CN112633902A - Parallel assembly line tobacco bale data association method - Google Patents

Parallel assembly line tobacco bale data association method Download PDF

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CN112633902A
CN112633902A CN202011531492.9A CN202011531492A CN112633902A CN 112633902 A CN112633902 A CN 112633902A CN 202011531492 A CN202011531492 A CN 202011531492A CN 112633902 A CN112633902 A CN 112633902A
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database
strip
names
packet
random code
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廖开阳
王睿天
曹从军
丁超
陈星�
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Xian University of Technology
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Xian University of Technology
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Abstract

The invention discloses a parallel production line tobacco bale data association method, which comprises the following steps: random codes are respectively printed on the cigarette packets, the strip packets and the bags, and the cigarette packets, the strip packets and the bag random codes on each production line are respectively associated with corresponding preset information in a database to generate cigarette packet names, strip packet names and bag names; associating the corresponding preset information of the cigarette packets with the packet names in the database in the preset number on each production line, and storing the information in the database; meanwhile, the corresponding preset information of the strip packages with the preset number on the parallel multiple pipelines in the database is associated with the box package name and stored in the database. The tobacco packets are associated with the packet data on a single production line, and the packets are associated with the case data on a plurality of parallel production lines, so that the tobacco enterprises can trace the sales and logistics information of each packet of tobacco, the consumers can trace the production information of each packet of tobacco, and the anti-counterfeiting and traceability of tobacco are realized.

Description

Parallel assembly line tobacco bale data association method
Technical Field
The invention belongs to the technical field of tobacco bale data tracking methods, and relates to a parallel production line tobacco bale data association method.
Background
With the rise of the internet of things industry, the technology of 'one thing and one code' is valued by many industries. With the increasing demand of the tobacco industry for monopoly management, product sales big data management and accurate marketing, more and more tobacco enterprises introduce random codes into cigarette packages. Because the cigarette random code must be accurate to a small box, and simultaneously covers a plurality of parallel production line boxes and bags, higher requirements are provided for the printing, inspection and information association management of the cigarette random code.
The application of the cigarette packaging random code not only meets the process quality requirements of tobacco enterprises, but also ensures the validity of the printed random code, and also needs to correlate the information of the cigarette packet, the cigarette strip and the cigarette box random code. Therefore, after the cigarettes flow to the market, the tobacco enterprises can effectively track and trace the product information, and consumers can see correct product information by scanning the random codes on the cigarette packets to check the authenticity. The existing tracking method cannot perform data association on a plurality of parallel production lines.
Disclosure of Invention
The invention aims to provide a parallel production line tobacco bale data association method, which solves the problem that data association cannot be carried out on a plurality of parallel production lines in the prior art.
The invention adopts the technical scheme that a parallel assembly line tobacco bale data association method comprises the following steps:
random codes are respectively printed on the cigarette packets, the strip packets and the bags, and the cigarette packets, the strip packets and the bag random codes on each production line are respectively associated with corresponding preset information in a database to generate cigarette packet names, strip packet names and bag names; associating the corresponding preset information of the cigarette packets with the packet names in the database in the preset number on each production line, and storing the information in the database; meanwhile, the corresponding preset information of the strip packages with the preset number on the parallel multiple pipelines in the database is associated with the box package name and stored in the database.
The invention is also characterized in that:
the method specifically comprises the following steps:
step 1, respectively printing random codes on a cigarette packet, a strip packet and a case, storing the random codes in a database, and loading production information of the process on each random code;
step 2, acquiring the tobacco bale random code of each production line, associating the tobacco bale random code with preset information corresponding to the tobacco bale random code in the database, and generating a tobacco bale name; then storing the cigarette packet name in a buffer queue and counting;
step 3, acquiring a random code of each strip packet of each production line, associating the random code with preset information corresponding to the random code of each strip packet in the database, and generating a strip packet name;
step 4, corresponding preset information of the first N cigarette packets in the buffer queue in the database is associated with the cigarette packet names, the preset information is stored in the database, meanwhile, the number of the cigarette packets in the buffer queue is cleared, and the step 2 is returned to count again;
step 5, storing the strip packet data on a plurality of parallel pipelines in a buffer queue and counting;
step 6, acquiring a luggage random code, associating the luggage random code with preset information corresponding to the luggage random code in the database, and generating a luggage name;
and 7, associating the bag names with the corresponding preset information of the first M bags in the database, storing the bag names and the corresponding preset information in the database, clearing the number of bags in the buffer queue, and returning to the step 6 to count again.
The tobacco bale random code corresponding preset information comprises a tobacco bale data sheet, and the tobacco bale data sheet is provided with a position for storing a tobacco bale name, a corresponding carton and a production line.
The strip package random code corresponding preset information comprises a strip package data table, and the strip package data table is provided with a position for storing a strip package name, a corresponding bag name and a production line.
The case random code corresponding preset information comprises a cigarette packet data table, and positions for storing case names, sales places and transport license plate numbers are arranged in the case data table.
The invention has the beneficial effects that:
the invention relates to a parallel assembly line tobacco bale data association method, which associates a tobacco bale with strip bale data on a single assembly line, associates strip bales with case data on a plurality of parallel assembly lines, realizes that a tobacco enterprise can trace the sales and logistics information of each cigarette, and a consumer can trace the production information of each cigarette, and realizes the anti-counterfeiting and tracing of tobacco; compared with the existing tracing method, the tobacco bale, the strip bale and the case are associated in an online association mode of a dynamic database; and not only aiming at a single production line, but also aiming at a plurality of production lines, the method combines the plurality of production lines through the buffer queues to realize the association of the cigarette packet data of the parallel production lines.
Drawings
Fig. 1 is a flow chart of a tobacco bale and carton packet association system in a parallel pipeline tobacco bale data association method of the invention;
fig. 2 is a flow chart of a system for associating a carton package with a case in the parallel production line tobacco package data association method.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
A parallel assembly line tobacco bale data association method comprises the steps of respectively printing random codes on tobacco bales, strip bales and bags, respectively associating the random codes of the tobacco bales, the strip bales and the bags on each assembly line with preset information in a database, and generating tobacco bale names, strip bale names and bag names; associating the corresponding preset information of the cigarette packets with the packet names in the database in the preset number on each production line, and storing the information in the database; meanwhile, the corresponding preset information of the strip packages with the preset number on the parallel multiple pipelines in the database is associated with the box package name and stored in the database.
As shown in fig. 1-2, the method specifically comprises the following steps:
step 1, in a production printing link, respectively printing random codes on tobacco bales, carton bales and bags, storing the random codes in a database, and loading process production information on each random code;
the random code is a random image realized according to the tension difference rate between a printing material and a printing stock, and the random image is converted into the random code capable of carrying information through a special algorithm. Theoretically, 100 graphic units can be combined into different combinations of more than one hundred million, and more graphic units can form more images without the occurrence of the same random codes.
Step 2, in a cigarette packet production link, additionally arranging a 'small packet random code online recognition device' on a cigarette packet conveying channel, acquiring a cigarette packet random code of each production line through online recognition of an industrial camera, associating the cigarette packet random code with preset information corresponding to the cigarette packet random code in a database, and generating a cigarette packet name with a naming format of 'B year, month, day, hour, minute and second millisecond', 'B' represents a single-box cigarette packet, 'year, month, day, hour, minute and second millisecond' represents the specific time when each single-box cigarette packet passes through the 'random code recognition device'; then storing the cigarette packet name in a buffer queue and counting;
the preset information corresponding to the tobacco bale random code comprises a data table, the data table can store tobacco bale names, corresponding carton and pack names and production line information, the tobacco bale names, the corresponding carton and pack names and corresponding columns of the production line in the data table are blank before the tobacco bale random code is not acquired, and the tobacco bale names and the two columns of the production line generate information after the tobacco bale random code is acquired;
step 3, additionally arranging a 'random code online identification and reading device' for the strip packages on a strip package conveying channel, acquiring random codes corresponding to the strip packages of each production line, associating the random codes with preset information corresponding to the random codes in a database, and generating a strip package name with a naming format of 'T year, month, day, hour and minute seconds', 'T' represents a single cigarette package, and 'year, month, day, hour and minute seconds' represents the specific time when each strip package passes through the 'random code identification and reading device';
the preset information corresponding to the strip package random code comprises a data table, the data table can store strip package names, corresponding case names and production line information, the strip package names, the corresponding case names and the production line corresponding columns in the data table are blank before the strip package random code is not acquired, and the strip package names and the production line corresponding columns generate information after the strip package random code is acquired;
step 4, correspondingly presetting information and strip packet names of the first N (N is 10) cigarette packets in the buffer queue in a database, namely storing the first 10 cigarette packet data tables and the strip packet data tables in the buffer queue into the database, writing the strip packet names into a row of the corresponding strip packet names of the cigarette packet data tables, storing the corresponding strip packet names into the database, clearing the number of the cigarette packets in the buffer queue, and returning to the step 2 for counting again;
step 5, storing and counting the strip packet data on a plurality of parallel pipelines in the same buffer queue;
step 6, additionally arranging a 'bag random code online recognition device' on a bag conveying channel, acquiring a random code corresponding to a bag, associating the random code with preset information corresponding to the random code in a database, generating a bag name with a naming format of 'X year, month, day, hour, minute and second', 'X' represents the bag, and 'year, month, day, hour, minute and second' represents the specific time when each bag passes through the 'random code recognition device';
the preset information corresponding to the luggage random code comprises a data table, wherein the data table can store luggage names, selling places and transport license plate numbers, corresponding columns of the luggage names, the selling places and the transport license plate numbers in the data table are blank before the luggage random code is not obtained, information is generated in one column of the luggage names after the luggage random code is obtained, and the selling places and the transport license plate numbers are blank in the data table before finished product warehouse delivery.
And 7, associating the bag names with the corresponding preset information of the first M (M is 50) bags in the database, namely storing a bag data table in the database and the first 50 parallel assembly line bag data tables, writing the bag names into a row of the bag data table corresponding to the bag names, storing the bag names into the database, clearing the number of bags in the buffer queue, and returning to the step 6 for counting again.
Through the mode, the tobacco bale is associated with the carton package data on a single production line, and the carton packages are associated with the case data on a plurality of parallel production lines, so that a tobacco enterprise can trace the sales and logistics information of each cigarette package, a consumer can trace the production information of each cigarette package, and the anti-counterfeiting and traceability of tobacco are realized; compared with the existing tracing method, the tobacco bale, the strip bale and the case are associated in an online association mode of a dynamic database; and not only aiming at a single production line, but also aiming at a plurality of production lines, the method combines the plurality of production lines through the buffer queues to realize the association of the cigarette packet data of the parallel production lines.

Claims (5)

1. A parallel production line tobacco bale data association method is characterized by comprising the following steps:
random codes are respectively printed on tobacco bales, strip bales and bags, the tobacco bales, strip bales and bag random codes on each production line are respectively associated with corresponding preset information in a database, and tobacco bale names, strip bale names and bag names are generated; associating the corresponding preset information of the cigarette packets with the packet names in the database in the preset number on each production line, and storing the information in the database; and simultaneously associating the corresponding preset information of the strip packages with the box package names in the database in the preset number on the parallel multiple pipelines, and storing the information to the database.
2. The parallel pipeline tobacco bale data association method according to claim 1, characterized by comprising the steps of:
step 1, respectively printing random codes on a cigarette packet, a strip packet and a case, storing the random codes in a database, and loading production information of the process to each random code;
step 2, obtaining the tobacco bale random code of each production line, associating the tobacco bale random code with preset information corresponding to the tobacco bale random code in a database, and generating a tobacco bale name; then storing the cigarette packet names in a buffer queue and counting;
step 3, acquiring the random code of each strip packet of each production line, associating the random code with preset information corresponding to the random code of each strip packet in a database, and generating a strip packet name;
step 4, corresponding preset information of the first N cigarette packets in the buffer queue in the database is associated with the cigarette packet names, the preset information is stored in the database, meanwhile, the number of the cigarette packets in the buffer queue is cleared, and the step 2 is returned to count again;
step 5, storing the strip packet data on a plurality of parallel pipelines in a buffer queue and counting;
step 6, acquiring the luggage random code, associating the luggage random code with preset information corresponding to the luggage random code in a database, and generating a luggage name;
and 7, associating the bag names with corresponding preset information of the first M bags in the database, storing the bag names and the corresponding preset information in the database, clearing the number of bags in the buffer queue, and returning to the step 6 to count again.
3. The parallel assembly line cigarette packet data association method as claimed in claim 1, wherein the preset information corresponding to the cigarette packet random code includes a cigarette packet data table, and a position for storing a cigarette packet name, a corresponding carton packet name and a production line is provided in the cigarette packet data table.
4. The parallel assembly line tobacco bale data association method according to claim 1, characterized in that the preset information corresponding to the strip bale random code comprises a strip bale data table, and the strip bale data table is provided with positions for storing strip bale names, corresponding case names and production lines.
5. The parallel assembly line tobacco bale data association method according to claim 1, characterized in that the preset information corresponding to the box random code comprises a tobacco bale data table, and the box data table is provided with positions for storing box names, sales places and transportation license plate numbers.
CN202011531492.9A 2020-12-22 2020-12-22 Parallel assembly line tobacco bale data association method Pending CN112633902A (en)

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