Artificial intelligence-based automobile cabin viewing atmosphere creating method and system
By analyzing the viewing content with artificial intelligence and generating an atmosphere rendering mode, combined with sound effects and user feedback, the problem of lack of synchronized atmosphere rendering in the car cabin has been solved, achieving a personalized and immersive viewing experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2026-03-10
AI Technical Summary
Modern car cabins lack the ability to create an immersive atmosphere that is synchronized with the content of the movie, resulting in a less immersive viewing experience.
An AI-based approach to creating a cinematic atmosphere in the car cabin is adopted. The AI content recognition and analysis module analyzes the viewing content to generate a corresponding atmosphere rendering mode. Combined with the sound effect control module and user feedback module, the atmosphere rendering mode is adjusted in real time to provide an immersive experience.
It achieves synchronized atmosphere rendering of multiple screens and lighting systems within the car cabin with the movie content, providing users with a personalized and immersive viewing experience.
Smart Images

Figure CN119189866B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intelligent vehicle technology, and in particular to a method and system for creating a car cabin movie-watching atmosphere based on artificial intelligence. Background Technology
[0002] With the development of automotive technology, modern car cabins are equipped with various screens and lighting systems, such as central control screens, instrument panel screens, auxiliary screens, rear screens, ceiling-mounted screens, interior ambient lighting, and exterior headlights. However, these devices usually operate independently and lack the ability to create an immersive atmosphere synchronized with the content being viewed. Summary of the Invention
[0003] In view of the above-mentioned deficiencies of the prior art, the present invention proposes a method and system for creating a car cabin movie-watching atmosphere based on artificial intelligence, so as to solve the problems described in the background art.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] AI-based methods for creating a cinematic atmosphere in car cabins include:
[0006] The AI content recognition and analysis module automatically analyzes the movie content selected by the user, including but not limited to movie type, scene, and emotional tone.
[0007] Based on the content recognition results, the AI generative module generates corresponding atmosphere rendering modes for all screens and lighting systems in the cockpit. The atmosphere rendering modes include, but are not limited to: simulated flashing lights in a thunderstorm scene, changes in ambient lighting in a horror scene, and soft lighting adjustment in a romantic scene.
[0008] The AI sound effect control module intelligently adjusts the sound effects according to the movie type and scene, and synchronizes with the atmosphere rendering mode to provide an immersive listening experience;
[0009] The user feedback module collects users' physiological and behavioral data in real time and dynamically adjusts the atmosphere rendering mode.
[0010] Furthermore, the AI content recognition and analysis module automatically analyzes the movie content selected by the user. Specifically, it receives movie content information and video stream data input by the user, including but not limited to movie name, type, director, actors and video stream data, and then uses deep learning algorithms to perform sentiment analysis and atmosphere analysis on the content, and identifies its theme, emotional tone and time frame data of key scenes.
[0011] Furthermore, based on the content recognition results, the AI-generated module generates corresponding atmosphere rendering modes for all screens and lighting systems within the cockpit, specifically:
[0012] Based on the analysis results, the AI-generated module designs and generates visual effects that match the content theme, including color schemes, dynamic patterns, and transition effects.
[0013] Personalize the configuration of other screens in the cockpit and adjust the displayed content according to the characteristics of the movie or TV show.
[0014] The system controls the cabin lighting system according to the plan, adjusting the color and brightness of the lights according to the atmosphere rendering mode to create an immersive viewing environment.
[0015] Furthermore, the intelligent adjustment of sound effects based on film type and scene, synchronized with the atmosphere rendering mode, provides an immersive auditory experience, specifically as follows:
[0016] Real-time monitoring of key scene changes in the film, including at least battles, chases, and romance, and dynamic adjustment of the sound system;
[0017] Using multi-channel surround sound technology, it simulates the propagation of sound in three-dimensional space, providing a more three-dimensional and realistic auditory experience;
[0018] Based on the user's seating position and the acoustic characteristics of the cabin, sound localization and balance adjustments are made to ensure that each seat receives the best listening experience.
[0019] Furthermore, the user feedback module collects users' physiological and behavioral data in real time and dynamically adjusts the atmosphere rendering mode, specifically as follows:
[0020] Deploy sensors to monitor users' physiological data, including heart rate, respiratory rate, and skin conductance, and assess users' emotional state and stress level;
[0021] Use cameras or motion tracking technology to capture user behavior data, including head and body position, posture changes, and hand gestures;
[0022] By using facial expression recognition technology, we can analyze users' micro-expressions to obtain their satisfaction with the current atmosphere and their emotional feedback.
[0023] The system integrates a speech recognition system to analyze users' voice commands and tone changes, and to identify users' intentions and emotions.
[0024] The collected physiological and behavioral data are input into the AI algorithm to analyze the user's viewing experience in real time and adjust the atmosphere rendering mode based on the analysis results.
[0025] This invention also proposes an in-vehicle infotainment system for creating a cinematic atmosphere in the car cabin based on artificial intelligence, including:
[0026] The AI content recognition and analysis module is used to automatically analyze and identify viewing content;
[0027] AI-generated modules are used to generate ambient rendering patterns for all screens and lighting systems in the cockpit.
[0028] The AI sound effect control module is used to intelligently adjust the sound effect.
[0029] The user feedback module is used to collect user feedback and dynamically optimize viewing settings.
[0030] Furthermore, the AI content recognition and analysis module is used to automatically analyze and identify the viewing content. Specifically, it receives viewing content information and video stream data input by the user, including but not limited to movie name, type, director, actors and video stream data, and then uses deep learning algorithms to perform sentiment analysis and atmosphere analysis on the content, and identifies its theme, emotional tone and key scene time frame data.
[0031] Furthermore, the AI-generated module is used to generate ambient rendering modes for all screens and lighting systems within the cockpit, specifically:
[0032] Based on the analysis results, the AI-generated module designs and generates visual effects that match the content theme, including color schemes, dynamic patterns, and transition effects.
[0033] Personalize the configuration of other screens in the cockpit and adjust the displayed content according to the characteristics of the movie or TV show.
[0034] The system controls the cabin lighting system according to the plan, adjusting the color and brightness of the lights according to the atmosphere rendering mode to create an immersive viewing environment.
[0035] Furthermore, the AI sound effect control module is used to intelligently adjust the sound effect, specifically as follows:
[0036] Real-time monitoring of key scene changes in the film, including at least battles, chases, and romance, and dynamic adjustment of the sound system to enhance the sense of urgency or emotional depth of the scene;
[0037] Using multi-channel surround sound technology, it simulates the propagation of sound in three-dimensional space, providing a more three-dimensional and realistic auditory experience;
[0038] Based on the user's seating position and the acoustic characteristics of the cabin, sound localization and balance adjustments are made to ensure that each seat receives the best listening experience.
[0039] Furthermore, the user feedback module is used to collect user feedback and dynamically optimize viewing settings, specifically as follows:
[0040] Deploy sensors to monitor users' physiological data, including heart rate, respiratory rate, and skin conductance, to assess users' emotional state and stress levels;
[0041] Use cameras or motion tracking technology to capture user behavior data, including head and body position, posture changes, and hand gestures;
[0042] Facial expression recognition technology is used to analyze users' micro-expressions in order to obtain their satisfaction with the current atmosphere and their emotional feedback.
[0043] An integrated speech recognition system analyzes the user's voice commands and intonation changes to identify the user's intentions and emotions;
[0044] The collected physiological and behavioral data are input into the AI algorithm to analyze the user's viewing experience in real time and adjust the atmosphere rendering mode based on the analysis results.
[0045] The present invention has the following technical effects:
[0046] This invention utilizes artificial intelligence technology to achieve synchronized atmosphere rendering between multiple screens and lighting systems within a car cabin and the content being viewed, providing users with a personalized and immersive viewing experience. Attached Figure Description
[0047] The accompanying drawings, which form part of this specification, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an undue limitation of the invention. In the drawings:
[0048] Figure 1 This is a flowchart of the method of the present invention.
[0049] Figure 2 This is a block diagram illustrating the principle of the AI content recognition and analysis module of the present invention.
[0050] Figure 3 This is a block diagram illustrating the principle of the AI generative module of the present invention.
[0051] Figure 4 This is a block diagram illustrating the principle of the AI sound effect control module of the present invention.
[0052] Figure 5 This is a block diagram illustrating the principle of the user feedback module of the present invention. Detailed Implementation
[0053] The present invention will now be described in detail with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described herein can be combined with each other.
[0054] The following detailed description is exemplary and intended to provide further detailed explanation of the invention. Unless otherwise specified, all technical terms used in this invention have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used in this invention is for describing particular embodiments only and is not intended to limit the scope of exemplary embodiments according to the invention.
[0055] Example 1
[0056] like Figure 1-5 As shown, this invention proposes a method for creating a car cabin movie-watching atmosphere based on artificial intelligence, including:
[0057] The AI content recognition and analysis module automatically analyzes the movie content selected by the user, including but not limited to movie type, scene, and emotional tone.
[0058] Based on the content recognition results, the AI generative module generates corresponding atmosphere rendering modes for all screens and lighting systems in the cockpit. The atmosphere rendering modes include, but are not limited to: simulated flashing lights in a thunderstorm scene, changes in ambient lighting in a horror scene, and soft lighting adjustment in a romantic scene.
[0059] The AI sound effect control module intelligently adjusts the sound effects according to the movie type and scene, and synchronizes with the atmosphere rendering mode to provide an immersive listening experience;
[0060] The user feedback module collects users' physiological and behavioral data in real time and dynamically adjusts the atmosphere rendering mode.
[0061] In this embodiment, the AI content recognition and analysis module automatically analyzes the movie content selected by the user. Specifically, it receives movie content information and video stream data input by the user, including but not limited to movie name, type, director, actors and video stream data, and then uses deep learning algorithms to perform sentiment analysis and atmosphere analysis on the content, and identifies its theme, emotional tone and time frame data of key scenes.
[0062] In this embodiment, based on the content recognition results, the AI generative module generates corresponding atmosphere rendering modes for all screens and lighting systems in the cockpit, specifically as follows:
[0063] Based on the analysis results, the AI-generated module designs and generates visual effects that match the content theme, including color schemes, dynamic patterns, and transition effects.
[0064] Personalize the configuration of other screens in the cockpit and adjust the displayed content according to the characteristics of the movie or TV show.
[0065] The system controls the cabin lighting system according to the plan, adjusting the color and brightness of the lights according to the atmosphere rendering mode to create an immersive viewing environment.
[0066] In this embodiment, the intelligent adjustment of sound effects based on film type and scene, synchronized with the atmosphere rendering mode, to provide an immersive auditory experience, specifically includes:
[0067] Real-time monitoring of key scene changes in the film, including at least battles, chases, and romance, and dynamic adjustment of the sound system;
[0068] Using multi-channel surround sound technology, it simulates the propagation of sound in three-dimensional space, providing a more three-dimensional and realistic auditory experience;
[0069] Based on the user's seating position and the acoustic characteristics of the cabin, sound localization and balance adjustments are made to ensure that each seat receives the best listening experience.
[0070] In this embodiment, the user feedback module collects the user's physiological and behavioral data in real time and dynamically adjusts the atmosphere rendering mode, specifically as follows:
[0071] Deploy sensors to monitor users' physiological data, including heart rate, respiratory rate, and skin conductance, and assess users' emotional state and stress level;
[0072] Use cameras or motion tracking technology to capture user behavior data, including head and body position, posture changes, and hand gestures;
[0073] By using facial expression recognition technology, we can analyze users' micro-expressions to obtain their satisfaction with the current atmosphere and their emotional feedback.
[0074] The system integrates a speech recognition system to analyze users' voice commands and tone changes, and to identify users' intentions and emotions.
[0075] The collected physiological and behavioral data are input into the AI algorithm to analyze the user's viewing experience in real time and adjust the atmosphere rendering mode based on the analysis results.
[0076] Example 2
[0077] like Figure 1-5 As shown, this invention also proposes an in-vehicle infotainment system for creating a cinematic atmosphere in the car cabin based on artificial intelligence, including:
[0078] The AI content recognition and analysis module is used to automatically analyze and identify viewing content;
[0079] AI-generated modules are used to generate ambient rendering patterns for all screens and lighting systems in the cockpit.
[0080] The AI sound effect control module is used to intelligently adjust the sound effect.
[0081] The user feedback module is used to collect user feedback and dynamically optimize viewing settings.
[0082] In this embodiment, the AI content recognition and analysis module is used to automatically analyze and identify the viewing content. Specifically, it receives the viewing content information and video stream data input by the user, including but not limited to the movie name, type, director, actors and video stream data, and then uses deep learning algorithms to perform sentiment analysis and atmosphere analysis on the content, and identifies its theme, emotional tone and time frame data of key scenes.
[0083] In this embodiment, the AI generative module is used to generate atmosphere rendering modes for all screens and lighting systems in the cockpit, specifically:
[0084] Based on the analysis results, the AI-generated module designs and generates visual effects that match the content theme, including color schemes, dynamic patterns, and transition effects.
[0085] Personalize the configuration of other screens in the cockpit and adjust the displayed content according to the characteristics of the movie or TV show.
[0086] The system controls the cabin lighting system according to the plan, adjusting the color and brightness of the lights according to the atmosphere rendering mode to create an immersive viewing environment.
[0087] In this embodiment, the AI sound effect control module is used to intelligently adjust the sound effect, specifically:
[0088] Real-time monitoring of key scene changes in the film, including at least battles, chases, and romance, and dynamic adjustment of the sound system to enhance the sense of urgency or emotional depth of the scene;
[0089] Using multi-channel surround sound technology, it simulates the propagation of sound in three-dimensional space, providing a more three-dimensional and realistic auditory experience;
[0090] Based on the user's seating position and the acoustic characteristics of the cabin, sound localization and balance adjustments are made to ensure that each seat receives the best listening experience.
[0091] In this embodiment, the user feedback module is used to collect user feedback and dynamically optimize viewing settings, specifically:
[0092] Deploy sensors to monitor users' physiological data, including heart rate, respiratory rate, and skin conductance, to assess users' emotional state and stress levels;
[0093] Use cameras or motion tracking technology to capture user behavior data, including head and body position, posture changes, and hand gestures;
[0094] Facial expression recognition technology is used to analyze users' micro-expressions in order to obtain their satisfaction with the current atmosphere and their emotional feedback.
[0095] An integrated speech recognition system analyzes the user's voice commands and intonation changes to identify the user's intentions and emotions;
[0096] The collected physiological and behavioral data are input into the AI algorithm to analyze the user's viewing experience in real time and adjust the atmosphere rendering mode based on the analysis results.
[0097] Example 3
[0098] The specific implementation process of this invention includes the following steps:
[0099] 1. Users can select the movie they want to watch through the vehicle's central control system.
[0100] 2. The AI content recognition and analysis module receives film information and analyzes the film's features using deep learning algorithms. The module receives user-input viewing content information and video stream data, including but not limited to film title, genre, director, actors, and video stream data. It then uses deep learning algorithms to perform sentiment analysis and atmosphere analysis on the content, identifying its theme, emotional tone, and key scene timeframe data.
[0101] 3. Based on the recognition results, the AI-generated module generates rendering modes adapted to the film's atmosphere for the central control screen, instrument panel screen, auxiliary screens, rear screens, ceiling-mounted screens, and exterior headlights. Based on the analysis results, the AI-generated module designs and generates visual effects matching the content theme, including color schemes, dynamic patterns, and transition effects. It also personalizes other screens in the cabin, adjusting the displayed content according to the characteristics of the film. Furthermore, it controls the cabin's lighting system according to the plan, adjusting the color and brightness of the lights based on the atmosphere rendering mode to create an immersive viewing environment. For example, in a lightning and thunder scene, the exterior headlights and interior lighting system simulate lightning effects, flashing rapidly; in a horror scene, the color and brightness of the lights change to create a tense atmosphere.
[0102] 5. The AI sound effects control module intelligently adjusts the sound system settings based on the film's audio characteristics, synchronizing with the lighting rendering mode to enhance the viewing experience. It monitors key scene changes in real time, such as battles, chases, and romance, and dynamically adjusts the sound system to enhance the urgency or emotional depth of the scene. Utilizing multi-channel surround sound technology, it simulates the propagation of sound in three-dimensional space, providing a more immersive and realistic auditory experience. Based on the user's seating position and the acoustic characteristics of the cabin, it performs sound localization and balance adjustments to ensure optimal listening for every seat.
[0103] 6. The user feedback module monitors users' physiological reactions and operational behaviors through sensors, collects feedback data in real time, and dynamically adjusts the atmosphere rendering mode based on the feedback. Sensors are deployed to monitor users' physiological data, such as heart rate, respiratory rate, and skin conductance, to assess users' emotional state and stress levels. Cameras or motion tracking technology are used to capture users' behavioral data, including head and body position, posture changes, and hand gestures. Facial expression recognition technology analyzes users' micro-expressions to obtain their satisfaction with the current atmosphere and emotional feedback. A voice recognition system is integrated to analyze users' voice commands and tone changes to identify their intentions and emotions. The collected physiological and behavioral data are input into AI algorithms to analyze users' viewing experience in real time and adjust the atmosphere rendering mode based on the analysis results.
[0104] Through the above embodiments, the present invention can utilize artificial intelligence technology to achieve synchronized atmosphere rendering of multiple screens and lighting systems in the car cabin with the movie content, providing users with a personalized and immersive movie viewing experience.
[0105] The preferred embodiments of the present invention have been described in detail above. It should be understood that those skilled in the art can make numerous modifications and variations based on the concept of the present invention without creative effort. Therefore, all technical solutions that can be obtained by those skilled in the art based on the concept of the present invention through logical analysis, reasoning, or limited experimentation on the basis of existing technology should be within the scope of protection defined by the claims.
Claims
1. A method for creating a viewing atmosphere in a car cabin based on artificial intelligence, characterized in that, Comprise: Automatically analyze the viewing content selected by the user using the AI content recognition analysis module, including film type, scene, emotional tone; According to the content recognition result, the AI generative module generates the corresponding atmosphere rendering mode for all screens and light systems in the cockpit, including one or more of lightning and thunder scene light flicker simulation, horror scene atmosphere light change, and soft light adjustment in romantic scene; The AI sound effect control module intelligently adjusts the sound effect according to the film type and scene, synchronized with the atmosphere rendering mode; The user feedback module collects the user's physiological and behavioral data in real time, dynamically adjusts the atmosphere rendering mode; The user feedback module collects the user's physiological and behavioral data in real time, dynamically adjusts the atmosphere rendering mode, specifically: Deploy sensors to monitor the user's physiological data, including heart rate, respiratory rate, and skin conductance, to assess the user's emotional state and stress level; Use cameras or motion tracking technology to capture user behavior data, including head and body position, posture changes, and hand gestures; Through facial expression recognition technology, analyze the user's micro-expression to obtain the user's satisfaction with the current atmosphere and emotional feedback; Integrate a voice recognition system to analyze the user's voice commands and tone changes, identify the user's intentions and emotions; Input the collected physiological and behavioral data into the AI algorithm to analyze the user's viewing experience in real time, and adjust the atmosphere rendering mode according to the analysis result. 2.The method of claim 1, wherein, The AI content recognition analysis module automatically analyzes the viewing content selected by the user, specifically: receiving the user input viewing content information and video stream data, including movie name, type, director, actor, and video stream data, then using deep learning algorithm to perform sentiment analysis and atmosphere analysis on the content, identify the theme, emotional tone and key scene time frame data. 3.The method of claim 1, wherein, According to the content recognition result, the AI generative module generates the corresponding atmosphere rendering mode for all screens and light systems in the cockpit, specifically: Based on the analysis result, the AI generative module designs and generates visual effects matching the content theme, including color scheme, dynamic pattern and transition effect; Configure other screens in the cockpit, adjust the display content of the screen according to the characteristics of the viewing content; Control the light system in the cockpit according to the color scheme, adjust the color and brightness of the light according to the atmosphere rendering mode. 4.The method of claim 1, wherein, Intelligently adjust the sound effect according to the film type and scene, synchronized with the atmosphere rendering mode, specifically: Real-time monitoring of key scene changes in the film, including at least fighting, chasing, romance, and dynamic adjustment of the sound system; Use multi-channel surround sound technology to simulate sound propagation in three-dimensional space, providing a more stereoscopic and realistic auditory experience; According to the user's seat position and the acoustic characteristics of the cockpit, adjust the sound positioning and balance to ensure the best auditory experience for each seat.
5. The system for creating a viewing atmosphere in a car cabin based on artificial intelligence, characterized in that Comprise: AI content recognition analysis module for automatically analyzing and identifying viewing content; AI generative module for generating atmosphere rendering mode for all screens and light systems in the cockpit; AI sound effect control module for intelligently adjusting sound effects; A user feedback module is used to collect user feedback and dynamically optimize the viewing settings. The user feedback module is used to collect user feedback and dynamically optimize the viewing settings, specifically: Deploy sensors to monitor users' physiological data, including heart rate, respiratory rate, and skin conductance, to assess users' emotional state and stress level; Use cameras or motion tracking technology to capture users' behavioral data, including head and body position, posture changes, and hand gestures; Through facial expression recognition technology, analyze users' micro-expressions to obtain users' satisfaction with the current atmosphere and emotional feedback; Integrate a voice recognition system to analyze users' voice commands and tone changes to identify users' intentions and emotions; Input the collected physiological and behavioral data into AI algorithms to analyze users' viewing experience in real time and adjust the atmosphere rendering mode based on the analysis results. 6.The AI-based automobile cabin viewing atmosphere creating system according to claim 5, characterized in that, The AI content recognition and analysis module is used to automatically analyze and identify viewing content, specifically: receiving user inputted viewing content information and video stream data, including movie name, type, director, actors, and video stream data, then using deep learning algorithms to perform sentiment analysis and atmosphere analysis on the content, identifying its theme, emotional tone, and key scene time frame data. 7.The AI-based automobile cabin viewing atmosphere creating system according to claim 5, characterized in that, The AI generation module is used to generate atmosphere rendering modes for all screens and lighting systems in the cockpit, specifically: Based on the analysis results, the AI generation module designs and generates visual effects that match the content theme, including color schemes, dynamic patterns, and transition effects; Personalize other screens in the cockpit, adjusting the display content based on the characteristics of the viewing content; Control the lighting system in the cockpit according to the scheme, adjusting the color and brightness of the lights according to the atmosphere rendering mode to create an immersive viewing environment. 8.The AI-based automobile cabin viewing atmosphere creating system according to claim 5, characterized in that, The AI sound effect control module is used to intelligently adjust sound effects, specifically: Real-time monitoring of key scene changes in the movie, including at least fighting, chasing, and romance, and dynamically adjusting the sound system to enhance the urgency or emotional depth of the scene; Use multi-channel surround sound technology to simulate sound propagation in three-dimensional space, providing a more stereoscopic and realistic auditory experience; According to the user's seat position and the acoustic characteristics of the cockpit, adjust the sound positioning and balance to ensure the best auditory experience for each seat.
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