Digital printing control system with automatic planning function
By designing an automatic planning digital printing control system, using the order upload analysis planning system and the digital code identification printing unit, the problem of unable to automatically identify and allocate textile product sizes in the prior art is solved, and efficient printing automation and production information traceability are achieved.
Patent Information
- Application Number
- CN202510059191.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-01-15
AI Technical Summary
The prior art cannot automatically plan and allocate to the corresponding digital inkjet printing machine by identifying the size of the textile product in the order, resulting in low printing efficiency and prone to missed printing and multiple printing problems.
An automatic planning digital printing control system is designed, including an order upload analysis planning system and multiple digital code identification printing units. By identifying the number of category entries in a customer's order, generating a print code, and binding it with the digital code identification printing unit, the printing of textile product patterns is realized automatically.
It realizes automatic planning of printing textile product patterns, avoids missed printing and multiple printing problems, improves printing efficiency, and realizes traceability of production information of textile products.
Smart Images

Figure CN119991145A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of printing control systems, and in particular to an automatically planned digital printing control system. Background Art
[0002] Digital printing refers to the process of printing patterns and designs using digital printing technology. Currently, digital inkjet printers are widely used in textile fabric printing. For example, users of printed products such as carpets and bed sheets place orders through shopping platforms. Currently, these orders require manual entry of order information and manual setting of printing parameters of digital inkjet printers. In addition, when the order volume is large or there are multiple printed product categories in a single order, it is easy to cause problems such as missing printing and over-printing. Among many existing technologies, Chinese patent application CN119067713A discloses an order-based customer analysis and evaluation method and system, which includes obtaining order information of target customers, wherein the target customers are cooperative customers; obtaining a cooperation duration coefficient through the order information; obtaining printing standard information in the order information; inputting the printing standard information into a printing disassembly analysis model to obtain a printing disassembly evaluation value; obtaining a single printing analysis coefficient based on the printing disassembly evaluation value and the quantity information in the order information; obtaining a printing quality coefficient based on the printing disassembly evaluation value; and obtaining the analysis and evaluation results of the target customers based on the cooperation duration coefficient, the single printing analysis coefficient and the printing quality coefficient.
[0003] However, this patent application cannot automatically allocate the textile products in the order to the corresponding digital inkjet printing machines by identifying the sizes of the textile products in the order, thereby improving the printing efficiency.
[0004] Based on this, the present invention designs an automatic planning digital printing control system to solve the above problems. Summary of the invention
[0005] In view of the above-mentioned shortcomings of the prior art, the present invention provides an automatically planned digital printing control system.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: An automatically planned digital printing control system, comprising an order upload analysis planning system and a plurality of digital code recognition and printing units; Each of the digital code identification printing units has a unique identification code, and the order upload analysis and planning system manages the digital code identification printing unit based on the unique identification code; The unique identification code is bound to the size of the textile product on which the pattern is printed; The order upload analysis and planning system includes an order upload module, a server, an order analysis module, a customer code generation module and an order planning module; The server is connected to the customer code generation module and the order planning module in communication, the server is connected to the multiple digital code recognition and printing units in wireless communication, the order upload module is connected to the order analysis module in communication, the order analysis module is connected to the customer code generation module in communication, and the customer code generation module is connected to the order planning module in communication; The order upload module is used to upload customer orders, and the order upload module sends customer orders to the server; The server sends the customer order to the order analysis module; The order analysis module is used to analyze customer orders; The customer order includes at least one category and a customer name abbreviation; The categories include pattern numbers, textile product sizes, and textile product piece count information; The order analysis module identifies the number of categories in customer orders and processes customer orders according to the categories; The order analysis module sends the processed customer orders to the customer code generation module and the order planning module; The order planning module is used to identify the size data of textile products of the category, and send the unique identification code corresponding to the size to the customer code generation module; The client code generation module is used to generate a print code according to the pattern number, the number of textile products, the unique identification code, and the printing date, and the client code generation module sends the print code to the server; The server identifies the unique identification code in the printed code and sends the printed code to the corresponding digital code identification printing unit that is set with the unique identification code; The digital code identification printing unit is based on the digital printing production of printed codes for textile products, and each printed code is bound to a textile product.
[0007] Furthermore, the digital code recognition and printing unit includes a wireless communication module, a code recognition module, a central controller, a code printing module, a digital inkjet printer and a pattern storage module; The wireless communication module is provided with a unique identification code; The digital inkjet printing machine is used for continuous printing of a whole roll of textile fabric; The digital inkjet printer is provided with a printer code corresponding to the unique identification code of the wireless communication module; The wireless communication module is wirelessly connected to the server, and the central controller is electrically connected to the wireless communication module, the code printing module, the pattern storage module, the digital inkjet printer, and the code recognition module; The wireless communication module is used to send the printed code to the central controller, and the central controller sends it to the code recognition module; The pattern storage module stores pattern numbers and corresponding pattern data; The code recognition module is used to recognize the pattern number in the printed code, and the central controller retrieves the corresponding pattern data from the pattern storage module according to the pattern number; The central controller sends the image data to the digital inkjet printer, and the central controller sends the printing code to the code printing module.
[0008] Furthermore, the code printing module is used to print the print code onto the textile product.
[0009] Furthermore, the digital inkjet printer is used to print image data on textile products.
[0010] Furthermore, the printer code includes a unique identification code.
[0011] Furthermore, the customer order analysis step A of the order analysis module; Step A1, the order analysis module identifies whether the number of category items in the customer order is one; Step A2: if yes, the order analysis module directly sends the customer order to the customer code generation module and the order planning module; Step A3: if the answer is no, the customer order is split into multiple sub-orders according to the number of items in the category; The sub-order consists of a category and the abbreviation of the customer name; Step A4: the order analysis module sends the sub-order to the customer code generation module and the order planning module.
[0012] Furthermore, the customer code generation module generates a printing code in step B: Step B1, the customer code generation module identifies whether the sent order is a customer order or a sub-order; If it is a customer order, the customer code generation module directly identifies the number of textile products in the category, I; The client code generation module determines whether the number I is equal to; If not, the number I is used as the denominator, and each number n in the natural number set N generated according to the number I of the number of textile products is used as the numerator to generate a number n / I as the item number code; If yes, no piece sequence code is generated; If it is a sub-order, the customer code generation module sums the number of textile products in each sub-order category I to obtain I z , and according to the number of textile products z Each number n in the generated natural number set N is used as a numerator to generate an n / I zAs a serial number; Step B2, the customer code generation module arranges the customer name abbreviation, unique identification code, pattern code, and date in order and sets them as a temporary code; Step B3, the customer code generation module combines the order sequence code with the last digit of the temporary code to generate a print code.
[0013] Furthermore, the unique identifier is an IP address.
[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. When the present invention is used, it analyzes and identifies the customer's order and generates a printing code for planning the printing of the ordered textile product pattern; The printing code is coordinated with the digital code recognition printing unit to realize the automatic planning of textile product pattern printing; At the same time, the printed code is bound to the textile product, thus realizing the traceability of the production information of the textile product.
[0015] 2. When the present invention is used, the number of textile products in the order can be checked by the piece sequence code during delivery, thereby avoiding missing printing or over-printing; 3. In the present invention, each digital inkjet printer prints textile products of one size, thereby facilitating the loading and packaging of textile products of the same size. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the prior art descriptions are briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention, and for ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0017] Figure 1 A block diagram of an automatic planning digital printing control system of the present invention; Figure 2 A schematic diagram of an automatic planning digital printing control system produced by the present invention; Figure 3 A schematic diagram of a customer order and a sub-order of the present invention; Figure 4 It is a schematic diagram of a printed textile product of the present invention; Figure 5 It is a schematic diagram of the printing code of the present invention.
[0018] The numbers in the figure represent: 1. Order upload module 2. Server 3. Pattern storage module 4. Order analysis module 5. Customer code generation module 6. Order planning module 7. Wireless communication module 8. Code recognition module 9. Central controller 10. Code printing module 11. Digital inkjet printing machine. DETAILED DESCRIPTION
[0019] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0020] Embodiment 1: In some embodiments, please refer to the drawings of the specification Figure 1-Figure 5 , including an order upload analysis and planning system and multiple digital code recognition and printing units; Each digital code identification printing unit has a unique identification code, and the order upload analysis and planning system manages the digital code identification printing unit based on the unique identification code; The unique identification code is tied to the size of the textile product on which the pattern is printed; The order upload analysis and planning system includes an order upload module 1, a server 2, an order analysis module 4, a customer code generation module 5 and an order planning module 6; The server 2 is connected to the customer code generation module 5 and the order planning module 6 in communication, the server 2 is connected to the multiple digital code recognition and printing units in wireless communication, the order upload module 1 is connected to the order analysis module 4 in communication, the order analysis module 4 is connected to the customer code generation module 5 in communication, and the customer code generation module 5 is connected to the order planning module 6 in communication; The order upload module 1 is used to upload customer orders, and the order upload module 1 sends the customer orders to the server 2; Server 2 sends the customer order to order analysis module 4; The order analysis module 4 is used to analyze customer orders; A customer order includes at least one category and the customer's abbreviation; The category contains information on pattern number, textile product size, and number of textile products; The order analysis module 4 identifies the number of categories in the customer order and processes the customer order according to the category; The order analysis module 4 sends the processed customer order to the customer code generation module 5 and the order planning module 6; The order planning module 6 is used to identify the size data of textile products of the category and send the unique identification code corresponding to the size to the customer code generation module 5; The customer code generation module 5 is used to generate a print code according to the pattern number, the number of textile products, the unique identification code, and the printing date, and the customer code generation module 5 sends the print code to the server 2; The server 2 identifies the unique identification code in the printed code and sends the printed code to the corresponding digital code identification printing unit which is set with the unique identification code; The digital code identification printing unit is based on the digital printing production of printed codes for textile products, and each printed code is bound to a textile product.
[0021] When the present invention is used, it analyzes and identifies the customer's order, and generates a printing code for planning the printing of the ordered textile product pattern; The printing code is coordinated with the digital code recognition printing unit to realize the automatic planning of textile product pattern printing; At the same time, the printed code is bound to the textile product, thus realizing the traceability of the production information of the textile product.
[0022] The size of a textile product is the width and length of the textile product, and the unique identification code is bound to the width of the textile product; Customer order analysis step A of order analysis module 4; Step A1, the order analysis module 4 identifies whether the number of category items in the customer order is one; Step A2: if yes, the order analysis module 4 directly sends the customer order to the customer code generation module 5 and the order planning module 6; Step A3: if the answer is no, the customer order is split into multiple sub-orders according to the number of items in the category; A sub-order consists of a category and the customer's abbreviation; Step A4, the order analysis module 4 sends the sub-order to the customer code generation module 5 and the order planning module 6; Step B of the customer code generation module 5 generating the print code: Step B1, the customer code generation module 5 identifies whether the sent order is a customer order or a sub-order; If it is a customer order, the customer code generation module 5 directly identifies the number I of the number of textile products in the category; The customer code generation module 5 determines whether the number I is equal to 1; If not, then use the number I as the denominator, and generate each number in the natural number set N as the numerator according to the number I of the number of textile products to generate a n / I as the piece number code; If yes, no piece sequence code is generated; If it is a sub-order, the customer code generation module 5 sums the number of textile products in each sub-order category I to obtain I z , and according to the number of textile products z Generate a natural number set N, and use each number as a numerator to generate an n / I z As a serial number; Step B2, the customer code generation module 5 arranges the customer name abbreviation, unique identification code, pattern code, and date in order and sets them as a temporary code; Step B3, the customer code generation module 5 combines the order sequence code with the last digit of the temporary code to generate a print code.
[0023] The digital code recognition and printing unit includes a wireless communication module 7, a code recognition module 8, a central controller 9, a code printing module 10, a digital inkjet printer 11 and a pattern storage module 3; The wireless communication module 7 is provided with a unique identification code; The digital inkjet printer 11 is used for continuous printing of a whole roll of textile fabric; The digital inkjet printer 11 is provided with a printer code corresponding to the unique identification code of the wireless communication module 7; The wireless communication module 7 is wirelessly connected to the server 2, and the central controller 9 is electrically connected to the wireless communication module 7, the code printing module 10, the pattern storage module 3, the digital inkjet printer 11, and the code recognition module 8; The wireless communication module 7 is used to send the printed code to the central controller 9, and the central controller 9 sends it to the code recognition module 8; The pattern storage module 3 stores pattern numbers and their corresponding pattern data; The code recognition module 8 is used to recognize the pattern number in the printed code, and the central controller 9 retrieves the corresponding pattern data from the pattern storage module 3 according to the pattern number; The central controller 9 sends the image data to the digital inkjet printer 11, and the central controller 9 sends the print code to the code printing module 10; The code printing module 10 is used to print the printing code onto the textile product; The digital inkjet printer 11 is used to print image data on textile products; The code printing module 10 is a laser printer; The printer code includes a unique identification number.
[0024] The unique identifier is the IPv4 address.
[0025] In the present invention, each digital inkjet printer 11 prints textile products of one width, thereby facilitating the loading and packaging of textile products of the same size to adapt to large-scale industrial automation production.
[0026] When the present invention is used, the number of textile products in an order can be checked by the piece sequence code during delivery, thereby avoiding missed delivery or over-delivery.
[0027] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. Such modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. An automatic planning digital printing control system, characterized in that: It includes an order upload analysis and planning system and multiple digital code recognition and printing units; Each of the digital code identification printing units has a unique identification code, and the order upload analysis and planning system manages the digital code identification printing unit based on the unique identification code; The unique identification code is bound to the size of the textile product on which the pattern is printed; The order upload analysis and planning system comprises an order upload module (1), a server (2), an order analysis module (4), a customer code generation module (5) and an order planning module (6); The server (2) is in communication connection with the customer code generation module (5) and the order planning module (6); the server (2) is in wireless communication connection with the plurality of digital code recognition and printing units; the order upload module (1) is in communication connection with the order analysis module (4); the order analysis module (4) is in communication connection with the customer code generation module (5); and the customer code generation module (5) is in communication connection with the order planning module (6); The order uploading module (1) is used to upload customer orders, and the order uploading module (1) sends the customer orders to the server (2); The server (2) sends the customer order to the order analysis module (4); The order analysis module (4) is used to analyze customer orders; The customer order includes at least one category and a customer name abbreviation; The categories include pattern numbers, textile product sizes, and textile product piece count information; The order analysis module (4) identifies the number of category items in the customer order and processes the customer order according to the category; The order analysis module (4) sends the processed customer order to the customer code generation module (5) and the order planning module (6); The order planning module (6) is used to identify the size data of textile products of a certain category, and send the unique identification code corresponding to the size to the customer code generation module (5); The customer code generation module (5) is used to generate a print code according to the pattern number, the number of textile products, the unique identification code, and the printing date, and the customer code generation module (5) sends the print code to the server (2); The server (2) identifies the unique identification code in the printed code, and sends the printed code to a corresponding digital code identification printing unit that is set with the unique identification code; The digital code identification printing unit is based on the digital printing production of printed codes for textile products, and each printed code is bound to a textile product.
2. The automatic planning digital printing control system according to claim 1 is characterized in that: The digital code recognition and printing unit comprises a wireless communication module (7), a code recognition module (8), a central controller (9), a code printing module (10), a digital inkjet printer (11) and a pattern storage module (3); The wireless communication module (7) is provided with a unique identification code; The digital inkjet printing machine (11) is used for continuous printing of a whole roll of textile fabric; The digital inkjet printer (11) is provided with a printer code corresponding to the unique identification code of the wireless communication module (7); The wireless communication module (7) is wirelessly connected to the server (2), and the central controller (9) is electrically connected to the wireless communication module (7), the code printing module (10), the pattern storage module (3), the digital inkjet printer (11), and the code recognition module (8); The wireless communication module (7) is used to send the printed code to the central controller (9), and the central controller (9) sends it to the code recognition module (8); The pattern storage module (3) stores pattern numbers and corresponding pattern data; The code recognition module (8) is used to recognize the pattern number in the printed code, and the central controller (9) retrieves the corresponding pattern data from the pattern storage module (3) according to the pattern number; The central controller (9) sends the image data to the digital inkjet printing machine (11), and the central controller (9) sends the printing code to the code printing module (10).
3. The automatic planning digital printing control system according to claim 2 is characterized in that: The code printing module (10) is used to print the print code onto the textile product.
4. The automatic planning digital printing control system according to claim 3 is characterized in that: The digital inkjet printing machine (11) is used to print image data on textile products.
5. The automatic planning digital printing control system according to claim 4 is characterized in that: The printer code includes a unique identification code.
6. The automatic planning digital printing control system according to claim 5, characterized in that: The customer order analysis step A of the order analysis module (4); Step A1, the order analysis module (4) identifies whether the number of category items in the customer order is one; Step A2: if yes, the order analysis module (4) directly sends the customer order to the customer code generation module (5) and the order planning module (6); Step A3: if the answer is no, the customer order is split into multiple sub-orders according to the number of items in the category; The sub-order consists of a category and the abbreviation of the customer name; Step A4, the order analysis module (4) sends the sub-order to the customer code generation module (5) and the order planning module (6).
7. The automatic planning digital printing control system according to claim 6, characterized in that: Step B of the customer code generation module (5) generating a print code: Step B1, the customer code generation module (5) identifies whether the sent order is a customer order or a sub-order; If it is a customer order, the customer code generation module (5) directly identifies the number I of the number of textile products in the category; The customer code generation module (5) determines whether the number I is equal to 1; If not, the number I is used as the denominator, and each number n in the natural number set N generated according to the number I of the number of textile products is used as the numerator to generate a number n / I as the item number code; If yes, no piece sequence code is generated; If it is a sub-order, the customer code generation module (5) sums the number of textile products in each sub-order category I to obtain I z , and according to the number of textile products z Each number n in the generated natural number set N is used as a numerator to generate an n / I z As a serial number; Step B2, the customer code generation module (5) arranges the customer name abbreviation, unique identification code, pattern code, and date in order and sets them as a temporary code; Step B3, the customer code generation module (5) combines the order sequence code with the last digit of the temporary code to generate a print code.
8. The automatic planning digital printing control system according to claim 7, characterized in that: The unique identifier is an IP address.
Citation Information
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