Method and device for processing strip tobacco information, and computer storable medium

CN116070953BActive Publication Date: 2026-06-02LONGYAN CIGARETTE FACTORY

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
LONGYAN CIGARETTE FACTORY
Filing Date
2023-02-08
Publication Date
2026-06-02

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Abstract

The present disclosure relates to a method and device for processing strip tobacco information, and a computer storage medium. The method comprises: in response to each piece of strip tobacco arriving at a strip tobacco order inspection station, determining the order number of each piece of strip tobacco in a current feeding batch; determining a strip tobacco mark of each piece of strip tobacco according to the order number of each piece of strip tobacco, the strip tobacco mark being used to identify the feeding position of each piece of strip tobacco in the current feeding batch; storing the feeding batch number and the strip tobacco mark of each piece of strip tobacco in an electric control data storage area; in response to each piece of strip tobacco arriving at a strip tobacco feeding buffer station, storing the feeding batch number and the order number of each piece of strip tobacco in a feeding buffer station information table; in response to each piece of strip tobacco arriving at a feeding station, counting the feeding quantity of the current feeding batch according to the strip tobacco mark in the electric control data storage area as a first feeding quantity; and checking the first feeding quantity of the current feeding batch according to the feeding batch number and the order number in the feeding buffer station information table.
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Description

Technical Field

[0001] This disclosure relates to the field of information technology, and in particular to methods and apparatus for processing tobacco leaf information and computer-storable media. Background Technology

[0002] In the cigarette manufacturing process, one effective way to improve the efficiency of feeding tobacco leaves into the cigarette processing workshop is to adopt a pre-feeding mechanism using a high-bay logistics warehouse. This means setting up sufficient tobacco leaf buffer stations for the same feeding line, and an automated logistics system unloading the tobacco leaves required for production into the buffer stations in batches. The tobacco processing workshop then uses the materials in sequence during production.

[0003] To ensure the accuracy of the raw material input in tobacco processing, multiple verifications of the tobacco sheet information are required. A crucial verification is to check the actual quantity of tobacco sheets used in each batch. Only when the actual quantity used strictly matches the formula requirements of that batch can it be said that the actual production quantity used in that batch is accurate. Otherwise, it may cause a production quality accident.

[0004] In related technologies, manual counting is used, that is, when the tobacco leaves enter the tobacco processing production line, the quantity is incremented by 1 for each piece that enters; or when the logistics system takes out tobacco leaves from the high-bay warehouse, a corresponding outbound task is generated for each piece of tobacco leaves. When the tobacco leaves reach the outbound station in front of the final tobacco feeding port, the task is automatically completed. The system counts these completed tasks by batch to obtain the quantity information, thus completing the automatic counting process. Summary of the Invention

[0005] In related technologies, manual verification is highly susceptible to human error due to the checker's condition, lacks timeliness, and is inefficient. Automatic statistics based on task status may be inaccurate due to equipment or electrical malfunctions during task execution, causing discrepancies between the task status and the actual status (e.g., the tobacco sheet has been completed but the system records it as still in progress). Inaccurate quantity counting can prevent the next batch of materials from being fed into the production line or cause them to directly enter the previous batch, thus reducing tobacco processing efficiency or causing production quality incidents.

[0006] To address the aforementioned technical problems, this disclosure proposes a solution that can improve the accuracy and efficiency of material quantity verification.

[0007] According to a first aspect of this disclosure, a method for processing tobacco flake information is provided, comprising: in response to each piece of tobacco flake arriving at a tobacco flake sequence inspection station, determining the feeding sequence number of each piece of tobacco flake in the current feeding batch; determining a tobacco flake marker for each piece of tobacco flake based on the feeding sequence number of each piece of tobacco flake, wherein the tobacco flake marker is used to identify the feeding position of each piece of tobacco flake in the current feeding batch; storing the feeding batch number and tobacco flake marker of each piece of tobacco flake in an electronically controlled data storage area; in response to each piece of tobacco flake arriving at a tobacco flake feeding buffer station, storing the feeding batch number and feeding sequence number of each piece of tobacco flake to a feeding buffer station information table; in response to each piece of tobacco flake arriving at the feeding station, calculating the feeding quantity of the current feeding batch based on the tobacco flake marker in the electronically controlled data storage area, as a first feeding quantity; and verifying the calculated first feeding quantity of the current feeding batch based on the feeding batch number and feeding sequence number in the feeding buffer station information table.

[0008] In some embodiments, the tobacco leaf marking includes an identifier indicating that the tobacco leaf is the first piece in the current batch, an identifier indicating that the tobacco leaf is the last piece in the current batch, and an identifier indicating the feeding sequence number of the tobacco leaf in the current batch other than the first and last pieces.

[0009] In some embodiments, counting the quantity of the current feeding batch based on the tobacco leaf markings in the electronically controlled data storage area includes: starting to count the quantity of the current feeding batch when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the first piece; incrementing the quantity of the current feeding batch by 1 when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the feeding sequence number other than the first and last pieces; incrementing the quantity of the current feeding batch by 1 when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the last piece, and configuring the feeding slip of the current feeding batch to indicate the feeding completion status.

[0010] In some embodiments, verifying the quantity of the current feeding batch based on the batch number and sequence number in the feeding buffer station information table includes: determining the quantity of the current feeding batch as the second feeding quantity based on the batch number and sequence number in the feeding buffer station information table; and verifying the first feeding quantity by comparing the first feeding quantity and the second feeding quantity.

[0011] In some embodiments, determining the feeding sequence number of each piece of tobacco in the current feeding batch includes: querying the quantity of tobacco packs in the current feeding batch to which each piece of tobacco belongs in the feeding buffer station information table; if the quantity of tobacco packs in the current feeding batch in the feeding buffer station information table is 0, determining that the feeding sequence number of each piece of tobacco in the current feeding batch is 1; if the quantity of tobacco packs in the current feeding batch in the feeding buffer station information table is M, determining that the feeding sequence number of each piece of tobacco in the current feeding batch is M+1, where M is a positive integer.

[0012] In some embodiments, the tobacco leaf information processing method further includes: storing the task number of each tobacco leaf in an electronically controlled data storage area.

[0013] In some embodiments, the tobacco flake information processing method further includes: in response to each piece of tobacco flake arriving at the tobacco flake feeding buffer station, storing the task number, feeding status, buffer time, and feeding time of each piece of tobacco flake to the feeding buffer station information table.

[0014] According to a second aspect of this disclosure, a tobacco flake information processing device is provided, comprising: a judgment module configured to, in response to each package of tobacco flakes arriving at a tobacco flake sequence inspection station, determine the feeding sequence number of each package of tobacco flakes in the current feeding batch; a determination module configured to, based on the feeding sequence number of each package of tobacco flakes, determine a tobacco flake marker for each package of tobacco flakes, wherein the tobacco flake marker is used to identify the feeding position of each package of tobacco flakes in the current feeding batch; and a first storage module configured to, in an electronically controlled data storage area, store the feeding batch number and tobacco flake information of each package of tobacco flakes. The system includes: a marking module; a second storage module configured to store the batch number and sequence number of each piece of tobacco leaf to a feeding buffer station information table in response to the arrival of each piece of tobacco leaf at the feeding buffer station; a statistics module configured to count the feeding quantity of the current feeding batch based on the tobacco leaf marking in the electronically controlled data storage area in response to the arrival of each piece of tobacco leaf at the feeding station, and use this as the first feeding quantity; and a verification module configured to verify the first feeding quantity of the current feeding batch based on the batch number and sequence number in the feeding buffer station information table.

[0015] According to a third aspect of this disclosure, a tobacco leaf information processing apparatus is provided, comprising: a memory; and a processor coupled to the memory, the processor being configured to execute the tobacco leaf information processing method described in any of the above embodiments based on instructions stored in the memory.

[0016] According to a fourth aspect of this disclosure, a computer-storeable medium is provided that stores computer program instructions thereon, which, when executed by a processor, implement the tobacco information processing method described in any of the above embodiments.

[0017] The above embodiments can improve the accuracy and efficiency of material quantity verification. Attached Figure Description

[0018] The accompanying drawings, which form part of this specification, illustrate embodiments of this disclosure and, together with the specification, serve to explain the principles of this disclosure.

[0019] This disclosure will become clearer with reference to the accompanying drawings and the following detailed description, wherein:

[0020] Figure 1 This is a flowchart illustrating a method for processing tobacco information according to some embodiments of the present disclosure;

[0021] Figure 2 This is a schematic diagram illustrating the yarn feeding process according to some embodiments of the present disclosure;

[0022] Figure 3 This is a schematic diagram illustrating the process of identifying the first and last components, i.e., information binding, according to some embodiments of the present disclosure;

[0023] Figure 4 This is a schematic flowchart illustrating the calculation of the amount of raw materials fed into the yarn according to some embodiments of the present disclosure;

[0024] Figure 5 This is a block diagram illustrating a tobacco information processing apparatus according to some embodiments of the present disclosure;

[0025] Figure 6 This is a block diagram illustrating a tobacco information processing apparatus according to some embodiments of the present disclosure;

[0026] Figure 7 This is a block diagram illustrating a computer system for implementing some embodiments of the present disclosure. Detailed Implementation

[0027] Various exemplary embodiments of the present disclosure will now be described in detail with reference to the accompanying drawings. It should be noted that, unless otherwise specifically stated, the relative arrangement, numerical expressions, and values ​​of the components and steps set forth in these embodiments do not limit the scope of the present disclosure.

[0028] At the same time, it should be understood that, for ease of description, the dimensions of the various parts shown in the accompanying drawings are not drawn according to actual scale.

[0029] The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit this disclosure or its application or use.

[0030] Techniques, methods, and equipment known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and equipment should be considered part of the specification.

[0031] In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values.

[0032] It should be noted that similar labels and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be discussed further in subsequent figures.

[0033] Figure 1 This is a flowchart illustrating a method for processing tobacco information according to some embodiments of the present disclosure.

[0034] like Figure 1 As shown, the tobacco leaf information processing method includes steps S110-S160. For example, the tobacco leaf information processing method is executed by an automated logistics system.

[0035] In step S110, in response to each piece of tobacco arriving at the tobacco order inspection station, the feeding sequence number of each piece of tobacco in the current feeding batch is determined.

[0036] In step S120, a tobacco label is determined for each tobacco sheet according to the feeding sequence number of each tobacco sheet, wherein the tobacco label is used to identify the feeding position of each tobacco sheet in the current feeding batch.

[0037] In some embodiments, the tobacco leaf marking includes an identifier indicating that the tobacco leaf is the first piece in the current batch, an identifier indicating that the tobacco leaf is the last piece in the current batch, and an identifier indicating the feeding sequence number of the tobacco leaf in the current batch other than the first and last pieces.

[0038] In step S130, the batch number and tobacco leaf mark of each piece of tobacco are stored in the electronically controlled data storage area. In some embodiments, the task number of each piece of tobacco may also be stored in the electronically controlled data storage area.

[0039] In step S140, in response to each piece of tobacco arriving at the tobacco feeding buffer station, the batch number and feeding sequence number of each piece of tobacco are stored in the feeding buffer station information table.

[0040] In some embodiments, in response to each piece of tobacco arriving at the tobacco feeding buffer station, the task number, feeding status, buffer time, and feeding time of each piece of tobacco can also be stored in the feeding buffer station information table.

[0041] In step S150, in response to each piece of tobacco arriving at the feeding station, the feeding quantity of the current feeding batch is counted based on the tobacco label in the electronic control data storage area, and used as the first feeding quantity.

[0042] In some embodiments, counting the quantity of the current feeding batch based on the tobacco leaf markings in the electronically controlled data storage area includes: starting to count the quantity of the current feeding batch when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the first piece; incrementing the quantity of the current feeding batch by 1 when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the feeding sequence number other than the first and last pieces; incrementing the quantity of the current feeding batch by 1 when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the last piece, and configuring the feeding slip of the current feeding batch to indicate the feeding completion status.

[0043] In step S160, the first feeding quantity of the current feeding batch is checked according to the feeding batch number and feeding sequence number in the feeding buffer station information table.

[0044] In some embodiments, verifying the quantity of the current feeding batch based on the batch number and sequence number in the feeding buffer station information table includes: determining the quantity of the current feeding batch as the second feeding quantity based on the batch number and sequence number in the feeding buffer station information table; and verifying the first feeding quantity by comparing the first feeding quantity and the second feeding quantity.

[0045] In some embodiments, determining the feeding sequence number of each piece of tobacco in the current feeding batch includes: querying the quantity of tobacco packs in the current feeding batch to which each piece of tobacco belongs in the feeding buffer station information table; if the quantity of tobacco packs in the current feeding batch in the feeding buffer station information table is 0, determining that the feeding sequence number of each piece of tobacco in the current feeding batch is 1; if the quantity of tobacco packs in the current feeding batch in the feeding buffer station information table is M, determining that the feeding sequence number of each piece of tobacco in the current feeding batch is M+1, where M is a positive integer.

[0046] The following will combine Figures 2-4 The present disclosure describes in detail the methods for processing tobacco information in some embodiments.

[0047] Figure 2 This is a schematic diagram illustrating the feeding process of yarn production according to some embodiments of the present disclosure.

[0048] Figure 3 This is a schematic diagram illustrating the process of identifying the first and last items, i.e., information binding, according to some embodiments of the present disclosure.

[0049] Figure 4 This is a schematic diagram illustrating the process of calculating the amount of raw material to be fed into the yarn according to some embodiments of the present disclosure.

[0050] Initially, the automated logistics system sets up a feeding buffer station information table to record the information of tobacco flakes entering the buffer line during the feeding process. This information table includes the feeding batch number, task number, feeding status (initially "not fed," becoming "fed" after the tobacco flakes enter the tobacco processing line), feeding sequence number, buffer time, and feeding time. The automated logistics system sets up an electronic control data storage area for each device (station), storing data including the feeding batch number, task number, and tobacco flake tag. When the automated logistics system detects that tobacco flakes have arrived at a certain device, the electronic control data storage area corresponding to that device is synchronously updated with the feeding batch number, task number, and tobacco flake tag.

[0051] The automated logistics system generates an unexecuted tobacco feeding task for each batch of tobacco leaves based on the tobacco feeding order information, and assigns a task number to it. The logistics system can then distribute these unexecuted tobacco feeding tasks to equipment systems, such as stacker cranes, elevators, or shuttle cars, according to the priority of outbound tasks. The task status will then be "in progress".

[0052] When the tobacco leaves enter the feeding and buffering line, the first and last pieces are identified and bound to the station information, and the feeding and buffering station information is generated simultaneously.

[0053] The silk feeding process is as follows: Figure 2 As shown, the automated logistics system controls the tobacco leaves to sequentially enter the tobacco leaf sequence verification station, the tobacco leaf feeding buffer station, and the tobacco leaf feeding port from the high-bay warehouse, and finally enter the tobacco processing production line.

[0054] like Figure 3 As shown. When the tobacco flakes arrive at the tobacco flake sequence verification station, the automated logistics system control equipment pauses the forward conveying of tobacco flakes. The automated logistics system reads the batch number and task number from the current station's electrical control system and queries the information table of the feeding buffer station to count the number of tobacco packs in this batch. If no information is found in the information table of the feeding buffer station, it means that this tobacco flake is the first piece of tobacco flakes entering the feeding buffer line in the current batch. In this case, the tobacco flake mark in the corresponding electrical control information of this tobacco flake is set to "first piece", and the feeding sequence number is 1. If the count in the information table of the feeding buffer station is 1 less than the number N of the current feeding order (N is the total number of tobacco flakes fed in this batch), it means that this is the last piece of tobacco flakes. In this case, it is set to "last piece", and the feeding sequence is N. Otherwise, according to the count result M in the information table of the feeding buffer station, the corresponding electrical control tobacco flake mark is set to M+1. That is, if the current tobacco flake is the 2nd to (N-1)th piece in this batch, its corresponding feeding sequence number is M+1, and the tobacco flake mark is also M+1.

[0055] Based on the above calculation logic, when tobacco leaves enter the buffer channel, the corresponding information is added to the production feeding buffer station information table (the feeding status is "not fed").

[0056] When the tobacco leaves are about to leave the buffer line and enter the tobacco processing stage, the quantity of materials in each batch will be identified and statistically verified.

[0057] like Figure 4 As shown, when the silk production line starts production, the logistics system reads the batch number and tobacco leaf mark on the electrical control of the feeding station. If the tobacco leaf mark is "first piece", it means that the tobacco leaf is the first piece of the current batch, and the system starts counting the number of materials fed in this batch. If the tobacco leaf mark is "last piece", it means that the tobacco leaf is the last piece of the batch, and the entire material requisition form is set to complete the feeding.

[0058] Similarly, starting from the "first piece" and ending with the "last piece", the system counts the tobacco sheets in each piece in sequence. After the tobacco sheets enter the tobacco production line, the system updates the feeding cache station information table to "feeded" according to the feeding batch number and task number, indicating that the feeding of the tobacco sheets is completed, and records the feeding time at the same time.

[0059] The above embodiments design a method for calculating the quantity of sheet tobacco already fed into the tobacco processing industry. During tobacco processing, the method can obtain the actual batch material quantity information entering the tobacco processing production line in real time, providing an efficient and accurate technical means for verifying the quantity of materials in the feeding formula during tobacco processing.

[0060] In the above embodiments, the counting start and end points for each batch of materials are strictly distinguished, resulting in more precise counting timing. The quantity of materials already fed can be directly obtained from the cumulative count value, or it can be statistically analyzed by counting the number of documents with the feeding status in the feeding buffer station information table, providing richer statistical methods. During the feeding process, the quantity of materials fed can be verified by referring to the feeding buffer station information table based on the batch number, task number, and tobacco leaf mark on the feeding station, making the counting more controllable and accurate.

[0061] Figure 5 This is a block diagram illustrating a tobacco information processing apparatus according to some embodiments of the present disclosure.

[0062] like Figure 5 As shown, the tobacco information processing device 5 includes a judgment module 51, a determination module 52, a first storage module 53, a second storage module 54, a statistics module 55, and a verification module 56.

[0063] The judgment module 51 is configured to, in response to each piece of tobacco arriving at the tobacco sheet sequence inspection station, determine the feeding sequence number of each piece of tobacco sheet in the current feeding batch, for example, by performing the following... Figure 1 The step S110 is shown.

[0064] The determining module 52 is configured to determine a tobacco leaf marker for each package of tobacco leaves based on the feeding sequence number of each package, wherein the tobacco leaf marker is used to identify the feeding position of each package of tobacco leaves in the current feeding batch, for example, by performing... Figure 1 The step S120 shown.

[0065] The first storage module 53 is configured to store the batch number and tobacco leaf mark of each piece of tobacco in the electronically controlled data storage area, for example, by performing actions such as... Figure 1 The step S130 shown.

[0066] The second storage module 54 is configured to, in response to the arrival of each package of tobacco flakes at the tobacco flake feeding buffer station, store the feeding batch number and feeding sequence number of each package of tobacco flakes in the feeding buffer station information table, for example, by executing the following... Figure 1 The step S140 shown.

[0067] The statistics module 55 is configured to, in response to each piece of tobacco arriving at the feeding station, calculate the quantity of the current feeding batch based on the tobacco piece marker in the electronic control data storage area, and use this quantity as the first feeding quantity. For example, it may execute the following... Figure 1 The step S150 shown.

[0068] The verification module 56 is configured to verify the first quantity of the current feeding batch based on the feeding batch number and feeding sequence number in the feeding buffer station information table, for example, by performing the following steps: Figure 1 The step S160 shown.

[0069] Figure 6 This is a block diagram illustrating a tobacco information processing apparatus according to some embodiments of the present disclosure.

[0070] like Figure 6 As shown, the tobacco information processing apparatus 6 includes a memory 61 and a processor 62 coupled to the memory 61. The memory 61 is used to store instructions for executing embodiments of the tobacco information processing method. The processor 62 is configured to execute the tobacco information processing method in any of the embodiments of this disclosure based on the instructions stored in the memory 61.

[0071] Figure 7 This is a block diagram illustrating a computer system for implementing some embodiments of the present disclosure.

[0072] like Figure 7 As shown, the computer system 70 can be represented in the form of a general computing device. The computer system 70 includes a memory 710, a processor 720, and a bus 700 connecting different system components.

[0073] The memory 710 may include, for example, system memory, non-volatile storage media, etc. The system memory may store, for example, an operating system, application programs, a boot loader, and other programs. The system memory may include volatile storage media, such as random access memory (RAM) and / or cache memory. The non-volatile storage media may store, for example, instructions for executing at least one embodiment of the tobacco information processing method. Non-volatile storage media include, but are not limited to, disk storage, optical storage, flash memory, etc.

[0074] The processor 720 can be implemented using a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic devices, discrete hardware components such as discrete gates or transistors. Accordingly, each module, such as the decision module and the determination module, can be implemented by the central processing unit (CPU) running instructions in memory to execute the corresponding steps, or by dedicated circuitry to execute the corresponding steps.

[0075] Bus 700 can use any of the various bus architectures. For example, bus architectures include, but are not limited to, Industry Standard Architecture (ISA) bus, Micro Channel Architecture (MCA) bus, and Peripheral Component Interconnect (PCI) bus.

[0076] The computer system 70 may also include an input / output interface 730, a network interface 740, and a storage interface 750. These interfaces 730, 740, and 750, as well as the memory 710 and processor 720, can be connected via a bus 700. The input / output interface 730 provides a connection interface for input / output devices such as a monitor, mouse, and keyboard. The network interface 740 provides a connection interface for various networked devices. The storage interface 750 provides a connection interface for external storage devices such as floppy disks, USB flash drives, and SD cards.

[0077] Various aspects of this disclosure are described herein with reference to flowchart illustrations and / or block diagrams of methods, apparatus, and computer program products according to embodiments of this disclosure. It should be understood that each block of the flowchart illustrations and / or block diagrams, and combinations thereof, can be implemented by computer-readable program instructions.

[0078] These computer-readable program instructions are provided to a processor of a general-purpose computer, a special-purpose computer, or other programmable device to produce a machine, such that execution of the instructions by the processor produces means for implementing the functions specified in one or more boxes of the flowchart and / or block diagram.

[0079] These computer-readable program instructions may also be stored in a computer-readable storage medium. These instructions cause a computer to work in a particular manner to produce an article of manufacture, including instructions that implement the functions specified in one or more boxes in a flowchart and / or block diagram.

[0080] This disclosure may take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects.

[0081] The tobacco information processing method and apparatus, and the computer storage medium described in the above embodiments can improve the accuracy and efficiency of material quantity verification.

[0082] This concludes the detailed description of the tobacco information processing method and apparatus, and the computer-storable medium according to this disclosure. To avoid obscuring the concept of this disclosure, some details known in the art have not been described. Those skilled in the art can fully understand how to implement the technical solutions disclosed herein based on the above description.

Claims

1. A method for processing tobacco leaf information, comprising: In response to each piece of tobacco arriving at the tobacco order inspection station, determine the feeding sequence number of each piece of tobacco in the current feeding batch; Based on the feeding sequence number of each piece of tobacco, a tobacco label is determined for each piece of tobacco. The tobacco label is used to identify the feeding position of each piece of tobacco in the current feeding batch. The tobacco label includes an identifier indicating that the tobacco is the first piece in the current feeding batch, an identifier indicating that the tobacco is the last piece in the current feeding batch, and an identifier indicating the feeding sequence number of the tobacco in the current feeding batch other than the first and last pieces. The batch number and tobacco label of each piece of tobacco are stored in the electronically controlled data storage area. In response to each piece of tobacco arriving at the tobacco feeding buffer station, the batch number and feeding sequence number of each piece of tobacco are stored in the feeding buffer station information table; In response to each piece of tobacco arriving at the feeding station, the feeding quantity of the current feeding batch is calculated based on the tobacco marking in the electronic control data storage area and used as the first feeding quantity. Based on the batch number and sequence number of the feeding buffer station in the aforementioned feeding buffer station information table, verify the first feeding quantity of the current feeding batch. The determination of the feeding sequence number of each piece of tobacco in the current feeding batch includes: querying the quantity of tobacco packs in the current feeding batch to which each piece of tobacco belongs in the feeding buffer station information table; if the quantity of tobacco packs in the current feeding batch in the feeding buffer station information table is 0, determining that the feeding sequence number of each piece of tobacco in the current feeding batch is 1; if the quantity of tobacco packs in the current feeding batch in the feeding buffer station information table is M, determining that the feeding sequence number of each piece of tobacco in the current feeding batch is M+1, where M is a positive integer; Based on the tobacco leaf markings in the electronically controlled data storage area, the quantity of the current feeding batch is counted as follows: when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the first piece, the quantity of the current feeding batch is counted; when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the feeding sequence number other than the first and last pieces, the quantity of the current feeding batch is incremented by 1; when the tobacco leaf marking of each piece of tobacco leaf is an identifier indicating the last piece, the quantity of the current feeding batch is incremented by 1, and the feeding slip of the current feeding batch is configured to indicate the feeding completion status.

2. The method for processing tobacco leaf information according to claim 1, wherein, Based on the feeding batch number and feeding sequence number in the feeding buffer station information table, verify the feeding quantity of the current feeding batch, including: Based on the batch number and sequence number of the feeding buffer station in the feeding buffer station information table, determine the feeding quantity of the current feeding batch, which is then used as the second feeding quantity. The first feeding quantity is verified by comparing the first feeding quantity and the second feeding quantity.

3. The method for processing tobacco information according to claim 1 further includes: The task number of each piece of tobacco is stored in the electronically controlled data storage area.

4. The method for processing tobacco leaf information according to claim 1 further includes: In response to each piece of tobacco arriving at the tobacco feeding buffer station, the task number, feeding status, buffer time, and feeding time of each piece of tobacco are stored in the feeding buffer station information table.

5. A tobacco leaf information processing device, comprising: The judgment module is configured to determine the feeding sequence number of each piece of tobacco in the current feeding batch in response to the arrival of each piece of tobacco at the tobacco order inspection station; The determining module is configured to determine the tobacco chip marker for each piece of tobacco based on the feeding sequence number of each piece of tobacco, wherein the tobacco chip marker is used to identify the feeding position of each piece of tobacco in the current feeding batch, and the tobacco chip marker includes an identifier indicating that the tobacco is the first piece in the current feeding batch, an identifier indicating that the tobacco is the last piece in the current feeding batch, and an identifier indicating the feeding sequence number of the tobacco in the current feeding batch other than the first and last pieces; The first storage module is configured to store the batch number and tobacco label of each piece of tobacco in the electronically controlled data storage area; The second storage module is configured to store the batch number and sequence number of each piece of tobacco into the feeding buffer station information table in response to the arrival of each piece of tobacco at the tobacco feeding buffer station. The statistics module is configured to, in response to the arrival of each piece of tobacco at the feeding station, count the feeding quantity of the current feeding batch based on the tobacco marking in the electronic control data storage area, and use this as the first feeding quantity; The verification module is configured to verify the quantity of the first material fed in the current batch based on the batch number and sequence number in the feeding buffer station information table. The tobacco leaf information processing device is configured to: query the quantity of tobacco packs in the current feeding batch to which each piece of tobacco leaf belongs in the feeding buffer station information table; if the quantity of tobacco packs in the current feeding batch in the feeding buffer station information table is 0, determine that the feeding sequence number of each piece of tobacco leaf in the current feeding batch is 1; if the quantity of tobacco packs in the current feeding batch in the feeding buffer station information table is M, determine that the feeding sequence number of each piece of tobacco leaf in the current feeding batch is M+1, where M is a positive integer; and When the tobacco leaf marker on each piece of tobacco is used to indicate the first piece, the quantity of tobacco fed in the current batch is counted; when the tobacco leaf marker on each piece of tobacco is used to indicate the feeding sequence number other than the first and last pieces, the quantity of tobacco fed in the current batch is incremented by 1; when the tobacco leaf marker on each piece of tobacco is used to indicate the last piece, the quantity of tobacco fed in the current batch is incremented by 1, and the feeding slip for the current batch is configured to indicate the feeding completion status.

6. A tobacco leaf information processing device, comprising: Memory; as well as A processor coupled to the memory, the processor being configured to execute the tobacco information processing method as described in any one of claims 1 to 4 based on instructions stored in the memory.

7. A computer-readable storage medium having stored thereon computer program instructions that, when executed by a processor, implement the tobacco information processing method as described in any one of claims 1 to 4.