CN117455326B - Flexible boxing association method and system based on two-dimension code - Google Patents
Flexible boxing association method and system based on two-dimension code Download PDFInfo
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- CN117455326B CN117455326B CN202311805151.XA CN202311805151A CN117455326B CN 117455326 B CN117455326 B CN 117455326B CN 202311805151 A CN202311805151 A CN 202311805151A CN 117455326 B CN117455326 B CN 117455326B
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- G06K17/00—Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
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Abstract
The invention relates to the field of data processing, and discloses a flexible boxing association method and system based on two-dimension codes, wherein the method comprises the following steps: the stacking data acquisition module acquires product two-dimensional code information and forms a plurality of product stacks according to the set stacking size; the cloud data server generates a boxing container corresponding to the product stack according to the product stack, and generates a product stack verification sequence according to a stacking mode and a product two-dimensional code sequence contained in the product stack; extracting adjacent two-dimensional codes from the product stack check sequence to obtain a check sequence; the stacking module sequentially reads two-dimensional codes of adjacent products of randomly selected products to obtain a verification sequence, and performs consistency comparison with the verification sequence, and a boxing container corresponding to the product stack after passing through the verification sequence forms a boxing two-dimensional code sequence according to the two-dimensional codes of the product boxes and the product two-dimensional code sequences contained in the product stack, so that product boxing association is completed. The invention realizes the real-time association of goods and boxing, and improves the boxing efficiency and accuracy.
Description
Technical Field
The invention relates to the field of data processing, in particular to a flexible boxing association method and system based on two-dimension codes.
Background
With the development of technology and the progress of logistics industry, flexible packaging is increasingly widely used in many fields. However, conventional flexible boxing systems rely primarily on manual handling and management, which is not only inefficient, but also prone to error. Particularly when correlating and tracking goods, the process of packing paper documents is often inconvenient due to the vulnerability and inaccuracy of the paper documents.
The two-dimensional code has the advantages of large information capacity, high safety, easiness in manufacturing and reading and the like, and is widely applied to recognition and tracking of various scenes. However, how to fully utilize the two-dimensional code technology in the flexible boxing process and improve boxing efficiency and accuracy is still a problem to be solved.
Disclosure of Invention
The invention aims to overcome the defects of the prior art and provides a flexible boxing association method based on two-dimension codes, which comprises the following steps:
The method comprises the steps that firstly, a stacking data acquisition module acquires product two-dimensional code information to form a product two-dimensional code sequence, and the product two-dimensional code sequence is segmented according to a set stacking size to form a plurality of product stacks;
Step two, the cloud data server generates a boxing container corresponding to the product stack according to the product stack, randomly selects a stacking mode and sends the boxing container to the corresponding product stack, and the stacking data acquisition module sends a product two-dimensional code sequence contained in the product stack to the boxing container of the corresponding product stack; generating a product stack check sequence according to a stacking mode and a product two-dimensional code sequence contained in the product stack by the boxing container corresponding to the product stack;
Step three, a stacking module obtains a stacking mode in a boxing container corresponding to the product stack, stacks the product stacks, randomly reads a product two-dimensional code in one product stack after stacking is completed, and sends the product two-dimensional code to the boxing container corresponding to the product stack; positioning the position of the two-dimension code in the product stack checking sequence according to the received two-dimension code of the product, returning confirmation information to the stacking module, and extracting adjacent two-dimension codes from the product stack checking sequence to obtain the checking sequence;
Step four, the stacking module sequentially reads two-dimensional codes of adjacent products of randomly selected products to obtain a verification sequence, the verification sequence is sent to a boxing container corresponding to a product stack, consistency comparison is carried out on the verification sequence, if the consistency comparison is passed, a step five is carried out, if the consistency comparison is not passed, the product stack is an abnormal product stack, and abnormal alarm information is sent out;
And fifthly, the boxing module reads the two-dimensional code of the product box, sends the two-dimensional code to a boxing container corresponding to the product stack, and the boxing container corresponding to the product stack forms a boxing two-dimensional code sequence according to the two-dimensional code of the product box and the product two-dimensional code sequence contained in the product stack, so that product boxing association is completed.
Further, the stack data acquisition module gather product two-dimensional code information, form the product two-dimensional code sequence, cut the product two-dimensional code sequence according to the stack size of setting, form a plurality of product stacks, include:
the stacking size is the number of products contained in the stacks, the stacking data acquisition module acquires two-dimensional codes of the products after production, a product two-dimensional code sequence is formed according to the reading sequence, and the product two-dimensional code sequence is segmented according to the stacking size to form a plurality of product stacks.
Further, the cloud data server generates a boxing container corresponding to the product stack according to the product stack, randomly selects a stacking mode and sends the boxing container to the boxing container corresponding to the product stack, and the cloud data server comprises:
the cloud data server generates a boxing container corresponding to the product stack according to the received product stack information, is in communication connection with the stacking module, randomly selects one of a plurality of preset stacking modes, sends the selected stacking mode to the boxing container corresponding to the product stack, and the stacking module acquires the stacking mode from the boxing container corresponding to the product stack; the stacking mode is the number of layers of product stacking, the number of products in each layer and the order of product stacking.
Further, the method for generating a product stack verification sequence by the boxing container corresponding to the product stack according to the stacking mode and the product two-dimensional code sequence included in the product stack includes:
Rearranging the two-dimensional code sequences of the products according to the number of layers of products stacked, the number of products in each layer and the stacking order of the products, and generating a product stack checking sequence.
Further, the boxing container corresponding to the product stack locates the position of the product two-dimensional code in the product stack checking sequence according to the received product two-dimensional code, and returns confirmation information to the stacking module, and simultaneously extracts adjacent two-dimensional codes in the product stack checking sequence to obtain the checking sequence, which comprises: wherein the adjacent products are the same layer adjacent products.
Further, the step of sending the verification sequence to the boxing container corresponding to the product stack, and comparing the verification sequence with the verification sequence in consistency comprises the following steps:
And if the number of the two-dimensional codes in the verification sequence, the sequence of the two-dimensional codes and the two-dimensional code information are consistent with the verification sequence, passing the consistency verification.
Further, the boxing container corresponding to the product stack forms a boxing two-dimensional code sequence according to the two-dimensional code of the product box and the product two-dimensional code sequence contained in the product stack, and the boxing two-dimensional code sequence comprises: and after the two-dimensional code sequence of the products contained in the product stack is linked to the two-dimensional code of the product box, the two-dimensional code sequence of the box is formed.
The flexible boxing association system based on the two-dimension code comprises a stacking data acquisition module, a cloud data server, a boxing data acquisition module, a stacking module, a boxing module, a control module, a data processing module and a communication module;
The control module, the communication module, the stacking data acquisition module and the boxing data acquisition module are respectively connected with the data processing module; the stacking module and the boxing module are respectively connected with the control module; the cloud data server is in communication connection with the communication module.
The beneficial effects of the invention are as follows: real-time association of cargo information and boxing information is realized, and boxing efficiency and accuracy are improved; the integrated wireless network and the database facilitate the uploading and sharing of data; the system has the early warning function, and can timely find and process the problem product stacks.
Drawings
FIG. 1 is a flow diagram of a flexible boxing association method based on two-dimension codes;
fig. 2 is a schematic diagram of a flexible boxing association system based on two-dimension codes.
Detailed Description
The technical solution of the present invention will be described in further detail with reference to the accompanying drawings, but the scope of the present invention is not limited to the following description.
For the purpose of making the technical solution and advantages of the present invention more apparent, the present invention will be further described in detail with reference to the accompanying drawings and examples. It should be understood that the particular embodiments described herein are illustrative only and are not intended to limit the invention, i.e., the embodiments described are merely some, but not all, of the embodiments of the invention. The components of the embodiments of the present invention generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the invention, as presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. All other embodiments, which can be made by a person skilled in the art without making any inventive effort, are intended to be within the scope of the present invention. It is noted that relational terms such as "first" and "second", and the like, are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions.
Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one … …" does not exclude the presence of other like elements in a process, method, article or apparatus that comprises the element.
The features and capabilities of the present invention are described in further detail below in connection with the examples.
As shown in fig. 1, a flexible boxing association method based on two-dimension codes comprises the following steps:
The method comprises the steps that firstly, a stacking data acquisition module acquires product two-dimensional code information to form a product two-dimensional code sequence, and the product two-dimensional code sequence is segmented according to a set stacking size to form a plurality of product stacks;
Step two, the cloud data server generates a boxing container corresponding to the product stack according to the product stack, randomly selects a stacking mode and sends the boxing container to the corresponding product stack, and the stacking data acquisition module sends a product two-dimensional code sequence contained in the product stack to the boxing container of the corresponding product stack; generating a product stack check sequence according to a stacking mode and a product two-dimensional code sequence contained in the product stack by the boxing container corresponding to the product stack;
Step three, a stacking module obtains a stacking mode in a boxing container corresponding to the product stack, stacks the product stacks, randomly reads a product two-dimensional code in one product stack after stacking is completed, and sends the product two-dimensional code to the boxing container corresponding to the product stack; positioning the position of the two-dimension code in the product stack checking sequence according to the received two-dimension code of the product, returning confirmation information to the stacking module, and extracting adjacent two-dimension codes from the product stack checking sequence to obtain the checking sequence;
Step four, the stacking module sequentially reads two-dimensional codes of adjacent products of randomly selected products to obtain a verification sequence, the verification sequence is sent to a boxing container corresponding to a product stack, consistency comparison is carried out on the verification sequence, if the consistency comparison is passed, a step five is carried out, if the consistency comparison is not passed, the product stack is an abnormal product stack, and abnormal alarm information is sent out;
And fifthly, the boxing module reads the two-dimensional code of the product box, sends the two-dimensional code to a boxing container corresponding to the product stack, and the boxing container corresponding to the product stack forms a boxing two-dimensional code sequence according to the two-dimensional code of the product box and the product two-dimensional code sequence contained in the product stack, so that product boxing association is completed.
The stacking data acquisition module gather product two-dimensional code information, form the product two-dimensional code sequence, cut the product two-dimensional code sequence according to the stack size of settlement, form a plurality of product stacks, include:
the stacking size is the number of products contained in the stacks, the stacking data acquisition module acquires two-dimensional codes of the products after production, a product two-dimensional code sequence is formed according to the reading sequence, and the product two-dimensional code sequence is segmented according to the stacking size to form a plurality of product stacks.
The cloud data server generates a boxing container corresponding to the product stack according to the product stack, randomly selects a stacking mode and sends the boxing container to the boxing container corresponding to the product stack, and the cloud data server comprises the following steps:
the cloud data server generates a boxing container corresponding to the product stack according to the received product stack information, is in communication connection with the stacking module, randomly selects one of a plurality of preset stacking modes, sends the selected stacking mode to the boxing container corresponding to the product stack, and the stacking module acquires the stacking mode from the boxing container corresponding to the product stack; the stacking mode is the number of layers of product stacking, the number of products in each layer and the order of product stacking.
The boxing container corresponding to the product stack generates a product stack check sequence according to a stacking mode and a product two-dimensional code sequence contained in the product stack, and the method comprises the following steps:
Rearranging the two-dimensional code sequences of the products according to the number of layers of products stacked, the number of products in each layer and the stacking order of the products, and generating a product stack checking sequence.
The boxing container corresponding to the product stack locates the position of the product two-dimension code in the product stack checking sequence according to the received product two-dimension code, returns confirmation information to the stacking module, extracts adjacent two-dimension codes in the product stack checking sequence to obtain the checking sequence, and comprises the following steps: wherein the adjacent products are the same layer adjacent products.
The step of sending the verification sequence to the boxing container corresponding to the product stack, and comparing the verification sequence with the verification sequence in consistency comprises the following steps:
And if the number of the two-dimensional codes in the verification sequence, the sequence of the two-dimensional codes and the two-dimensional code information are consistent with the verification sequence, passing the consistency verification.
The vanning container of corresponding product buttress constitute vanning two-dimensional code sequence according to the two-dimensional code of product case and the product two-dimensional code sequence that the product buttress contained, include: and after the two-dimensional code sequence of the products contained in the product stack is linked to the two-dimensional code of the product box, the two-dimensional code sequence of the box is formed.
As shown in fig. 2, a flexible boxing association system based on two-dimension codes applies the flexible boxing association method based on two-dimension codes, and the flexible boxing association system comprises a stacking data acquisition module, a cloud data server, a boxing data acquisition module, a stacking module, a boxing module, a control module, a data processing module and a communication module;
The control module, the communication module, the stacking data acquisition module and the boxing data acquisition module are respectively connected with the data processing module; the stacking module and the boxing module are respectively connected with the control module; the cloud data server is in communication connection with the communication module.
The foregoing is merely a preferred embodiment of the invention, and it is to be understood that the invention is not limited to the form disclosed herein but is not to be construed as excluding other embodiments, but is capable of numerous other combinations, modifications and environments and is capable of modifications within the scope of the inventive concept, either as taught or as a matter of routine skill or knowledge in the relevant art. And that modifications and variations which do not depart from the spirit and scope of the invention are intended to be within the scope of the appended claims.
Claims (8)
1. A flexible boxing association method based on two-dimension codes is characterized by comprising the following steps:
The method comprises the steps that firstly, a stacking data acquisition module acquires product two-dimensional code information to form a product two-dimensional code sequence, and the product two-dimensional code sequence is segmented according to a set stacking size to form a plurality of product stacks;
Step two, the cloud data server generates a boxing container corresponding to the product stack according to the product stack, randomly selects a stacking mode and sends the boxing container to the corresponding product stack, and the stacking data acquisition module sends a product two-dimensional code sequence contained in the product stack to the boxing container of the corresponding product stack; generating a product stack check sequence according to a stacking mode and a product two-dimensional code sequence contained in the product stack by the boxing container corresponding to the product stack;
Step three, a stacking module obtains a stacking mode in a boxing container corresponding to the product stack, stacks the product stacks, randomly reads a product two-dimensional code in one product stack after stacking is completed, and sends the product two-dimensional code to the boxing container corresponding to the product stack; positioning the position of the two-dimension code in the product stack check sequence according to the received two-dimension code of the product in the boxing container corresponding to the product stack, returning confirmation information to the stacking module, and extracting adjacent two-dimension codes from the product stack check sequence to obtain a first check sequence;
Step four, the stacking module sequentially reads two-dimensional codes of adjacent products of the products selected randomly in the step three to obtain verification sequences, the verification sequences are sent to boxing containers of corresponding product stacks, consistency comparison is carried out on the verification sequences and the first verification sequences, if the consistency comparison is passed, a step five is carried out, if the consistency comparison is not passed, the product stacks are abnormal product stacks, and abnormal alarm information is sent;
And fifthly, the boxing module reads the two-dimensional code of the product box, sends the two-dimensional code to a boxing container corresponding to the product stack, and the boxing container corresponding to the product stack forms a boxing two-dimensional code sequence according to the two-dimensional code of the product box and the product two-dimensional code sequence contained in the product stack, so that product boxing association is completed.
2. The flexible boxing association method based on two-dimension codes as claimed in claim 1, wherein the stacking data acquisition module acquires the two-dimension code information of the products to form two-dimension code sequences, and cuts the two-dimension code sequences according to the set stacking size to form a plurality of product stacks, comprising:
the stacking size is the number of products contained in the stacks, the stacking data acquisition module acquires two-dimensional codes of the products after production, a product two-dimensional code sequence is formed according to the reading sequence, and the product two-dimensional code sequence is segmented according to the stacking size to form a plurality of product stacks.
3. The flexible boxing association method based on the two-dimension code according to claim 2, wherein the cloud data server generates boxing containers corresponding to the product stacks according to the product stacks, randomly selects stacking modes and sends the boxing containers to the corresponding product stacks, and the method comprises the following steps:
the cloud data server generates a boxing container corresponding to the product stack according to the received product stack information, is in communication connection with the stacking module, randomly selects one of a plurality of preset stacking modes, sends the selected stacking mode to the boxing container corresponding to the product stack, and the stacking module acquires the stacking mode from the boxing container corresponding to the product stack; the stacking mode is the number of layers of product stacking, the number of products in each layer and the order of product stacking.
4. The flexible boxing association method based on two-dimension codes as claimed in claim 3, wherein the generating a product stack check sequence of the boxing container corresponding to the product stack according to the stacking mode and the product two-dimension code sequence contained in the product stack comprises:
Rearranging the two-dimensional code sequences of the products according to the number of layers of products stacked, the number of products in each layer and the stacking order of the products, and generating a product stack checking sequence.
5. The flexible boxing association method based on two-dimension codes as claimed in claim 4, wherein the boxing container corresponding to the product stack locates the position of the product two-dimension code in the checking sequence of the product stack according to the received product two-dimension code, and returns the confirmation information to the stacking module, and extracts the adjacent two-dimension code from the checking sequence of the product stack to obtain the first checking sequence, and the method comprises the following steps: wherein the adjacent products are the same layer adjacent products.
6. The flexible container association method based on two-dimensional codes according to claim 5, wherein the step of transmitting the verification sequence to the container of the corresponding product stack, and comparing the verification sequence with the first verification sequence, comprises:
And if the number of the two-dimensional codes, the sequence of the two-dimensional codes and the two-dimensional code information in the verification sequence are consistent with the first verification sequence, passing the consistency verification.
7. The flexible boxing association method based on two-dimension codes as claimed in claim 6, wherein the boxing containers corresponding to the product stacks form boxing two-dimension code sequences according to the two-dimension codes of the product boxes and the product two-dimension code sequences contained in the product stacks, and the method comprises the following steps: and after the two-dimensional code sequence of the products contained in the product stack is linked to the two-dimensional code of the product box, the two-dimensional code sequence of the box is formed.
8. The flexible boxing association system based on the two-dimension codes is characterized by comprising a stacking data acquisition module, a cloud data server, a boxing data acquisition module, a stacking module, a boxing module, a control module, a data processing module and a communication module, wherein the flexible boxing association method based on the two-dimension codes is applied to any one of claims 1-7;
The control module, the communication module, the stacking data acquisition module and the boxing data acquisition module are respectively connected with the data processing module; the stacking module and the boxing module are respectively connected with the control module; the cloud data server is in communication connection with the communication module.
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