Wearable intelligent terminal interaction system and method for logistics scanning
By using wearable smart terminals for real-time comparison and voice alarms, the problems of cumbersome operation and untimely information exchange of logistics scanning equipment have been solved, thus improving the efficiency and accuracy of logistics work.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUANGZHOU CONNECTEK IOT TECH CO LTD
- Filing Date
- 2025-12-29
- Publication Date
- 2026-05-01
AI Technical Summary
Existing logistics scanning equipment is cumbersome to operate, inefficient, unable to achieve real-time information exchange and task allocation, increasing the probability of errors, and unable to display the operator's task completion status in real time.
Wearable smart terminals are used to generate task requests based on logistics work type and region, compare scanning information in real time, issue voice alarms for incorrect packages, and generate pending orders, enabling real-time interaction between operators and terminals.
It improves the efficiency and accuracy of logistics operations, reduces operator fatigue and the probability of errors, and enables precise allocation and real-time monitoring of workload.
Smart Images

Figure CN121961382A_ABST
Abstract
Description
A wearable smart terminal interaction system and method for logistics scanning Technical Field
[0001] This invention relates to the field of intelligent logistics technology, and in particular to a wearable intelligent terminal interaction system and method for logistics scanning. Background Technology
[0002] Currently, most logistics scanning operations rely on traditional handheld scanning devices. Operators are constantly picking up and putting down the devices, making the process cumbersome and inefficient. During peak logistics periods, handling a large volume of packages can easily lead to operator fatigue, increasing the probability of errors. Furthermore, traditional scanning devices cannot provide real-time information exchange and task allocation adjustments. When package allocation errors occur, they cannot be handled quickly and effectively, impacting the overall logistics progress. Moreover, existing handheld scanning devices cannot display the real-time status of operators' current logistics tasks, making it difficult for operators to quickly distinguish which tasks are completed and which are not. This invention provides a wearable smart terminal interaction system and method that solves the problems existing in the prior art. Through intelligent interaction, it improves the efficiency and accuracy of logistics operations, thereby enhancing the overall service level of the logistics industry. Summary of the Invention
[0003] To overcome the shortcomings of existing technologies, this invention provides a wearable smart terminal interaction system and method for logistics scanning. The wearable smart terminal generates logistics work requests based on the logistics work type and work area selected by the operator, enabling rapid and accurate allocation of logistics work tasks. Through scanning and comparison, the system updates and displays the operator's current logistics work task completion status in real time. When a package that fails to match is detected, a voice alarm is issued to the operator, indicating that the package does not belong to their assigned logistics work task. A package waiting-to-be-collected order is then generated and notified to the responsible operator for collection. This achieves real-time interaction between the operator and the wearable smart terminal, thereby improving the efficiency of logistics work task processing.
[0004] To achieve the above-mentioned objectives, the present invention adopts the following technical solution: The first aspect of this application provides a wearable smart terminal interaction method for logistics scanning, comprising the following steps: S101, after an operator successfully logs into the wearable logistics smart terminal, the wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area selected by the operator and sends it to the server terminal; S102, the server terminal performs logistics work allocation processing based on the logistics work request and generates a logistics work task list, which is then sent to the wearable logistics smart terminal; S103, the wearable logistics smart terminal generates a scanning... The system scans the operation interface and compares the logistics tasks with the database of the wearable logistics smart terminal. S104: The wearable logistics smart terminal compares the logistics information of the currently scanned package with the logistics task comparison table in the database, and updates the workload completion status in the logistics task comparison table on the scanning operation interface in real time. S105: The server terminal receives the logistics task comparison table and the logistics information of the currently scanned package that failed the comparison from the wearable logistics smart terminal, calls the logistics task quantity database to update the logistics task quantity, and generates a package waiting-to-be-collected order.
[0005] Furthermore, after the operator successfully logs into the wearable logistics smart terminal, the wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area selected by the operator and sends it to the server terminal, including the following steps: The operator enters their user account and password on the wearable logistics smart terminal interface for identity verification to log in to the wearable logistics smart terminal; The operator selects the logistics work type and work area on the wearable logistics smart terminal interface and clicks confirm; The wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area confirmed by the operator; The wearable logistics smart terminal sends the logistics work request to the server terminal.
[0006] Furthermore, the server terminal performs logistics work allocation processing based on logistics work requests and generates a logistics work task list, which is then sent to the wearable logistics smart terminal. This includes the following steps: The server terminal, based on the logistics work type and work area, calls the logistics work task volume database to obtain all logistics work tasks corresponding to the logistics work type and work area; based on the principle of shortest work path, it allocates the unallocated logistics work tasks from all logistics work tasks to the operator to improve the efficiency of logistics work task processing; the server terminal generates a logistics work task list based on the logistics work task allocation results and sends the logistics work task list to the wearable logistics smart terminal.
[0007] Furthermore, the wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list, and saves the logistics task comparison table to the wearable logistics smart terminal's database, including the following steps: The wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list. The scanning operation interface is used by the operator to select and click to confirm the execution of the logistics scanning work or exit the logistics scanning work, and to display the workload completion status in the logistics task comparison table in real time. The logistics task comparison table is used to compare the logistics information obtained by the operator through the scanning of the wearable logistics smart terminal; the logistics task comparison table is saved to the wearable logistics smart terminal's database. If the operator selects and clicks to confirm the execution of the logistics scanning work on the scanning operation interface, the logistics information obtained through the scanning of the wearable logistics smart terminal can be compared with the logistics information in the logistics task comparison table; if the operator selects and clicks to confirm the exit of the logistics scanning work on the scanning operation interface, the logistics information obtained through the scanning of the wearable logistics smart terminal cannot be compared with the logistics information in the logistics task comparison table.
[0008] Furthermore, the wearable logistics smart terminal compares the logistics information of the current package obtained through scanning with the logistics task comparison table in the database, and updates the workload completion status of the logistics task comparison table on the scanning operation interface in real time. The steps include: the operator selects and clicks to confirm the execution of the logistics scanning work on the scanning operation interface; the wearable logistics smart terminal obtains the logistics information on the current package through scanning and compares it with the information in the logistics task comparison table in the database; if the comparison is successful, it is determined that the operator has completed the logistics task of the current package and marks it, and the workload completion status of the logistics task comparison table on the scanning operation interface is updated in real time; if the comparison is unsuccessful, it is determined that the current package does not belong to the logistics task assigned to the operator, and the operator is notified through voice alarm, and the logistics information of the current package with unsuccessful comparison is saved to the wearable logistics smart terminal database.
[0009] Furthermore, the server terminal receives the logistics task comparison table and the current package logistics information that failed the comparison from the wearable logistics smart terminal, and calls the logistics task volume database to update the logistics task volume and generate a package waiting order, including the following steps: The server terminal calls the logistics task volume database to verify the logistics task volume based on the logistics task comparison table of the logistics task type and work area, and updates the logistics task completion status in the logistics task volume database; The server terminal calls the logistics task volume database to search for the current package logistics information that failed the comparison, to obtain which logistics task type and work area the current package logistics belongs to and the corresponding responsible operator information; The server terminal generates a package waiting order based on the logistics task type, work area, and corresponding responsible operator information of the current package logistics, so as to inform the corresponding responsible operator to pick it up.
[0010] The second aspect of this application provides a wearable smart terminal interaction system for logistics scanning, comprising: a wearable logistics smart terminal, used to generate a logistics work request based on the logistics work type and work area selected by the operator and send it to a server terminal; generate a scanning operation interface and a logistics work task comparison table based on the logistics work task list, and save the logistics work task comparison table to the database of the wearable logistics smart terminal; compare the logistics information of the current package obtained by scanning based on the logistics work task comparison table in the database, and update and display the workload completion status in the logistics work task comparison table in real time on the scanning operation interface; send the logistics work task comparison table and the logistics information of the current package that failed the comparison to the server terminal; and a server terminal, used to perform logistics work allocation processing based on the logistics work request, and generate a logistics work task list and send it to the wearable logistics smart terminal; receive the logistics work task comparison table and the logistics information of the current package that failed the comparison sent by the wearable logistics smart terminal, call the logistics work task quantity database to update the logistics work task quantity and generate a package waiting order.
[0011] Furthermore, the server terminal performs logistics work allocation processing based on logistics work requests and generates a logistics work task list, which is then sent to the wearable logistics smart terminal. This includes: the server terminal, based on the logistics work type and work area, calling the logistics work task volume database to obtain all logistics work tasks corresponding to the logistics work type and work area; allocating unassigned logistics work tasks to the operator based on the shortest work path principle to improve logistics work task processing efficiency; and generating a logistics work task list based on the logistics work task allocation results and sending the logistics work task list to the wearable logistics smart terminal.
[0012] Furthermore, the wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list, and saves the logistics task comparison table to the wearable logistics smart terminal's database. This includes: the wearable logistics smart terminal generating a scanning operation interface and a logistics task comparison table based on the logistics task list; the scanning operation interface allowing the operator to select and confirm to execute or exit the logistics scanning task, and displaying the workload completion status in the logistics task comparison table in real time; and the logistics task comparison table used to compare the logistics information scanned by the operator through the wearable logistics smart terminal; the logistics task comparison table is saved to the wearable logistics smart terminal's database. If the operator selects and confirms to execute the logistics scanning task on the scanning operation interface, the logistics information scanned by the wearable logistics smart terminal can be compared with the logistics information in the logistics task comparison table; if the operator selects and confirms to exit the logistics scanning task on the scanning operation interface, the logistics information scanned by the wearable logistics smart terminal cannot be compared with the logistics information in the logistics task comparison table.
[0013] Furthermore, the wearable logistics smart terminal compares the logistics information of the current package obtained through scanning with a logistics task comparison table in the database, and updates the workload completion status of the logistics task comparison table on the scanning operation interface in real time. This includes: when the operator selects and clicks to confirm the execution of the logistics scanning work on the scanning operation interface, the wearable logistics smart terminal obtains the logistics information on the current package through scanning and compares it with the information in the logistics task comparison table in the database; if the comparison is successful, it is determined that the operator has completed the logistics task of the current package and marks it, and the workload completion status of the logistics task comparison table on the scanning operation interface is updated in real time; if the comparison is unsuccessful, it is determined that the current package does not belong to the logistics task assigned to the operator, and the operator is notified through voice alarm, and the logistics information of the current package with unsuccessful comparison is saved to the wearable logistics smart terminal database.
[0014] Furthermore, the server terminal receives the logistics task comparison table and the current package logistics information that failed the comparison from the wearable logistics smart terminal. It then calls the logistics task volume database to update the logistics task volume and generate a package waiting-to-pickup order. This includes: the server terminal, based on the logistics task comparison table for the logistics task type and work area, calls the logistics task volume database to verify the logistics task volume and updates the completion status of the logistics task volume in the database; the server terminal searches the logistics task volume database for the current package logistics information that failed the comparison to determine the current package logistics type, work area, and corresponding responsible operator information; and the server terminal generates a package waiting-to-pickup order based on the current package logistics type, work area, and corresponding responsible operator information to notify the corresponding responsible operator to pick up the package.
[0015] The beneficial effects of this application are as follows: A wearable smart terminal generates a logistics work request based on the logistics work type and work area selected by the operator, enabling rapid and accurate allocation of logistics work tasks. The wearable smart terminal compares the scanned logistics information of the current package with a logistics work task comparison table in the database, updating and displaying the operator's current logistics work task completion status in real time. When a package that fails to match is detected, a voice alarm is issued to the operator indicating that the current package does not belong to their assigned logistics work task, and a package waiting-to-be-collected order is generated to notify the corresponding operator to collect it. This achieves real-time interaction between the operator and the wearable smart terminal, thereby improving the efficiency of logistics work task processing. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 is a schematic diagram of the steps of a wearable smart terminal interaction method for logistics scanning according to the present invention. Detailed Implementation
[0018] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0019] The following specific examples illustrate the implementation of the present invention. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. The present invention can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present invention. It should be noted that, in the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0020] Example 1: A wearable smart terminal interaction method for logistics scanning includes the following steps: S101, after the operator successfully logs into the wearable logistics smart terminal, the wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area selected by the operator and sends it to the server terminal; when logging into the wearable logistics smart terminal, the operator enters a user account and password on the wearable interface of the wearable logistics smart terminal. The wearable logistics smart terminal authenticates the user account and password entered by the operator. After successful authentication, the operator selects the logistics work type and work area on the wearable logistics smart terminal interface. After completing the selection of the logistics work type and work area, the operator clicks "confirm" on the wearable logistics smart terminal interface. The wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area confirmed by the operator and sends the logistics work request to the server terminal. The server terminal can assign corresponding logistics work tasks to the operator based on the received logistics work request.
[0021] After the operator successfully logs into the wearable logistics smart terminal, the wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area selected by the operator and sends it to the server terminal. This includes the following steps: The operator enters their user account and password on the wearable logistics smart terminal interface for authentication to log in; the operator selects the logistics work type and work area on the wearable logistics smart terminal interface and clicks confirm; the wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area confirmed by the operator; and the wearable logistics smart terminal sends the logistics work request to the server terminal.
[0022] For example, logistics work types can be divided into sorting, loading / unloading, and delivery. The work areas for sorting can be divided into sorting area A, sorting area B, sorting area C, etc.; the work areas for loading / unloading can be divided into loading / unloading area A, loading / unloading area B, loading / unloading area C, etc.; and the work areas for delivery can be divided into delivery area A, delivery area B, delivery area C, etc. After successfully logging into the wearable logistics smart terminal, the operator selects the sorting work type and sorting area A on the terminal's interface and clicks confirm. Based on the operator's confirmed sorting work type and sorting area A, the wearable logistics smart terminal generates a logistics work request for sorting area A and sends this request to the server terminal.
[0023] S102. The server terminal processes logistics work allocation based on logistics work requests and generates a logistics work task list, which is then sent to the wearable logistics smart terminal. The server terminal receives the logistics work request from the wearable logistics smart terminal, parses the request to obtain the selected logistics work type and work area. Based on this, the server terminal retrieves all corresponding logistics work tasks from the logistics work task database. Unassigned tasks are allocated to the operator based on the shortest path principle to improve logistics work task processing efficiency. The server terminal generates a logistics work task list based on the allocation results and sends it to the wearable logistics smart terminal. This precise allocation of tasks to each operator avoids uneven task distribution and situations where operators process tasks in multiple work areas, thereby improving overall logistics work processing efficiency.
[0024] The process of assigning logistics tasks based on logistics work requests and generating a logistics task list to the wearable logistics smart terminal includes the following steps: The server terminal, based on the logistics work type and work area, retrieves all logistics work tasks corresponding to that type and area from the logistics task volume database; based on the shortest work path principle, it assigns unassigned logistics work tasks to the operator to improve processing efficiency; and based on the task allocation results, the server terminal generates a logistics task list and sends it to the wearable logistics smart terminal.
[0025] For example, if the logistics work request is for sorting area A, the server terminal parses the request and determines that the operator's work type is sorting, and their work area is sorting area A. Based on this sorting work type and area A, the server terminal retrieves all logistics work tasks corresponding to this sorting work type and area A from the logistics task database. Unassigned tasks are then allocated to the operator based on the shortest path principle, preventing the operator from handling tasks in multiple work areas and thus improving efficiency. The server terminal generates a logistics task list based on this allocation, precisely assigning tasks to each operator in sorting area A to avoid uneven task distribution and further improve overall efficiency. The logistics task list is then sent to the wearable logistics smart terminal.
[0026] S103. The wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list, and saves the logistics task comparison table to the wearable logistics smart terminal's database. The wearable logistics smart terminal receives the logistics task list sent by the server terminal. Operators can intuitively see their assigned logistics tasks based on the logistics task list, including task quantity, task location, task priority, and other information, thereby enabling operators to quickly understand their logistics work content and improve logistics work efficiency. The wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list. The scanning operation interface is used by the operator to select and confirm to execute or exit the logistics scanning work, and to display the workload completion status in the logistics task comparison table in real time. The logistics task comparison table is used by the operator to compare the logistics information obtained by scanning through the wearable logistics smart terminal to determine whether the scanned logistics information is consistent with the logistics information in the logistics task comparison table, and to promptly detect any errors or omissions in logistics package information.
[0027] The wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list, and saves the logistics task comparison table to the wearable logistics smart terminal's database. This includes the following steps: The wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list. The scanning operation interface is used by the operator to select and confirm to execute or exit the logistics scanning work, and to display the workload completion status in the logistics task comparison table in real time. The logistics task comparison table is used to compare the logistics information scanned and obtained by the operator through the wearable logistics smart terminal. The logistics task comparison table is saved to the wearable logistics smart terminal's database. If the operator selects and confirms to execute the logistics scanning work on the scanning operation interface, the logistics information scanned and obtained through the wearable logistics smart terminal can be compared with the logistics information in the logistics task comparison table. If the operator selects and confirms to exit the logistics scanning work on the scanning operation interface, the logistics information scanned and obtained through the wearable logistics smart terminal cannot be compared with the logistics information in the logistics task comparison table.
[0028] For example, when an operator selects and confirms the execution of a logistics scan on the scanning interface, the wearable logistics smart terminal activates its scanning function. The operator uses the smart terminal to scan barcodes or labels on the logistics packages. Only then can the smart terminal compare the scanned logistics information with a logistics task comparison table stored in the database. If the operator selects and confirms to exit the logistics scan on the scanning interface, the logistics information scanned by the smart terminal cannot be compared with the logistics information in the comparison table. By selecting and confirming the execution of the logistics scan on the scanning interface, the smart terminal ensures that the scanned logistics information can be compared with the logistics information in the comparison table, avoiding erroneous comparisons caused by operators scanning without confirmation, thus further improving the accuracy and reliability of the logistics scan. During the comparison process, the smart terminal updates the workload completion status on the scanning interface in real time, allowing the operator to clearly see the number of tasks completed and the number of tasks remaining.
[0029] S104. The wearable logistics smart terminal compares the logistics information of the current package obtained through scanning with the logistics task comparison table in the database, and updates the workload completion status in the logistics task comparison table on the scanning operation interface in real time. Operators scan packages using the wearable logistics smart terminal. The terminal compares this information with the logistics task comparison table in the database. A successful comparison determines that the current package belongs to the operator's assigned logistics task, and the terminal promptly updates the workload completion status in the logistics task comparison table on the scanning operation interface. If the comparison fails, the wearable logistics smart terminal notifies the operator via voice alarm that the current package does not belong to their assigned logistics task, and saves the unsuccessful comparison information of the current package to the wearable logistics smart terminal database.
[0030] The wearable logistics smart terminal compares the logistics information of the current package obtained through scanning with a logistics task comparison table in the database, and updates the workload completion status of the logistics task comparison table on the scanning operation interface in real time. The steps include: the operator selects and clicks to confirm the execution of the logistics scanning work on the scanning operation interface; the wearable logistics smart terminal obtains the logistics information on the current package through scanning and compares it with the information in the logistics task comparison table in the database; if the comparison is successful, it is determined that the operator has completed the logistics task of the current package and marks it, and the workload completion status of the logistics task comparison table on the scanning operation interface is updated in real time; if the comparison is unsuccessful, it is determined that the current package does not belong to the logistics task assigned to the operator, and the operator is notified through voice alarm, and the logistics information of the current package with unsuccessful comparison is saved to the wearable logistics smart terminal database.
[0031] For example, an operator has a total of 100 logistics tasks, of which 55 have been completed and 45 remain uncompleted. The operator scans the current package using a wearable smart logistics terminal to obtain logistics information. The terminal compares this information with a logistics task comparison table in its database. If the comparison is successful, the operator is deemed to have completed the current package's logistics task and marks it with a color. This color marking allows the operator to quickly see which logistics tasks have been completed and which have not. Based on the successful comparison results, the smart logistics terminal updates the workload completion status in the logistics task comparison table on the scanning interface in real time. Specifically, the interface will show 56 completed tasks and 44 uncompleted tasks, with completed tasks marked in color and uncompleted tasks not marked. If the comparison fails, the smart logistics terminal alerts the operator via voice, indicating that the current package does not belong to their assigned logistics task. The terminal then saves the unmatched package's logistics information to its database.
[0032] S105. The server terminal receives the logistics task comparison table and the current package logistics information that failed the comparison from the wearable logistics smart terminal. It then calls the logistics task volume database to update the logistics task volume and generate a package waiting-to-be-collected order. When the operator completes the logistics task, the wearable logistics smart terminal sends the logistics task comparison table and the current package logistics information that failed the comparison to the server terminal. The server terminal receives the logistics task comparison table and the current package logistics information that failed the comparison from the wearable logistics smart terminal. Based on the received logistics task comparison table, the server terminal updates the logistics task volume completion status in the logistics task volume database, achieving precise allocation and management of logistics tasks. The server terminal calls the logistics task volume database to search for the current package logistics information that failed the comparison, obtaining the logistics task type, work area, and corresponding responsible operator information for the current package logistics. It then generates a package waiting-to-be-collected order to notify the corresponding responsible operator to collect the package, achieving precise management and allocation of logistics packages.
[0033] The server terminal receives a logistics task comparison table and unsuccessful current package logistics information sent by the wearable logistics smart terminal. It then calls the logistics task volume database to update the logistics task volume and generate a package waiting-to-pickup order. This process includes the following steps: The server terminal, based on the logistics task comparison table for the logistics task type and work area, calls the logistics task volume database to verify the logistics task volume and update the completion status in the database. The server terminal then searches the logistics task volume database for unsuccessful current package logistics information to determine the current package's logistics task type, work area, and corresponding responsible operator information. Finally, the server terminal generates a package waiting-to-pickup order based on the current package's logistics task type, work area, and corresponding responsible operator information to notify the responsible operator to collect the package.
[0034] Example 2: A wearable smart terminal interaction system for logistics scanning includes: a wearable logistics smart terminal, used to generate a logistics work request based on the logistics work type and work area selected by the operator and send it to a server terminal; generate a scanning operation interface and a logistics work task comparison table based on the logistics work task list, and save the logistics work task comparison table to the database of the wearable logistics smart terminal; compare the logistics information of the current package obtained by scanning based on the logistics work task comparison table in the database, and update and display the workload completion status of the logistics work task comparison table in real time on the scanning operation interface; send the logistics work task comparison table and the current package logistics information that failed the comparison to the server terminal; the server terminal is used to perform logistics work allocation processing based on the logistics work request, and generate a logistics work task list and send it to the wearable logistics smart terminal; receive the logistics work task comparison table and the current package logistics information that failed the comparison sent by the wearable logistics smart terminal, call the logistics work task volume database to update the logistics work task volume and generate package pending order.
[0035] The wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area selected by the operator and sends it to the server terminal. This process includes: the operator entering their user account and password on the wearable logistics smart terminal interface for authentication to log in; the operator selecting the logistics work type and work area on the wearable logistics smart terminal interface and clicking confirm; the wearable logistics smart terminal generating a logistics work request based on the logistics work type and work area confirmed by the operator; and the wearable logistics smart terminal sending the logistics work request to the server terminal.
[0036] The server terminal performs logistics work allocation processing based on logistics work requests and generates a logistics work task list, which is then sent to the wearable logistics smart terminal. This process includes: the server terminal, based on the logistics work type and work area, accessing the logistics work task volume database to obtain all logistics work tasks corresponding to that type and area; allocating unassigned logistics work tasks to the operator based on the shortest work path principle to improve logistics work task processing efficiency; and generating a logistics work task list based on the allocation results and sending the list to the wearable logistics smart terminal.
[0037] The wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list, and saves the logistics task comparison table to the wearable logistics smart terminal's database. This includes: the wearable logistics smart terminal generating a scanning operation interface and a logistics task comparison table based on the logistics task list; the scanning operation interface allowing the operator to select and confirm to execute or exit the logistics scanning task, and displaying the workload completion status in the logistics task comparison table in real time; and the logistics task comparison table used to compare the logistics information scanned by the operator through the wearable logistics smart terminal with the logistics information in the logistics task comparison table; if the operator selects and confirms to execute the logistics scanning task on the scanning operation interface, the logistics information scanned by the wearable logistics smart terminal can be compared with the logistics information in the logistics task comparison table; if the operator selects and confirms to exit the logistics scanning task on the scanning operation interface, the logistics information scanned by the wearable logistics smart terminal cannot be compared with the logistics information in the logistics task comparison table.
[0038] The wearable logistics smart terminal compares the logistics information of the current package obtained through scanning with a logistics task comparison table in the database. The terminal then updates the workload completion status in the comparison table on the scanning interface in real time. The process includes: the operator selects and confirms the logistics scan on the scanning interface; the wearable logistics smart terminal scans the package to obtain its logistics information and compares it with the information in the logistics task comparison table in the database; if the comparison is successful, it determines that the operator has completed the logistics task for the current package and marks it, updating the workload completion status in the comparison table on the scanning interface in real time; if the comparison fails, it determines that the current package does not belong to the operator's assigned logistics task, alerts the operator via voice, and saves the logistics information of the unsuccessful package to the wearable logistics smart terminal database.
[0039] The server terminal receives a logistics task comparison table and unsuccessful current package logistics information sent by the wearable logistics smart terminal. It then calls the logistics task volume database to update the logistics task volume and generate a package pickup order. This includes: the server terminal checking the logistics task volume in the logistics task comparison table based on the logistics task type and work area, and updating the logistics task completion status in the database; the server terminal searching the logistics task volume database for unsuccessful current package logistics information to determine the current package's logistics task type, work area, and corresponding responsible operator information; and finally, the server terminal generating a package pickup order based on the current package's logistics task type, work area, and responsible operator information to notify the responsible operator to pick it up.
[0040] The above-described embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application.
Claims
1. A wearable smart terminal interaction method for logistics scanning, characterized in that, Includes the following steps: S101. After the operator successfully logs into the wearable logistics smart terminal, the wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area selected by the operator and sends it to the server terminal; S102. The server terminal processes the logistics work allocation based on the logistics work request and generates a logistics work task list, which is then sent to the wearable logistics smart terminal; S103. The wearable logistics smart terminal generates a scanning operation interface and a logistics work task comparison table based on the logistics work task list, and saves the logistics work task comparison table to the database of the wearable logistics smart terminal; S104. The wearable logistics smart terminal compares the logistics information of the current package obtained by scanning based on the logistics work task comparison table in the database, and updates and displays the workload completion status in the logistics work task comparison table on the scanning operation interface in real time; S105. The server terminal receives the logistics work task comparison table and the current package logistics information that failed the comparison sent by the wearable logistics smart terminal, calls the logistics work task quantity database to update the logistics work task quantity, and generates a package pending order.
2. The wearable smart terminal interaction method for logistics scanning according to claim 1, characterized in that, Step S101 includes the following steps: the operator enters a user account and password on the wearable logistics smart terminal interface to authenticate and log in to the wearable logistics smart terminal; the operator selects the logistics work type and work area on the wearable logistics smart terminal interface and clicks confirm; the wearable logistics smart terminal generates a logistics work request based on the logistics work type and work area confirmed by the operator; the wearable logistics smart terminal sends the logistics work request to the server terminal.
3. The wearable smart terminal interaction method for logistics scanning according to claim 1, characterized in that, Step S102 includes the following steps: Based on the logistics work type and work area, the server terminal calls the logistics work task volume database to obtain all logistics work task volumes corresponding to the logistics work type and work area. Based on the principle of shortest working path, all unassigned logistics tasks in the total logistics workload are assigned to the operator to improve the efficiency of logistics workload processing. The server terminal generates a logistics task list based on the logistics task allocation results and sends the logistics task list to the wearable logistics smart terminal.
4. The wearable smart terminal interaction method for logistics scanning according to claim 1, characterized in that, Step S103 includes the following steps: The wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list. The scanning operation interface is used by the operator to select and click to confirm the execution of the logistics scanning work or to exit the logistics scanning work, and to display the workload completion status in the logistics task comparison table in real time. The logistics task comparison table is used to compare the logistics information obtained by the operator through the scanning of the wearable logistics smart terminal. The logistics task comparison table is saved to the database of the wearable logistics smart terminal. If the operator selects and clicks to confirm the execution of the logistics scanning work on the scanning operation interface, the logistics information obtained by the operator through the scanning of the logistics smart terminal can be compared with the logistics information in the logistics task comparison table. If the operator selects and clicks to confirm the exit of the logistics scanning work on the scanning operation interface, the logistics information obtained by the operator through the scanning of the logistics smart terminal cannot be compared with the logistics information in the logistics task comparison table.
5. The wearable smart terminal interaction method for logistics scanning according to claim 1, characterized in that, Step S104 includes the following steps: The operator selects and clicks "Confirm" to execute the logistics scanning work on the scanning operation interface. The wearable logistics smart terminal obtains the logistics information on the current package through scanning and compares it with the information in the logistics task comparison table in the database. If the comparison is successful, it is determined that the operator has completed the logistics task of the current package and marks it, and the workload completion status in the logistics task comparison table on the scanning operation interface is updated in real time. If the comparison is unsuccessful, it is determined that the current package does not belong to the logistics task assigned to the operator, and the operator is notified by voice alarm, and the logistics information of the current package that failed the comparison is saved to the wearable logistics smart terminal database.
6. The wearable smart terminal interaction method for logistics scanning according to claim 1, characterized in that, Step S105 includes the following steps: Based on the logistics task comparison table for the logistics work type and work area, the server terminal calls the logistics task quantity database to verify the logistics task quantity and updates the logistics task quantity completion status in the logistics task quantity database. The server terminal calls the logistics workload database to compare and search for unsuccessful current package logistics information to obtain the current package logistics work type, work area, and corresponding responsible operator information; based on the current package logistics work type, work area, and corresponding responsible operator information, the server terminal generates a package pending collection order to notify the corresponding responsible operator to collect it.
7. A wearable smart terminal interaction system for logistics scanning, characterized in that, include: Wearable logistics smart terminals are used to generate logistics work requests based on the type of logistics work and work area selected by the operator and send them to the server terminal. A scanning operation interface and a logistics task comparison table are generated based on the logistics task list, and the logistics task comparison table is saved to the database of the wearable logistics smart terminal. Based on the logistics task comparison table in the database, the logistics information of the current package obtained by scanning is compared, and the workload completion status in the logistics task comparison table is updated and displayed in real time on the scanning operation interface. The logistics task comparison table and the logistics information of the current package that failed to match are sent to the server terminal. The server terminal is used to allocate and process logistics work based on logistics work requests, and generate a logistics work task list to send to the wearable logistics smart terminal; it receives the logistics work task comparison table and the current package logistics information of unsuccessful comparisons sent by the wearable logistics smart terminal, calls the logistics work task volume database to update the logistics work task volume and generate package pending order.
8. The wearable smart terminal interaction system for logistics scanning according to claim 7, characterized in that, The process of assigning logistics tasks based on logistics work requests and generating a logistics task list to the wearable logistics smart terminal includes: the server terminal, based on the logistics work type and work area, calling the logistics task volume database to obtain all logistics work tasks corresponding to the logistics work type and work area; assigning unassigned logistics work tasks to the operator based on the shortest work path principle to improve the efficiency of logistics task processing; and generating a logistics task list based on the logistics task allocation results and sending the logistics task list to the wearable logistics smart terminal.
9. The wearable smart terminal interaction system for logistics scanning according to claim 7, characterized in that, The wearable logistics smart terminal generates a scanning operation interface and a logistics task comparison table based on the logistics task list, and saves the logistics task comparison table to the wearable logistics smart terminal's database. This includes: the wearable logistics smart terminal generating a scanning operation interface and a logistics task comparison table based on the logistics task list; the scanning operation interface allowing the operator to select and confirm to execute or exit the logistics scanning work, and displaying the workload completion status in the logistics task comparison table in real time; and the logistics task comparison table used to compare the logistics information scanned by the operator through the wearable logistics smart terminal. The logistics task comparison table is saved to the wearable logistics smart terminal's database. If the operator selects and confirms to execute the logistics scanning work on the scanning operation interface, the logistics information scanned by the wearable logistics smart terminal can be compared with the logistics information in the logistics task comparison table; if the operator selects and confirms to exit the logistics scanning work on the scanning operation interface, the logistics information scanned by the wearable logistics smart terminal cannot be compared with the logistics information in the logistics task comparison table.
10. The wearable smart terminal interaction system for logistics scanning according to claim 7, characterized in that, The wearable logistics smart terminal compares the logistics information of the current package obtained through scanning with a logistics task comparison table in the database, and updates the workload completion status of the logistics task comparison table on the scanning operation interface in real time. This includes: the operator selects and clicks "Confirm" to execute the logistics scanning work on the scanning operation interface; the wearable logistics smart terminal obtains the logistics information on the current package through scanning and compares it with the information in the logistics task comparison table in the database; if the comparison is successful, it determines that the operator has completed the logistics task for the current package and marks it, and updates the workload completion status of the logistics task comparison table on the scanning operation interface in real time; if the comparison fails, it determines that the current package does not belong to the logistics task assigned to the operator, prompts the operator through a voice alarm, and saves the logistics information of the unsuccessful package to the wearable logistics smart terminal database.
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