Exercise fitness music scenario atmosphere method
The method automatically generates musical feature tags and synchronizes lighting and posture changes with music to create an immersive exercise environment, addressing the lack of systematic integration in existing fitness systems.
Patent Information
- Application Number
- TW114116025
- Authority / Receiving Office
- TW · TW
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-07-11
- Estimated Expiration
- 2045-04-27
AI Technical Summary
Existing fitness music systems lack a systematic integration of music emotional characteristics with body postures and lighting adjustments, failing to create an immersive exercise environment, especially in non-professional settings.
A method that automatically generates musical feature tags, integrates lighting effects, and synchronizes them with yoga postures to create a comprehensive exercise atmosphere, using a system that analyzes music segments, lighting parameters, and motion images.
Provides an immersive exercise experience by dynamically matching lighting and posture changes with music, optimizing the system over time with accumulated data for enhanced practicality.
Smart Images

Figure IMG-2_DRAW_114116025-A0305-14-0001-1 
Figure IMG-2_DRAW_114116025-A0305-14-0002-2 
Figure IMG-2_DRAW_114116025-A0305-14-0002-4
Abstract
Description
Technical Field
[0001] This invention relates to a method for creating a sports and fitness music atmosphere, specifically a method for tagging music based on characteristic tags in the music, and combining music and lighting through the tagged music content, and simultaneously playing sports posture images to create a sports and fitness music atmosphere. Prior Technology
[0002] The fitness industry continues to innovate and develop, especially in yoga and other forms of physical activity, where the environment has a profound impact on participants' experience and exercise results. Traditional fitness and yoga classes typically rely on instructors or guides to select music and verbally guide postures, a method that, while intuitive, lacks systematicity and consistency. With technological advancements, digital fitness platforms and apps have emerged, attempting to provide standardized fitness experiences, but most are limited to video playback or simple music pairings, failing to create a truly immersive exercise environment.
[0003] Most fitness music systems currently on the market simply play preset music lists, lacking a deep understanding and organic integration of the emotional characteristics of the music, the needs of the body postures, and the atmosphere of the environment. These systems often treat music merely as a background element, rather than a core component of the exercise experience. Although some advanced systems attempt to automatically adjust the music rhythm according to the intensity of the exercise, they lack detailed analysis of the music structure and cannot achieve a precise correspondence between music segments and body postures.
[0004] Furthermore, existing technologies often overlook the significant impact of lighting environment on the workout experience. While some high-end gyms or yoga studios are equipped with basic lighting control systems, these systems are mostly pre-set lighting scenes and cannot dynamically adjust to changes in music and exercise rhythm. For users who wish to exercise at home or other non-professional venues, creating a professional-grade workout atmosphere in ordinary environments remains an unsolved challenge. Summary of the Invention
[0005] This invention provides a method for creating a musical atmosphere for exercise and fitness. Its purpose is to automatically generate various musical feature tags after obtaining the music signal, and to integrate the emotional characteristics of the music segment, lighting effects and yoga postures to form a complete musical atmosphere and yoga movement guidance design process. Through systematic analysis methods and modular execution sequences, it provides users with an immersive exercise and fitness experience.
[0006] The present invention discloses a method for creating a sports and fitness music atmosphere, applicable to a sports and fitness music atmosphere system, comprising: acquiring a music signal; identifying at least one music feature tag in the music signal based on at least one music segment feature; generating a music segment diagram of the music signal through the music feature tag; generating a light segment parameter corresponding to the music segment diagram according to a light source color reference table; generating a motion image parameter corresponding to the music segment diagram according to a movement posture reference table; and integrating the music signal, the light segment parameter, and the motion image parameter in a time sequence to generate a complete sports and fitness atmosphere through the sports and fitness music atmosphere system.
[0007] In one embodiment of the present invention, the aforementioned music signal may be a musical score.
[0008] In one embodiment of the present invention, the aforementioned music signal may include, but is not limited to, blues, jazz, Latin music, rhythm and blues, funk, rock, country music, and reggae.
[0009] In one embodiment of the present invention, the above-mentioned at least one musical segment feature includes one or any combination of time, number of measures, musical form, instrument, chord, scale, harmony, melody, and rhythm.
[0010] In one embodiment of the present invention, the above-mentioned at least one music feature label includes a scale label, a musical form label, a groove label, and a chord label.
[0011] In one embodiment of the present invention, the above-mentioned light segment parameters include black, white, red, green, blue, cyan, magenta, and yellow.
[0012] In one embodiment of the present invention, the above-mentioned light segment parameters display the corresponding color light within a corresponding time length according to the rhythm of the note.
[0013] In one embodiment of the present invention, the above-mentioned lighting segment parameters further include fixed lighting or rhythmic lighting.
[0014] In one embodiment of the present invention, the above-mentioned motion image parameters further include images of specific postures such as weight training, fitness, muscle relaxation, fat burning, sports-specific, and yoga.
[0015] In one embodiment of the present invention, the aforementioned specific pose image is a picture or video.
[0016] In one embodiment of the present invention, the above-mentioned sports and fitness music context system includes a music capture unit for acquiring the music signal; a music identification unit electrically connected to the music capture unit for identifying the music feature tags in the music signal; and a conversion processing unit electrically connected to the music capture unit and the music identification unit for generating the music segment diagram, the light segment parameters, and the motion image parameters.
[0017] In one embodiment of the present invention, the above-mentioned sports and fitness music environment system further includes a lighting control unit and a lighting module for displaying lights of corresponding colors according to the lighting segment parameters, and a playback screen for playing a specific posture image.
[0018] The advantage of this invention is that after acquiring the music signal, it automatically generates various music feature tags. Furthermore, through these music feature tags, combined with interactive lighting and movement posture designs, it dynamically presents the music, lighting, and movement posture feature tags, synchronously matching the changing lighting atmosphere effects of the music in the context. This serves as a contextual music execution sequence for displaying or practicing music context atmosphere and movement posture, forming the core data of a modular process. This allows users to quickly grasp the musical expression, context atmosphere, and movement posture connection characteristics of each song. Moreover, by accumulating music feature data of various styles of songs over the years, the system is optimized, making the system more complete and practical. Simple Explanation of the Diagram
[0019] Figure 1 is a flowchart of the steps of a sports and fitness music atmosphere method according to one of the present invention.
[0020] Figure 2 is a schematic diagram of a musical score of an embodiment of a sports and fitness music atmosphere method according to the present invention.
[0021] Figure 3 is a schematic diagram of music feature tags according to an embodiment of a sports and fitness music context atmosphere method according to the present invention.
[0022] Figure 4 is a schematic diagram of a music segment from an embodiment of a fitness music atmosphere method according to the present invention.
[0023] Figure 5 is a schematic diagram of a lighting segment in an embodiment of a sports and fitness music atmosphere method according to the present invention.
[0024] Figure 6 is a color reference table of light source for a sports and fitness music atmosphere method according to one of the present invention.
[0025] Figure 7 is a block diagram of an exemplary sports and fitness music context system applicable to a sports and fitness music context atmosphere method according to one of the present invention.
[0026] Figure 8 is a schematic diagram of motion images of another embodiment of a sports and fitness music atmosphere method according to the present invention.
[0027] Figure 9 is a schematic diagram of the body posture movement connection commands according to one of the sports and fitness music context atmosphere methods of the present invention.
[0028] Figure 10 is a schematic diagram of the exercise posture execution points according to a method of creating a music-based fitness atmosphere according to the present invention. Implementation
[0029] To make the above-mentioned features and advantages of the present invention more apparent and understandable, specific embodiments are described below in conjunction with the accompanying drawings for detailed explanation.
[0030] Please refer to Figure 1, which is a flowchart of a method for creating a musical atmosphere for exercise and fitness according to the present invention. The steps are as follows:
[0031] Step S110: Obtain a music signal.
[0032] Step S120: Identify at least one music feature tag in the music signal based on at least one music segment feature.
[0033] Step S130: Generate a music segment diagram of the music signal through these music feature tags.
[0034] Step S140: Generate a lighting segment parameter based on a light source color reference table using the music segment diagram.
[0035] Step S150: Generate a motion image parameter corresponding to the music segment image based on a motion posture reference table.
[0036] Step S160: Integrate the music signal, the light segment parameters, and the motion image parameters in a time sequence to generate a complete sports and fitness atmosphere through the sports and fitness music and atmosphere system.
[0037] In this embodiment, the lighting segment parameters further include a lighting source parameter, a backlight turning coordinate parameter, a backlight graphic line parameter, and a rendering light source color parameter.
[0038] The light source parameters of the lamp include rendering light source, backlight source, top light source, side light source, and surface light source; the backlight source directional coordinate parameters include straight line coordinate, left side coordinate, right side coordinate, inner cross coordinate, outer cross coordinate, fan-shaped coordinate, and center point coordinate; the backlight source graphic line parameters include light source penetration, small dot shape, large dot shape, long strip shape, vortex leaf shape, circular ring shape, and radius diffusion shape; and the rendering light source color parameters include white light source, red light source, green light source, blue light source, cyan light source, magenta light source, and yellow light source.
[0039] In this embodiment, the motion image parameters further include a positional action connection command and a motion posture execution point map.
[0040] In this embodiment, the music signal can be a musical score.
[0041] In this embodiment, the music signal may include, but is not limited to, genres such as blues, jazz, Latin music, rhythm and blues (R&B), funk, rock and roll, country music, and reggae.
[0042] In this embodiment, the at least one musical segment feature includes one or any combination of time, bar, section, instrument, chord, scale degree, harmony, melody, scale, and rhythm.
[0043] The musical sections include, but are not limited to, the intro, verse, chorus, interlude, and outro.
[0044] Among them, instruments include, but are not limited to, vocals, electric guitar, keyboard, bass, and drums.
[0045] In this embodiment, the at least one music feature tag includes a scale tag, a musical form tag, a groove tag, and a chord tag.
[0046] In this embodiment, the light segment parameters include black, white, red, green, blue, cyan, magenta, and yellow.
[0047] The light segment parameter displays the corresponding color light within a corresponding time length according to the rhythm of the note.
[0048] The parameters for this lighting segment include either fixed lighting or rhythmic lighting.
[0049] Furthermore, different musical notes can be associated with different colored lights, such as red for Do, green for Re, blue for Mi, cyan for Fe, and magenta for Sol, without any restrictions.
[0050] Furthermore, different musical sections can be associated with different colored lights, such as red for the intro, green for the verse, blue for the chorus, cyan for the interlude, and magenta for the outro, without any restrictions.
[0051] Furthermore, different musical instruments can be associated with different colored lights, such as red for vocals, green for electric guitars, blue for keyboards, cyan for bass, and magenta for drums, without any restrictions.
[0052] In this embodiment, the motion image parameters further include the motion posture execution point map of specific posture images such as weight training, fitness, muscle relaxation, fat burning, sports-specific, and yoga.
[0053] The image of this specific pose is either a picture or a video.
[0054] The image of this particular pose includes yoga postures.
[0055] The yoga poses include Child's Pose, Cobra Pose, Downward-Facing Dog, Warrior I Pose, Rotating Lunge, Open-Leg Forward Bend I, Reverse Warrior Pose, Warrior III Pose, Dancer Pose, Pyramid Pose, Crocodile Pose, Standing Half Forward Bend, Chair Pose, Flying Warrior Pose, Wild Pose, and Side Lunge.
[0056] In this embodiment, the sports and fitness music context system includes a music capture unit for acquiring the music signal; a music recognition unit electrically connected to the music capture unit for recognizing the music feature tags in the music signal; and a conversion processing unit electrically connected to the music capture unit and the music recognition unit for generating the music segment diagram, the light segment parameters, and the motion image parameters.
[0057] In this embodiment, the sports and fitness music environment system further includes a lighting control unit and a lighting module for displaying lights of corresponding colors according to the lighting segment parameters, and a playback screen for playing a specific posture image.
[0058] The lighting module can be a light-emitting diode (LED) lighting module, composed of multiple light-emitting diodes, but is not limited thereto.
[0059] In this embodiment, a sound and light effect is generated based on the music signal and the light segment parameters. The music signal's track segment screen is designed to simulate the backlight color rendering graphics and lines during music performance. Combined with the character light area simulation in the movement diagram and the virtual stage that can be used to generate a computer simulation, a better stage effect is created.
[0060] In this embodiment, based on the music signal and the motion image parameters, the conversion processing unit is connected to the playback screen to play images of specific poses on the playback screen.
[0061] In this embodiment, the conversion processing unit is used for remote playback.
[0062] Please refer to Figures 2 through 6 simultaneously.
[0063] As shown in Figure 2, in this embodiment, when a music signal is obtained through the sports and fitness music context system, the music signal is a musical score.
[0064] As shown in Figure 3, the musical characteristics of the music signal are labeled using the musical score.
[0065] Furthermore, the music feature label is divided into overall feature analysis and overall feature description.
[0066] In this embodiment, the music signal may include, but is not limited to, genres such as blues, jazz, Latin music, rhythm and blues (R&B), funk, rock and roll, country music, and reggae.
[0067] The overall feature analysis includes analyzing tempo, time signature, rhythmic pattern, and melody / scale.
[0068] The overall feature description further analyzes and summarizes each style, including features of scale, musical form, groove, and chord.
[0069] As shown in Figure 4, the musical segment diagram of the score is generated through the musical feature labels in Figure 3.
[0070] In this embodiment, the at least one musical segment feature includes one or any combination of time, bar, section, instrument, chord, scale degree, harmony, melody, scale, and rhythm.
[0071] The musical sections include, but are not limited to, the intro, verse, chorus, interlude, and outro.
[0072] Among them, instruments include, but are not limited to, vocals, electric guitar, keyboard, bass, and drums.
[0073] In this embodiment, the at least one music feature tag includes a scale tag, a musical form tag, a groove tag, and a chord tag.
[0074] As shown in Figures 5 and 6, based on the music segment diagram and the light source color reference table, the light changes formed by specific associations and abstract associations of different times, rhythms and musical connotations are generated without limitation, and light segment parameters are generated.
[0075] In this embodiment, the light segment parameters include black, white, red, green, blue, cyan, magenta, and yellow.
[0076] The light segment parameter displays the corresponding color light within a corresponding time length according to the rhythm of the note.
[0077] The parameters for this lighting segment include either fixed lighting or rhythmic lighting.
[0078] Furthermore, different musical notes can be associated with different colored lights, such as red for Do, green for Re, blue for Mi, cyan for Fe, and magenta for Sol, without any restrictions.
[0079] Furthermore, different musical sections can be associated with different colored lights, such as red for the intro, green for the verse, blue for the chorus, cyan for the interlude, and magenta for the outro, without any restrictions.
[0080] Furthermore, different musical instruments can be associated with different colored lights, such as red for vocals, green for electric guitars, blue for keyboards, cyan for bass, and magenta for drums, without any restrictions.
[0081] Please refer to Figure 7, which is a block diagram of an exemplary sports and fitness music atmosphere system applicable to a sports and fitness music atmosphere method according to the present invention. As shown in Figure 7, the sports and fitness music atmosphere system 700 includes a music capture unit 710 for acquiring the music signal; a music identification unit 720, electrically connected to the music capture unit 710, for identifying the music feature tags in the music signal; and a conversion processing unit 730, electrically connected to the music capture unit 710 and the music identification unit 720, for generating the music segment diagram, the light segment parameters, and the motion image parameters.
[0082] In this embodiment, the sports and fitness music context system further includes a lighting control unit 740 and a lighting module 741 for displaying lights of corresponding colors according to the lighting segment parameters, and a playback screen 750 for playing a specific posture image.
[0083] The lighting module 741 may be a light-emitting diode (LED) lighting module, which is composed of multiple light-emitting diodes, but is not limited thereto.
[0084] Please refer to Figures 8 to 10 simultaneously. Figure 8 is a schematic diagram of motion images according to another embodiment of the exercise and fitness music contextual atmosphere method according to the present invention. In this embodiment, the music segment diagram of the score is generated through the music feature tags; Figure 9 is a schematic diagram of the body posture movement connection command according to the exercise and fitness music contextual atmosphere method according to the present invention; Figure 10 is a schematic diagram of the exercise posture execution point diagram according to the exercise and fitness music contextual atmosphere method according to the present invention.
[0085] The at least one musical segment feature includes one or any combination of time, bar, section, instrument, chord, scale degree, harmony, melody, scale, and rhythm.
[0086] The musical sections include, but are not limited to, the intro, verse, chorus, interlude, and outro.
[0087] In this embodiment, based on the musical section diagram and the action posture comparison table, the motion image changes formed by specific associations and abstract associations of different musical sections are generated through the musical score, but without limitation, and motion image parameters are generated.
[0088] The motion image parameters include a set of positional action connection instructions and a motion posture execution point map.
[0089] Taking yoga as an example, the instructions for this posture include inhaling and exhaling, opening both hands, raising the right foot, lunging forward with the right foot, kneeling on the left knee, raising both hands, Hanumanasana (Monkey Pose), circling with the right hand, turning to the side across the center line, bending the left knee, swishing the right hand from bottom to front, preparing to dance, right hand and left foot, ballet foot, opening to the side, stepping back with the left foot, preparing to raise the right foot, bending the right knee, sitting and curling up, hands clasped in front of the chest, preparing to raise the left foot, kneeling on the right knee, lunging with the left foot, circling with the left hand, bending the right knee, swishing the left hand from bottom to front, preparing to dance, left hand and right foot, ballet foot, stepping back with the right foot, raising the left foot, preparing to jump forward, sliding to the right, opening to the left, turning to the back, preparing to dance wildly, lunging with the left foot, sliding to the left, opening to the right, moving forward, and embracing oneself, opening to the left and right, and clasping the hands in front of the chest, as shown in Figure 9.
[0090] Taking yoga as an example, the exercise posture execution point diagram includes specific posture images such as child's pose, cobra pose, downward-facing dog pose, warrior I pose, rotating lunge, open-leg forward bend I pose, reverse warrior pose, warrior III pose, dancer pose, pyramid pose, crocodile pose, standing half forward bend, chair pose, flying warrior pose, wild pose, and side lunge pose, as shown in Figure 10.
[0091] In summary, this invention automatically generates various music feature tags after acquiring music signals. Furthermore, these music feature tags can be combined with interactive elements such as lighting and movement postures to dynamically present the music, lighting, and movement posture feature tags. This allows for synchronized changes in lighting and atmosphere effects to match the music in the context, serving as a contextual music execution sequence for demonstration or practice of music and movement postures. This forms the core data of a modular process, enabling users to quickly grasp the musical expression, contextual atmosphere, and movement posture connections of each song. Moreover, the system is optimized by accumulating music feature data of various styles of songs over the years, making the system more complete and practical.
[0092] Although the present invention has been disclosed above with reference to the foregoing embodiments, it is not intended to limit the present invention. Any modifications and equivalent substitutions made by those skilled in the art without departing from the spirit and scope of the present invention shall still be within the scope of patent protection of the present invention.
[0093] S110~S150: Procedure Flow
[0094] 700: Sports and Fitness Music Context System
[0095] 710: Music Extraction Unit
[0096] 720: Music Recognition Unit
[0097] 730: Conversion Processing Unit
[0098] 740: Lighting Control Unit
[0099] 741: Lighting Module
[0100] 750: Playback Screen
Claims
1. A method for creating a fitness music atmosphere, applicable to a fitness music atmosphere system, comprising: The system acquires a music signal; identifies at least one music feature tag in the music signal based on at least one music segment feature; generates a music segment diagram of the music signal through the music feature tags; generates a light segment parameter corresponding to the music segment diagram according to a light source color reference table; generates a motion image parameter corresponding to the music segment diagram according to a movement posture reference table; and integrates the music signal, the light segment parameter, and the motion image parameter in a time-synchronized manner to generate a complete sports and fitness atmosphere through the sports and fitness music and music environment system. The lighting segment parameters further include a light source parameter, a backlight turning coordinate parameter, a backlight graphic line parameter, and a rendering light source color parameter. The light source parameter includes rendering light source, backlight, top light source, side light source, and surface light source. The backlight turning coordinate parameter includes straight line coordinate, left side coordinate, right side coordinate, inner cross coordinate, outer cross coordinate, fan-shaped coordinate, and center point coordinate. The backlight graphic line parameter includes light source penetration, small dot shape, large dot shape, strip shape, vortex leaf shape, circular ring shape, and radius diffusion shape. The rendering light source color parameter includes white light source, red light source, green light source, blue light source, cyan light source, magenta light source, and yellow light source. The motion image parameter further includes a position action connection instruction and a motion posture execution point map. The music signal is a musical score. The at least one music segment feature includes time, number of measures, musical form, instrument, chord, degree, harmony, melody, scale, and rhythm, or any combination thereof.
2. The exercise and fitness music atmosphere method as described in claim 1, wherein the music signal may include, but is not limited to, blues, jazz, Latin music, rhythm and blues, funk, rock, country music, and reggae.
3. The method for creating a music-based atmosphere for exercise and fitness as described in claim 1, wherein the at least one music feature label includes a scale label, a musical form label, a groove label, and a chord label.
4. The exercise and fitness music atmosphere method as described in claim 1, wherein the light segment parameter displays a fixed light or rhythmic light of a corresponding color within a corresponding time length according to the rhythm of a note, including black, white, red, green, blue, cyan, magenta and yellow.
5. The exercise and fitness music contextual atmosphere method as described in claim 1, wherein the exercise image parameters further include specific posture images such as weight training, fitness, muscle relaxation, fat burning, sports-specific, and yoga.
6. The exercise and fitness music contextual atmosphere method as described in claim 5, wherein the specific posture image is a picture or video.
7. The method for creating a sports and fitness music atmosphere as described in claim 1, wherein the sports and fitness music atmosphere system includes a music extraction unit for acquiring the music signal; a music identification unit electrically connected to the music extraction unit for identifying the music feature tags present in the music signal; and a conversion processing unit electrically connected to the music extraction unit and the music identification unit for generating the music segment diagram, the light segment parameters, and the motion image parameters.
8. The exercise and fitness music atmosphere method as described in claim 7, wherein the exercise and fitness music atmosphere system further includes a lighting control unit and a lighting module for displaying lights of corresponding colors according to the lighting segment parameters, and a playback screen for playing a specific posture image.