Display screen design editing management method and system
Through the display design and editing management system, the problem of inefficiency of traditional methods is solved, efficient and personalized display editing is achieved, and the needs of multi-stage display are met, improving user experience and system stability.
Patent Information
- Application Number
- CN202510666480.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2045-05-22
AI Technical Summary
Traditional display design and editing methods rely on manual operations, are inefficient and prone to introduce human errors, making it difficult to meet the complexity and dynamic needs of modern display design, especially when dealing with multi-stage displays, it is difficult to perform phased monitoring and modification.
Through a display screen design and editing management method and system, it includes obtaining display demand information, preprocessing and dividing the target interface, performing interface differences comparison and status determination, generating feedback information and performing classification adjustments, and finally generating modified interface display information that meets user expectations.
It improves the accuracy and efficiency of display design and editing, and can make personalized adjustments according to user needs, enhance system adaptability and stability, reduce maintenance costs, and meet the needs of complex application scenarios.
Smart Images

Figure CN120448022A_ABST
Abstract
Description
Technical Field
[0001] The present invention provides a display screen design, editing and management method and system, which relate to the technical field of display screens, and in particular to the technical field of display screen design, editing and management. Background Art
[0002] In the field of display screen design and editing, traditional management methods often rely on manual operation and subjective judgment, which is not only inefficient but also prone to human error. With the continuous advancement of display technology and the increasing diversification of display screen application scenarios, higher requirements are placed on the accuracy and efficiency of display screen design and editing. Traditional editing methods are no longer able to meet the complex and dynamic requirements of modern display screen design, especially when dealing with multi-stage display screen designs, which make it difficult to monitor and modify them in a phased manner. Summary of the Invention
[0003] The present invention provides a display screen design editing and management method and system to solve the above problems:
[0004] The present invention proposes a display screen design editing management method and system, the management method comprising:
[0005] S1. Display the demand information according to the display screen, obtain the process editing interface and process interface display information, and then obtain the corresponding interface group of the current stage;
[0006] S2. Obtain interface difference information of the corresponding interface group, determine the display status of the stage interface display information, obtain stage feedback information, and trigger a stage feedback instruction based on the display status determination information to perform stage feedback;
[0007] S3. Classify the stage feedback information to obtain stage category feedback information, adjust the stage interface display information according to the corresponding category, and obtain category adjustment information;
[0008] S4. Modify the preset display requirement interface information according to the acquired modification requirement information, obtain interface modification positioning information, modify the stage display parameters of a specific category in a specific stage, and then obtain the modified final interface display information.
[0009] Furthermore, the S1 includes:
[0010] Acquiring display demand information of a display screen, preprocessing the display demand information, and obtaining preprocessed display demand information;
[0011] Obtaining preset display requirement interface information through the display requirement information;
[0012] Dividing the preset display requirement interface information into multiple stage target interfaces;
[0013] According to the display requirement information, the stage interface display information of multiple stages is sequentially performed to obtain the process interface display information of the process editing interface and the process editing interface;
[0014] The currently acquired stage interface display information is matched with the stage target interface of the same stage among the multiple stage target interfaces to obtain a corresponding interface group.
[0015] Furthermore, the S2 includes:
[0016] Compare the interface information of the corresponding interface group corresponding to the currently acquired stage interface display information to obtain interface difference information of the corresponding interface group;
[0017] Comparing the interface difference information with a preset difference threshold to obtain interface difference comparison information;
[0018] Performing a display status determination on the currently acquired stage interface display information according to the interface difference comparison information to obtain display determination information of the currently acquired stage interface display information;
[0019] generating phase feedback information according to the interface difference comparison information;
[0020] Triggering a stage feedback instruction of the currently acquired stage interface display information according to the display determination information;
[0021] Obtain stage feedback information according to the stage feedback instruction.
[0022] Furthermore, the S3 includes:
[0023] Classifying the stage feedback information according to preset stage feedback categories to obtain stage category feedback information;
[0024] Generate corresponding category adjustment information according to the stage category feedback information;
[0025] Generate corresponding category adjustment instructions according to corresponding category adjustment information;
[0026] According to the category adjustment instruction, the stage interface display information is adjusted according to the category adjustment information to obtain the category adjustment information of the stage interface display information.
[0027] Furthermore, the S4 includes:
[0028] Acquire modification requirement information, and replace the preset display requirement interface information with a modification interface according to the modification requirement information to obtain requirement replacement interface information;
[0029] Replace the interface information according to the requirements to perform interface information modification positioning, and obtain interface modification positioning information;
[0030] Modify the positioning information according to the interface to obtain the corresponding category information of the corresponding stage;
[0031] The stage display parameters of the corresponding category of the corresponding stage are modified, and then the display of the corresponding category of the corresponding stage is regenerated, and the display information of the remaining stages is generated in sequence to obtain the modified final interface display information.
[0032] Furthermore, the management system includes:
[0033] The process interface display module is used to display the required information according to the display screen, obtain the process editing interface and process interface display information, and then obtain the corresponding interface group of the current stage;
[0034] The stage status feedback module is used to obtain the interface difference information of the corresponding interface group, determine the display status of the stage interface display information, obtain stage feedback information, and trigger the stage feedback instruction according to the display status determination information to perform stage feedback;
[0035] The stage category adjustment module is used to classify the stage feedback information, obtain the stage category feedback information, adjust the stage interface display information according to the corresponding category, and obtain category adjustment information;
[0036] The positioning and modification display module is used to replace the preset display requirement interface information with the modification interface according to the acquired modification requirement information, obtain the interface modification positioning information, modify the stage display parameters of a specific category in a specific stage, and then obtain the modified final interface display information.
[0037] Furthermore, the process interface display module includes:
[0038] A demand preprocessing module is used to obtain display demand information of the display screen, preprocess the display demand information, and obtain preprocessed display demand information;
[0039] A stage target division module is used to obtain preset display requirement interface information through the display requirement information;
[0040] Dividing the preset display requirement interface information into multiple stage target interfaces;
[0041] A process stage display module is used to sequentially display the stage interface information of multiple stages according to the display requirement information, and obtain the process interface display information of the process editing interface and the process editing interface;
[0042] The same-stage corresponding module is used to correspond the currently acquired stage interface display information with the stage target interface of the same stage among the multiple stage target interfaces to obtain a corresponding interface group.
[0043] Furthermore, the stage state feedback module includes:
[0044] The stage difference comparison module is used to compare the interface information of the corresponding interface group corresponding to the currently obtained stage interface display information to obtain the interface difference information of the corresponding interface group;
[0045] Comparing the interface difference information with a preset difference threshold to obtain interface difference comparison information;
[0046] a stage display state determination module, configured to determine the display state of the currently acquired stage interface display information based on the interface difference comparison information, and obtain display determination information of the currently acquired stage interface display information;
[0047] An instruction information feedback module, configured to generate phase feedback information based on the interface difference comparison information;
[0048] Triggering a stage feedback instruction of the currently acquired stage interface display information according to the display determination information;
[0049] Obtain stage feedback information according to the stage feedback instruction.
[0050] Furthermore, the stage category adjustment module includes:
[0051] A category classification module is used to classify the stage feedback information according to preset stage feedback categories to obtain stage category feedback information;
[0052] An adjustment instruction generating module, configured to generate corresponding category adjustment information according to the stage category feedback information;
[0053] Generate corresponding category adjustment instructions according to corresponding category adjustment information;
[0054] The display category adjustment module is used to adjust the stage interface display information to the corresponding category according to the category adjustment instruction and the category adjustment information, and obtain the category adjustment information of the stage interface display information.
[0055] Furthermore, the positioning modification display module includes:
[0056] A modification and replacement module is used to obtain modification requirement information, and replace the preset display requirement interface information with a modification interface according to the modification requirement information to obtain requirement replacement interface information;
[0057] A modification positioning module is used to replace the interface information according to the requirements to perform interface information modification positioning and obtain interface modification positioning information;
[0058] Modify the positioning information according to the interface to obtain the corresponding category information of the corresponding stage;
[0059] The display modification module is used to modify the stage display parameters of the corresponding category of the corresponding stage, and then regenerate the display of the corresponding category of the corresponding stage, generate the display information of the remaining stages in sequence, and obtain the modified final interface display information.
[0060] Beneficial effects of the present invention: By acquiring and displaying demand information in real time, the interface can be adjusted according to the actual needs of the user, thereby providing a more personalized display interface that meets the user's expectations. The system can provide feedback and adjustments based on the interface difference information at different stages, which enables the system to flexibly respond to various changes and improve the adaptability and stability of the system. By classifying and adjusting the stage feedback information, the system can optimize the display effect of the interface, making the interface more beautiful and easy to read. By presetting the display demand interface information and the interface modification positioning information, the interface can be easily modified and updated, thereby improving development efficiency and reducing maintenance costs. It can handle multi-stage interface display requirements and display different interface groups according to the current stage, thereby meeting the needs of complex application scenarios. BRIEF DESCRIPTION OF THE DRAWINGS
[0061] Figure 1 Design a schematic diagram of an editing management method for a display screen;
[0062] Figure 2 A schematic diagram of the display interface is shown. DETAILED DESCRIPTION
[0063] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0064] One embodiment of the present invention provides a display screen design editing management method and system, the management method comprising:
[0065] S1. Display the demand information according to the display screen, obtain the process editing interface and process interface display information, and then obtain the corresponding interface group of the current stage;
[0066] S2. Obtain interface difference information of the corresponding interface group, determine the display status of the stage interface display information, obtain stage feedback information, and trigger a stage feedback instruction based on the display status determination information to perform stage feedback;
[0067] S3. Classify the stage feedback information to obtain stage category feedback information, adjust the stage interface display information according to the corresponding category, and obtain category adjustment information;
[0068] S4, according to the acquired modification requirement information, the preset display requirement interface information is modified to replace the interface, the interface modification positioning information is acquired, and the stage display parameters of the specific category of the specific stage are modified, thereby obtaining the modified final interface display information, such as Figure 1 shown.
[0069] The working principle of the above technical solution is as follows: Display is performed based on the required information on the display screen. This required information comes from user input, external system interfaces, and other sources. Display information for the process editing interface and process interface is obtained. This information describes the content required to be displayed in the current stage. Based on this information, the system determines the corresponding interface group for the current stage. Interface difference information for the corresponding interface group is obtained, including changes in generated content. The display status of the stage interface display information is determined and stage feedback information is obtained. Based on the display status determination information, the system triggers the corresponding stage feedback instructions and provides stage feedback. This includes displaying prompts to the user and adjusting interface elements. The stage feedback information is classified to obtain stage category feedback information. Based on the category feedback information, the stage interface display information is adjusted to the corresponding category, obtaining category adjustment information. These adjustments include color changes, font size adjustments, layout optimization, and so on. Based on the obtained modification requirement information, the preset display requirement interface information is modified. Interface modification location information is obtained to modify the stage display parameters for a specific category in a specific stage. The system generates the modified final interface display information and presents it on the display screen.
[0070] The technical effect of the above technical solution is: by acquiring and displaying demand information in real time, the interface can be adjusted according to the actual needs of the user, thereby providing a more personalized display interface that meets the user's expectations. The system can provide feedback and adjustments based on the interface difference information at different stages, which enables the system to flexibly respond to various changes and improve the adaptability and stability of the system. By classifying and adjusting the stage feedback information, the system can optimize the display effect of the interface, making the interface more beautiful and easy to read. By presetting the display demand interface information and interface modification positioning information, the interface can be easily modified and updated, thereby improving development efficiency and reducing maintenance costs. It can handle multi-stage interface display requirements and display different interface groups according to the current stage, thereby meeting the needs of complex application scenarios.
[0071] In one embodiment of the present invention, S1 includes:
[0072] Acquiring display demand information of a display screen, preprocessing the display demand information, and obtaining preprocessed display demand information;
[0073] Obtaining preset display requirement interface information through the display requirement information;
[0074] Dividing the preset display requirement interface information into multiple stage target interfaces;
[0075] According to the display requirement information, the stage interface display information of multiple stages is sequentially performed to obtain the process interface display information of the process editing interface and the process editing interface;
[0076] The currently acquired stage interface display information is matched with the stage target interface of the same stage among the multiple stage target interfaces to obtain a corresponding interface group.
[0077] The working principle of the above technical solution is as follows: Display requirement information for the display screen is obtained through user input, external devices, or software interfaces. This information includes the content to be displayed, format, layout, etc. The obtained display requirement information is preprocessed. This includes steps such as data cleaning (removing invalid or redundant information), format conversion (ensuring that the information meets system processing requirements), and data integration (integrating scattered information into structured data). The preprocessed display requirement information is used to obtain preset display requirement interface information. This preset interface information may be stored in the system database or configuration file and defines the interface elements and layout to be displayed in different scenarios. The system divides the preset display requirement interface information into multiple stage target interfaces. These stage target interfaces represent different stages or steps of displaying content on the display screen, each with its own specific display content and requirements. Based on the display requirement information, the system sequentially generates stage interface display information for multiple stages. This includes creating a process editing interface and generating process interface display information for that interface during the display process. The currently obtained stage interface display information is matched with the stage target interfaces of the same stage in the multiple stage target interfaces to form a corresponding interface group. This corresponding process monitors whether the actual display content of each stage is consistent with the preset target interface.
[0078] The technical effect of the above technical solution is: by pre-processing the display demand information, the system can remove invalid or redundant information to ensure the accuracy and effectiveness of the displayed content. The introduction of preset display demand interface information enables the system to flexibly adjust the display content according to different display requirements to meet the diverse needs of users or application scenarios. The display demand information is divided into multiple stage target interfaces to make the display process clearer and more orderly, which helps to improve display efficiency and user experience. By dividing the display into multiple stages, each display stage can be monitored for deviation from the target. When a deviation occurs, it can be corrected immediately to avoid greater losses. The system can dynamically update the display content based on the currently acquired stage interface display information to ensure that the content on the display screen is always the latest. By structuring the storage and stage-by-stage processing of display demand information, the system is easier to maintain and manage, reducing the error rate and maintenance costs. This method enables the system to efficiently process display demand information of the display screen, generate display content that meets the requirements, and provide flexible and accurate display services.
[0079] In one embodiment of the present invention, the S2 includes:
[0080] Compare the interface information of the corresponding interface group corresponding to the currently acquired stage interface display information to obtain interface difference information of the corresponding interface group;
[0081] Comparing the interface difference information with a preset difference threshold to obtain interface difference comparison information;
[0082] Performing a display status determination on the currently acquired stage interface display information according to the interface difference comparison information to obtain display determination information of the currently acquired stage interface display information;
[0083] When the interface difference information is greater than the preset difference threshold, the interface display information in the judgment stage is unqualified; when the interface difference information is less than or equal to the preset difference threshold, the interface display information in the judgment stage is qualified;
[0084] generating phase feedback information according to the interface difference comparison information;
[0085] Triggering a stage feedback instruction of the currently acquired stage interface display information according to the display determination information;
[0086] When the stage interface displays information as unqualified, the stage feedback instruction is triggered to provide feedback on the stage feedback information;
[0087] Obtain stage feedback information according to the stage feedback instruction.
[0088] Calculating a stage display abnormality coefficient based on the stage feedback information;
[0089] The calculation formula of the feedback anomaly coefficient in the above stage is:
[0090]
[0091] Among them, JK is the stage feedback anomaly coefficient, C jm is the interface difference information data, C yz is the preset difference threshold, and α is the abnormal sensitivity adjustment factor, which ranges from 0 to 2.
[0092] The stage abnormality display warning is carried out according to the stage feedback abnormality coefficient.
[0093] The working principle of the above technical solution is to compare the interface information of the currently acquired stage interface display information with that of its corresponding interface group. This step aims to identify differences between the two, including differences in content, layout, color, and other aspects. After the comparison, the system generates interface difference information for the corresponding interface group. This information details the differences between the actual display interface and the preset target interface. The system compares the interface difference information with a preset difference threshold. Based on the interface difference comparison information, the system determines the display status of the currently acquired stage interface display information. If the interface difference information exceeds the preset difference threshold, it is determined to be unqualified; if it is less than or equal to the preset difference threshold, it is determined to be qualified. Based on the interface difference comparison information, the system generates stage feedback information. This information includes the specific content, location, and severity of the difference. Based on the display determination information, the system triggers a stage feedback instruction for the currently acquired stage interface display information. If the stage interface display information is unqualified, the feedback instruction is triggered, preparing to provide feedback on the stage feedback information. The system obtains specific stage feedback information based on the stage feedback instruction, which will be used for subsequent processing or optimization.
[0094] The technical effect of the above technical solution is: by comparing the actual display interface with the preset target interface, the system can promptly discover and correct differences, thereby improving the display quality of the display screen. The introduction of the preset difference threshold enables the system to quantitatively evaluate the interface differences, thereby enhancing the stability and reliability of the system. Timely feedback and adjustment can ensure that the content on the display screen always meets user expectations, thereby improving the user experience. The generation and acquisition of stage feedback information provides data support for the continuous improvement of the system, which helps to continuously optimize the display effect and user experience. Through the automated comparison and judgment mechanism, the system can reduce manual intervention and reduce maintenance costs. This method enables the system to efficiently handle the comparison, judgment and feedback of display screen display demand information, ensuring that the display quality of the display screen meets user expectations, while reducing maintenance costs and improving user experience. Performing stage abnormal display warnings based on the stage feedback abnormality coefficient can improve the abnormal monitoring sensitivity of the display stage, achieve timely intervention in abnormal situations, and avoid the expansion of abnormal display situations and cause losses.
[0095] In one embodiment of the present invention, S3 includes:
[0096] Classifying the stage feedback information according to preset stage feedback categories to obtain stage category feedback information;
[0097] Generate corresponding category adjustment information according to the stage category feedback information;
[0098] Generate corresponding category adjustment instructions according to corresponding category adjustment information;
[0099] According to the category adjustment instruction, the stage interface display information is adjusted according to the category adjustment information to obtain the category adjustment information of the stage interface display information.
[0100] Calculating the adjustment coefficient of the corresponding category according to the corresponding category adjustment information of the feedback information of the stage class;
[0101] The calculation formula of the adjustment coefficient of the corresponding category is:
[0102]
[0103] Among them, T lb is the adjustment coefficient of the corresponding category, n is the total number of categories in the corresponding stage, W fo is the display error rate of the corresponding category (the number of incorrectly displayed tasks divided by the total number of displayed tasks), M fo is the display feedback rate of the corresponding category (the number of feedbacks divided by the total number of monitorings), W lo is the preset weight value of the corresponding category, W li is the preset weight value of the i-th category in the corresponding stage;
[0104] The corresponding category adjustment information is adjusted according to the adjustment coefficient to a corresponding coefficient adjustment degree.
[0105] The working principle of the above technical solution is to classify stage feedback information according to preset stage feedback categories. These preset categories may include content errors, improper layout, color mismatches, etc., and the specific categories are determined by system requirements or user expectations. After classification, the system obtains stage category feedback information, which indicates the specific type and nature of the feedback issue. Based on the stage category feedback information, corresponding category adjustment information is generated. This adjustment information may include modification suggestions, parameter adjustments, content replacements, etc., and is intended to provide guidance on how to optimize the stage interface display information. The system further generates category adjustment instructions based on the corresponding category adjustment information. These instructions are specific operation commands used to instruct the system or user on how to perform adjustment operations. Based on the category adjustment instructions and the corresponding adjustment information, the stage interface display information is adjusted to the corresponding category. This step may involve modifying interface elements, adjusting layouts, changing colors, and other operations to optimize the display effect. After the adjustment, the system generates category adjustment information for the stage interface display information, which records the results and effects of the adjustment.
[0106] The technical effect of the above technical solution is: through classification processing and generation of specific adjustment instructions, the system can perform adjustment operations more efficiently and reduce unnecessary duplication and errors. Targeted adjustments can more accurately solve display problems, improve display effects, and make the content on the display screen more in line with user expectations. The preset stage feedback categories and adjustment information enable the system to flexibly respond to different types of display problems, enhancing the adaptability and flexibility of the system. The generation and recording of category adjustment information provides data support for the continuous improvement of the system, which helps to continuously optimize the display effects and user experience. Through automated classification, adjustment and optimization mechanisms, the system can reduce manual intervention, reduce maintenance costs, and improve overall operational efficiency. The corresponding category adjustment information is adjusted to the corresponding coefficient adjustment degree according to the adjustment coefficient.
[0107] In one embodiment of the present invention, the S4 includes:
[0108] Acquire modification requirement information, and replace the preset display requirement interface information with a modification interface according to the modification requirement information to obtain requirement replacement interface information;
[0109] Replace the interface information according to the requirements to perform interface information modification positioning, and obtain interface modification positioning information;
[0110] Modify the positioning information according to the interface to obtain the corresponding category information of the corresponding stage;
[0111] Modify the stage display parameters of the corresponding category of the corresponding stage, and then regenerate the display of the corresponding category of the corresponding stage, and generate the display information of the remaining stages in sequence to obtain the modified final interface display information, such as Figure 2 shown.
[0112] The above technical solution works as follows: It obtains modification request information, which may come from user feedback, system testing, or other sources, indicating the required modifications to the preset display requirement interface information. Based on the modification request information, the system replaces the preset display requirement interface information with the modified interface. This step may involve modifying interface elements such as content, layout, and color to obtain the new required replacement interface information. The system then locates the interface modification for the required replacement interface information. This step aims to determine the specific location, scope, and nature of the modification to obtain interface modification location information. Based on the interface modification location information, the system obtains corresponding category information for the corresponding stage. This information specifies the specific stage and category affected by the modification, such as the content stage, layout stage, or color stage. The system modifies the stage display parameters for the corresponding category of the corresponding stage. These parameters may include font size, color code, layout rules, etc., which control the interface display effect. After the modification, the system regenerates the display of the corresponding category of the corresponding stage to ensure that the modified interface elements are displayed correctly. The system then sequentially generates display information for the remaining stages. These stages may include stages unaffected by the modification or stages that have been adjusted to meet the modification requirements. The modified final interface display information is generated through the display information of all stages. This information will be used to update the display content on the display screen.
[0113] The technical effect of the above technical solution is: through clear modification requirement information and positioning information, the system can find the parts that need to be modified more quickly, thereby improving modification efficiency. Targeted modification and regeneration can ensure that the modified interface elements are displayed correctly, avoiding errors or omissions. The system can flexibly adjust display parameters and interface elements according to modification requirements, thereby enhancing the flexibility and adaptability of the system. The modified interface display information can more accurately reflect user expectations or system requirements, and improve display effects and user experience. Through automated modification, positioning and regeneration mechanisms, the system can reduce manual intervention and reduce maintenance costs. This method enables the system to efficiently handle the modification requirements of display screen display requirement information, and through positioning, modification and regeneration, ensure that the display effect of the display screen meets user expectations or system requirements, while reducing maintenance costs and improving user experience and operational efficiency.
[0114] In one embodiment of the present invention, the management system includes:
[0115] The process interface display module is used to display the required information according to the display screen, obtain the process editing interface and process interface display information, and then obtain the corresponding interface group of the current stage;
[0116] The stage status feedback module is used to obtain the interface difference information of the corresponding interface group, determine the display status of the stage interface display information, obtain stage feedback information, and trigger the stage feedback instruction according to the display status determination information to perform stage feedback;
[0117] The stage category adjustment module is used to classify the stage feedback information, obtain the stage category feedback information, adjust the stage interface display information according to the corresponding category, and obtain category adjustment information;
[0118] The positioning and modification display module is used to replace the preset display requirement interface information with the modification interface according to the acquired modification requirement information, obtain the interface modification positioning information, modify the stage display parameters of a specific category in a specific stage, and then obtain the modified final interface display information.
[0119] The working principle of the above technical solution is as follows: Display is performed based on the required information on the display screen. This required information comes from user input, external system interfaces, and other sources. Display information for the process editing interface and process interface is obtained. This information describes the content required to be displayed in the current stage. Based on this information, the system determines the corresponding interface group for the current stage. Interface difference information for the corresponding interface group is obtained, including changes in generated content. The display status of the stage interface display information is determined and stage feedback information is obtained. Based on the display status determination information, the system triggers the corresponding stage feedback instructions and provides stage feedback. This includes displaying prompts to the user and adjusting interface elements. The stage feedback information is classified to obtain stage category feedback information. Based on the category feedback information, the stage interface display information is adjusted to the corresponding category, obtaining category adjustment information. These adjustments include color changes, font size adjustments, layout optimization, and so on. Based on the obtained modification requirement information, the preset display requirement interface information is modified. Interface modification location information is obtained to modify the stage display parameters for a specific category in a specific stage. The system generates the modified final interface display information and presents it on the display screen.
[0120] The technical effect of the above technical solution is: by acquiring and displaying demand information in real time, the interface can be adjusted according to the actual needs of the user, thereby providing a more personalized display interface that meets the user's expectations. The system can provide feedback and adjustments based on the interface difference information at different stages, which enables the system to flexibly respond to various changes and improve the adaptability and stability of the system. By classifying and adjusting the stage feedback information, the system can optimize the display effect of the interface, making the interface more beautiful and easy to read. By presetting the display demand interface information and interface modification positioning information, the interface can be easily modified and updated, thereby improving development efficiency and reducing maintenance costs. It can handle multi-stage interface display requirements and display different interface groups according to the current stage, thereby meeting the needs of complex application scenarios.
[0121] In one embodiment of the present invention, the process interface display module includes:
[0122] A demand preprocessing module is used to obtain display demand information of the display screen, preprocess the display demand information, and obtain preprocessed display demand information;
[0123] A stage target division module is used to obtain preset display requirement interface information through the display requirement information;
[0124] Dividing the preset display requirement interface information into multiple stage target interfaces;
[0125] A process stage display module is used to sequentially display the stage interface information of multiple stages according to the display requirement information, and obtain the process interface display information of the process editing interface and the process editing interface;
[0126] The same-stage corresponding module is used to correspond the currently acquired stage interface display information with the stage target interface of the same stage among the multiple stage target interfaces to obtain a corresponding interface group.
[0127] The working principle of the above technical solution is as follows: Display requirement information for the display screen is obtained through user input, external devices, or software interfaces. This information includes the content to be displayed, format, layout, etc. The obtained display requirement information is preprocessed. This includes steps such as data cleaning (removing invalid or redundant information), format conversion (ensuring that the information meets system processing requirements), and data integration (integrating scattered information into structured data). The preprocessed display requirement information is used to obtain preset display requirement interface information. This preset interface information may be stored in the system database or configuration file and defines the interface elements and layout to be displayed in different scenarios. The system divides the preset display requirement interface information into multiple stage target interfaces. These stage target interfaces represent different stages or steps of displaying content on the display screen, each with its own specific display content and requirements. Based on the display requirement information, the system sequentially generates stage interface display information for multiple stages. This includes creating a process editing interface and generating process interface display information for that interface during the display process. The currently obtained stage interface display information is matched with the stage target interfaces of the same stage in the multiple stage target interfaces to form a corresponding interface group. This corresponding process monitors whether the actual display content of each stage is consistent with the preset target interface.
[0128] The technical effect of the above technical solution is: by pre-processing the display demand information, the system can remove invalid or redundant information to ensure the accuracy and effectiveness of the displayed content. The introduction of preset display demand interface information enables the system to flexibly adjust the display content according to different display requirements to meet the diverse needs of users or application scenarios. The display demand information is divided into multiple stage target interfaces to make the display process clearer and more orderly, which helps to improve display efficiency and user experience. By dividing the display into multiple stages, each display stage can be monitored for deviation from the target. When a deviation occurs, it can be corrected immediately to avoid greater losses. The system can dynamically update the display content based on the currently acquired stage interface display information to ensure that the content on the display screen is always the latest. By structuring the storage and stage-by-stage processing of display demand information, the system is easier to maintain and manage, reducing the error rate and maintenance costs. This method enables the system to efficiently process display demand information of the display screen, generate display content that meets the requirements, and provide flexible and accurate display services.
[0129] In one embodiment of the present invention, the stage state feedback module includes:
[0130] The stage difference comparison module is used to compare the interface information of the corresponding interface group corresponding to the currently obtained stage interface display information to obtain the interface difference information of the corresponding interface group;
[0131] Comparing the interface difference information with a preset difference threshold to obtain interface difference comparison information;
[0132] a stage display state determination module, configured to determine the display state of the currently acquired stage interface display information based on the interface difference comparison information, and obtain display determination information of the currently acquired stage interface display information;
[0133] When the interface difference information is greater than the preset difference threshold, the interface display information in the judgment stage is unqualified; when the interface difference information is less than or equal to the preset difference threshold, the interface display information in the judgment stage is qualified;
[0134] An instruction information feedback module, configured to generate phase feedback information based on the interface difference comparison information;
[0135] Triggering a stage feedback instruction of the currently acquired stage interface display information according to the display determination information;
[0136] When the stage interface displays information as unqualified, the stage feedback instruction is triggered to provide feedback on the stage feedback information;
[0137] Obtain stage feedback information according to the stage feedback instruction.
[0138] Calculating a stage display abnormality coefficient based on the stage feedback information;
[0139] The calculation formula of the feedback anomaly coefficient in the above stage is:
[0140]
[0141] Among them, JK is the stage feedback anomaly coefficient, C jm is the interface difference information data, C yz is the preset difference threshold, and α is the abnormal sensitivity adjustment factor, which ranges from 0 to 2.
[0142] The stage abnormality display warning is carried out according to the stage feedback abnormality coefficient.
[0143] The working principle of the above technical solution is to compare the interface information of the currently acquired stage interface display information with that of its corresponding interface group. This step aims to identify differences between the two, including differences in content, layout, color, and other aspects. After the comparison, the system generates interface difference information for the corresponding interface group. This information details the differences between the actual display interface and the preset target interface. The system compares the interface difference information with a preset difference threshold. Based on the interface difference comparison information, the system determines the display status of the currently acquired stage interface display information. If the interface difference information exceeds the preset difference threshold, it is determined to be unqualified; if it is less than or equal to the preset difference threshold, it is determined to be qualified. Based on the interface difference comparison information, the system generates stage feedback information. This information includes the specific content, location, and severity of the difference. Based on the display determination information, the system triggers a stage feedback instruction for the currently acquired stage interface display information. If the stage interface display information is unqualified, the feedback instruction is triggered, preparing to provide feedback on the stage feedback information. The system obtains specific stage feedback information based on the stage feedback instruction, which will be used for subsequent processing or optimization.
[0144] The technical effect of the above technical solution is: by comparing the actual display interface with the preset target interface, the system can promptly discover and correct differences, thereby improving the display quality of the display screen. The introduction of preset difference thresholds enables the system to quantitatively evaluate interface differences, enhancing the stability and reliability of the system. Timely feedback and adjustments can ensure that the content on the display screen always meets user expectations, thereby improving the user experience. The generation and acquisition of stage feedback information provides data support for the continuous improvement of the system, which helps to continuously optimize the display effect and user experience. Through the automated comparison and judgment mechanism, the system can reduce manual intervention and reduce maintenance costs. This method enables the system to efficiently handle the comparison, judgment and feedback of display screen display demand information, ensuring that the display quality of the display screen meets user expectations, while reducing maintenance costs and improving user experience.
[0145] In one embodiment of the present invention, the stage category adjustment module includes:
[0146] A category classification module is used to classify the stage feedback information according to preset stage feedback categories to obtain stage category feedback information;
[0147] An adjustment instruction generating module, configured to generate corresponding category adjustment information according to the stage category feedback information;
[0148] Generate corresponding category adjustment instructions according to corresponding category adjustment information;
[0149] The display category adjustment module is used to adjust the stage interface display information to the corresponding category according to the category adjustment instruction and the category adjustment information, and obtain the category adjustment information of the stage interface display information.
[0150] Calculating the adjustment coefficient of the corresponding category according to the corresponding category adjustment information of the feedback information of the stage class;
[0151] The calculation formula of the adjustment coefficient of the corresponding category is:
[0152]
[0153] Among them, T lb is the adjustment coefficient of the corresponding category, n is the total number of categories in the corresponding stage, W fo is the display error rate of the corresponding category (the number of incorrectly displayed tasks divided by the total number of displayed tasks), M fo is the display feedback rate of the corresponding category (the number of feedbacks divided by the total number of monitorings), W lo is the preset weight value of the corresponding category, W li is the preset weight value of the i-th category in the corresponding stage;
[0154] The corresponding category adjustment information is adjusted according to the adjustment coefficient to a corresponding coefficient adjustment degree.
[0155] The working principle of the above technical solution is to classify stage feedback information according to preset stage feedback categories. These preset categories may include content errors, improper layout, color mismatches, etc., and the specific categories are determined by system requirements or user expectations. After classification, the system obtains stage category feedback information, which indicates the specific type and nature of the feedback issue. Based on the stage category feedback information, corresponding category adjustment information is generated. This adjustment information may include modification suggestions, parameter adjustments, content replacements, etc., and is intended to provide guidance on how to optimize the stage interface display information. The system further generates category adjustment instructions based on the corresponding category adjustment information. These instructions are specific operation commands used to instruct the system or user on how to perform adjustment operations. Based on the category adjustment instructions and the corresponding adjustment information, the stage interface display information is adjusted to the corresponding category. This step may involve modifying interface elements, adjusting layouts, changing colors, and other operations to optimize the display effect. After the adjustment, the system generates category adjustment information for the stage interface display information, which records the results and effects of the adjustment.
[0156] The technical effect of the above technical solution is: through classification processing and generation of specific adjustment instructions, the system can perform adjustment operations more efficiently and reduce unnecessary duplication and errors. Targeted adjustments can more accurately solve display problems, improve display effects, and make the content on the display screen more in line with user expectations. The preset stage feedback categories and adjustment information enable the system to flexibly respond to different types of display problems, enhancing the adaptability and flexibility of the system. The generation and recording of category adjustment information provides data support for the continuous improvement of the system, which helps to continuously optimize the display effects and user experience. Through automated classification, adjustment and optimization mechanisms, the system can reduce manual intervention, reduce maintenance costs, and improve overall operational efficiency.
[0157] In one embodiment of the present invention, the positioning modification display module includes:
[0158] A modification and replacement module is used to obtain modification requirement information, and replace the preset display requirement interface information with a modification interface according to the modification requirement information to obtain requirement replacement interface information;
[0159] A modification positioning module is used to replace the interface information according to the requirements to perform interface information modification positioning and obtain interface modification positioning information;
[0160] Modify the positioning information according to the interface to obtain the corresponding category information of the corresponding stage;
[0161] The display modification module is used to modify the stage display parameters of the corresponding category of the corresponding stage, and then regenerate the display of the corresponding category of the corresponding stage, generate the display information of the remaining stages in sequence, and obtain the modified final interface display information.
[0162] The above technical solution works as follows: It obtains modification request information, which may come from user feedback, system testing, or other sources, indicating the required modifications to the preset display requirement interface information. Based on the modification request information, the system replaces the preset display requirement interface information with the modified interface. This step may involve modifying interface elements such as content, layout, and color to obtain the new required replacement interface information. The system then locates the interface modification for the required replacement interface information. This step aims to determine the specific location, scope, and nature of the modification to obtain interface modification location information. Based on the interface modification location information, the system obtains corresponding category information for the corresponding stage. This information specifies the specific stage and category affected by the modification, such as the content stage, layout stage, or color stage. The system modifies the stage display parameters for the corresponding category of the corresponding stage. These parameters may include font size, color code, layout rules, etc., which control the interface display effect. After the modification, the system regenerates the display of the corresponding category of the corresponding stage to ensure that the modified interface elements are displayed correctly. The system then sequentially generates display information for the remaining stages. These stages may include stages unaffected by the modification or stages that have been adjusted to meet the modification requirements. The modified final interface display information is generated through the display information of all stages. This information will be used to update the display content on the display screen.
[0163] The technical effect of the above technical solution is: through clear modification requirement information and positioning information, the system can find the parts that need to be modified more quickly, thereby improving modification efficiency. Targeted modification and regeneration can ensure that the modified interface elements are displayed correctly, avoiding errors or omissions. The system can flexibly adjust display parameters and interface elements according to modification requirements, thereby enhancing the flexibility and adaptability of the system. The modified interface display information can more accurately reflect user expectations or system requirements, and improve display effects and user experience. Through automated modification, positioning and regeneration mechanisms, the system can reduce manual intervention and reduce maintenance costs. This method enables the system to efficiently handle the modification requirements of display screen display requirement information, and through positioning, modification and regeneration, ensure that the display effect of the display screen meets user expectations or system requirements, while reducing maintenance costs and improving user experience and operational efficiency.
[0164] Obviously, those skilled in the art may make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if such modifications and variations fall within the scope of the claims and their equivalents, the present invention is intended to include such modifications and variations.
Claims
1. A display screen design editing and management method, characterized in that: The management method includes: S1. Display the demand information according to the display screen, obtain the process editing interface and process interface display information, and then obtain the corresponding interface group of the current stage; S2. Obtain interface difference information of the corresponding interface group, determine the display status of the stage interface display information, obtain stage feedback information, and trigger a stage feedback instruction based on the display status determination information to perform stage feedback; S3. Classify the stage feedback information to obtain stage category feedback information, adjust the stage interface display information according to the corresponding category, and obtain category adjustment information; S4. Modify the preset display requirement interface information according to the acquired modification requirement information, obtain interface modification positioning information, modify the stage display parameters of a specific category in a specific stage, and then obtain the modified final interface display information.
2. A display screen design editing and management method according to claim 1, characterized in that: Said S1 comprises: Acquiring display demand information of a display screen, preprocessing the display demand information, and obtaining preprocessed display demand information; Obtaining preset display requirement interface information through the display requirement information; Dividing the preset display requirement interface information into multiple stage target interfaces; According to the display requirement information, the stage interface display information of multiple stages is sequentially performed to obtain the process interface display information of the process editing interface and the process editing interface; The currently acquired stage interface display information is matched with the stage target interface of the same stage among the multiple stage target interfaces to obtain a corresponding interface group.
3. A display screen design editing and management method according to claim 1, characterized in that: The S2 includes: Compare the interface information of the corresponding interface group corresponding to the currently acquired stage interface display information to obtain interface difference information of the corresponding interface group; Comparing the interface difference information with a preset difference threshold to obtain interface difference comparison information; Performing a display status determination on the currently acquired stage interface display information according to the interface difference comparison information to obtain display determination information of the currently acquired stage interface display information; generating phase feedback information according to the interface difference comparison information; Triggering a stage feedback instruction of the currently acquired stage interface display information according to the display determination information; Obtain stage feedback information according to the stage feedback instruction.
4. A display screen design editing and management method according to claim 1, characterized in that: The S3 includes: Classifying the stage feedback information according to preset stage feedback categories to obtain stage category feedback information; Generate corresponding category adjustment information according to the stage category feedback information; Generate corresponding category adjustment instructions according to corresponding category adjustment information; According to the category adjustment instruction, the stage interface display information is adjusted according to the category adjustment information to obtain the category adjustment information of the stage interface display information.
5. A display screen design editing and management method according to claim 1, characterized in that: The S4 includes: Acquire modification requirement information, and replace the preset display requirement interface information with a modification interface according to the modification requirement information to obtain requirement replacement interface information; Replace the interface information according to the requirements to perform interface information modification positioning, and obtain interface modification positioning information; Modify the positioning information according to the interface to obtain the corresponding category information of the corresponding stage; The stage display parameters of the corresponding category of the corresponding stage are modified, and then the display of the corresponding category of the corresponding stage is regenerated, and the display information of the remaining stages is generated in sequence to obtain the modified final interface display information.
6. A display screen design editing and management system, characterized in that: The management system includes: The process interface display module is used to display the required information according to the display screen, obtain the process editing interface and process interface display information, and then obtain the corresponding interface group of the current stage; The stage status feedback module is used to obtain the interface difference information of the corresponding interface group, determine the display status of the stage interface display information, obtain stage feedback information, and trigger the stage feedback instruction according to the display status determination information to perform stage feedback; The stage category adjustment module is used to classify the stage feedback information, obtain the stage category feedback information, adjust the stage interface display information according to the corresponding category, and obtain category adjustment information; The positioning and modification display module is used to replace the preset display requirement interface information with the modification interface according to the acquired modification requirement information, obtain the interface modification positioning information, modify the stage display parameters of a specific category in a specific stage, and then obtain the modified final interface display information.
7. A display screen design editing and management system according to claim 6, characterized in that: The process interface display module includes: A demand preprocessing module is used to obtain display demand information of the display screen, preprocess the display demand information, and obtain preprocessed display demand information; A stage target division module is used to obtain preset display requirement interface information through the display requirement information; Dividing the preset display requirement interface information into multiple stage target interfaces; A process stage display module is used to sequentially display the stage interface information of multiple stages according to the display requirement information, and obtain the process interface display information of the process editing interface and the process editing interface; The same-stage corresponding module is used to correspond the currently acquired stage interface display information with the stage target interface of the same stage among the multiple stage target interfaces to obtain a corresponding interface group.
8. A display screen design editing and management system according to claim 6, characterized in that: The stage state feedback module includes: The stage difference comparison module is used to compare the interface information of the corresponding interface group corresponding to the currently obtained stage interface display information to obtain the interface difference information of the corresponding interface group; Comparing the interface difference information with a preset difference threshold to obtain interface difference comparison information; a stage display state determination module, configured to determine the display state of the currently acquired stage interface display information based on the interface difference comparison information, and obtain display determination information of the currently acquired stage interface display information; An instruction information feedback module, configured to generate phase feedback information based on the interface difference comparison information; Triggering a stage feedback instruction of the currently acquired stage interface display information according to the display determination information; Obtain stage feedback information according to the stage feedback instruction.
9. A display screen design editing and management system according to claim 6, characterized in that: The stage category adjustment module includes: A category classification module is used to classify the stage feedback information according to preset stage feedback categories to obtain stage category feedback information; An adjustment instruction generating module, configured to generate corresponding category adjustment information according to the stage category feedback information; Generate corresponding category adjustment instructions according to corresponding category adjustment information; The display category adjustment module is used to adjust the stage interface display information to the corresponding category according to the category adjustment instruction and the category adjustment information, and obtain the category adjustment information of the stage interface display information.
10. A display screen design editing and management system according to claim 6, characterized in that: The positioning modification display module includes: A modification and replacement module is used to obtain modification requirement information, and replace the preset display requirement interface information with a modification interface according to the modification requirement information to obtain requirement replacement interface information; A modification positioning module is used to replace the interface information according to the requirements to perform interface information modification positioning and obtain interface modification positioning information; Modify the positioning information according to the interface to obtain the corresponding category information of the corresponding stage; The display modification module is used to modify the stage display parameters of the corresponding category of the corresponding stage, and then regenerate the display of the corresponding category of the corresponding stage, generate the display information of the remaining stages in sequence, and obtain the modified final interface display information.
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