to step S405.

[0072] Step S406: Send a waybill data transmission instruction to the first and second waybill processing terminals so that the first and second waybill processing terminals can transmit waybill data.

[0073] Step S407: Obtain the data transmission result of the waybill.

[0074] Step S408: Synchronize the waybill data transmission results with the logistics system.

[0075] According to the waybill information update method of this embodiment, a first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station is determined by using a Bluetooth base station set up at the logistics station. Based on the first distance, it is determined whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station. If the first waybill processing terminal and the second waybill processing terminal have reached the logistics station, it is determined whether the first waybill processing terminal and the second waybill processing terminal are matched according to pre-configured terminal information. If the first waybill processing terminal and the second waybill processing terminal are matched, they are instructed to transmit waybill data to update the waybill information. This ensures that the first waybill processing terminal and the second waybill processing terminal can only transmit waybill data within a preset range of the logistics station, avoiding the handover of waybill tasks outside the preset range. This allows the back-end logistics system to effectively monitor delivery time based on waybill information, thereby ensuring a better user experience for logistics services.

[0076] Figure 5 This is a schematic diagram of the main modules of the waybill information update device according to an embodiment of the present invention.

[0077] like Figure 5 As shown, the waybill information updating device 500 of this embodiment includes:

[0078] The distance calculation module 501 is used to determine the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station using a Bluetooth base station set up at the logistics station; and to determine whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station based on the first distance.

[0079] The terminal matching module 502 is used to determine whether the first waybill processing terminal and the second waybill processing terminal are matched based on pre-configured terminal information when the first waybill processing terminal and the second waybill processing terminal arrive at the logistics station.

[0080] The data transmission module 503 is used to instruct the first waybill processing terminal and the second waybill processing terminal to transmit waybill data when the first waybill processing terminal and the second waybill processing terminal are matched, so as to update the waybill information.

[0081] In one embodiment of the present invention, the distance calculation module 501 is further configured to send a broadcast data packet using the Bluetooth base station; receive distance information fed back by the first waybill processing terminal and the second waybill processing terminal after receiving the broadcast data packet; and determine a first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station based on the distance information.

[0082] In one embodiment of the present invention, the terminal matching module 502 is further configured to obtain the pre-configured terminal information from the configuration library of the Bluetooth base station; determine the terminal identifiers of the first waybill processing terminal and the second waybill processing terminal; and determine whether the first waybill processing terminal and the second waybill processing terminal are matched according to the pre-configured terminal information and the terminal identifiers.

[0083] In one embodiment of the present invention, the data transmission module 503 is further configured to determine whether the second distance between the first waybill processing terminal and the second waybill processing terminal is less than a second preset threshold; when the second distance is less than the second preset threshold, a waybill data transmission instruction is sent to the first waybill processing terminal and the second waybill processing terminal to enable the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission.

[0084] In one embodiment of the present invention, the data transmission module 503 is further configured to send a data sending instruction to the first waybill processing terminal and a data receiving instruction to the second waybill processing terminal, so that the first waybill processing terminal sends waybill data to the second waybill processing terminal in response to the data sending instruction, and the second waybill processing terminal receives the waybill data in response to the data receiving instruction, so as to complete the waybill data transmission.

[0085] In one embodiment of the present invention, the data transmission module 503 is further configured to receive the data transmission results of the waybill from the first waybill processing terminal and the second waybill processing terminal; and synchronize the data transmission results of the waybill to the logistics system to update the waybill information in the logistics system.

[0086] According to the waybill information update device of the present invention, a first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station is determined by using a Bluetooth base station installed at the logistics station; based on the first distance, it is determined whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station; if the first waybill processing terminal and the second waybill processing terminal have reached the logistics station, it is determined whether the first waybill processing terminal and the second waybill processing terminal are matched according to pre-configured terminal information; if the first waybill processing terminal and the second waybill processing terminal are matched, the first waybill processing terminal and the second waybill processing terminal are instructed to transmit waybill data to update the waybill information. This ensures that the first waybill processing terminal and the second waybill processing terminal can only transmit waybill data within a preset range of the logistics station, avoiding the handover of waybill tasks outside the preset range. This allows the back-end logistics system to effectively monitor delivery time based on waybill information, thereby ensuring the user experience of the logistics service.

[0087] Figure 6 This is a schematic diagram of the main modules of the waybill information update system according to an embodiment of the present invention.

[0088] like Figure 6 As shown, the waybill information update system 600 of this embodiment includes: a waybill information update device 500, a first waybill processing terminal 601, and a second waybill processing terminal 602, wherein,

[0089] The waybill information update device 500 is used to determine a first distance between the first waybill processing terminal 601 and the second waybill processing terminal 602 and the logistics station using a Bluetooth base station installed at the logistics station; based on the first distance, it determines whether the first waybill processing terminal 601 and the second waybill processing terminal 602 have arrived at the logistics station; if the first waybill processing terminal 601 and the second waybill processing terminal 602 have arrived at the logistics station, it determines whether the first waybill processing terminal 601 and the second waybill processing terminal 602 are matched based on pre-configured terminal information; if the first waybill processing terminal 601 and the second waybill processing terminal 602 are matched, it instructs the first waybill processing terminal 601 and the second waybill processing terminal 602 to transmit waybill data to update the waybill information.

[0090] In one embodiment of the present invention, the waybill information update device 500 is further configured to send a broadcast data packet using the Bluetooth base station; receive distance information fed back by the first waybill processing terminal 601 and the second waybill processing terminal 602 after receiving the broadcast data packet; and determine a first distance between the first waybill processing terminal 601 and the second waybill processing terminal 602 and the logistics station based on the distance information.

[0091] In one embodiment of the present invention, the waybill information update device 500 is further configured to obtain the pre-configured terminal information from the configuration library of the Bluetooth base station; determine the terminal identifiers of the first waybill processing terminal 601 and the second waybill processing terminal 602; and determine whether the first waybill processing terminal 601 and the second waybill processing terminal 602 match based on the pre-configured terminal information and the terminal identifiers.

[0092] In one embodiment of the present invention, the waybill information updating device 500 is further configured to determine whether the second distance between the first waybill processing terminal 601 and the second waybill processing terminal 602 is less than a second preset threshold; when the second distance is less than the second preset threshold, a waybill data transmission instruction is sent to the first waybill processing terminal 601 and the second waybill processing terminal 602 to enable the first waybill processing terminal 601 and the second waybill processing terminal 602 to perform waybill data transmission.

[0093] In one embodiment of the present invention, the waybill information updating device 500 is further configured to send a data sending instruction to the first waybill processing terminal 601 and a data receiving instruction to the second waybill processing terminal 602, so that the first waybill processing terminal 601 sends waybill data to the second waybill processing terminal 602 in response to the data sending instruction, and the second waybill processing terminal 602 receives the waybill data in response to the data receiving instruction, so as to complete the waybill data transmission.

[0094] In one embodiment of the present invention, the waybill information updating device 500 is further configured to receive waybill data transmission results fed back by the first waybill processing terminal 601 and the second waybill processing terminal 602; and synchronize the waybill data transmission results to the logistics system to realize the updating of waybill information in the logistics system.

[0095] According to the waybill information update system of this invention, a first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station is determined by using a Bluetooth base station set up at the logistics station. Based on the first distance, it is determined whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station. If the first waybill processing terminal and the second waybill processing terminal have reached the logistics station, it is determined whether the first waybill processing terminal and the second waybill processing terminal are matched according to pre-configured terminal information. If the first waybill processing terminal and the second waybill processing terminal are matched, they are instructed to transmit waybill data to update the waybill information. This ensures that the first waybill processing terminal and the second waybill processing terminal can only transmit waybill data within a preset range of the logistics station, avoiding the handover of waybill tasks outside the preset range. This allows the back-end logistics system to effectively monitor delivery time based on waybill information, thereby ensuring a better user experience for logistics services.

[0096] Figure 7 An exemplary system architecture 700 is shown that can be applied to the waybill information update method or waybill information update apparatus of the present invention.

[0097] like Figure 7 As shown, the system architecture 700 may include waybill processing terminal devices 701, 702, and 703, networks 704 and 706, a server 705, and a logistics system 707. Networks 704 and 706 serve as media for providing communication links between the waybill processing terminal devices 701, 702, and 703, the server 705, and the logistics system 707. Networks 704 and 706 may include various connection types, such as wired or wireless communication links, or fiber optic cables, etc.

[0098] The waybill processing terminal devices 701, 702, and 703 used by the waybill task handover personnel interact with the logistics system 707 via networks 704 and 706 to receive or send messages. The electronic device (server) 705, used for waybill information updates, obtains distance information from the waybill processing terminal devices 701, 702, and 703, executes waybill data transmission based on the distance information, and synchronizes the waybill data transmission results to the logistics system 707. The logistics system 707 receives the waybill data transmission results sent by the electronic device (server) 705 for waybill information updates and updates the waybill information accordingly.

[0099] Server 705 can be a server that provides various services, such as a backend management server that supports the determination of waybill data transmission based on the distance information obtained from waybill processing terminal devices 701, 702, and 703. The backend management server can analyze and process the received distance information and other data, and synchronize the waybill data transmission results to the logistics system 707 based on the processing results.

[0100] It should be noted that the waybill information update method provided in this embodiment of the invention is generally executed by server 705, and correspondingly, the waybill information update device is generally set in server 705.

[0101] It should be understood that Figure 7 The number of terminal devices, networks, and servers shown is merely illustrative. Depending on implementation needs, any number of terminal devices, networks, and servers can be included.

[0102] The following is for reference. Figure 8 It shows a schematic diagram of the structure of a computer system 800 suitable for implementing a terminal device of the present invention. Figure 8 The terminal device shown is merely an example and should not impose any limitations on the functionality and scope of use of the embodiments of the present invention.

[0103] like Figure 8 As shown, the computer system 800 includes a central processing unit (CPU) 801, which can perform various appropriate actions and processes based on programs stored in read-only memory (ROM) 802 or programs loaded from storage section 808 into random access memory (RAM) 803. The RAM 803 also stores various programs and data required for the operation of the system 800. The CPU 801, ROM 802, and RAM 803 are interconnected via a bus 804. An input / output (I / O) interface 805 is also connected to the bus 804.

[0104] The following components are connected to I / O interface 805: an input section 806 including a keyboard, mouse, etc.; an output section 807 including a cathode ray tube (CRT), liquid crystal display (LCD), etc., and speakers, etc.; a storage section 808 including a hard disk, etc.; and a communication section 809 including a network interface card such as a LAN card, modem, etc. The communication section 809 performs communication processing via a network such as the Internet. A drive 810 is also connected to I / O interface 805 as needed. A removable medium 811, such as a disk, optical disk, magneto-optical disk, semiconductor memory, etc., is installed on drive 810 as needed so that computer programs read from it can be installed into storage section 808 as needed.

[0105] In particular, according to the embodiments disclosed in this invention, the processes described above with reference to the flowcharts can be implemented as computer software programs. For example, embodiments disclosed in this invention include a computer program product comprising a computer program carried on a computer-readable medium, the computer program containing program code for performing the methods shown in the flowcharts. In such embodiments, the computer program can be downloaded and installed from a network via communication section 809, and / or installed from removable medium 811. When the computer program is executed by central processing unit (CPU) 801, it performs the functions defined above in the system of this invention.

[0106] It should be noted that the computer-readable medium shown in this invention can be a computer-readable signal medium or a computer-readable storage medium, or any combination thereof. A computer-readable storage medium can be, for example,—but not limited to—an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination thereof. More specific examples of a computer-readable storage medium may include, but are not limited to: an electrical connection having one or more wires, a portable computer disk, a hard disk, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fiber, portable compact disk read-only memory (CD-ROM), optical storage device, magnetic storage device, or any suitable combination thereof. In this invention, a computer-readable storage medium can be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system, apparatus, or device. In this invention, a computer-readable signal medium can include a data signal propagated in baseband or as part of a carrier wave, carrying computer-readable program code. Such propagated data signals can take various forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination thereof. Computer-readable signal media can also be any computer-readable medium other than computer-readable storage media, which can send, propagate, or transmit a program for use by or in connection with an instruction execution system, apparatus, or device. The program code contained on the computer-readable medium can be transmitted using any suitable medium, including but not limited to: wireless, wire, optical fiber, RF, etc., or any suitable combination thereof.

[0107] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of the present invention. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions indicated in the blocks may occur in a different order than those indicated in the drawings. For example, two consecutively indicated blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in a block diagram or flowchart, and combinations of blocks in a block diagram or flowchart, may be implemented using a dedicated hardware-based system that performs the specified function or operation, or using a combination of dedicated hardware and computer instructions.

[0108] The modules described in the embodiments of the present invention can be implemented in software or hardware. The described modules can also be housed in a processor; for example, a processor can be described as including a distance calculation module, a terminal matching module, and a data transmission module. The names of these modules do not necessarily limit the module itself; for example, the data transmission module can also be described as "a module that instructs the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission."

[0109] In another aspect, the present invention also provides a computer-readable medium, which may be included in the device described in the above embodiments; or it may exist independently and not assembled into the device. The computer-readable medium carries one or more programs that, when executed by the device, cause the device to: determine a first distance between a first waybill processing terminal and a second waybill processing terminal and the logistics station using a Bluetooth base station located at the logistics station; determine, based on the first distance, whether the first waybill processing terminal and the second waybill processing terminal have arrived at the logistics station; if the first waybill processing terminal and the second waybill processing terminal have arrived at the logistics station, determine, based on pre-configured terminal information, whether the first waybill processing terminal and the second waybill processing terminal are matched; if the first waybill processing terminal and the second waybill processing terminal are matched, instruct the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission to update the waybill information.

[0110] According to the technical solution of this invention, a first distance between a first waybill processing terminal and a second waybill processing terminal and the logistics station is determined by utilizing a Bluetooth base station installed at the logistics station. Based on the first distance, it is determined whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station. If the first waybill processing terminal and the second waybill processing terminal have reached the logistics station, it is determined whether the first waybill processing terminal and the second waybill processing terminal are matched according to pre-configured terminal information. If the first waybill processing terminal and the second waybill processing terminal are matched, they are instructed to transmit waybill data to update the waybill information. This ensures that the first waybill processing terminal and the second waybill processing terminal can only transmit waybill data within a preset range of the logistics station, avoiding the handover of waybill tasks outside the preset range. This allows the back-end logistics system to effectively monitor delivery time based on waybill information, thereby guaranteeing the user experience of the logistics service.

[0111] The specific embodiments described above do not constitute a limitation on the scope of protection of this invention. Those skilled in the art should understand that various modifications, combinations, sub-combinations, and substitutions can occur depending on design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this invention should be included within the scope of protection of this invention.

Claims

1. A method for updating waybill information, characterized in that, include: The first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station is determined by using a Bluetooth base station set up at the logistics station; Based on the first distance, determine whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station; When the first waybill processing terminal and the second waybill processing terminal arrive at the logistics station, it is determined whether the first waybill processing terminal and the second waybill processing terminal are matched according to the pre-configured terminal information. When the first waybill processing terminal and the second waybill processing terminal are matched, the first waybill processing terminal and the second waybill processing terminal are instructed to transmit waybill data in order to update the waybill information; The step of determining the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station using a Bluetooth base station installed at the logistics station includes: sending a broadcast data packet using the Bluetooth base station; receiving distance information fed back by the first waybill processing terminal and the second waybill processing terminal after receiving the broadcast data packet; and determining the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station based on the distance information. The step of instructing the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission includes: determining whether a second distance between the first waybill processing terminal and the second waybill processing terminal is less than a second preset threshold; and when the second distance is less than the second preset threshold, sending a waybill data transmission instruction to the first waybill processing terminal and the second waybill processing terminal to enable the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission.

2. The method according to claim 1, characterized in that, The pre-configured terminal information is configured in the Bluetooth base station. Determining whether the first waybill processing terminal and the second waybill processing terminal match based on the pre-configured terminal information includes: Obtain the pre-configured terminal information from the configuration library of the Bluetooth base station; Determine the terminal identifiers of the first waybill processing terminal and the second waybill processing terminal; Based on the pre-configured terminal information and the terminal identifier, it is determined whether the first waybill processing terminal and the second waybill processing terminal are matched.

3. The method according to claim 1, characterized in that, Sending waybill data transmission instructions to the first waybill processing terminal and the second waybill processing terminal to enable the first waybill processing terminal and the second waybill processing terminal to perform waybill data transmission includes: A data sending instruction is sent to the first waybill processing terminal, and a data receiving instruction is sent to the second waybill processing terminal, so that the first waybill processing terminal sends waybill data to the second waybill processing terminal in response to the data sending instruction, and the second waybill processing terminal receives the waybill data in response to the data receiving instruction, thereby completing the waybill data transmission.

4. The method according to claim 1, characterized in that, Also includes: Receive the data transmission results of the waybill from the first waybill processing terminal and the second waybill processing terminal; The data transmission results of the waybill are synchronized with the logistics system to update the waybill information in the logistics system.

5. A waybill information updating device, characterized in that, include: The distance calculation module is used to determine the first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station using a Bluetooth base station set up at the logistics station; and to determine whether the first waybill processing terminal and the second waybill processing terminal have reached the logistics station based on the first distance. The terminal matching module is used to determine whether the first waybill processing terminal and the second waybill processing terminal are matched based on pre-configured terminal information when the first waybill processing terminal and the second waybill processing terminal arrive at the logistics station. The data transmission module is used to instruct the first waybill processing terminal and the second waybill processing terminal to transmit waybill data when the first waybill processing terminal and the second waybill processing terminal are matched, so as to update the waybill information. The distance calculation module is further configured to send broadcast data packets using the Bluetooth base station; receive distance information fed back by the first waybill processing terminal and the second waybill processing terminal after receiving the broadcast data packets; and determine a first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station based on the distance information. The data transmission module is further configured to determine whether the second distance between the first waybill processing terminal and the second waybill processing terminal is less than a second preset threshold. When the second distance is less than the second preset threshold, a waybill data transmission instruction is sent to the first waybill processing terminal and the second waybill processing terminal to enable the first waybill processing terminal and the second waybill processing terminal to transmit waybill data.

6. A waybill information update system, characterized in that, include: The waybill information updating device, the first waybill processing terminal, and the second waybill processing terminal as described in claim 5, wherein, The waybill information update device is used to determine a first distance between a first waybill processing terminal and a second waybill processing terminal and the logistics station using a Bluetooth base station installed at the logistics station; determine whether the first waybill processing terminal and the second waybill processing terminal have arrived at the logistics station based on the first distance; if the first waybill processing terminal and the second waybill processing terminal have arrived at the logistics station, determine whether the first waybill processing terminal and the second waybill processing terminal are matched based on pre-configured terminal information; if the first waybill processing terminal and the second waybill processing terminal are matched, instruct the first waybill processing terminal and the second waybill processing terminal to transmit waybill data to update the waybill information. The waybill information update device is further configured to send broadcast data packets using the Bluetooth base station; receive distance information fed back by the first waybill processing terminal and the second waybill processing terminal after receiving the broadcast data packets; and determine a first distance between the first waybill processing terminal and the second waybill processing terminal and the logistics station based on the distance information. The waybill information update device is further configured to determine whether the second distance between the first waybill processing terminal and the second waybill processing terminal is less than a second preset threshold. When the second distance is less than the second preset threshold, a waybill data transmission instruction is sent to the first waybill processing terminal and the second waybill processing terminal to enable the first waybill processing terminal and the second waybill processing terminal to transmit waybill data.

7. An electronic device for updating waybill information, characterized in that, include: One or more processors; 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 as described in any one of claims 1-4.

8. A computer-readable medium having a computer program stored thereon, characterized in that, When the program is executed by the processor, it implements the method as described in any one of claims 1-4.