Order Information Processing Method and Device
By dynamically adjusting the task position according to the priority information of the order in the pipeline queue, the problem of poor order allocation and scheduling flexibility is solved, and flexible order processing and shortening of production cycles is achieved.
Patent Information
- Application Number
- CN202111664441.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-31
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2041-12-31
AI Technical Summary
In the prior art, order allocation scheduling only adopts a single sequential processing mechanism, resulting in poor flexibility in the allocation method and the inability to effectively handle the diversity and attribute differences of orders, resulting in semi-finished products retention and extended production cycle.
By obtaining order information, determining the priority information of the task, and dynamically adjusting the task position in the assembly line queue based on the priority information, realizing flexible scheduling and allocation of different orders, ensuring that high-priority tasks are processed first, and reducing semi-finished products are trapped.
It realizes flexible processing based on order diversity and attribute differences, reducing semi-finished products and shortening production cycles.
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Figure CN114358577B_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the field of pipeline control, and in particular, to a method and device for processing order information. Background Art
[0002] In an order production system, orders are generated by a business system, and the production system obtains the orders and processes the orders respectively through corresponding production lines. When multiple orders enter the production system, in the existing order allocation and scheduling process, a sequential processing mechanism is mostly adopted, that is, the orders are sequentially added to the message queue. However, with the diversity of orders and the differences in order attributes, this allocation method has poor flexibility and needs to be improved. Summary of the Invention
[0003] The embodiments of the present invention provide a method for processing order information, which solves the problem in the prior art that when multiple orders enter the production system, the order allocation and scheduling only adopt a single sequential processing mechanism, resulting in poor flexibility of the allocation method. It realizes that according to the diversity of orders and the differences in attributes, different processing mechanisms are adopted for multiple orders for scheduling and allocation. When the pipeline performs job processing, the balance of the to-be-processed goods is adjusted according to the required quantity of goods and the attributes of the goods and distributed evenly among each process, so that the synchronization of each process of the goods is carried out, the retention of semi-finished products is reduced, and the production cycle can be shortened accordingly.
[0004] In a first aspect, the present embodiment provides a method for processing order information, the method comprising:
[0005] Obtain newly added order information, where the order information includes a first execution task and a second execution task;
[0006] Determine the priority information of the first execution task and the second execution task, and respectively determine the first position and the second position of the first execution task and the second execution task in the pipeline queue according to the priority information;
[0007] Add the first execution task to the first position in the pipeline queue, and add the second execution task to the second position in the pipeline queue.
[0008] Further, the determining the priority information of the first execution task and the second execution task further includes:
[0009] Determine the priority information of the first execution task and the second execution task according to the sequential relationship between the first execution task and the second execution task, where the priority information includes the execution order of the first execution task and the second execution task.
[0010] Further, determining the first position and the second position of the first execution task and the second execution task in the pipeline queue according to the priority information respectively includes:
[0011] Determining the first position and the second position of the first execution task and the second execution task in the pipeline queue according to the priority information, the first job quantity respectively recorded in the pipeline queue corresponding to the first execution task, and the second job quantity corresponding to the second execution task.
[0012] Further, determining the first position and the second position of the first execution task and the second execution task in the pipeline queue includes:
[0013] If the priority of the first execution task is higher than that of the second execution task, determine the first position and the second position in the pipeline queue such that the first job quantity is greater than or equal to the second job quantity;
[0014] If the priority of the first execution task is lower than that of the second execution task, determine the first position and the second position in the pipeline queue such that the first job quantity is less than the second job quantity.
[0015] Further, determining the priority information of the first execution task and the second execution task includes:
[0016] Determining the priority information of the first execution task and the second execution task according to the task execution information of the current pipeline, where the task execution information includes the first execution quantity and the second execution quantity respectively corresponding to the first execution task and the second execution task.
[0017] Further, determining the first position and the second position of the first execution task and the second execution task in the pipeline queue according to the priority information respectively includes:
[0018] When the first execution quantity is greater than a preset quantity, determine the position point obtained by adding a preset unit position after the content of the last execution task in the current pipeline queue as the first position.
[0019] Further, determining the first position and the second position of the first execution task and the second execution task in the pipeline queue according to the priority information respectively includes:
[0020] When the first execution quantity is less than the preset quantity, determine the first unit position in the pipeline queue as the first position.
[0021] In a second aspect, an order information processing apparatus provided in an embodiment of the present application includes:
[0022] Order acquisition module: to acquire newly added order information, where the order information includes a first execution task and a second execution task;
[0023] Location determination module: to determine the priority information of the first execution task and the second execution task, and respectively determine the first location and the second location of the first execution task and the second execution task in the pipeline queue according to the priority information;
[0024] Queue addition module: to add the first execution task and add the second execution task to the second location in the pipeline queue.
[0025] In a third aspect, an embodiment of the present application provides an order processing device based on a message queue, and the device includes:
[0026] One or more processors; a storage device for storing one or more programs, and when the one or more programs are executed by the one or more processors, the one or more processors implement the order information processing method described in any one of the above.
[0027] In a fourth aspect, an embodiment of the present application provides a storage medium storing computer-executable instructions, and the computer-executable instructions are used to execute the order processing method based on a message queue when executed by a computer processor.
[0028] An embodiment of the present application discloses an order information processing method and device. The order information processing method includes: acquiring newly added order information, where the order information includes a first execution task and a second execution task; determining the priority information of the first execution task and the second execution task, and respectively determining the first location and the second location of the first execution task and the second execution task in the pipeline queue according to the priority information; adding the first execution task to the first location in the pipeline queue and adding the second execution task to the second location in the pipeline queue. Through the technical solution provided by the embodiment of the present application, it is realized that according to the diversity of orders and attribute differences, different processing mechanisms are adopted for multiple orders for scheduling and allocation, and when the pipeline performs job processing, the balance of the goods to be processed is adjusted according to the required quantity of goods and the attributes of the goods and distributed evenly in each process, so that the synchronization processing of each process of the goods is carried out, reducing the retention of semi-finished products, and being able to shorten the production cycle accordingly. Description of the Drawings
[0029] Figure 1 It is a specific flowchart of an order information processing method provided by an embodiment of the present solution;
[0030] Figure 2It is a diagram of the in-queue of the pipeline queue in an order information processing method provided by an embodiment of this solution;
[0031] Figure 3 It is a diagram of the out-queue of the pipeline queue in an order information processing method provided by an embodiment of this solution;
[0032] Figure 4 It is a specific flowchart of another order information processing method provided by an embodiment of this solution;
[0033] Figure 5 It is a specific flowchart of another order information processing method provided by an embodiment of this solution;
[0034] Figure 6 It is a schematic structural diagram of an order information processing device provided by an embodiment of this solution;
[0035] Figure 7 It is a schematic structural diagram of an order information processing device provided by an embodiment of this solution; Specific implementation manners
[0036] The following further elaborates on the embodiments of the present invention in conjunction with the accompanying drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the embodiments of the present invention, rather than limiting the embodiments of the present invention. Additionally, it should be noted that for the sake of description, only parts related to the embodiments of the present invention are shown in the accompanying drawings, rather than all structures.
[0037] Figure 1 It is a specific flowchart of an order information processing method provided by an embodiment of this solution. The order information processing method provided by the embodiments of this application can be completed by an order information processing device, and the order information processing device can be implemented in a hardware and / or software manner and integrated in a computer device. Refer to Figure 1 and the method can specifically include:
[0038] S101. Obtain newly added order information, where the order information includes a first execution task and a second execution task.
[0039] Order information refers to the information of buying and selling goods, mainly including order number, placing user information, basic order information, such as specific goods and the quantity of goods, payment information, and receiving information. The order information in this solution refers to electronic order information. The first execution task and the second execution task refer to the specific processes required to complete a piece of goods to be processed. Specifically, when the business system generates new order information, the production system obtains the new order information, disassembles the order information, and sets the first execution task and the second execution task according to the goods processing processes. Among them, the operation type of the goods to be processed is a combined product task, and the order of the goods processes can be set in advance or not required. If the operation type of the goods to be processed is a single product task, the default processing mechanism based on time sequence is adopted. For different operation types of different goods, different processing mechanisms are adopted for scheduling and allocation, and the allocation method is flexible, which can greatly shorten the production cycle.
[0040] S102. Determine the priority information of the first execution task and the second execution task, and respectively determine the first position and the second position of the first execution task and the second execution task in the pipeline queue according to the priority information.
[0041] Priority is a parameter that determines the priority level of each job program to receive system resources when the computer time-sharing operating system processes multiple job programs. That is, priority is an agreement. The job with a higher priority is processed first, and the job with a lower priority is processed later. The first position refers to the position corresponding to the first execution task in the pipeline queue, and the second task refers to the position corresponding to the second execution task in the pipeline queue. Each pipeline has its corresponding queue for storing order information.
[0042] In this solution, according to the priority information of the first execution task and the second execution task, the first position and the second position in the corresponding pipeline queue are determined. Among them, the pipeline queue dequeues from the head of the queue in turn, and the task information at the head of the queue is processed first. That is, if the priority of the first task is higher than that of the second task, the corresponding first position is written to the head of the pipeline queue; if the priority of the second task is higher than that of the first task, the corresponding second position is written to the head of the pipeline queue, ensuring that the task with a higher priority is processed first. In this solution, by using the priority information, the balance of the execution of the goods tasks to be processed is dynamically adjusted, the processes of the goods are synchronized, the retention of semi-finished products is reduced, and the production cycle can be shortened accordingly.
[0043] S103. Add the first execution task to the first position in the pipeline queue, and add the second execution task to the second position in the pipeline queue.
[0044] The execution tasks correspond one-to-one with the positions in the pipeline. According to the priority information of the first execution task and the second execution task, the first execution task and the second execution task are added to the corresponding positions in the pipeline queue. This solution does not limit the specific implementation method of adding the execution tasks to the corresponding positions in the pipeline queue.
[0045] In one embodiment, by way of example, the priority of the first execution task of commodity A is higher than the priority of the second execution task. The first task is added to the first position in the pipeline queue, and the second task information is added to the second position in the pipeline queue. Figure 2 This is the in-queue diagram of the pipeline queue in an order information processing method provided by an embodiment of this solution, as Figure 2 shown. The first position is at the head of the pipeline queue, and the second position is at the tail of the pipeline queue. Figure 3 This is the out-queue diagram of the pipeline queue in an order information processing method provided by an embodiment of this solution, as Figure 3 shown. When the execution task is read for processing, the first execution task at the head of the queue is dequeued first. At this time, the second execution information moves to the head of the queue and waits for the next dequeue. In this solution, the Transport Layer Security (TLS) of the pipeline queue can protect the order information online, while the built-in access control can protect these order information on the target queue. If there is a network or application interruption that causes the pipeline queue to be unable to deliver the order information immediately, then the order information will be ensured to be safe in its waiting queue until all the order information is transported. Other mechanisms use at least once or at most once message passing, which means that messages will be repeated or lost. In this solution, the pipeline queue will only move the data once, that is, with the pipeline queue, the order information will never be repeated or lost.
[0046] As described above, by determining the task execution order of the commodity based on the priority of the commodity and determining the corresponding position information in the pipeline queue, the balance of the execution of the tasks of the commodity to be processed is dynamically adjusted, the synchronization processing of each process of the commodity is performed, the retention of semi-finished products is reduced, and the production cycle can be shortened accordingly.
[0047] Figure 4 This is the specific flowchart of another order information processing method provided by an embodiment of this solution. This order processing method based on the message queue is a concretization of the above-mentioned order processing method based on the message queue.
[0048] Refer to Figure 4 , this order processing method based on the message queue includes:
[0049] S401. Obtain the newly added order information, where the order information includes a first execution task and a second execution task.
[0050] After the business system generates new order information, the production system obtains the new order information, disassembles the order information, and sets the first execution task and the second execution task according to the commodity processing procedures. Among them, the operation type of the commodity to be processed is a combined product task, and the sequence of commodity procedures can be set in advance or not required. If the operation type of the commodity to be processed is a single product task, the default time-sequential processing mechanism is adopted. For different operation types of different commodities, different processing mechanisms are adopted for scheduling and allocation, and the allocation method is flexible, which can greatly shorten the production cycle.
[0051] S402. Determine the priority information of the first execution task and the second execution task according to the sequence relationship between the first execution task and the second execution task. The priority information includes the execution sequences of the first execution task and the second execution task.
[0052] The sequence relationship between the first execution task and the second execution task means that the first execution task and the second execution task of this commodity require an execution sequence. For example, the second execution task can only be carried out after the first execution task is completed. At this time, the priority of the first execution sequence and the second execution sequence is determined according to the required sequence relationship of the execution tasks, and the task that is required to be executed first has a high priority. The priority information also includes the execution sequences of the first execution task and the second execution task, that is, when the priority of the first execution task is higher than that of the second execution task, the first execution task is preferentially executed.
[0053] In one embodiment, due to the particularity of the commodity, the first execution task must be preferentially executed before the second execution task can be executed. At this time, the priority of the first execution task is made higher than that of the second execution task. For example, in the production process of woodcut paintings, the wooden board model must be processed first and then carved, so that the priority of processing the wooden board model is higher than that of carving. The priority of task execution is determined according to the processing sequence requirements of the commodity, and the task that needs to be preferentially executed is given a high priority to ensure that this task is preferentially executed. Through this step, it is ensured that the processing sequence of the commodity is executed according to the set requirements.
[0054] S403. Determine the first position and the second position of the first execution task and the second execution task in the pipeline queue according to the priority information, the first job quantity corresponding to the first execution task respectively recorded in the pipeline queue, and the second job quantity corresponding to the second execution task.
[0055] The first operation quantity is the quantity of products that have completed the first execution task, and the second operation quantity is the quantity of products that have completed the second execution task. In this solution, according to the priority information of the products, combined with the operation quantities of the completed products corresponding to the first execution task and the second execution task respectively, the first position and the second position corresponding to the first execution task and the second execution task in the pipeline queue are determined. The specific position in the pipeline queue is determined according to the priority of the execution task and the completion progress of the execution task.
[0056] S404. If the priority of the first execution task is higher than that of the second execution task, determine the first position and the second position in the pipeline queue such that the first operation quantity is greater than or equal to the second operation quantity; if the priority of the first execution task is lower than that of the second execution task, determine the first position and the second position in the pipeline queue such that the first operation quantity is less than the second operation quantity.
[0057] In one embodiment, it is required that the order of the first execution task of product A is before the order of the second execution task, then the priority of the first execution task is set higher than the priority of the second execution task, the first position corresponding to the first execution task is written to the head of the pipeline queue, and the second position corresponding to the second execution task is written to the tail of the pipeline queue, so that the first operation quantity of product A is greater than or equal to the second operation quantity; it is required that the order of the first execution task of product A is after the order of the second execution task, the first position corresponding to the first execution task is written to the tail of the pipeline queue, and the second position corresponding to the second execution task is written to the head of the pipeline queue, so that the first operation quantity of product B is less than the second operation quantity.
[0058] Specifically, since the operation sequence of the product is considered based on the priority, the operation quantity corresponding to the task step with a higher product priority should be greater than or equal to the operation quantity corresponding to the task step with a lower priority, that is, it is required that the completion quantity corresponding to the process to be executed first is greater than or equal to the completion quantity corresponding to the process to be executed later. Exemplarily, in the processing of woodcuts, the processing of the wood board model is performed first, and then the carving processing is performed. If the number of products that have completed the processing of the wood board model is 90 and the number of products that have completed the carving processing is 95, it means that there are 5 wood boards that have not been processed for the model and have directly undergone carving, that is, the processing sequence is incorrect, and carving followed by processing the wood board model will damage the carving, so these 5 products are processed unsuccessfully and become waste products.
[0059] As described above, through the priorities of the first execution task and the second execution task, and the quantity of completed products corresponding to the tasks, the correctness of the product processing sequence is supervised from both the processing mechanism and the quantity of completed products, ensuring that the products are processed in order and reducing the scrap rate.
[0060] Figure 5 This is a specific flowchart of another order information processing method provided by an embodiment of the solution. The order processing method based on a message queue is a specific implementation of the above-mentioned order processing method based on a message queue.
[0061] Refer to Figure 5 , the order processing method based on a message queue includes:
[0062] S501. Obtain the newly added order information, where the order information includes a first execution task and a second execution task.
[0063] After the business system generates new order information, the production system obtains the new order information, disassembles the order information, and sets the first execution task and the second execution task according to the product processing procedures. Among them, the operation type of the product to be processed is a combined product task, and the order of the product procedures can be set in advance or not required. If the operation type of the product to be processed is a single product task, a default processing mechanism based on time sequence is adopted. For different operation types of different products, different processing mechanisms are adopted for scheduling and allocation, and the allocation method is flexible, which can greatly shorten the production cycle.
[0064] S502. Determine the priority information of the first execution task and the second execution task according to the task execution information of the current production line, where the task execution information includes the first execution quantity and the second execution quantity corresponding to the first execution task and the second execution task respectively.
[0065] The task execution information refers to the processing progress of the product, including the total quantity of the product and the quantity of products completed for each execution task, that is, the first execution quantity and the second execution quantity. The priority information of the execution task is determined according to the task execution information of the production line. It can be understood that there is no specific order requirement for the execution tasks of the product to be processed at this time. That is, the completion order of each execution task is coordinated according to the processing progress of the product to ensure the orderly processing of the product and improve production efficiency.
[0066] Further, the determination of the corresponding priority for task execution can be based on the comparison between the first execution quantity and the second execution quantity. In one embodiment, there is no order requirement for the first execution task and the second execution task of product A. Exemplarily, during the production process, the total quantity of product A is 100, the first execution quantity corresponding to the first execution task is 50, and the second execution quantity of the second execution task is 70. This indicates that there are 50 pieces of product A to be processed for the first execution task and 30 pieces of product A to be processed for the second execution task. At this time, the first execution task is given a higher priority than the second execution task, avoiding the situation where all product A completes the second execution task and then queues up to wait for the execution of the first task. This dynamically adjusts the balance of the execution of product tasks to be processed, synchronizes the various processes of the product, reduces the retention of semi-finished products, and can thereby shorten the production cycle.
[0067] S503. When the first execution quantity is greater than the preset quantity, determine the position point at a position of adding a preset unit after the content of the last execution task in the current pipeline queue as the first position. When the first execution quantity is less than the preset quantity, determine the first unit position in the pipeline queue as the first position.
[0068] In this solution, when the first execution quantity of the product is greater than or equal to the preset quantity, a position point of adding a preset unit is added after the last queue tail of the pipeline queue, and it is set as the first position corresponding to the first execution task. If the first execution quantity of the product is less than the preset quantity, the head of the pipeline queue is set as the first position corresponding to the first execution task. The preset quantity and the position point of the preset unit are set by technicians according to the actual situation.
[0069] In one embodiment, exemplarily, there are 500 pieces of product B to be processed. Since 200 pieces in a certain order need to be processed urgently, the preset quantity is set to 200 pieces. If the first execution quantity corresponding to product B is 150 pieces at this time, write the first position corresponding to the first execution task to the head of the pipeline queue to give priority to completing the first execution task. Until it is monitored that the first execution quantity is greater than or equal to 200, and the second execution quantity is 180 pieces, write the first position corresponding to the first execution task to the position point 20 positions after the end of the pipeline queue to ensure that the second execution quantity reaches the preset quantity.
[0070] As described above, when there is an urgent order in the order information, set the quantity of the product in the urgent order as the preset quantity to ensure the priority completion of the urgent order products, and solve the problem of urgent processing of some orders in the automated production process of products.
[0071] Figure 6 It is a structural schematic diagram of an order information processing device provided for the embodiment of this solution. Refer to Figure 6, the order information processing device provided in this embodiment specifically includes: an order acquisition module 601, a position determination module 602, and a queue addition module 603. Each module can be connected through a bus or other means. Figure 6 Taking connection through a bus as an example.
[0072] Among them, the order acquisition module is used to acquire new order information, and the order information includes a first execution task and a second execution task.
[0073] In one embodiment, an order production system produces new order information. The production system acquires the generated new order information and divides the processing procedures of the goods in the order information into a first execution task and a second execution task.
[0074] The position determination module is used to determine the priority information of the first execution task and the second execution task, and respectively determine the first position and the second position of the first execution task and the second execution task in the pipeline queue according to the priority information.
[0075] In one embodiment, the priority of the first execution task of product A is higher than that of the second execution task. In the pipeline queue, the first position is in front of the second position.
[0076] The queue addition module is used to add the first execution task to the first position in the pipeline queue and add the second execution task to the second position in the pipeline queue.
[0077] In one embodiment, the first execution task is added to the first position of the pipeline queue, and the second task information is added to the second position of the pipeline queue. As Figure 6 shown, the first position is at the head of the pipeline queue, and the second position is at the end of the pipeline queue.
[0078] The order information processing device provided in the embodiment of the present application can be used to execute the order information processing method provided in the above embodiment, and has corresponding functions and beneficial effects.
[0079] Figure 7 This is a schematic structural diagram of an order information processing device provided in an embodiment of the present solution. As Figure 7 shown, the device includes a processor 701, a memory 702, an input device 703, and an output device 704; the number of processors 701 in the device can be one or more. Figure 7 Taking one processor 701 as an example; the processor 701, memory 702, input device 703, and output device 704 in the device can be connected through a bus or other means. Figure 7Take the bus connection as an example. As a computer-readable storage medium, the memory 702 can be used to store software programs, computer-executable programs, and modules, such as the program instructions / modules corresponding to the message queue-based order processing method in the embodiments of the present invention. By running the software programs, instructions, and modules stored in the memory 702, the processor 701 can execute various functional applications and data processing of the device, that is, implement the above-mentioned message queue-based order processing method. The input device 703 can be used to receive input digital or character information, as well as generate key signal inputs related to the user settings and function controls of the device. The output device 704 may include display devices such as a display screen.
[0080] Of course, for a storage medium containing computer-executable instructions provided by the embodiments of the present application, the computer-executable instructions are not limited to the message queue-based order processing method as described above, and can also execute related operations in the message queue-based order processing method provided by any embodiment of the present application.
[0081] Note that the above is only the preferred embodiment of the embodiments of the present invention and the applied technical principles. Those skilled in the art will understand that the embodiments of the present invention are not limited to the specific embodiments described herein, and various obvious changes, re-adjustments, and substitutions can be made by those skilled in the art without departing from the protection scope of the embodiments of the present invention. Therefore, although the embodiments of the present invention have been described in more detail through the above embodiments, the embodiments of the present invention are not limited to the above embodiments only. Without departing from the concept of the embodiments of the present invention, more other equivalent embodiments can be included, and the scope of the embodiments of the present invention is determined by the scope of the appended claims.
Claims
1. A method for processing order information, characterized in that, Including: Obtain newly added order information, where the order information includes a first execution task and a second execution task; Determine the priority information of the first execution task and the second execution task. Among them, it includes: determining the priority information of the first execution task and the second execution task according to the task execution information of the current pipeline. The task execution information includes the first execution quantity and the second execution quantity corresponding to the first execution task and the second execution task respectively. According to the priority information, determine the first position and the second position of the first execution task and the second execution task in the pipeline queue respectively. Among them, it includes: when the first execution quantity is greater than a preset quantity, determine the position point obtained by adding a preset unit position after the content of the last execution task in the current pipeline queue as the first position. When the first execution quantity is less than the preset quantity, determine the first unit position in the pipeline queue as the first position; Add the first execution task to the first position in the pipeline queue, and add the second execution task to the second position in the pipeline queue.
2. Order information processing method and device, characterized in that Including: Order acquisition module: Obtain newly added order information, where the order information includes a first execution task and a second execution task; Position determination module: Determine the priority information of the first execution task and the second execution task, determine the first position and the second position of the first execution task and the second execution task in the pipeline queue respectively according to the priority information, determine the priority information of the first execution task and the second execution task according to the task execution information of the current pipeline. The task execution information includes the first execution quantity and the second execution quantity corresponding to the first execution task and the second execution task respectively. When the first execution quantity is greater than a preset quantity, determine the position point obtained by adding a preset unit position after the content of the last execution task in the current pipeline queue as the first position. When the first execution quantity is less than the preset quantity, determine the first unit position in the pipeline queue as the first position; Queue addition module: Add the first execution task to the first position in the pipeline queue, and add the second execution task to the second position in the pipeline queue.
3. A method and device for processing order information, the device comprising: One or more processors; A storage device for storing one or more programs. When the one or more programs are executed by the one or more processors, the one or more processors implement the order information processing method as described in claim 1.
4. A storage medium storing computer-executable instructions, where the computer-executable instructions are used to execute the order information processing method as described in claim 1 when executed by a computer processor.
Citation Information
Patent Citations
Production management system, method, device and equipment for assembly workshop, and medium
CN111539610A
Task execution system, task execution method and production system
CN113177680A
Production management system and production management method
JP2020166548A