A processing method and device for improving printing effect
By real-time monitoring and adjustment of water supply and ink supply, combined with temperature and humidity control, the ink imbalance problem caused by unstable temperature and humidity in the printing workshop is solved, and the printing effect is improved.
Patent Information
- Application Number
- CN202310065249.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-06
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2043-02-06
AI Technical Summary
In the prior art, the temperature and humidity control of the printing workshop is not strict enough, and the different types of paper and ink lead to the loss of balance in ink, resulting in poor printing effect.
By obtaining the water supply and ink supply information of the printing plate, we can determine whether the ink balance point is reached, and use the temperature and humidity sensors and control devices to keep it constant, monitor the printing quality and paper information in real time, and adjust the water supply and ink supply to control the ink balance.
It realizes the control of ink balance according to temperature and humidity changes and paper and ink characteristics, improves the printing effect and ensures the stability of printing quality.
Smart Images

Figure CN116330836B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of printing in printing, and in particular to a processing method and device for improving printing effect. Background Art
[0002] Offset printing utilizes the natural immiscibility of oil and water to create images and blank spaces on a printing plate. The plate is supplied with both ink and water, allowing the image to absorb oil and resist water, while the blank spaces absorb water and resist oil. The fundamental principle of offset printing is to leverage the immiscibility of oil and water and the selective adsorption of the printing plate to maintain a balance between ink and water on the plate, achieving dot transfer and ultimately, achieving clear, richly colored prints. During the offset printing process, achieving a perfect ink-water balance is closely linked to proper print transfer, ink color depth, overprint accuracy, and the drying state of the printed product. Properly mastering and controlling this balance is crucial to ensuring consistent print quality.
[0003] However, in the process of implementing the technical solutions of the embodiments of the present application, the inventors of the present application discovered that the above technology has at least the following technical problems:
[0004] The temperature and humidity control in the printing workshop is not strict enough, and the different types of paper and ink cause the ink and water to lose balance, resulting in poor printing results. Summary of the Invention
[0005] The embodiments of the present application provide a processing method and device for improving printing effects, thereby solving the technical problems in the prior art of insufficiently strict control of temperature and humidity in printing workshops, and the imbalance of water and ink caused by different types of paper and ink, which in turn leads to poor printing effects. This achieves the technical effect of being able to control the water and ink balance according to changes in temperature and humidity, and the types and characteristics of paper and ink, thereby improving printing effects.
[0006] An embodiment of the present application provides a processing method for improving printing effects, wherein the method includes: obtaining water supply information of a printing plate; obtaining ink supply information of the printing plate; obtaining a water-ink balance point of the printing plate; judging whether the water supply information and the ink supply information have reached the water-ink balance point; if the water supply information and the ink supply information have reached the water-ink balance point, obtaining first temperature information and first humidity information, the first temperature information and first humidity information being the real-time temperature and humidity for obtaining the water supply information and the ink supply information; if the water supply information and the ink supply information have not reached the water-ink balance point, obtaining real-time printing attribute information; obtaining predetermined printing attribute information; comparing the real-time printing attribute information with the predetermined printing attribute information to obtain distinguishing attribute information; obtaining a first adjustment instruction based on the distinguishing attribute information; and adjusting the distinguishing attribute information based on the first adjustment instruction.
[0007] On the other hand, the present application also provides a processing device for improving printing effects, wherein the device includes: a first obtaining unit, the first obtaining unit is used to obtain the water supply information of the printing plate; a second obtaining unit, the second obtaining unit is used to obtain the ink supply information of the printing plate; a third obtaining unit, the third obtaining unit is used to obtain the water-ink balance point of the printing plate; a first judgment unit, the first judgment unit is used to judge whether the water supply information and the ink supply information reach the water-ink balance point; a fourth obtaining unit, the fourth obtaining unit is used to obtain first temperature information and first humidity information if the water supply information and the ink supply information reach the water-ink balance point, the first temperature information and the first humidity information is used to obtain the real-time temperature and humidity of the water supply information and the ink supply information; a fifth obtaining unit, the fifth obtaining unit is used to obtain real-time printing attribute information if the water supply information and the ink supply information do not reach the water-ink balance point; a sixth obtaining unit, the sixth obtaining unit is used to obtain predetermined printing attribute information; a seventh obtaining unit, the seventh obtaining unit is used to compare the real-time printing attribute information with the predetermined printing attribute information to obtain distinguishing attribute information; an eighth obtaining unit, the eighth obtaining unit is used to obtain a first adjustment instruction based on the distinguishing attribute information; a first adjustment unit, the first adjustment unit is used to adjust the distinguishing attribute information according to the first adjustment instruction.
[0008] On the other hand, an embodiment of the present application also provides a processing device for improving printing effects, comprising a memory, a processor, and a computer program stored in the memory and runnable on the processor, wherein the processor implements the steps of the method described in the first aspect above when executing the program.
[0009] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:
[0010] By accurately obtaining water supply information and ink supply information through water supply and ink supply devices, the water supply and ink supply amounts can be adjusted in time, and the temperature and humidity in the printing room can be kept constant through indoor temperature and humidity sensors and temperature and humidity control devices. The water supply and ink supply amounts can be adjusted in time through real-time monitoring of printing quality, paper information, and ink information to ensure the water-ink balance in the printing process, thereby improving the printing effect. This realizes the technical effect of being able to control the water-ink balance according to changes in temperature and humidity, and the type and characteristics of paper and ink, thereby improving the printing effect.
[0011] The above description is an overview of the technical solution of the present application. In order to more clearly understand the technical means of the present application, which can be implemented in accordance with the contents of the specification, and to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are listed below. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a flow chart of a processing method for improving printing effects according to an embodiment of the present application;
[0013] Figure 2 This is a structural diagram of a processing device for improving printing effects according to an embodiment of the present application;
[0014] Figure 3 This is a schematic diagram of the structure of an exemplary electronic device according to an embodiment of the present application.
[0015] Explanation of the accompanying drawings: first obtaining unit 11, second obtaining unit 12, third obtaining unit 13, first judging unit 14, fourth obtaining unit 15, fifth obtaining unit 16, sixth obtaining unit 17, seventh obtaining unit 18, eighth obtaining unit 19, first adjusting unit 20, fifth bus 300, receiver 301, processor 302, transmitter 303, memory 304, bus interface 306. Implementation Method
[0016] The embodiments of the present application provide a processing method and device for improving printing effects, thereby solving the technical problems in the prior art of insufficiently strict temperature and humidity control in the printing workshop, and the imbalance of water and ink caused by different types of paper and ink, which leads to poor printing effects. This achieves the technical effect of being able to control the water and ink balance according to changes in temperature and humidity, and the types and characteristics of paper and ink, thereby improving the printing effect. Below, the example embodiments of the present application will be described in detail with reference to the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments of the present application. It should be understood that the present application is not limited to the example embodiments described herein.
[0017] In the offset printing process, a perfect water-ink balance is closely linked to proper print transfer, ink color depth, overprint accuracy, and the drying state of the printed product. Properly mastering and controlling this balance is crucial for ensuring consistent print quality. However, existing technologies still face technical challenges, such as insufficiently strict temperature and humidity control in the printing room, and variations in paper and ink types leading to imbalances in the water-ink balance, resulting in poor printing results.
[0018] In response to the above technical problems, the overall idea of the technical solution provided by this application is as follows:
[0019] An embodiment of the present application provides a processing method for improving printing effects, wherein the method includes: obtaining water supply information of a printing plate; obtaining ink supply information of the printing plate; obtaining a water-ink balance point of the printing plate; judging whether the water supply information and the ink supply information have reached the water-ink balance point; if the water supply information and the ink supply information have reached the water-ink balance point, obtaining first temperature information and first humidity information, the first temperature information and first humidity information being the real-time temperature and humidity for obtaining the water supply information and the ink supply information; if the water supply information and the ink supply information have not reached the water-ink balance point, obtaining real-time printing attribute information; obtaining predetermined printing attribute information; comparing the real-time printing attribute information with the predetermined printing attribute information to obtain distinguishing attribute information; obtaining a first adjustment instruction based on the distinguishing attribute information; and adjusting the distinguishing attribute information based on the first adjustment instruction.
[0020] After introducing the basic principles of the present application, various non-limiting implementation methods of the present application will be specifically introduced in conjunction with the drawings in the specification. Example
[0021] like Figure 1 As shown, the embodiment of the present application provides a processing method for improving printing effect, wherein the method includes:
[0022] Step S100: obtaining water supply information of the printing plate;
[0023] Specifically, correctly controlling the moisture level of the offset printing plate is crucial for ensuring proper printing and product quality. Process practice has shown that ideal printing results and product quality are achieved by minimizing the water supply while maintaining a balanced water-ink balance. The water level information for the printing plate is obtained through a water level detection unit within the water supply device within the printing unit. This information enables real-time monitoring of the water level on the plate, laying the foundation for ensuring a balanced water-ink balance.
[0024] Step S200: obtaining ink supply information of the printing plate;
[0025] Specifically, the images and text on the printing plate are created through ink, and the amount of ink supplied during printing significantly impacts the quality of the printed product. If the ink level is too low, the printed product will exhibit underdeveloped dots and a dull, grayish color. Excessive ink levels can lead to plate blurring, excessive dot expansion, ink splashing, and smudged blank areas and backsides, seriously impacting product quality. By obtaining ink supply information for the printing plate using an ink level detection unit within the ink supply device, real-time monitoring of the ink level is achieved, laying the foundation for ensuring a balanced ink-water balance.
[0026] Step S300: obtaining the ink-water balance point of the printing plate;
[0027] Specifically, the principle of ink-water balance is as follows: a large amount of ink supplied to the layout requires a large amount of water; a small amount of ink supplied to the layout requires a small amount of water. Extensive practice has shown that if the ink layer thickness of the graphic portion is 2-3μm, a water film 0.5-1μm thick is required to balance it. The correct ink-water balance condition is to achieve ink-water balance with the minimum amount of water while ensuring that the solid density of multiple primary colors meets the standard. The water and ink volume data obtained by the water and ink supply devices are automatically analyzed by the control center to determine the optimal ink-water ratio, thereby determining the ink-water balance point of the printing layout and laying the foundation for subsequent adjustments to the ink-water balance.
[0028] Step S400: determining whether the water supply information and the ink supply information reach the water-ink balance point;
[0029] Specifically, the control center obtains the optimal control ratio of the water supply and ink supply, and then determines whether the added water and ink amounts reach the predetermined water-ink balance point, thereby achieving the technical goal of being able to accurately adjust the water-ink balance.
[0030] Step S500: If the water supply amount information and the ink supply amount information reach the water-ink balance point, obtaining first temperature information and first humidity information, where the first temperature information and the first humidity information are real-time temperature and humidity for obtaining the water supply amount information and the ink supply amount information;
[0031] Specifically, if the control system determines that the water supply information and the ink supply information have reached the water-ink balance point, the first temperature information and the first humidity information are obtained from the output of a temperature and humidity sensor installed in the printing room. The temperature and humidity sensor is used to monitor the indoor temperature and humidity information in real time. Obtaining the first temperature information and the first humidity information lays the foundation for further ensuring water-ink balance during the printing process.
[0032] Step S600: if the water supply information and the ink supply information do not reach the water-ink balance point, obtaining real-time printing attribute information;
[0033] Specifically, this real-time print attribute information includes information about the sample's ink color and size. When checking the ink color, the edges of the sample can be compared with the center, or the front and back of the sample can be compared, as well as with previously drawn samples. If any changes are found, the ink supply can be slightly adjusted. After checking the sample's ink color, the T-line on the sample should be quickly checked to ensure it meets the requirements. By obtaining real-time print attribute information, the technical goal of accurately and promptly monitoring print quality is achieved.
[0034] Step S700: obtaining predetermined printing attribute information;
[0035] Specifically, the predetermined attribute information includes the ink color uniformity, print clarity, layout neatness, etc. The predetermined printing attribute information lays the foundation for subsequent problem adjustments.
[0036] Step S800: Comparing the real-time printing attribute information with the predetermined printing attribute information to obtain distinguishing attribute information;
[0037] Specifically, the distinguishing attribute information is the problems and deficiencies in the ink color uniformity, printing clarity, and layout neatness in the real-time printing attribute information compared with the predetermined printing attribute information. By comparing, the printing problems that arise are discovered and analyzed, thereby achieving the technical purpose of further controlling the printing quality.
[0038] Step S900: obtaining a first adjustment instruction according to the distinguishing attribute information;
[0039] Specifically, the first adjustment instruction is a solution obtained by analyzing the problems existing in printing found in the distinguishing attribute information, including adjusting the water supply, ink supply, stirring ink, adjusting the angle of the ink fountain roller, adjusting individual ink fountain screws, etc. to achieve the predetermined printing properties, further ensuring the printing quality.
[0040] Step S1000: adjusting the distinguishing attribute information according to the first adjustment instruction.
[0041] Specifically, based on the first adjustment instruction obtained, the printing device is adjusted through the control center, including adjusting the water supply, ink supply, stirring the ink, adjusting the angle of the ink fountain roller, adjusting individual ink fountain screws, etc. Through adjustment, the real-time printing attribute information meets the requirements of the predetermined printing attributes, thereby achieving the technical purpose of ensuring printing quality.
[0042] In order to more accurately determine whether the water supply information and the ink supply information have reached the water-ink balance point, the embodiment S400 of the present application further includes:
[0043] Step S401: Inputting the water supply amount information and the ink supply amount information into a neural network model, wherein the neural network model is trained using multiple sets of training data, each set of training data including: the water supply amount information, the ink supply amount information, and identification information for identifying whether a water-ink balance point has been reached;
[0044] Step S402: Obtain output information of the neural network model, wherein the output information includes a first output result and a second output result, the first output result is that the water supply information and the ink supply information reach a water-ink balance point, and the second output result is that the water supply information and the ink supply information do not reach a water-ink balance point.
[0045] Specifically, the machine model is obtained by training with multiple sets of training data, and the process of training the neural network model with the training data is essentially a supervised learning process. Each set of training data in the multiple sets includes: the water supply information, the ink supply information, and identification information used to identify whether the water-ink balance point has been reached; when the water supply information and the ink supply information are obtained, the machine learning model will output the information indicating whether the water-ink balance point has been reached to verify the information output by the machine learning model indicating whether the water-ink balance point has been reached. If the output information indicating whether the water-ink balance point has been reached is consistent with the identified information indicating whether the water-ink balance point has been reached, the supervised learning of this data is completed, and the supervised learning of the next set of data is carried out; if the output information indicating whether the water-ink balance point has been reached is inconsistent with the identified information indicating whether the water-ink balance point has been reached, the machine learning model itself is adjusted until the machine learning model reaches the expected accuracy, and then the supervised learning of the next set of data is carried out. Through training data, the machine learning model itself is continuously corrected and optimized, and the accuracy of the machine learning model in processing the data is improved through the process of supervised learning, thereby making the information on whether the ink and water balance point is reached accurate. By accurately evaluating the information on whether the ink and water balance point is reached, the technical goal of laying the foundation for the next step of controlling the ink and water balance is achieved.
[0046] In order to make the training data reach a convergence state, step S402 of the embodiment of the present application further includes:
[0047] Step S4021: when the output information is the first output result, constructing a training data set according to the water supply amount information and the ink supply amount information;
[0048] Step S4022: training the neural network model according to the training data set, so that the neural network model reaches a convergence state.
[0049] Specifically, the first output result is that the water supply information and the ink supply information reach a water-ink balance point. The training model is a machine learning model that can continuously learn by constructing a training data set based on the water supply information and the ink supply information, thereby continuously revising the model and ultimately obtaining satisfactory experience to process other data.
[0050] In order to obtain the ink-water balance point of the printing plate, step S300 of the embodiment of the present application further includes:
[0051] Step S301: obtaining attribute information of printing paper;
[0052] Step S302: obtaining ink attribute information;
[0053] Step S303: obtaining the water-ink balance point of the printing plate according to the property information of the printing paper and the property information of the ink.
[0054] Specifically, the printing paper attribute information includes information such as the smoothness and surface strength of the printing paper. The ink attribute information includes ink color, ink rheological properties, and ink drying properties. This information is input into the control system to determine the water-ink balance point of the printing plate, laying the foundation for further controlling the water-ink balance.
[0055] In order to ensure constant temperature and humidity in the printing environment, step S500 in the embodiment of the present application further includes:
[0056] Step S501: obtaining a first monitoring instruction;
[0057] Step S502: monitoring the first temperature information and the first humidity information in real time according to the first monitoring instruction;
[0058] Step S503: if the first temperature information changes, obtain a second adjustment instruction;
[0059] Step S504: adjusting the first temperature information according to the second adjustment instruction.
[0060] Specifically, the first monitoring device includes the temperature sensor and humidity sensor, and monitors the indoor temperature and humidity in real time through the output terminal of the device. If a change in the first temperature information is detected, the control center automatically obtains a second adjustment instruction, which is used to control the temperature through the temperature control device. This achieves the technical purpose of maintaining a constant temperature in the printing room, thereby ensuring water-ink balance and improving printing quality.
[0061] In order to obtain the third adjustment instruction, step S502 in this embodiment of the application further includes:
[0062] Step S5021: if the first humidity information changes, obtain a third adjustment instruction;
[0063] Step S5022: Adjust the first humidity information according to the third adjustment instruction.
[0064] Specifically, the indoor humidity is monitored by the first monitoring device. If a change in the first humidity condition is detected, the control center obtains the third adjustment instruction, which is used to control the indoor humidity through the humidity control device, thereby achieving the technical purpose of ensuring constant humidity in the printing room, thereby ensuring water-ink balance, and thus improving the technical effect of printing.
[0065] In order to adjust the ink-water balance point of the printing plate according to the paper information, step S301 in the embodiment of the present application further includes:
[0066] Step S3011: Obtaining defective rate information of the printing paper;
[0067] Step S3012: Obtaining defective paper information according to the defective rate;
[0068] Step S3013: obtaining attribute information of the defective paper according to the defective paper information;
[0069] Step S3014: obtaining a fourth adjustment instruction according to the attribute information of the defective paper;
[0070] Step S3015: adjusting the ink balance point of the printing plate according to the fourth adjustment instruction.
[0071] Specifically, the quality of the printed paper is tested in a laboratory, primarily using methods such as direct sunlight testing, eye level testing, sideways viewing testing, and hand touch testing. This allows information on the defective rate of the printed paper and properties of the paper identified as defective, including surface strength and smoothness. This information is then input into the control system to determine the ink-water balance point corresponding to the paper, which is then adjusted to the preset ink-water balance point. This further achieves the technical goal of accurately controlling the ink-water balance, thereby improving printing quality and ensuring the printing effect.
[0072] In summary, the processing method and device for improving printing effects provided by the embodiments of the present application have the following technical effects:
[0073] 1. The water supply and ink supply devices are used to accurately obtain water supply information and ink supply information, thereby timely adjusting the water supply and ink supply. The indoor temperature and humidity sensors and temperature and humidity control devices are used to ensure constant temperature and humidity in the printing room. The real-time monitoring of printing quality, paper information, and ink information is used to timely adjust the water supply and ink supply to ensure the water-ink balance in the printing process, thereby improving the printing effect. This realizes the technical effect of being able to control the water-ink balance according to changes in temperature and humidity, and the type and characteristics of paper and ink, thereby improving the printing effect.
[0074] 2. Since the water supply information and the ink supply information are input into the training model, and the training model then outputs whether the water-ink balance point is reached, the training model itself can continuously optimize learning and gain "experience" to process data more accurately, so that the detection of whether the water-ink balance point is reached is more accurate. By accurately judging whether the water-ink balance point is reached, the accuracy of controlling the water-ink balance is improved, thereby achieving the technical purpose of ensuring printing quality and improving printing effects by controlling the water-ink balance. Example
[0075] Based on the same inventive concept as the processing method for improving printing effect in the above embodiment, the present invention also provides a processing device for improving printing effect, such as Figure 2 As shown, the device includes:
[0076] A first obtaining unit 11, the first obtaining unit 11 is used to obtain water supply information of the printing plate;
[0077] A second obtaining unit 12, the second obtaining unit 12 is used to obtain the ink supply amount information of the printing plate;
[0078] A third obtaining unit 13, the third obtaining unit 13 is used to obtain the ink balance point of the printing plate;
[0079] a first determining unit 14, configured to determine whether the water supply information and the ink supply information have reached the water-ink balance point;
[0080] a fourth obtaining unit 15, configured to obtain first temperature information and first humidity information if the water supply amount information and the ink supply amount information reach the water-ink balance point, wherein the first temperature information and the first humidity information are real-time temperature and humidity for obtaining the water supply amount information and the ink supply amount information;
[0081] a fifth obtaining unit 16 configured to obtain real-time printing attribute information if the water supply amount information and the ink supply amount information do not reach the water-ink balance point;
[0082] a sixth obtaining unit 17, the sixth obtaining unit 17 being configured to obtain predetermined printing attribute information;
[0083] a seventh obtaining unit 18, the seventh obtaining unit 18 being configured to compare the real-time printing attribute information with the predetermined printing attribute information to obtain distinguishing attribute information;
[0084] an eighth obtaining unit 19, configured to obtain a first adjustment instruction according to the distinguishing attribute information;
[0085] The first adjustment unit 20 is configured to adjust the distinguishing attribute information according to the first adjustment instruction.
[0086] Furthermore, the device further comprises:
[0087] a first input unit, configured to input the water supply amount information and the ink supply amount information into a neural network model, wherein the neural network model is trained by multiple sets of training data, each set of training data in the multiple sets of training data including: the water supply amount information, the ink supply amount information, and identification information for identifying whether a water-ink balance point is reached;
[0088] A ninth obtaining unit, wherein the ninth obtaining unit is used to obtain output information of the neural network model, wherein the output information includes a first output result and a second output result, the first output result is that the water supply information and the ink supply information reach a water-ink balance point, and the second output result is that the water supply information and the ink supply information do not reach a water-ink balance point.
[0089] Furthermore, the device further comprises:
[0090] a tenth obtaining unit, configured to construct a training data set according to the water supply amount information and the ink supply amount information when the output information is the first output result;
[0091] A first training unit is used to train the neural network model according to the training data set so that the neural network model reaches a convergence state.
[0092] Furthermore, the device further comprises:
[0093] an eleventh obtaining unit, the eleventh obtaining unit being configured to obtain attribute information of printing paper;
[0094] a twelfth obtaining unit, configured to obtain attribute information of the ink;
[0095] The thirteenth obtaining unit is used to obtain the water-ink balance point of the printing plate according to the attribute information of the printing paper and the attribute information of the ink.
[0096] Furthermore, the device further comprises:
[0097] a fourteenth obtaining unit, configured to obtain a first monitoring instruction;
[0098] a first monitoring unit, configured to monitor the first temperature information and the first humidity information in real time according to the first monitoring instruction;
[0099] a fifteenth obtaining unit, configured to obtain a second adjustment instruction if the first temperature information changes;
[0100] A second adjustment unit is configured to adjust the first temperature information according to the second adjustment instruction.
[0101] Furthermore, the device further comprises:
[0102] a sixteenth obtaining unit, configured to obtain a third adjustment instruction if the first humidity information changes;
[0103] A third adjustment unit is configured to adjust the first humidity information according to the third adjustment instruction.
[0104] Furthermore, the device further comprises:
[0105] a seventeenth obtaining unit, configured to obtain defective rate information of the printing paper;
[0106] an eighteenth obtaining unit, configured to obtain defective paper information according to the defective rate;
[0107] a nineteenth obtaining unit, configured to obtain attribute information of the defective paper according to the defective paper information;
[0108] a twentieth obtaining unit, configured to obtain a fourth adjustment instruction according to the attribute information of the defective paper;
[0109] A fourth adjustment unit is used to adjust the ink balance point of the printing plate according to the fourth adjustment instruction.
[0110] The foregoing Figure 1 The various variations and specific examples of the processing method for improving printing effects in Example 1 are also applicable to a processing device for improving printing effects in this embodiment. Through the above detailed description of a processing method for improving printing effects, those skilled in the art can clearly understand a processing device for improving printing effects in this embodiment, so for the sake of brevity of the specification, it will not be described in detail here.
[0111] Reference below Figure 3 To describe the electronic device of the embodiment of the present application.
[0112] Figure 3 The figure shows a schematic structural diagram of an electronic device according to an embodiment of the present application.
[0113] Based on the inventive concept of a processing method for improving printing effects in the aforementioned embodiment, the present invention also provides a processing device for improving printing effects, on which a computer program is stored, and when the program is executed by a processor, the steps of any method of the processing method for improving printing effects described above are implemented.
[0114] Among them, Figure 3 In the embodiment of the present invention, a bus architecture (represented by bus 300) is shown. Bus 300 may include any number of interconnected buses and bridges. Bus 300 links various circuits, including one or more processors represented by processor 302 and memory represented by memory 304. Bus 300 may also link various other circuits, such as peripheral devices, voltage regulators, and power management circuits. These are well known in the art and are therefore not described further herein. Bus interface 306 provides an interface between bus 300 and receiver 301 and transmitter 303. Receiver 301 and transmitter 303 may be the same component, namely a transceiver, which provides a means for communicating with various other devices over a transmission medium.
[0115] The processor 302 is responsible for managing the bus 300 and general processing, while the memory 304 may be used to store data used by the processor 302 when performing operations.
[0116] Those skilled in the art will appreciate that embodiments of the present invention may be provided as methods, apparatuses, or computer program products. Thus, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present invention may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROMs, optical storage, etc.) containing computer-usable program code.
[0117] The present invention is described with reference to the flowcharts and / or block diagrams of the methods, devices (apparatus), and computer program products of the embodiments of the present invention. It should be understood that each process and / or block in the flowcharts and / or block diagrams, as well as combinations of processes and / or blocks in the flowcharts and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowcharts and / or block diagrams. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.
[0118] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.
[0119] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 The steps of the functions specified in the block or blocks are described. Although the preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they are aware of the basic inventive concepts. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention.
[0120] Obviously, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if such changes and modifications fall within the scope of the claims and their equivalents, the present invention is intended to include such changes and modifications.
Claims
1. A processing method for improving printing effect, wherein: The method comprises: Obtain water supply information in printed form; Obtaining ink supply information of the printing plate; Obtaining the ink-water balance point of the printing plate; determining whether the water supply amount information and the ink supply amount information reach the water-ink balance point; If the water supply amount information and the ink supply amount information reach the water-ink balance point, obtaining first temperature information and first humidity information, where the first temperature information and the first humidity information are real-time temperature and humidity for obtaining the water supply amount information and the ink supply amount information; If the water supply amount information and the ink supply amount information do not reach the water-ink balance point, obtaining real-time printing attribute information; Obtaining predetermined printing attribute information; comparing the real-time printing attribute information with the predetermined printing attribute information to obtain distinguishing attribute information; Obtaining a first adjustment instruction according to the distinguishing attribute information; adjusting the distinguishing attribute information according to the first adjustment instruction; Wherein, the determining whether the water supply information and the ink supply information reach the water-ink balance point includes: Inputting the water supply amount information and the ink supply amount information into a neural network model, wherein the neural network model is trained by multiple sets of training data, each set of training data in the multiple sets of training data includes: the water supply amount information, the ink supply amount information, and identification information for identifying whether a water-ink balance point is reached; Obtaining output information of the neural network model, wherein the output information includes a first output result and a second output result, the first output result being that the water supply amount information and the ink supply amount information reach a water-ink balance point, and the second output result being that the water supply amount information and the ink supply amount information do not reach the water-ink balance point; Obtaining the ink-water balance point of the printing plate includes: Obtaining property information of printing paper; Obtaining ink property information; Obtaining a water-ink balance point of the printing plate according to the property information of the printing paper and the property information of the ink; Obtaining defective rate information of the printed paper; Obtaining defective paper information according to the defective rate; obtaining attribute information of the defective paper according to the defective paper information; obtaining a fourth adjustment instruction according to the attribute information of the defective paper; According to the fourth adjustment instruction, the ink balance point of the printing plate is adjusted.
2. The method according to claim 1, wherein The method comprises: When the output information is the first output result, constructing a training data set according to the water supply amount information and the ink supply amount information; The neural network model is trained according to the training data set so that the neural network model reaches a convergence state.
3. The method according to claim 1, wherein The method comprises: Obtaining a first monitoring instruction; monitoring the first temperature information and the first humidity information in real time according to the first monitoring instruction; If the first temperature information changes, obtaining a second adjustment instruction; The first temperature information is adjusted according to the second adjustment instruction.
4. The method according to claim 3, wherein: After obtaining the second adjustment instruction, the method includes: If the first humidity information changes, obtaining a third adjustment instruction; The first humidity information is adjusted according to the third adjustment instruction.
5. A processing device for improving printing effect, wherein: The device is used to perform the steps of the method according to any one of claims 1 to 4, and the device includes: a first obtaining unit, configured to obtain water supply information of a printing plate; a second obtaining unit, the second obtaining unit being configured to obtain ink supply information of the printing plate; a third obtaining unit, the third obtaining unit being used to obtain the ink-water balance point of the printing plate; a first judging unit, configured to judge whether the water supply amount information and the ink supply amount information have reached the water-ink balance point; a fourth obtaining unit, configured to obtain first temperature information and first humidity information if the water supply amount information and the ink supply amount information reach the water-ink balance point, wherein the first temperature information and the first humidity information are real-time temperature and humidity for obtaining the water supply amount information and the ink supply amount information; a fifth obtaining unit, configured to obtain real-time printing attribute information if the water supply amount information and the ink supply amount information do not reach the water-ink balance point; a sixth obtaining unit, configured to obtain predetermined printing attribute information; a seventh obtaining unit, configured to compare the real-time printing attribute information with the predetermined printing attribute information to obtain distinguishing attribute information; an eighth obtaining unit, configured to obtain a first adjustment instruction according to the distinguishing attribute information; A first adjustment unit is configured to adjust the distinguishing attribute information according to the first adjustment instruction.
6. A processing device for improving printing effects, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the program, the steps of the method according to any one of claims 1 to 4 are implemented.
Citation Information
Patent Citations
Printing quality management method and device
CN112644166A