A startup guide setting method, an electronic device, and a storage medium
By switching between dynamic and static themes based on power thresholds during the boot wizard setup, the problem of increased power consumption was solved, achieving an efficient and personalized user experience optimization.
Patent Information
- Application Number
- CN202411806885.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2044-12-09
AI Technical Summary
During the terminal device startup wizard process, different settings can lead to increased power consumption, affecting device performance and failing to meet users' personalized needs.
Display dynamic or static themes based on the current battery threshold, and make corresponding general and personalized settings, including dynamic background images and interactive interfaces, and optimize the setup process to reduce power consumption.
By switching between dynamic and static themes, the power consumption requirements of the boot wizard have been optimized, meeting the basic and personalized setting needs of the device under different power states, thereby improving user experience and device efficiency.
Smart Images

Figure CN119781839B_ABST
Abstract
Description
Technical Field
[0001] This application relates primarily to the field of computer technology, and in particular to a boot wizard setup method, electronic device, and storage medium. Background Technology
[0002] A startup wizard typically refers to a boot program provided by a computer operating system or software upon first startup to help users complete initial setup. After factory assembly, mobile terminal devices need to be powered on for functional testing and firmware installation. Devices that have been flashed or restored to factory settings will display a startup wizard interface upon first power-on, requiring manual setup to complete the device initialization. This process consumes manpower and time, limiting production capacity. However, for users, a startup wizard can effectively help them complete the initial setup in one go to meet subsequent usage needs, making it more convenient.
[0003] Boot wizards typically interact with users through a touch interface, web interface, or touch screen for initial configuration. Users need to carefully read the information in the boot wizard and complete the configuration to ensure a good user experience. However, they have shortcomings in terms of user performance and personalized settings. Summary of the Invention
[0004] The main objective of this application is to provide a boot wizard setup method, electronic device, and storage medium to solve the problem that increased power consumption due to different wizard settings during the boot wizard process of a terminal device reduces device performance and fails to meet the wizard settings, thereby bringing a better boot wizard experience.
[0005] To address the aforementioned issues, this application provides a boot wizard setup method, an electronic device, and a storage medium. The boot wizard setup method includes: obtaining the current battery level; displaying a dynamic theme in response to the current battery level being greater than a set battery threshold, and performing general and personalized settings based on the dynamic theme; or displaying a static theme in response to the current battery level being less than or equal to a set battery threshold, and performing general settings based on the static theme.
[0006] In one embodiment, a dynamic theme is displayed, and general and personalized settings are performed based on the dynamic theme, including: displaying a navigation interface, which includes a navigation line and multiple setting item icons displayed on the navigation line; and displaying a dynamic background image and a settings interface corresponding to the currently selected setting item icon; wherein the navigation interface and the settings interface are displayed on the dynamic background image, and the multiple setting item icons are selected sequentially, or any setting item icon is selected in response to a click instruction.
[0007] In one embodiment, the general settings include at least one of language settings, country / region settings, SIM card settings, network settings, user policy and user manual reading settings, Google service settings, unlock settings, and operation gesture settings, while the personalized settings include at least one of user habit settings, mobile phone migration settings, context-aware settings, and weather settings.
[0008] In one embodiment, displaying a dynamic background image and settings interface corresponding to the currently selected settings item icon includes: displaying a language selection list in the settings interface in response to the language settings icon being selected; displaying multiple fonts corresponding to the target language in the settings interface in response to the target language being selected in the language selection list; and confirming that the language settings are complete and selecting the next settings item icon in the navigation interface in response to the target font being selected and confirmed among the multiple fonts.
[0009] In one embodiment, displaying a dynamic background image and settings interface corresponding to the currently selected settings item icon includes: in response to the selection of a country / region settings icon, displaying a list of countries and a dynamic globe image in the settings interface; in response to the selection of a target country in the list of countries, rotating the dynamic globe to the viewpoint corresponding to the target country; and in response to the selection of a target country being confirmed, displaying an image or video corresponding to the target country.
[0010] In one embodiment, displaying a dynamic background image and settings interface corresponding to the currently selected settings icon includes: in response to the selection of a network settings icon, displaying a sphere graphic and node icons extending outward from the network sphere graphic in the settings interface, each node icon representing a network node, and displaying the corresponding network name and signal strength near each node icon; in response to the selection of a target node icon, displaying a virtual keyboard on the sphere graphic for password input, or displaying a scanning interface on the sphere graphic for QR code scanning.
[0011] In one embodiment, displaying a dynamic background image and settings interface corresponding to the currently selected settings icon includes: responding to the selection of a context-aware settings icon, making corresponding settings based on context information acquired by an acquisition sensor, including at least one of the following: adjusting the brightness of the display screen based on light information acquired by a light sensor; adjusting the volume or vibration mode based on sound information acquired by a sound sensor; adjusting the font size or touch sensitivity based on motion information acquired by a motion sensor; and adjusting the security protection level based on position information acquired by a position sensor.
[0012] In one embodiment, displaying a dynamic background image and settings interface corresponding to the currently selected settings icon includes: obtaining location information in response to the weather settings icon being selected; obtaining corresponding weather information based on the location information; and adjusting the dynamic background image and theme color of general settings and personalized settings based on the weather information.
[0013] To address the aforementioned issues, this application also provides an electronic device comprising: a processor and a memory, wherein the memory stores program data, and the processor executes the program data to implement the boot wizard setup method as described in any of the embodiments above.
[0014] To address the aforementioned issues, this application also provides a computer-readable storage medium storing program data, which, when executed by a processor, is used to implement the boot wizard setup method as described in any of the above embodiments.
[0015] The startup wizard setup method provided in this application includes: obtaining the current battery level; displaying a dynamic theme in response to the current battery level being greater than a set battery level threshold, and performing general and personalized settings based on the dynamic theme; or displaying a static theme in response to the current battery level being less than or equal to a set battery level threshold, and performing general settings based on the static theme.
[0016] By using the above methods, different power-on wizards are applied to the device based on its current power level to meet the power consumption requirements of different settings, satisfying the basic wizard settings or dynamic personalized wizard settings of the device. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Wherein:
[0018] Figure 1 This is a flowchart illustrating an embodiment of the boot wizard setup method provided in this application;
[0019] Figure 2 This is a schematic diagram of the navigation interface in one embodiment of the boot wizard setting method provided in this application;
[0020] Figure 3 This is a schematic diagram of the language setting interface in one embodiment of the boot wizard setting method provided in this application;
[0021] Figure 4This is a schematic diagram of the interface for setting the country / region in one embodiment of the startup wizard setting method provided in this application;
[0022] Figure 5 A schematic diagram of the network settings interface in one embodiment of the boot wizard setup method provided in this application;
[0023] Figure 6 This is a schematic diagram of the structure of an embodiment of the electronic device provided in this application;
[0024] Figure 7 This is a schematic diagram of an embodiment of the computer-readable storage medium provided in this application. Detailed Implementation
[0025] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. It is understood that the specific embodiments described herein are only for explaining this application and not for limiting it. Furthermore, it should be noted that, for ease of description, only the parts related to this application are shown in the accompanying drawings, not all structures. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0026] The terms "first," "second," etc., used in this application are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or apparatuses.
[0027] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0028] This application utilizes various elements to achieve different functions and effects in the boot wizard. For example, it includes: a background with a unified futuristic visual style, creating a lively and engaging atmosphere; icons representing different settings such as language, region, time, and network; concise text describing the function of each setting option; and animations to make the boot process more dynamic and interesting. Users can access these settings by clicking different icons in the navigation bar. For instance, clicking the "Language" icon selects the system language, the "Region" icon selects the system region, the "Time" icon sets the date and time, and the "Network" icon sets the network connection. Furthermore, the boot wizard offers customization options, allowing users to personalize it according to their preferences. For example, users can choose different background images, icon styles, and animation effects.
[0029] See Figure 1 As shown, Figure 1 This is a flowchart illustrating an embodiment of the boot wizard setup method provided in this application; specifically, the boot wizard setup method includes the following steps:
[0030] Step S10: Obtain the current battery level;
[0031] Understandably, different wizard settings correspond to different function settings, and therefore different power consumption situations. By obtaining the current power level of the terminal device, it is possible to make targeted selections for different functions, avoiding excessive energy consumption or making selections based on current needs or preferences.
[0032] Step S20: In response to the current battery level being greater than the set battery threshold, display a dynamic theme and perform general and personalized settings based on the dynamic theme; or in response to the current battery level being less than or equal to the set battery threshold, display a static theme and perform general settings based on the static theme.
[0033] Optionally, in one embodiment, the power threshold is set to 30% of the total power. That is, when the current remaining power is greater than 30% of the total power, a dynamic theme is displayed, and regular and personalized settings are performed based on the dynamic theme; when the current remaining power is less than or equal to 30% of the total power, a static theme is displayed, and regular settings are performed based on the static theme.
[0034] Understandably, in the settings for different battery levels, in another embodiment, in response to the current battery level being less than or equal to a set battery threshold, an option to enter a static theme is displayed. When the user confirms entry, a static theme is displayed, and regular settings are performed based on the static theme. When the user denies entry, a dynamic theme is displayed, and regular and personalized settings are performed based on the dynamic theme.
[0035] Alternatively, in one embodiment, as Figure 2 As shown, Figure 2 This is a schematic diagram of the navigation interface in one embodiment of the startup wizard setup method provided in this application; specifically, a dynamic theme is displayed, and general and personalized settings are performed based on the dynamic theme, including: displaying a navigation interface, which includes a navigation line and multiple setting item icons displayed on the navigation line; and displaying a dynamic background image and a settings interface corresponding to the currently selected setting item icon; wherein, the navigation interface and the settings interface are displayed on the dynamic background image, and multiple setting item icons are selected sequentially, or any setting item icon is selected in response to a click instruction.
[0036] Understandably, in one embodiment, the setup process also includes a "directory" function, which adds a "navigation line" at the top of the boot process to show the current step position. The line consists of small icons corresponding to each step. Users can quickly preview the process using the navigation line, and the dynamic effect of the line also allows for a more intuitive understanding of the progress.
[0037] Optionally, in one embodiment, the general settings include at least one of language settings, country / region settings, SIM card settings, network settings, user policy and user manual reading settings, Google service settings, unlock settings, and operation gesture settings, while the personalized settings include at least one of user habit settings, mobile phone migration settings, context-aware settings, and weather settings.
[0038] Understandably, the general settings and personalization settings include specific descriptions of the different settings within them. The following is a detailed description of the content included in the general settings:
[0039] Alternatively, in one embodiment, as Figure 3 As shown, Figure 3This is a schematic diagram of the language setting interface in one embodiment of the startup wizard setting method provided in this application; wherein, displaying a dynamic background image and a setting interface corresponding to the currently selected setting item icon includes: in response to the language setting icon being selected, displaying a language selection list in the setting interface; in response to the target language being selected in the language selection list, displaying multiple fonts corresponding to the target language in the setting interface; in response to the target font being selected and confirmed among the multiple fonts, confirming that the language setting is complete and selecting the next setting item icon in the navigation interface.
[0040] It is understood that, in one embodiment, as Figure 3 As shown, the overall interface layout is simple and clear when setting the language. The upper half features a large language display area, with language options listed below. When the user selects a language, this area enlarges and scrolls to display several different font styles for that language, and then renders the language's signature phrase in an animated format, such as "Hello World" or "bonjourle monde". After the user finally selects a language, the interface transitions smoothly to the next step with a "Welcome" message written in that language.
[0041] Alternatively, in one embodiment, as Figure 4 As shown, Figure 4 This is a schematic diagram of the interface for setting the country / region in one embodiment of the startup wizard setting method provided in this application; it displays a dynamic background image and a setting interface corresponding to the currently selected setting item icon, including: in response to the country / region setting icon being selected, displaying a country list and a dynamic globe image in the setting interface; in response to the target country being selected in the country list, rotating the dynamic globe to the viewpoint corresponding to the target country; in response to the selected target country being confirmed, displaying an image or video corresponding to the target country.
[0042] Understandable, such as Figure 4 As shown, in one embodiment, when setting a country / region, the interface for selecting a country maintains the same UI design as the interface for selecting a language. The upper part displays a dynamic 3D globe, with a list of country options below. When the user selects a country, the dynamic globe slowly focuses its view upwards towards that country. When the user switches to another country, the view moves towards the corresponding area, creating a smooth transition animation. Once the user confirms the selection, the current interface fades out, and the screen displays the country's representative scenery, architecture, or other cultural elements in the form of dynamic watercolor paintings, using a frosted glass effect to create a textured feel. For example, if China is selected, a classical Eastern-style ink painting animation will automatically render on the canvas; if the UK is selected, a modern realistic cityscape will be presented, with pedestrians and vehicles moving dynamically. Each language corresponds to a unique dynamic scene, igniting the free imagination of language and culture.
[0043] SIM Card Settings: Inserting a SIM card reveals a futuristic sci-fi circuit design. The background is surrounded by a blue mist, with circuit board textures and floating microparticles. The title and button areas have a semi-transparent phosphorescent glass texture. A 3D phone model slowly emerges in the center of the interface, enveloped by circuit patterns. When prompted to insert a SIM card, the 3D phone model gradually enlarges, the slot area is highlighted, fluorescent lines extend from the four corners, circling the slot area with an infrared scanning effect, and finally projecting a virtual "Insert SIM Card" prompt. If the user chooses to skip this setting, the 3D phone model quickly shrinks, and the interface color changes to the next settings screen. After the user inserts the SIM card, a semi-transparent, realistic SIM card appears on the side of the slot. The SIM card begins to vibrate slightly, symbolizing readiness, and then is quickly inserted into the slot with a heat-welding visual effect. During the SIM card recognition process, a fluorescent data flow effect appears within the slot, the data flow forming a DNA double helix molecular structure model. When the SIM card is successfully recognized, the interface will render and restore the logo currently used by the corresponding carrier brand. Subsequently, the logo will release dynamic particles, which will rotate and be injected into the circuitry on the side of the phone. The phone model will then shrink and restore itself, completing the SIM card startup readiness.
[0044] Alternatively, in one embodiment, as Figure 5 As shown, Figure 5 A schematic diagram of the network settings interface in one embodiment of the boot wizard setup method provided in this application; displaying a dynamic background image and settings interface corresponding to the currently selected settings item icon, including: in response to the selection of a network settings icon, displaying a sphere graphic and node icons extending outward from the network sphere graphic in the settings interface, each node icon representing a network node, and displaying the corresponding network name and signal strength near each node icon; in response to the selection of a target node icon, displaying a virtual keyboard on the sphere graphic for password input, or displaying a scanning interface on the sphere graphic for QR code scanning.
[0045] Understandably, in one embodiment, for network settings, when connecting to the network / Wi-Fi, the background maintains a futuristic sci-fi circuit style, wrapped in a blue curved surface, with a semi-transparent sphere in the center. A mesh-like fractal structure is outlined on the sphere's surface, and nodes surround the sphere, emitting ripple-like pulse signals. Inside the sphere, a grid of nodes woven from fluorescent lines begins to grow. Each node represents an available Wi-Fi hotspot, exhibiting dynamic fluctuations, and the name and signal strength of the hotspot appear near the node. When the user selects a corresponding node to connect, a semi-transparent virtual keyboard begins to render within the energy-pulsating network sphere. The keyboard is woven from glowing fluorescent lines, and each key has a circuit-like geometric texture. As the user enters a password on the keyboard, each key pressed flashes an inward compression animation, leaving a tiny energy sphere spot above the key after compression and magnification. After the password is entered, the sphere begins to rotate and vibrate violently under energy charging. If Wi-Fi authentication fails, the sphere stops moving, and the gathered energy sphere particles slowly disappear. If the network connection is successful, light particles will gradually inject into the core of the previously formed grid sphere, bursting forth with dazzling energy and illuminating the mesh circuit diagram in the background in pulses. When the user selects to scan the QR code to connect, the phone will activate its camera, the interface will become semi-transparent, the camera will recognize Wi-Fi QR code markers in the surrounding environment, project the QR code into the sphere, the corresponding node will highlight and automatically connect, and at the same time, a large number of golden particles will surge in from the surrounding environment. The particles will travel along the pulse ripples through the grid nodes and be absorbed by the main sphere. After acquiring enough particles, the sphere will burst forth with strong light, and the particles and grid will aggregate inside to form a DNA double helix projection. Accompanied by a final energy pulse, the user will be notified that the network connection has been successfully established. After agreeing to allow the system to obtain location information, a weather system can be displayed in the background, simulating and rendering different weather conditions in real time and providing the theme color corresponding to the current weather, which will be reflected in the following steps.
[0046] In one embodiment, the background for setting up the user strategy and user manual is a vibrant nebula composed of countless particles. At the center of the nebula is a data stream woven from fluorescent particles, flashing with countless 0s and 1s of binary code. An animation of simulated decoding then appears, and the unfolded user strategy and user manual content floats in the center of the nebula scene, using a comfortable paper-like texture and opening in a dynamic scroll format. Key content is highlighted, and the spine emits faint energy pulses to attract the user's touch. When the user makes a "page-turning" gesture, the pages automatically turn using simulated physical properties, with particles swirling around them as the pages turn. After the user finishes reading, the text content is updated into a data code stream, similar to the particle stream of the nebula, and slowly disappears from the screen.
[0047] In one embodiment, the background of the Google service settings is a vibrant, colorful nebula vortex. At the center of the nebula is a projection of Google's multicolored flag logo, with various terms of service displayed within it. The terms' icons tumble and collide within the scene, while the terms' content is displayed in the center of the interface. After the user selects and confirms, all content aggregates to generate a projection, which is then reflected from all directions into the center of the Google logo.
[0048] In one embodiment, the unlock settings feature a background of a "grid shield" woven from fluorescent lines. The entire shield is enveloped in a semi-transparent force field. When a user unlocks using facial recognition or fingerprint, the corresponding 3D biometric data is rendered within the force field. This rendered biometric data, through refraction and reflection, is projected onto the grid lines of the shield, swirling and rotating. As more of the user's biometric features are recognized and rendered, the data lines projected onto the shield become increasingly dense, eventually permeating, merging, and rapidly diffusing. Upon completion of the user's action, a large unlock symbol suddenly appears on the shield grid, accompanied by a burst of light from the energy field. The light gradually dissipates, and the unlock symbol transforms into a beautifully textured shield emblem, symbolizing that the user's biometric data has served as a "protective shield." The shield slowly leaves the field, authentication and unlocking are complete, and the user proceeds to the next step.
[0049] Regarding the gesture settings, in one embodiment, the gesture settings interface includes two different gestures. When demonstrating full-screen gestures to the user, such as returning, switching applications, and opening the control center, the operation path is displayed in real time on the interface, accompanied by particle effects. When demonstrating three-button navigation gestures to the user, a semi-transparent control panel appears, showing the outlines of the three navigation buttons (return / home / switch applications), and gradually revealing the functions of the three buttons.
[0050] Furthermore, a detailed description of the content included in the personalization settings is provided:
[0051] Regarding user habit settings, in one embodiment, the user habit settings are designed with a simple graphical questionnaire interface. This interface collects user preference information through a short, interactive questionnaire, containing no more than five core questions to understand the user's interests and the primary use of the device. Question types include:
[0052] a) Main uses of the equipment (multiple choice): work, study, entertainment, social, other.
[0053] b) User interest areas (multiple selections): technology, art, sports, travel, reading, etc.
[0054] c) Interface preferences (single choice): minimalist style, colorful, professional business.
[0055] d) Commonly used functions (multiple selections): photography, music, games, office, navigation, etc.
[0056] e) Frequency of use (single choice): high frequency, medium frequency, low frequency.
[0057] This interactive questionnaire launch interface presents a holographic projection floating in mid-air. The entire scene is enveloped in a deep starry background, with nebulae and stardust flowing gently, creating an atmosphere of the vast universe. Each question in the questionnaire is designed as a unique futuristic technological device to enhance user engagement. A three-dimensional sphere composed of blue particles floats in the center, serving as a visual representation of the user's digital identity. This sphere dynamically adjusts its shape and color according to the questionnaire's progress, mapping the user's choices and preferences in real time. The question text is presented using holographic projection technology, with a streamlined font design simulating the effect of light beams. This invention also introduces gaze recognition technology; when the user's gaze is detected focusing on a specific question, the relevant text triggers a subtle magnification animation and produces a water ripple effect, thereby enhancing the interactive experience. The options are presented in the form of translucent crystals, each with a unique pulsed light effect. When an option is activated, the crystal releases a preset light effect and generates energy particles, which are absorbed by the central identity sphere, further strengthening the visual feedback of the user's choice. A dynamic energy band at the bottom of the interface indicates the questionnaire completion progress. As questions are answered, the energy band gradually charges, forming a closed energy loop at the end of the questionnaire. The transitions between questions employ innovative spatial folding animation effects. The current question simulates the visual effect of being sucked into a miniature black hole, while new questions gradually unfold from another dimension of virtual space, creating a visual experience that transcends time and space. This invention also includes a dynamic background system that can adjust starry sky elements in real time based on the user's choices. Certain specific answers may trigger preset visual events, such as nebula color changes or meteor shower effects, further enhancing the immersive and interactive experience. Once the user has completed all questions, the central identity sphere will trigger a preset animation sequence, emitting a powerful burst of light before disintegrating into countless points of light that blend into the surrounding virtual starry sky. Finally, the entire starry sky scene will smoothly transition to the next user interface through a gradient effect, ensuring the overall continuity and smoothness of the user experience.
[0058] In one embodiment, the mobile phone migration setup is presented as a distorted spacetime vortex. The old phone is depicted as fragmented, composed of geometric shapes, data fragments, and circuit board fragments, surrounded by flashing error codes and warnings. The new phone is presented as a butterfly, with a streamlined design and a completely new, intact body. It is adorned with futuristic decorations such as luminous circuitry and an energy core. When data transfer begins, the fragments of the old phone begin to coalesce, forming a translucent butterfly. This butterfly flies from the old phone to the new phone, hovering around it. With each rotation, the fragments of the old phone decrease, and the energy core of the new phone brightens. This continues until the old phone completely disappears, the energy core of the new phone is fully charged, and the user is notified that the data transfer is complete.
[0059] While transferring data, the system analyzes past device usage patterns, application preferences, and interaction habits, compiles statistics on frequently used functions and settings, identifies peak user usage times, and, based on the data analysis results, automatically performs a series of intelligent settings and optimizations for the new device, including but not limited to:
[0060] a) Intelligent application migration: Based on usage frequency and importance, intelligently select applications that need to be migrated and optimize their layout on new devices.
[0061] b) Personalized system settings: Automatically adjust system settings to match user habits, including display, sound, performance, etc.
[0062] c) Intelligent network configuration: Automatically set up frequently used Wi-Fi networks and optimize network access permissions and data synchronization strategies.
[0063] d) Enhanced security: Based on users' security preferences and personalized choices, recommend and apply appropriate security strategies to balance convenience and privacy protection.
[0064] e) Interface interaction optimization: Optimize touch response, gesture recognition, and shortcut settings based on user operating habits and button preferences.
[0065] f) Performance optimization: Based on user usage patterns, intelligently adjust CPU frequency, memory management, and power strategies to balance performance and battery life.
[0066] Through this series of intelligent data collection, analysis, and optimization measures, this feature can significantly improve the user experience when switching to a new device, reduce the time and effort users spend adapting to new devices, and ensure the continuity of user preferences and usage habits. This data-driven personalization approach not only improves user satisfaction but also provides mobile device manufacturers with an effective way to enhance user engagement.
[0067] Optionally, in one embodiment, displaying a dynamic background image and settings interface corresponding to the currently selected settings icon includes: responding to the selection of a context-aware settings icon, making corresponding settings based on context information acquired by an acquisition sensor, including at least one of the following: adjusting the brightness of the display screen based on light information acquired by a light sensor; adjusting the volume or vibration mode based on sound information acquired by a sound sensor; adjusting the font size or touch sensitivity based on motion information acquired by a motion sensor; and adjusting the security protection level based on position information acquired by a position sensor.
[0068] Understandably, this context-aware setting allows the device to perceive the user's environment and context in real time, and dynamically adjust device settings and functions accordingly to provide a personalized experience best suited to the current situation. Its core functions include multi-dimensional context awareness, intelligent context analysis, dynamic adaptive adjustment, and continuous learning optimization. It utilizes various sensors and data sources on the device to comprehensively perceive the user's context, as illustrated by the following examples:
[0069] a) Utilizes a light sensor to detect ambient brightness and automatically adjusts screen brightness and contrast based on lighting conditions.
[0070] b) Collect ambient noise levels via microphone, and increase notification volume or switch to vibration mode in noisy environments.
[0071] c) Adjust touch sensitivity and font size according to the user's movement.
[0072] d) Automatically enable VPN and enhance privacy protection when connecting to public networks in public places.
[0073] e) Increase the device's security level when an abnormal situation is detected.
[0074] Context-aware adaptation provides users with a smart, considerate, and always optimized user experience. This feature not only adapts to users' immediate needs but also anticipates and prepares for upcoming contextual changes, achieving a seamless integration of the device with the user's life. This context-based dynamic adaptation not only improves user satisfaction and device efficiency but also opens up new directions for the personalization and intelligent development of mobile devices.
[0075] Optionally, in one embodiment, displaying a dynamic background image and settings interface corresponding to the currently selected settings icon includes: obtaining location information in response to the weather settings icon being selected; obtaining corresponding weather information based on the location information; and adjusting the dynamic background image and theme color of the general settings and personalized settings based on the weather information.
[0076] Finally, after completing the above settings, enter the main page. All the settings elements appear in the background as a timeline. The timeline is replaced by the main screen style, and the elements converge to form the product logo.
[0077] By using the above methods, the different boot wizard settings of the terminal device under different power states can be obtained. This can ensure basic wizard settings when the power is low, or complete more personalized settings when the power is high, in order to meet different needs in different scenarios, satisfy user needs, and improve device usage efficiency.
[0078] Understandably, this application provides an innovative user experience solution for smart devices, offering users a more intelligent, smooth, and personalized device experience. It significantly improves user device usage efficiency and satisfaction. It can be widely applied to various smart terminal devices, such as smartphones, tablets, and wearable devices, comprehensively enhancing the user-device interaction experience and powerfully promoting the deep application of artificial intelligence and contextual computing technologies in the consumer electronics field. More intelligent device adaptability allows devices to automatically adjust to the user's usage environment and needs, providing the best experience without manual adjustments. A higher degree of personalization allows each user to obtain a unique user experience, enhancing the user's emotional connection to the device. More accurate contextual recognition accurately grasps the user's usage scenario, providing just the right functional support and reducing unnecessary interference. More efficient device performance optimization, through intelligent adjustment of various parameters, extends battery life while ensuring user experience and improving the overall efficiency of the device.
[0079] To address the aforementioned problems, this application also provides an electronic device 100, such as... Figure 6 As shown, Figure 6 This is a schematic diagram of the structure of an embodiment of the electronic device provided in this application; the electronic device 100 includes: a processor 110 and a memory 120, the memory 120 storing program data, and the processor 110 executing the program data to implement the boot wizard setting method as described in any of the above embodiments.
[0080] To solve the above problems, such as Figure 7 As shown, Figure 7 This is a schematic diagram of an embodiment of the computer-readable storage medium provided in this application; this application also provides a computer-readable storage medium 200, which stores program data 210, which is used by the processor 110 to implement the boot wizard setting method as described in any of the above embodiments.
[0081] The startup wizard setting method provided in this application includes: obtaining the current battery level; displaying a dynamic theme and performing general and personalized settings based on the dynamic theme in response to the current battery level being greater than a set battery threshold; or displaying a static theme and performing general settings based on the static theme in response to the current battery level being less than or equal to a set battery threshold.
[0082] By using the above methods, different power-on wizards are applied to the device based on its current power level to meet the power consumption requirements of different settings, satisfying the basic wizard settings or dynamic personalized wizard settings of the device.
[0083] The embodiments of this application have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. A boot wizard setup method, characterized in that, The startup wizard setup method includes: Get current battery level; In response to the current battery level exceeding a set battery threshold, a dynamic theme is displayed, and general and personalized settings are performed based on the dynamic theme; or In response to the current battery level being less than or equal to the set battery threshold, a static theme is displayed, and regular settings are performed based on the static theme.
2. The boot wizard setup method according to claim 1, characterized in that, The display of a dynamic theme, and the performance of general and personalized settings based on that dynamic theme, include: A navigation interface is displayed, comprising a navigation line and multiple setting item icons displayed on the navigation line; and Displays a dynamic background image and settings interface corresponding to the currently selected settings item icon; The navigation interface and the settings interface are displayed on the dynamic background image, and multiple settings item icons are selected in sequence, or any of the settings item icons are selected in response to a click command.
3. The boot wizard setup method according to claim 2, characterized in that, The general settings include at least one of the following: language settings, country / region settings, SIM card settings, network settings, user policy and user manual reading settings, Google service settings, unlock settings, and operation gesture settings. The personalized settings include at least one of the following: user habit settings, mobile phone migration settings, context-aware settings, and weather settings.
4. The boot wizard setup method according to claim 3, characterized in that, The display of the dynamic background image and settings interface corresponding to the currently selected settings item icon includes: In response to the language settings icon being selected, a list of language selections is displayed in the settings interface; In response to the selection of a target language from the language selection list, multiple fonts corresponding to the target language are displayed on the settings interface. In response to the selection and confirmation of the target font among the various fonts, the language setting is confirmed to be complete, and the next setting item icon is selected on the navigation interface.
5. The boot wizard setup method according to claim 3, characterized in that, The display of the dynamic background image and settings interface corresponding to the currently selected settings item icon includes: In response to the selection of the country / region setting icon, a list of countries and a dynamic globe image are displayed on the settings interface; In response to the selection of a target country from the list of countries, the dynamic globe rotates to the viewpoint corresponding to the target country; In response to the selected target country being determined, the corresponding image or video for the target country is displayed.
6. The boot wizard setup method according to claim 3, characterized in that, The display of the dynamic background image and settings interface corresponding to the currently selected settings item icon includes: In response to the selection of a network settings icon, a sphere graphic and node icons extending outward from the sphere graphic are displayed in the settings interface. Each node icon represents a network node, and the corresponding network name and signal strength are displayed near each node icon. In response to the selection of a target node icon, a virtual keyboard is displayed on the sphere graphic for password input, or a scanning interface is displayed on the sphere graphic for QR code scanning.
7. The boot wizard setup method according to claim 3, characterized in that, The display of the dynamic background image and settings interface corresponding to the currently selected settings item icon includes: In response to the selection of the context-aware settings icon, corresponding settings are made based on the context information acquired by the sensors, including at least one of the following: Adjust the brightness of the display screen based on the light information obtained from the light sensor; Adjust the volume or vibration mode based on the sound information obtained from the sound sensor; Adjust font size or touch sensitivity based on motion information obtained from motion sensors; The security protection level is adjusted based on the location information obtained from the location sensor.
8. The boot wizard setup method according to claim 3, characterized in that, The display of the dynamic background image and settings interface corresponding to the currently selected settings item icon includes: In response to the weather settings icon being selected, location information is retrieved; Obtain the corresponding weather information based on the location information; The dynamic background image and theme color of the general settings and the personalized settings are adjusted based on the weather information.
9. An electronic device, characterized in that, The electronic device includes a processor and a memory, the memory storing program data, and the processor executing the program data to implement the boot wizard setup method as described in any one of claims 1-8.
10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores program data, which, when executed by a processor, is used to implement the boot wizard setup method as described in any one of claims 1-8.
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