Whole-process intelligent digital management system for aging-adaptive transformation
Through the intelligent digital management system, which integrates the user interface, functional logic, data management and algorithm layers, the problem of users having difficulty understanding the key points of decoration design is solved, full-process management and effect display are realized, and the efficiency and quality of aging-friendly decoration are improved.
Patent Information
- Application Number
- CN202510745135.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2025-09-12
AI Technical Summary
In the current decoration process, the verbal explanations and simple drawings presented by designers and salesmen make it difficult for users to understand the key points of the design, making it difficult for users to gain a deep understanding of the decoration plan.
It provides an intelligent digital management system for the entire process of aging-friendly renovation, including user interface layer, functional logic layer, data management layer, algorithm layer and database layer. It integrates modules such as user management, digital design, construction management, and financial management, and supports diversified design and construction process management.
It realizes modular management of the entire process from design to construction, allowing users to intuitively experience the design effects, improving the transparency of the decoration plan and user satisfaction, and improving the efficiency and quality of aging-friendly decoration.
Smart Images

Figure CN120633004A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of decoration technology, and specifically to a full-process intelligent digital management system for aging-friendly renovation. Background Art
[0002] Renovation involves a series of steps, including plumbing and electrical work, wall reconstruction, floor installation, and landscaping, ultimately resulting in a complete construction and design plan. Internationally, the practice of renovation has a long history, dating back to the ancient Egyptians who decorated mud houses with animal skins, simple textiles, and murals. In China, from the Han to the Tang dynasties, curtains were the primary means of dividing spaces, with wooden decoration gradually gaining popularity in the Song Dynasty. Today, renovation has become a crucial means for people to create ideal homes and living spaces.
[0003] Age-friendly interior design focuses on meeting the needs and physical and mental characteristics of seniors, creating a safe, comfortable, and convenient living environment through scientific design and rational layout. This approach primarily considers aspects such as optimized spatial layout, safety and security design, improved lighting systems, smart home applications, and environmentally friendly and flexible material selection.
[0004] At present, the decoration process and design concept mainly rely on the verbal explanation and simple drawing display of designers and salesmen, which makes it difficult to bring users into the corresponding environment and make it difficult for users to appreciate the corresponding design points. Summary of the Invention
[0005] The purpose of the present invention is to provide a full-process intelligent digital management system for aging-friendly transformation to solve the problems raised in the above-mentioned background technology.
[0006] To achieve the above objectives, the present invention provides the following technical solutions: an intelligent digital management system for the entire process of aging-friendly transformation, comprising:
[0007] User interface layer, functional logic layer, data management layer, algorithm layer and database layer;
[0008] The user interface layer is the direct window for users to interact with the software, including menus, buttons, toolbars, dialog boxes, and visual operation area elements. The user interface layer is responsible for receiving user input instructions, passing them to the lower layer for processing, and then presenting the processing results to the user in a visual form;
[0009] The functional logic layer is responsible for realizing specific design functions and integrates functional modules.
[0010] The data management layer is responsible for the storage, reading, management and maintenance of design data. The data management layer builds and maintains a database to store various key data, including apartment structure data, detailed records of room dimensions, wall thickness, beam and column location information, furniture 3D models, material texture, color characteristics, material name, specifications, performance parameters, and price;
[0011] When users perform design operations based on the functional logic layer, the data management layer promptly and accurately stores the generated design data in the database to ensure data integrity and security. When users need to open a saved design project, the relevant data can be quickly read and passed to the functional logic layer and user interface layer to restore the design scene.
[0012] The algorithm layer uses algorithms to achieve diverse functions and automatically generate reasonable furniture layout plans;
[0013] The resource library layer brings together a vast amount of design resources, including a rich material library covering wood, stone, metal, and fabric, which stores a large number of furniture models of different styles, designs, and sizes, from classical to modern, from simple to luxurious, to meet diverse design needs; the decorative element library contains various lines, carvings, and ornaments, as well as a style template library, providing a variety of mature decoration style templates.
[0014] Preferably, the functional logic layer includes a user management module, a visual display module, an evaluation management module and a digital design module;
[0015] The data management layer includes an order management module, a construction management module, an operation and maintenance management module, a financial management module, and an information sharing module;
[0016] The database layer integrates the model library.
[0017] Preferably, the user management module is responsible for user registration, login, information modification, and authority management operations. Different types of users have different authorities to ensure the security of system data and the standardization of operations. The different users include owners, designers, construction workers, and managers.
[0018] Preferably, the digital design module performs the operations of plane design, three-dimensional modeling, and decoration scheme design of the house, supporting users to select furniture and decoration materials from the model library for layout and matching according to the actual size and needs of the house, and preview the design effect in real time.
[0019] Preferably, the visual display module displays the design plan, construction progress, and financial data information to the user in the form of intuitive charts, reports, three-dimensional models, etc., to achieve management visualization.
[0020] Preferably, the order management module is responsible for order creation, modification, query, and tracking operations, recording basic order information, and realizing digital order management;
[0021] The construction management module manages the renovation construction process, including construction personnel arrangement, construction progress tracking, quality inspection, construction personnel uploading construction photos and progress information, and management personnel can monitor the construction status in real time;
[0022] The operation and maintenance management module manages the maintenance of the renovated house, records the use of equipment and maintenance records, and promptly reminds maintenance personnel to carry out maintenance and repairs;
[0023] The financial management module handles order fee settlement, cost accounting, and financial report generation, and manages the income and expenditure of renovation projects;
[0024] The information sharing module enables information sharing among different users, and construction workers can feed back construction progress to owners and managers.
[0025] Compared with the prior art, the present invention has the following beneficial effects:
[0026] By modularizing each link, the decoration from design, material selection to model diagram can be displayed at one time, and users can also log in to watch, so as to obtain the decoration simulation display effect and more intuitive experience, so that the elderly can understand the design style they want. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 is a system level diagram of the present invention;
[0028] Figure 2 is a schematic diagram of the functional logic layer of the present invention;
[0029] Figure 3 is a schematic diagram of the data management layer of the present invention;
[0030] Figure 4 is a schematic diagram of the database layer of the present invention;
[0031] Figure 5 This is a statistical diagram of the relevant technical effect data of the system of the present invention;
[0032] Figure 6 A line chart showing comparison of the decoration design methods of the present invention;
[0033] Figure 7 This is a bar chart comparing data of the decoration design methods of the present invention. DETAILED DESCRIPTION
[0034] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0035] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as limiting the present invention.
[0036] Example 1:
[0037] See also Figure 1-7 The present invention provides a technical solution: an intelligent digital management system for the entire process of aging-friendly transformation, including:
[0038] User interface layer, functional logic layer, data management layer, algorithm layer and database layer;
[0039] The user interface layer is the direct window for users to interact with the software, including menus, buttons, toolbars, dialog boxes, and visual operation area elements. The user interface layer is responsible for receiving user input instructions, passing them to the lower layer for processing, and then presenting the processing results to the user in a visual form;
[0040] The functional logic layer is responsible for realizing specific design functions and integrates functional modules.
[0041] The data management layer is responsible for the storage, reading, management and maintenance of design data. The data management layer builds and maintains a database to store various key data, including apartment structure data, detailed records of room dimensions, wall thickness, beam and column location information, furniture 3D models, material texture, color characteristics, material name, specifications, performance parameters, and price;
[0042] When users perform design operations based on the functional logic layer, the data management layer promptly and accurately stores the generated design data in the database to ensure data integrity and security. When users need to open a saved design project, the relevant data can be quickly read and passed to the functional logic layer and user interface layer to restore the design scene.
[0043] The algorithm layer uses algorithms to achieve diverse functions and automatically generate reasonable furniture layout plans;
[0044] The resource library layer brings together a vast amount of design resources, including a rich material library covering wood, stone, metal, and fabric, which stores a large number of furniture models of different styles, designs, and sizes, from classical to modern, from simple to luxurious, to meet diverse design needs; the decorative element library contains various lines, carvings, and ornaments, as well as a style template library, providing a variety of mature decoration style templates.
[0045] Analysis of the above content:
[0046] owner:
[0047] Register and log in: Open the software, register and log in to the system.
[0048] Submit requirements: Enter the basic information of the house (such as area, layout, etc.) and decoration requirements in the digital design module, and the system will provide some preliminary design suggestions based on the requirements.
[0049] Select a design plan: Choose your favorite furniture and decoration materials from the model library, communicate with the designer, and jointly complete the design of the decoration plan.
[0050] Generate an order: After confirming the design plan, generate an order in the order management module and pay the deposit.
[0051] Track progress: View construction progress and photos in the construction management module to understand the renovation status in real time.
[0052] Feedback issues: If problems are found during the renovation process, they can be fed back to construction workers and managers through the information sharing module.
[0053] Acceptance and settlement: After the decoration is completed, acceptance will be carried out and fee settlement will be completed in the financial management module.
[0054] Designer:
[0055] Register and log in: Use your designer account to log in to the system.
[0056] Receive tasks: Check the owner's decoration requirements and order information in the order management module.
[0057] Design: In the digital design module, according to the owner's needs and the actual situation of the house, select the appropriate model from the model library for design, and generate multiple design plans for the owner to choose.
[0058] Communication and modification: Communicate with the owner through the information sharing module, and modify and improve the design plan based on the owner's feedback.
[0059] Submit the proposal: Submit the final design proposal to the order management module.
[0060] Construction personnel:
[0061] Register and log in: Use the construction worker account to log in to the system.
[0062] Get orders: View the order information assigned to you in the construction management module.
[0063] Construction arrangement: Arrange construction personnel and construction time according to order information, and formulate a construction plan.
[0064] Upload progress: During the construction process, regularly upload construction photos and progress information to the construction management module.
[0065] Handle problems: Receive feedback from owners and managers through the information sharing module to promptly handle problems that arise during construction.
[0066] Management personnel:
[0067] Register and log in: Use the administrator account to log in to the system.
[0068] Order Management: Review, assign and track orders in the order management module to ensure smooth processing of orders.
[0069] Personnel management: Manage designers, construction personnel, etc. in the user management module, including permission setting, performance appraisal, etc.
[0070] Financial management: Process order expense settlement, cost accounting and other operations in the financial management module, and generate financial statements.
[0071] Visual monitoring: View design plans, construction progress, financial data and other information in the visual display module for visual monitoring and decision-making.
[0072] User Interface Layer: Through a simple, intuitive, and well-organized interface design, both professional designers and casual users can easily find the functions they need, such as creating new projects, opening files, selecting tools, and adjusting parameters. This layer is also responsible for receiving user input commands, such as mouse clicks and keyboard input, and passing them to the lower layers for processing. The results are then presented to the user in a visual format, such as showing changes in design effects in real time. For example, if a user clicks the "Add Furniture" button on the interface, the interface layer captures this action and transmits the command to the functional logic layer.
[0073] Functional logic layer: This layer integrates numerous functional modules, such as the space layout planning module, which helps users accurately divide room areas, determine wall positions, and door and window sizes; the color matching module, based on color theory knowledge, provides users with color combination suggestions to help create a harmonious and beautiful spatial atmosphere; the material selection module, which links to a rich material library and displays detailed information such as the characteristics, price, and texture of various decoration materials to facilitate user selection; and the furniture arrangement module, which supports users in selecting their favorite furniture from a vast library of furniture models and freely placing, adjusting the size, and angle of the furniture within the design space. Taking the user moving furniture within the design space as an example, the functional logic layer calculates and updates the position coordinates of the furniture model in real time based on the user's operating instructions to ensure the furniture is correctly positioned in the space, and then feeds the updated status back to the user interface layer for display.
[0074] The data management layer builds and maintains a database to store various key data, including apartment structure data, detailing room dimensions, wall thickness, beam and column locations, and furniture model data, including the furniture's 3D model, material texture, color, and other characteristics. Furthermore, this layer accurately stores the generated design data, such as spatial layout plans, furniture placement, and color schemes, in the database to ensure data integrity and security. Furthermore, when a user needs to open a saved design project, the data management layer quickly retrieves the relevant data from the database and passes it to the functional logic layer and user interface layer to restore the design scenario. For example, after a user saves a design, the data management layer organizes and stores all relevant data. When the user reopens the design, the data management layer quickly retrieves this data, ensuring the complete presentation of the design.
[0075] Algorithm layer: This layer is the key support for realizing intelligent design and efficient rendering. At the algorithm level, advanced algorithms are used to realize diversified functions. For example, the intelligent layout algorithm automatically generates a reasonable furniture layout plan based on the functional requirements of the room, spatial dimensions and ergonomic principles; the ray tracing algorithm accurately simulates the propagation and reflection of light in the rendering process, generating realistic light and shadow effects, making the design renderings more realistic; the collision detection algorithm detects in real time whether there is a collision between objects when the user arranges furniture and other operations, avoiding unreasonable spatial layout. Taking the rendering operation as an example, the model and algorithm layer uses algorithms such as ray tracing to perform complex calculations on the model, material, lighting and other information in the design scene, generates high-quality rendered images, and passes them to the user interface layer to display them to the user.
[0076] Resource library layer: It brings together a vast amount of design resources and is an important guarantee for the full utilization of software functions. This layer contains a rich material library, covering the real texture and texture images of various materials such as wood, stone, metal, and fabric. Users can directly apply them to design objects to present realistic effects; the furniture library stores a large number of furniture models of different styles, designs, and sizes, from classical to modern, from simple to luxurious, to meet diverse design needs; the decorative element library contains various decorative materials such as lines, carvings, and ornaments to add details and characteristics to the design; in addition, there is a style template library that provides a variety of mature decoration style templates, such as European, Chinese, modern and simple, etc. Users can apply them with one click to quickly determine the design style tone. When the user selects a certain material or furniture during the design process, the resource library layer will provide the corresponding resource data to the functional logic layer for presentation in the design scene.
[0077] Example 2:
[0078] See also Figure 1-7 The present invention provides a technical solution based on embodiment 1: the functional logic layer includes a user management module, a visualization display module, an evaluation management module and a digital design module; the data management layer includes an order management module, a construction management module, an operation and maintenance management module, a financial management module, and an information sharing module; the database layer integrates a model library.
[0079] The assessment management module runs through the beginning and end of aging-friendly renovations, as follows:
[0080] 1. Needs Assessment
[0081] In the early stages of renovation, a comprehensive and in-depth understanding of the elderly's physical condition, living habits, interests, and hobbies is required. The collected data is coordinated based on the assessment management module. Questionnaires, face-to-face interviews, and other methods can be used to collect the opinions and needs of the elderly and their families. For example, for elderly people with limited mobility, it is necessary to understand whether they rely on assistive devices such as wheelchairs and crutches, so that the space layout and aisle width can be reasonably planned in the subsequent design; for elderly people with chronic diseases, their special requirements for living environment temperature, humidity, ventilation, etc. should be considered. At the same time, it is also necessary to assess the problems existing in the elderly's current living environment, such as whether there are safety hazards such as uneven floors, missing handrails, and dim lighting, to provide a targeted basis for subsequent design and renovation.
[0082] 2. Design Scheme Evaluation
[0083] The design plan is the blueprint for aging-friendly decoration, and its rationality directly affects the decoration effect. When evaluating, it is necessary to focus on whether the space layout complies with the principles of barrier-free design, such as whether the width of the passages in rooms, corridors, bathrooms and other areas can meet the smooth passage of wheelchairs, whether there are thresholds or height differences; whether the placement of furniture is convenient for the elderly to move around and take items. In terms of facility and equipment selection, evaluate whether the bathroom equipment is equipped with toilets, bathtubs, and shower stools with anti-slip functions, and whether handrails of appropriate height are installed; whether the lighting system uses glare-free and appropriately bright lamps, and whether emergency lighting and double-control switches are installed in important locations such as bedside and bathrooms. In addition, the environmental friendliness and safety of the materials must also be considered, giving priority to non-toxic, odorless, anti-slip, and antibacterial decoration materials, such as anti-slip floor tiles and environmentally friendly paints, to avoid harm to the health of the elderly.
[0084] 3. Construction Process Evaluation
[0085] Strict control of the construction process is a key link in ensuring the quality of elderly-friendly renovations. Data is recorded based on the assessment management module. A comprehensive construction supervision mechanism should be established, and professional supervisors should be arranged to conduct regular inspections at the construction site to supervise whether the construction unit is carrying out the construction according to the design plan and whether the construction process meets the standards. For example, check the flatness of the walls and floors to ensure there are no hollows, cracks, or other problems; check whether the handrails are firmly installed and whether their load-bearing capacity meets the needs of the elderly; and supervise whether the laying of water and electricity lines is standardized to avoid safety hazards such as leakage and water leakage. At the same time, it is necessary to strengthen the management of the construction progress to ensure that the renovation project is completed on time and reduce the impact on the normal lives of the elderly. In addition, it is necessary to pay attention to the safety management of the construction site, set up necessary safety warning signs, and urge construction workers to wear safety protection equipment to prevent construction accidents.
[0086] IV. Acceptance Evaluation
[0087] Acceptance evaluation is the last quality control for aging-friendly decoration, and the data is recorded based on the evaluation management module. Detailed acceptance standards and processes are formulated to conduct a comprehensive inspection of the decoration results from multiple aspects. In terms of appearance, check whether the decorative effects of the walls, floors, and ceilings are flat, beautiful, and without any defects; in terms of facilities and equipment, test whether the bathroom equipment, lighting systems, doors and windows are operating normally and whether the functions meet the design requirements; in terms of safety, check again the firmness of the handrails, the anti-slip performance of the floor, the safety of electrical equipment, etc. For projects that do not meet the acceptance standards, the construction unit is required to make timely rectifications until the acceptance requirements are met. In addition, the elderly and their families can be invited to participate in the acceptance process, listen to their opinions and suggestions, and ensure that the decoration results meet the actual needs of the elderly.
[0088] 5. Cost and Budget Assessment
[0089] During the aging-friendly renovation process, costs and budgets are rigorously assessed and managed. In the early stages of the project, a detailed budget plan is developed based on the design plan and market conditions, covering expenses such as material procurement, construction costs, and equipment purchases. During construction, cost expenditures are monitored in real time, and actual costs are compared with the budget plan to promptly identify cost overruns or savings and analyze the causes. If design changes lead to cost increases, the proposed changes must be reassessed and approved to ensure that costs remain within a reasonable range. Through effective cost and budget assessment and management, the quality of aging-friendly renovations can be guaranteed while avoiding unnecessary waste, achieving a win-win situation for both economic and social benefits.
[0090] The digital design module includes the following aspects:
[0091] Using BIM technology for space planning
[0092] Precise Modeling: Building Information Modeling (BIM) technology enables the creation of precise 3D models of aging-friendly living spaces. Designers can precisely plan the layout and dimensions of each room and simulate furniture placement to ensure optimal space utilization and meet the mobility needs of the elderly. For example, a BIM model can precisely design the shortest barrier-free path from the bedroom to the bathroom, eliminating mobility difficulties for the elderly due to inappropriate spatial layout.
[0093] Collision Detection and Optimization: During the design phase, BIM technology can perform collision detection to proactively identify conflicts between pipes, walls, and furniture. For example, it can detect conflicts between the water heater pipe and the sink in a bathroom, allowing for timely design adjustments to avoid rework during construction and improve renovation efficiency and quality.
[0094] Application of Virtual Reality (VR) and Augmented Reality (AR) technologies
[0095] Immersive Experience: VR technology allows seniors and their families to immerse themselves in the planned living environment. They can freely move around the virtual space, experiencing the atmosphere created by different lighting, colors, and material combinations. This allows them to identify potential design issues in advance, such as glaring lighting or overly monotonous colors, allowing them to make timely adjustments to improve living comfort and satisfaction.
[0096] On-site simulation and adjustment: AR technology can overlay virtual age-friendly design elements onto real-world scenes. Designers can use AR devices to show seniors how furniture, handrails, and other features will look after installation, adjusting their positions and dimensions in real time based on their feedback. For example, AR technology can simulate the location and height of handrails in a living room, allowing seniors to intuitively assess their comfort and determine the optimal installation plan.
[0097] Digital intelligent device integration
[0098] Smart Home System: The design incorporates a smart home system that enables intelligent operation of lighting, curtains, air conditioners, televisions, and other devices through a mobile phone app or voice control. Elderly people can easily control indoor devices through voice commands, eliminating the need for manual operation, making it more convenient for those with limited mobility.
[0099] Health Monitoring System: This system integrates smart health monitoring devices, such as smart bracelets and smart toilets, to monitor elderly people's heart rate, blood pressure, weight, and other health data in real time and upload them to the cloud. Family members and medical staff can access the data at any time and identify health issues promptly.
[0100] Digital material selection and display
[0101] Materials Database: Build a digital database of aging-friendly renovation materials, including information on material performance, environmental indicators, and appearance images. Designers can use this database to quickly select materials that meet aging-friendly requirements, such as flooring and wall coverings with excellent anti-slip properties, strong antibacterial properties, and formaldehyde-free properties, improving material selection efficiency and accuracy.
[0102] Virtual Display and Comparison: Digital technology is used to virtually showcase the appearance and texture of materials, allowing seniors and their families to intuitively compare the effects of different materials on screen. For example, 3D rendering technology can be used to show how floor tiles of different colors and textures will look in a virtual space, helping them select materials that are both aesthetically pleasing and practical.
[0103] Personalized design and data-driven
[0104] Collect data on the elderly: Use questionnaires and health checks to collect data on the elderly's physical condition, living habits, interests, and hobbies. For example, understand the elderly's vision and hearing, as well as the main scope and frequency of their daily activities, to provide a basis for personalized design.
[0105] The user management module is responsible for user registration, login, information modification, and permission management. Different user types have different permissions to ensure system data security and standardized operations. These different users include owners, designers, construction personnel, and managers. The digital design module performs floor plan design, 3D modeling, and renovation design operations. Users can select furniture and decoration materials from a model library based on the actual size and needs of the house, and preview the design results in real time. The visualization display module displays design plans, construction progress, and financial data to users in the form of intuitive charts, reports, 3D models, etc., achieving management visualization. The order management module is responsible for the creation, modification, query, and tracking of orders, recording basic order information, and realizing digital order management; the construction management module manages the decoration construction process, including construction personnel arrangement, construction progress tracking, quality inspection, and construction personnel uploading construction photos and progress information, and managers can monitor the construction status in real time; the operation and maintenance management module maintains and manages the renovated house, records the use of equipment and maintenance record information, and promptly reminds maintenance personnel to perform maintenance and repairs; the financial management module handles the order fee settlement, cost accounting, and financial report generation business, and manages the income and expenditure of the decoration project; the information sharing module realizes information sharing between different users, and construction personnel can feedback the construction progress to the owner and management personnel.
[0106] Through the attachment Figure 5-7 The analysis and comparison clearly show that the aging-friendly decoration design system of the present invention is superior to the traditional decoration design method in terms of design scheme determination time, decoration cost estimation error rate, user satisfaction, construction progress monitoring timeliness and house maintenance response time after decoration. This strongly proves the technical effect of the present invention, that is, it can complete aging-friendly decoration design and management more efficiently and accurately, and improve user experience.
[0107] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention; therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is limited by the appended claims rather than the above description. Therefore, it is intended that all changes that fall within the meaning and scope of the equivalent elements of the claims are included in the present invention, and any figure signs in the claims should not be regarded as limiting the claims involved.
[0108] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent digital management system for the entire process of aging-friendly transformation, characterized by: include: User interface layer, functional logic layer, data management layer, algorithm layer and database layer; The user interface layer is the direct window for users to interact with the software, including menus, buttons, toolbars, dialog boxes, and visual operation area elements. The user interface layer is responsible for receiving user input instructions, passing them to the lower layer for processing, and then presenting the processing results to the user in a visual form; The functional logic layer is responsible for realizing specific design functions and integrates functional modules. The data management layer is responsible for the storage, reading, management and maintenance of design data. The data management layer builds and maintains a database to store various key data, including apartment structure data, detailed records of room dimensions, wall thickness, beam and column location information, furniture 3D models, material texture, color characteristics, material name, specifications, performance parameters, and price; When users perform design operations based on the functional logic layer, the data management layer promptly and accurately stores the generated design data in the database to ensure data integrity and security. When users need to open a saved design project, the relevant data can be quickly read and passed to the functional logic layer and user interface layer to restore the design scene. The algorithm layer uses algorithms to achieve diverse functions and automatically generate reasonable furniture layout plans; The resource library layer brings together a vast amount of design resources, including a rich material library covering wood, stone, metal, and fabric, which stores a large number of furniture models of different styles, designs, and sizes, from classical to modern, from simple to luxurious, to meet diverse design needs; the decorative element library contains various lines, carvings, and ornaments, as well as a style template library, providing a variety of mature decoration style templates.
2. The intelligent digital management system for the entire process of aging-friendly transformation according to claim 1 is characterized by: The functional logic layer includes a user management module, a visual display module, an evaluation management module and a digital design module; The data management layer includes an order management module, a construction management module, an operation and maintenance management module, a financial management module, and an information sharing module; The database layer integrates the model library.
3. The intelligent digital management system for the entire process of aging-friendly transformation according to claim 2 is characterized by: The user management module is responsible for user registration, login, information modification, and authority management operations. Different types of users have different authorities to ensure the security of system data and the standardization of operations. The different users include owners, designers, construction workers, and managers.
4. The intelligent digital management system for the entire process of aging-friendly transformation according to claim 2 is characterized by: The digital design module performs operations such as floor plan design, three-dimensional modeling, and decoration scheme design for a house, and supports users to select furniture and decoration materials from a model library for layout and matching based on the actual size and needs of the house, and preview the design effect in real time.
5. The intelligent digital management system for the entire process of aging-friendly transformation according to claim 2 is characterized by: The visualization display module displays the design plan, construction progress, and financial data information to users in the form of intuitive charts, reports, three-dimensional models, etc., to achieve management visualization.
6. The intelligent digital management system for the entire process of aging-friendly transformation according to claim 2 is characterized by: The order management module is responsible for order creation, modification, query, and tracking operations, recording basic order information, and realizing order data management; The construction management module manages the renovation construction process, including construction personnel arrangement, construction progress tracking, quality inspection, construction personnel uploading construction photos and progress information, and management personnel can monitor the construction status in real time; The operation and maintenance management module manages the maintenance of the renovated house, records the use of equipment and maintenance records, and promptly reminds maintenance personnel to carry out maintenance and repairs; The financial management module handles order fee settlement, cost accounting, and financial report generation, and manages the income and expenditure of renovation projects; The information sharing module enables information sharing among different users, and construction workers can feed back construction progress to owners and managers.
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