A system and method for generating and preparing for spatial distribution productive AI-powered immersive experience content.
Patent Information
- Application Number
- TR202615274
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2026-09-07
- Publication Date
- 2026-09-21
Smart Images

Figure 00000033_0000
Abstract
Description
1 TARIFF PRODUCTIVE AI-POWERED IMMERSIVE EXPERIENCE CONTENT A system that enables its production and preparation for spatial distribution. SYSTEM AND METHOD TECHNICAL FIELD The invention enables the creation of immersive, AI-powered experience content based on natural language. using directions to produce the generated content, targeting physical viewing 10 spatial adaptation according to the geometry of its surfaces and the target physical packaging and preparing for spatial distribution to be presented in the display system It is related to a system and method that provides this. PREVIOUS TECHNIQUE 15 Today, in the creation, editing, and various display of digital content... numerous two-dimensional image production tools for presentation in their environments, three-dimensional modeling software, animation system, image rendering engine and artificial intelligence based A content production platform is used. These tools range from textual guidance to 20 image creation, modification of existing images, three-dimensional objects modeling, adding motion to objects, creating environmental scenes, and processes such as exporting the generated content in different file formats It ensures that these processes are carried out. However, an important aspect of these processes is... The section consists of 25 independent software tools, each requiring different technical knowledge. This is carried out through the flows. Generative AI-based image generation tools allow a user to generate images using natural language. It can create two-dimensional visuals from the textual guidance it provides and the existing Style changes, object additions, object removals, background creation, or 30 other actions can be performed on images. It can perform operations such as image enhancement. Stable Diffusion-based user. With their interfaces, AI-based tools such as Runway, Gemini, and ChatGPT enable users It enables the creation of digital content from textual or visual inputs. However, a significant portion of these devices display two-dimensional images or short videos. focusing on production, three-dimensional modeling and realistic three-dimensional animation 35 The generation capabilities remain limited, and the generated outputs are mostly standard planar. They are being prepared to be displayed on screens. 2 Node-based user interfaces, such as ComfyUI, which is based on Stable Diffusion, offer different productivity options. artificial intelligence models and image processing steps through visual nodes This enables them to be interconnected. Such systems allow for the establishment of flexible workflows. along with providing the user with model selection, node connections, parameter settings, intermediate 5 Technically, processes such as transferring outputs and managing error conditions This requires configuration. The complexity of the workflow increases with the number of nodes. It is increasing, and separate node structures need to be established for different production scenarios, and Automated end-to-end production workflow of natural language-based creative demand. The conversion remains limited. In these systems, a three-dimensional model can be created from two-dimensional content. from the environmental context, animation and physical surface to obtaining the final output adapted to the surface. It is not possible to manage the extended process through a single verbal interaction. Three-dimensional modeling tools like Blender and Cinema 4D allow you to create three-dimensional objects. modeling, mesh arrangement, material and texture application, lighting 15 creating the resources, placing the cameras, preparing the animations and enables the visualization of scenes. These tools provide comprehensive three-dimensional visualization. While offering production capabilities, it requires advanced technical expertise and is complex. Preparing the scenes is time-consuming. The user needs three-dimensional modeling, networking. 20 It requires knowledge in various technical fields. Additionally, the user must be able to speak natural language. The creative demand expressed requires appropriate two-dimensional production, three-dimensional modeling, media production, and automatic distribution to animation tools and a common workflow among those tools It is not possible to make it work automatically within the system. Visual programming and real-time media systems like TouchDesigner utilize different data... by integrating resources and visual processing through node-based structures, the creation of real-time visual content and interactive physical installations It allows for management. However, realistically, three aspects are possible in these systems. The ability to produce 3D models and animations may be limited, and complex tasks may be required. Creating workflows requires mastery of technical node structures. Content creation through generative artificial intelligence, and the creation of a three-dimensional model of that content. conversion, preparation of a high dynamic range image-based environment and physical Different tools are also included in the system for processes such as adapting to viewing surfaces. It needs to be connected. 35 3 In known content creation processes, the user displays a two-dimensional image in an AI tool. After creating the image, it is processed using a different tool, creating a three-dimensional image. transferring the model to another system to obtain it, and making adjustments to the model. and uses separate three-dimensional modeling software for animation processes and the final To prepare the content for a physical display system, create a different image or 5 It uses a distribution tool. The file format needs to be converted during each transfer. Re-adjusting the resolution and size information ensures that the assets are correctly positioned in the scene. placement and harmonization of parameters in different software tools This fragmented structure necessitates the repetition of the same production processes, and intermediate steps. loss of outputs, incompatibility between tools, and creative production 10 This causes the duration to be extended. A significant portion of known generative AI tools require textual input from the user. receiving redirects and corresponding to a single type of content. It creates. However, whether the user's request is for an object, an environment, or two 15 a 3D image, a 3D model, or an animated scene? determining whether there is a relationship and, based on this determination, appropriate artificial intelligence models, three automatic 3D modeling tools, environment generation tools, and animation tools It is not widely possible to ensure the selection of which production tool the user should use. He must know what purpose it will be used for and determine the production sequence himself. 20 This is necessary. This situation makes it difficult for users without advanced technical knowledge to engage. This makes it difficult to produce experiential content. United States patent number US20250352907A1, which is included in the prior art. In the document, AI-powered multimodal content creation and immersive interaction 25 The text refers to a system and method for creating experiences. The document accepts various inputs from the user, such as text, images, sketches, and three-dimensional models. User input is collected and analyzed to determine content production parameters. content creation modules are used according to the specified parameters. The modules are selected. Through the selected modules, text, two-dimensional images, textures, and three-dimensional images are displayed. Digital content such as models and animations are created, and the created content is virtual. It is integrated into environments. The system also includes cloud-based shared environments, virtual and augmented reality applications, different user interaction devices, adaptive artificial intelligence It supports the development of intellectual assets and the transformation of content across various media types. (Word) The system described in the document involves receiving multimodal inputs and producing diverse content. 35 in terms of selecting modules and creating two-dimensional or three-dimensional content It offers an advanced structure. However, the document in question is largely virtual. 4 environments, game worlds, adaptive AI entities, multi-user interactions, and It focuses on combining different media types. The content created... physical display surfaces such as cylindrical or prismatic light-emitting diode geometries reconstruction according to perspective continuity on adjacent physical surfaces protection, synchronization of content sections across physical screens, and high 5 Integration of dynamic range image-based media production into the physical immersive experience workflow. The process is not explained as a whole. Furthermore, each successive production... The interim output generated during this phase is presented to the user for approval, and user approval is given. It is also not explained why the production process is prevented from proceeding to the next stage without the purchase. United States patent number US20260080636A1, which is included in the known state of the art. the document describes augmented reality experiences using multi-agent language models. The text refers to a system and method for its automatic generation. The subject of the document is a conversational format where text inputs provided by the user in natural language are used as input. It is retrieved via the user interface and 15 using a multi-agent large language model architecture. Concepts, components, and interactions related to the augmented reality experience are being analyzed. requirements are being determined, and an AI-based entity is being created to meet those requirements. Producers are selected and two-dimensional visual assets and three-dimensional objects are created. The generated assets are combined with predefined augmented reality components. It is being transformed into a viable augmented reality application. The 20 in question... The document analyzes user input based on natural language, and provides content tailored to user requests. Identifying components, selecting appropriate asset producers, and user feedback. Conversational content requires iterative updates in line with this. It contributes to production processes. However, this approach has been enhanced. It focuses on creating reality applications and the content produced is cylindrical 25 to screens, prismatic light-emitting diode structures, transparent light-emitting diode surfaces, or many an end-to-end physical deployment for adaptation to surface-based physical media structures It does not offer a process. 360 degrees with a high dynamic range image-based environment. Creating a panoramic environment within the same production flow, between physical surfaces ensuring perspective and spatial continuity and moving from one production stage to the next 30 It is not explained why the transition is linked to user approval. In known systems, the goal is to present content on a physical display medium. It also needs to be adjusted according to the geometry of the surface. For a planar screen... The generated content is directly in a cylindrical, prismatic, or multi-surface structure. 35 the display, the lengthening and cutting of the image, perspective in surface combinations This causes distortions and visual discontinuities between different parts of the scene. This involves manually separating the content sections to be displayed on different surfaces and Designing it in a way that is specific to each surface requires technical expertise and a long preparation period. It requires. In anamorphic content, the desired 5 for the physical display surface of the generated scene. For the content and surface geometry to be perceived from a perspective view, they must be present together. This needs to be evaluated. The content is not processed in a way that is consistent with the target geometry. in this case, the proportions of objects, depth perception, and visual continuity between surfaces It is degraded. Especially on light-emitting diode surfaces placed at an angle to each other, or In prismatic structures, the position and perspective of an object moving from one surface to another are interrupted. It is undergoing a process. Known general-purpose two-dimensional or three-dimensional content creation tools, The generated content is automatically adapted to the physical surface geometries in question. It cannot adapt. In immersive experience systems that utilize multiple physical display surfaces, 15 Geometric adaptation alone is not sufficient; the content sections must also be adapted in terms of time. It needs to be synchronized. The squares on different surfaces shouldn't advance simultaneously. interruptions in the transitions of moving objects to the surface and a shared scene This causes the images to be perceived in a fragmented way. The images appear in different media. Preparation and transfer to each viewing surface separately, timing and delivery 20 This leads to the emergence of differences in form. Therefore, perspective continuity, spatial continuity and multi-screen synchronization with the same adaptation and output This needs to be addressed during the preparation process. In known systems, high dynamic range image-based environment, background, ambient light, 25 Three-dimensional objects and animations are usually created independently of each other. For a three-dimensional object to be displayed realistically within the scene, the environment must be... It must be compatible with the lighting and background characteristics. The object and the environment must be different. the creation of lights and colors in vehicles and with independent parameters This leads to inconsistencies between the distributions, reflections, and overall visual style. This is happening. A high dynamic range image-based environment with generative artificial intelligence. The object is not directly linked to the three-dimensional model and animation production process, This also requires the user to perform environmental scene preparation. In known production methods, user control is mostly limited to the creation of the final output. It is then applied. The automatic correction of an unsuitable intermediate output created in a production stage. If this is transferred to the next stages, the output will have three dimensions. 6 modeling, mesh optimization, animation, media generation, image rendering, and Computationally intensive operations such as output packaging are performed. The user's final if the result is deemed unsatisfactory, the entire production process or multiple stages thereof It needs to be restarted. This increases the transaction cost and production time. increasing, causing computing resources to be used for inappropriate content 5 This reduces user control. Due to the fragmented nature of existing vehicles, the process of transforming the idea into a physical installation... The use of generative artificial intelligence alone is not sufficient. The user's natural language-based approach is also necessary. interpreting the request, determining suitable production tools, two-dimensional content and three-dimensional 10 creation of the 3D model, preparation of the environmental setting and animation, content adaptation to the physical display surface, content sections on different surfaces synchronization and the final output being compatible with the target imaging system. Packaging consists of complementary processes. These processes are different... Implementing it in systems ensures the integrity of the process progressing from creation to installation. 15 It disrupts and forces the user to learn, manage, and technically utilize numerous different platforms. It requires connecting them together. In conclusion, all the problems mentioned above necessitate an innovation in the relevant technical field. has made it mandatory. 20 A BRIEF DESCRIPTION OF THE INVENTION The present invention aims to eliminate the aforementioned disadvantages and to contribute to the relevant technical field. To provide new advantages, a productive AI-powered immersive experience 25 the creation of content using natural language-based creative guidance, spatially arranged according to the geometry of the target physical viewing surface. adaptation and spatially adapted content on the target physical display system a system that enables the product to be packaged and prepared for spatial distribution for presentation and It is related to the method. 30 One purpose of the invention is to allow a user to create the scene, object, environment, or style they wish. and / or the ability to describe the movement through creative, natural language-based instructions. The goal is to establish a system and method that provides this. 35 7 Another aim of the invention is to interpret natural language-based creative instructions, Determining user intent and producing content through a production workflow that aligns with user intent. The goal is to develop a system and method that enables the automatic selection of vehicles. Another purpose of the invention is three-dimensional model production, based on high dynamic range imagery. ambient and / or 360-degree panoramic environment production, spatial image creation, and ensuring that preparation for physical distribution is carried out within a single workflow. The goal is to establish a system and method that provides this. Another purpose of the invention is the generation of two-dimensional content and / or 10 based on user intent. a system and method that enables the inclusion of animation production into the relevant production workflow to reveal. Another aim of the invention is to enable different generative artificial intelligence models to perform three-dimensional modeling. tools, media production tools, animation tools, image creation 15 the operation of systems and output preparation tools in an interconnected manner a system that reduces the need to manually switch between different applications by providing and to propose a method. Another objective of the invention is to create content that is planar, cylindrical, prismatic and / or more than 20 a system that enables adaptation to physical imaging structures containing a large surface area and The goal is to establish a method. Another purpose of the invention is to display content on multiple physical display surfaces. Perspective continuity, spatial continuity, and temporal synchronization between sections 25 a system and method that ensures a holistic and immersive experience is created. to reveal. Another aim of the invention is to create a series of intermediate outputs that can be presented to the user. the presentation of the intermediate output to the user at each stage of production and 30 A system that ensures the next production stage is not reached without user approval, and The goal is to establish a method. Another purpose of the invention is to address an intermediate output that is deemed unsuitable by the user. by preventing subsequent production processes, production time and calculation 35 The goal is to establish a system and method that reduces resource consumption. 8 Another objective of the invention is to deliver the generated and spatially adapted content to the target physical location. Codec, resolution and / or metadata information determined according to the display system. packaged into a delivery package containing the necessary materials, and prepared for spatial distribution. The goal is to establish a system and a method. All the purposes mentioned above and those that will emerge from the detailed explanation below. The current invention aims to create a productive, AI-powered immersive experience. the creation of content and the display of the created content on physical display surfaces It is a system that enables the spatial distribution of materials for presentation. The subject of the invention... The system receives creative guidance based on natural language from a user and then creates that creative piece. interpreting the redirection, determining user intent, and structured workflow. an input module configured to generate instructions; based on the specified user intent. a production flow and the content production tools to be used in that production flow By automatically identifying and managing the operation of these content production tools. a workflow orchestration module structured to; based on the defined user intent, at least 15 minimal two-dimensional content, three-dimensional model, high dynamic range image-based environment, Configured to create 360-degree panoramic environments and / or animated content. At least one content generation module; the generated content is displayed on the target physical display surface. adapting according to its geometry, the target physical imaging surface has multiple surfaces If included, the content sections to be presented on these surfaces will include perspective 20 to create continuity and spatial continuity and to synchronize the content sections in question. a spatial adaptation and image generation module structured to do so; spatially adapted content by the target physical display system a structured system designed to package in a usable form and prepare for spatial distribution It includes an output preparation and distribution module. The system described in this invention enables natural language processing. 25 from receiving creative guidance based on the system to output suitable for the physical display system. The entire production process, from preparation to final manufacturing, is carried out in an integrated manner. Automatically identifying content creation tools that match user intent; different tools It reduces the need for manual switching between them. A feature of a possible configuration of the invention is that the system also consists of successive and intermediate output created at each of the production stages that can be presented to the user to present the output to the user, obtain user approval for the interim output, and the user a structure designed to prevent proceeding to the next production stage without obtaining approval It includes a user approval module. In this structure, 35 items are deemed unsuitable by the user. processing of an intermediate output in subsequent production stages and adding to that intermediate output The use of computational resources is prevented. 9 The characteristic of a possible construction of the invention is that the system, the system itself, or a natural language-based three-dimensional model from an image provided by the user from the definition and / or an existing three-dimensional model provided by the user a three-dimensional 5 structured to create at least one three-dimensional model using resources It includes a model production module. The three-dimensional model production module allows for the user's intent and work Three-dimensional model generation of the production flow determined by the flow orchestration module. It is activated when necessary. A characteristic of a possible configuration of the invention is that the system has at least one high dynamic range 10 to create image-based environments and / or 360-degree panoramic environments It includes a structured environment generation module. The environment generation module is based on user intent. and the environmental context of the production flow determined by the workflow orchestration module. It is operated if its production is required. A feature of a possible configuration of the invention is that the input module is to be created. A high-level scene description explaining the scene is required as an input, and at least one visual. the reference, three-dimensional model, style reference and / or additional user instructions are optional. It is structured to receive input. The basis of the content to be created in this structure is... Its structure is defined by high-level scene definition and, when necessary, visual, model and style 20 It is supported by references. Thus, the system includes both completely new content. It can be used both in the creation of new assets and in the development of existing ones. A feature of a possible configuration of the invention is that the input module is creatively based on natural language. Information regarding the object, environment, style, motion, background, and / or output type in the redirection 25 a determining demand, differentiating and the creative direction in question to object production, environment production, two-dimensional content production, three-dimensional model production, animation an intention specifying whether it relates to the production of and / or a combination thereof The determining factor is its inclusion. In this structure, free-form user guidance is used in production. It is broken down according to the technical requirements that the tools can operate under. User intent 30 This involves selecting and producing content using only the content creation tools relevant to user demand. It allows the flow to be adjusted according to user demand. A feature of a possible configuration of the invention is that the workflow orchestration module is user-friendly. If the orientation relates to an object, then the creation of an object image is 35 or obtaining, or producing a three-dimensional model from the image of the object in question, This includes optimizing and / or animating the created three-dimensional model. a production flow; and if user guidance relates to an environment, then a background, high dynamic range image-based environment, 360-degree panoramic Defining a production flow that includes the creation of ambient and / or environmental light information. It is structured in such a way that different techniques are used for object and environment production. requirements are separated and production processes related only to user demand 5 This is done in such a way that the order of operations is determined according to the user's intent. Computational resources are directed to the relevant production processes. A feature of a possible configuration of the invention is that the system can also generate images from text. Image-to-image generation, background removal and / or style adaptation processes require at least 10 to perform one and create the resulting two-dimensional content in PNG and / or JPG format. It includes a two-dimensional content generation module structured to provide this. In the structure, the two-dimensional content production module generates two-dimensional content according to user intent. It is incorporated into the production flows where necessary. The generated two-dimensional content is independent. can be used as a visual output or for three-dimensional model, environment and / or scene production 15 It can generate input for this. A feature of the possible configuration of the invention is the system of the three-dimensional model production module. from an image created by or provided by the user, natural language based from a three-dimensional model definition and / or an existing three-dimensional model provided by the user 20 Creating AI-powered three-dimensional models using a three-dimensional model, mesh generation. perform at least one of the optimization and model preview processes, and to provide the three-dimensional model it created in GLB, FBX and / or OBJ format It is a structuring process. In this structuring, three-dimensional model generation involves different input types. can be initiated and existing models provided by the user can be included in the production flow. 25 This can be done. Mesh optimization improves the model's subsequent image generation and... This increases its usability in animation processes, and model preview allows for a better understanding of the model's subsequent performance. This allows for evaluation before being transferred to the next stage. A feature of a possible configuration of the invention is the high dynamic range of the environment production module. Interval image-based environment generation, background generation, ambient light estimation and / or to perform at least one of the spatial background optimization processes and a high to create dynamic range image files and / or environment maps It is the structuring. In this structuring, the environment in which the three-dimensional model will be presented. The scene and the lighting conditions of the scene in question are within the same production flow. 35 It is created. A high dynamic range image file and environment map, three-dimensional. 11 It contributes to achieving harmony in light, color, and reflection between the model and the surrounding scene. It is located. A characteristic of a possible configuration of the invention is that the system is also created or user-generated. Single object animation on at least one three-dimensional model provided by, more than 5 Swarm animation creates the movements of multiple three-dimensional objects within the same scene. to perform at least one of the following processes: motion synthesis and / or scene transitions It includes a structured animation module. In this structure, the animation module... Dynamic content is incorporated into production workflows where it is required, based on user intent. Thus, static three-dimensional models can be transformed into dynamic, immersive experience content. It can be transformed and the movement of multiple objects can be done within a common scene. can be created. A key feature of a possible configuration of the invention is spatial adaptation and image generation. The module's content depends on the geometry of the target physical display surface to which it will be presented. to perform geometry-sensitive image generation; target physical If the viewing surface is cylindrical, cylindrical mapping is used; if it is prismatic, cylindrical mapping is used. In this case, if prism adaptation and anamorphic presentation are required, then anamorphic to perform correction operation and multiple surfaces of the target physical imaging surface If it includes 20, it is possible to perform multi-surface synchronization. It is a structuring. In this structuring, single-surface and multi-surface physical imaging structures are used. This is addressed within the same general spatial adaptation approach. Multi-faceted Synchronization performed in structures, content sections on different surfaces It ensures that the content is presented in a way that is consistent in terms of timing and visual continuity. A feature of a possible configuration of the invention is the output preparation and distribution module. spatially adapted content displayed on a two-dimensional or three-dimensional light-emitting diode screen. sculpture, planar light-emitting diode display, cylindrical display, transparent light-emitting diode display, holographic three-dimensional display, projection mapping system and / or multi-surface spatial transforming the content into a format suitable for presentation within the media structure and targeting 30 Codec, resolution and / or metadata determined according to the technical specifications of the imaging system. It is structured to prepare the data information as a delivery package. The spatially adapted content in the structure targets the technical aspects of the physical display system. It is being made compatible with the requirements. The delivery package is tailored to the target system. preparation, manual shaping between the creative production phase and the physical installation 35 and reduces conversion processes. 12 A feature of a possible design of the invention is that the user approval module is a production process. request to modify and / or recreate the interim output generated during this phase receiving the request from the user and orchestrating the workflow between the input module and the workflow orchestration module. It is the configuration to transfer the data to the relevant production module. In this configuration... The user is liable for the use of an intermediate output that they deem unsuitable in a subsequent production phase. They can first request that it be changed or recreated. The request concerns the relevant production. Transferring it to the module allows only the relevant module to be used, instead of performing the entire production process from scratch. It ensures the repetition of the process. A feature of a possible configuration of the invention is spatial adaptation and image generation. 10 The module's spatially adapted content image generation process is realized. It is structured to be carried out in a timely manner. The target in this structure is physical. The image rendering process of the content adapted to the viewing surface is done with low latency. This can be implemented and the system requires physical creation of real-time content. It can be used in experimental applications. 15 The present invention also enables the creation of generative AI-powered immersive experience content. the creation and presentation of the created content on physical display surfaces It is a method that enables the preparation for spatial distribution. The method that is the subject of the invention is a receiving creative guidance based on natural language from the user, that creative 20 Interpreting the routing to determine user intent and creating a structured workflow. the creation of instructions, a production flow and promises based on the defined user intent the topic is the automatic identification of content production tools to be used in the production workflow, Managing the operation of the specified content production tools, based on the specified user intent. According to this, at least one two-dimensional content, three-dimensional model, high dynamic range image-based 25 the creation of a 360-degree panoramic environment and / or animated content, the resulting environment Adapting the content according to the geometry of the target physical viewing surface, target physical If the viewing surface contains more than one surface, on those surfaces Perspective continuity and spatial continuity among the content sections to be presented. creation and synchronization of the content sections in question, spatially 30 the adapted content is in a format usable by the target physical display system. It includes the steps of packaging and preparing for spatial distribution. The subject of the invention is... through this method, from receiving natural language-based creative guidance to physical the process extending to the preparation of output usable in the imaging system The steps are carried out within an integrated production flow. 35 according to user intent. Automatic selection of production tools, automatic production process It ensures the regulation of the system. 13 A characteristic feature of a possible construction of the invention is that the method also involves successive and intermediate output created at each of the production stages that can be presented to the user presenting the output to the user, obtaining user approval for the said interim output, and Step 5: Preventing the next production stage from starting without obtaining user approval. This structure includes an intermediate output that is deemed unsuitable by the user, which can then be displayed later. processing during production stages and additional computational resources for the intermediate output in question. Its use is prohibited. A characteristic feature of a possible construction of the invention is a 10 that describes the scene to be created. A high-level scene description is required as an input, and at least one visual reference, in three dimensions. The model, style reference, and / or additional user instructions can be taken as optional input. It is the implementation of the steps. In this structure, the basic production aspect of the method is at the high level. The scene is defined by the visual content to be created through optional inputs. Its structure, style, or three-dimensional assets are supported. 15 A characteristic feature of a possible structure of the invention is the creative guidance based on natural language. Identifying information regarding object, environment, style, motion, background and / or output type, and This creative direction involves object production, medium production, and two-dimensional content. production, three-dimensional model production, animation production and / or a 20 of these The steps involved are to determine whether or not it relates to the combination. creative guidance production freely created by the user in the structure It is broken down according to its requirements and the production process is determined according to the user intent. It is being organized. A characteristic feature of a possible design of the invention is that user guidance relates to an object. In this case, the creation or retrieval of an object's image, of the object in question generating a three-dimensional model from an image, optimizing the generated three-dimensional model Defining a production flow that includes the creation and / or animation of the product; If user guidance relates to an environment, then a background with a high 30 is required. dynamic range image-based environment, 360-degree panoramic environment and / or environmental steps to define a production flow that includes the creation of light information This is the implementation. In this structure, the processes related to object and environment production are carried out by the user. They are separated according to their intention and unrelated production processes are carried out. is being blocked. 35 14 A characteristic feature of a possible construction of the invention is the production of images from text, and from images... at least one of the following processes: image generation, background removal and / or style adaptation the implementation and creation of two-dimensional content in PNG and / or JPG format. The steps involved in providing this are implemented. In this structure, two-dimensional content is required. They are created in the production flows heard and either as an independent output or in subsequent production 5 It is used as input for the stages. The characteristic of a possible construction of the invention is that it is created or by the user. from a provided image, a natural language-based three-dimensional model definition and / or Artificial intelligence 10 by utilizing an existing three-dimensional model provided by the user. Supported three-dimensional model creation, mesh optimization, and model preview. At least one of the operations must be performed and the resulting three-dimensional model must be GLB, FBX This involves performing the steps to provide the file in OBJ format and / or other formats. In this structure, different... A three-dimensional model is obtained from the input types, and the created model is then used in subsequent production. It can be technically and visually evaluated before the stages. 15 A feature of a possible configuration of the invention is a high dynamic range image-based environment. production, background production, ambient light estimation and / or spatial background enhancement at least one of these processes must be performed and a high dynamic range image file must be obtained. and / or the steps of creating the environmental map. In this structure, 20 Visual harmony is achieved between the three-dimensional model and the surrounding scene and lighting. The characteristic of a possible construction of the invention is that it is created or by the user. Single object animation on at least one provided three-dimensional model, multiple three-object animations Swarm animation, which creates the movements of a 25-dimensional object within the same scene, motion 25 the step of performing at least one of the synthesis and / or scene transition processes This is the implementation of animation production in this structure, solely based on user intent. Dynamic content is being incorporated into production workflows as required, and static models are being replaced with dynamic content. They are being transformed into immersive experiential content. A key feature of a possible configuration of the invention is the target physical display where the content will be presented. geometry-sensitive image generation process depending on the geometry of the surface This is performed when the target physical imaging surface is cylindrical. cylindrical matching, prism adaptation in the case of prismatic representation, and an anamorphic representation. If necessary, anamorphic correction is performed and the target physical 35 Multiple surfaces when the viewing surface contains more than one surface It is the process of carrying out the steps to achieve synchronization. In this structure... Unisurface and multisurface imaging structures according to their respective geometric properties It is being adapted and the content sections in multi-faceted structures are simultaneously and continuously integrated. This is ensured. A feature of a possible configuration of the invention is that the spatially adapted content is two-dimensional. or a three-dimensional light-emitting diode display sculpture, planar light-emitting diode display, cylindrical screen, transparent light-emitting diode screen, holographic three-dimensional screen, projection a format suitable for presentation in a matching system and / or multi-faceted spatial media structure conversion and adaptation of the content to the technical specifications of the target viewing system. a delivery package containing codec, resolution and / or metadata information determined according to the codec.10 The steps involved in preparing the content are carried out. In this structure, the content targets the physical environment. It is prepared as an output that meets the technical requirements of the imaging system and It can be transferred to a physical installation. A characteristic of a possible designation of the invention is that it adds 15 intermediate outputs to a production stage. the request for modification and / or recreation of the matter must be received from the user and the said The request is transferred to the relevant production stage, and the relevant production stage is then adapted to the user's request. It involves repeating the steps. In this structure, only the modification is necessary. The required production steps are repeated, along with other intermediate outputs approved by the user. data is being protected and computing resources are being used more efficiently. 20 A characteristic of a possible configuration of the invention is related to spatially adapted content. This means that the image generation process is performed in real time. In this structure... Low-latency generation of content adapted to the target physical imaging surface. is provided. 25 BRIEF DESCRIPTION OF THE FIGURES Figure 1 shows a schematic view of the system that is the subject of the invention. DETAILED DESCRIPTION OF THE INVENTION This detailed explanation describes the invention as a generative AI-powered immersive experience. the creation of content, the creation of content and the target physical viewing surface 35 spatial adaptation according to its geometry and spatially adapted content packaged for spatial distribution to be presented on the target physical imaging system. 16 a system (100) and method that enables the preparation of the subject only better It is explained with examples that are conducive to understanding and do not create any limiting effects. The present invention enables the generation of generative AI-powered immersive experience content using natural language. It enables end-to-end management through user interaction based on a user-centric model. The current 5 The invention is particularly useful for three-dimensional model production and high dynamic range image-based environments. production, 360-degree panoramic environment creation, spatial image creation, physical Adapting to surface geometry and preparing output for deployment to a physical experience environment. It is used in the integrated execution of processes. Within the scope of the invention 10 immersive experience content, including two-dimensional and / or three-dimensional visual elements and created to be presented on one or more physical display surfaces, or It refers to adapted content. The system subject to the invention (100) is to receive creative guidance based on natural language from a user, interpreting the creative guidance in question, determining user intent, and 15 An input module configured to generate structured workflow instructions (200); A production flow based on the defined user intent, and within that production flow... automatically determine the content production tools to be used and the content production in question a workflow orchestration module configured to manage the operation of tools (300); at least one two-dimensional content, three-dimensional model, 20 according to the determined user intent. high dynamic range image-based environment, 360-degree panoramic environment and / or At least one content production module configured for creating animated content; adapting the generated content according to the geometry of the target physical display surface, This is relevant when the target physical imaging surface contains multiple surfaces. The content sections to be presented on the surfaces include perspective continuity and spatial 25 to create continuity and synchronize the content sections in question a structured spatial adaptation and image generation module (600); spatial the adapted content is made usable by the target physical display system. an output preparation and packaging process designed to prepare for spatial distribution. The system in question (100) includes the distribution module (700), input module (200), work 30 Stream orchestration module (300), at least one content production run according to user intent. module, spatial adaptation and image generation module (600), output preparation and The distribution module (700) works in data communication with each other. Thus, different artificial intelligence models, three-dimensional modeling tools, environment generation tools, image creation The operations carried out through systems and distribution tools are a single system (100) 35 It is carried out as an interconnected workflow. 17 In one application of the invention, the system (100) has a series of successive and presentable components to the user. At each of the production stages that generate an intermediate output, the generated intermediate output is presented to the user. to present, obtain user approval for the interim output in question, and without obtaining user approval A user consent system configured to prevent proceeding to the next production stage. It includes module (800). 5 In an application of the invention, the system (100) is created by the system (100) or by the user from an image provided by, a natural language-based three-dimensional model description and / or by utilizing an existing three-dimensional model provided by the user, at least A three-dimensional model generation module 10 configured to create a three-dimensional model (400) includes. Three-dimensional model production module (400), user intent and workflow Three-dimensional model production of the production flow determined by the orchestration module (300). If required, the workflow is run by the orchestration module (300). In one application of the invention, the system (100) uses at least one high dynamic range image-based system. an environment configured to create an environment and / or a 360-degree panoramic environment 15 It includes the production module (500). The environment production module (500) includes user intent and workflow. Environmental environment production of the production flow determined by the orchestration module (300). If required, the workflow is run by the orchestration module (300). In one application of the invention, the system (100) produces images from text, images from images 20 by performing at least one of the following processes: production, background removal and / or style adaptation. a two-dimensional content generator structured to create at least one two-dimensional piece of content. It includes module (900). Two-dimensional content generation module (900), user intent and work The two-dimensional content of the production flow determined by the flow orchestration module (300). If production is required, the workflow orchestration module (300) will be used 25 It is being operated. In an application of the invention, the system (100) creates or provides the user with the most to create at least one animated piece of content by adding movement to at least one three-dimensional model It includes an animation module (1000) structured as follows: Animation module (1000) 30 user intent and production determined by the workflow orchestration module (300) If the workflow requires animated content production, then the workflow orchestration module It is operated by (300). Input module (200) naturally 35 the user’s creative request for immersive experience content. It enables the transfer to the system (100) in a language-based manner. In one application of the invention Input module (200) A spoken input module (200) to receive voice instructions from the user. 18 It is adapted as follows. The input module (200) is required to be created as a mandatory input. It receives a high-level scene description that explains the scene. The input module (200) also Optionally, at least one visual reference, three-dimensional model, style reference and / or quote. The user may receive additional instructions regarding the creation of the content. In one application of the invention, the input module (200) executes at least one large language model, It includes a request parser and an intent determiner. The request parser is generated by the user. object, environment, style, movement, background in the provided natural language-based creative guidance and / or specifies information regarding the type of output. The intent determiner is the creative entity in question. the direction of object production, environment production, two-dimensional content production, three-dimensional 10 relating to model production, animation production and / or a combination thereof It indicates that it is not. Input module (200), structured work in accordance with the specified information and user intent. The flow creates instructions. 15 provided by the user in a natural language-based manner. free-form creative demand, thus the object that can be processed by the means of production, The data is converted into information on environment, style, motion, background, output type, and production process. The workflow orchestration module (300) is created by the input module (200). It receives structured workflow instructions. Workflow orchestration module (300), word 20 the subject is the artificial intelligence model that needs to be operated according to the instructions, the content creation tool, three-dimensional modeling system, environment generation tool, image generation system and / or It specifies the output preparation tool. Workflow orchestration module (300) determines the working order of the specified content production tools. organizing, initiating the operation of content production tools and 25 in a production phase It ensures that the generated output is transferred as input to the next production stage. Flow orchestration module (300), depending on user intent and available inputs, requires It can exclude non-production processes from the production flow, and repeat a production process. to be able to run or transfer a production output to multiple subsequent production processes It can transfer. 30 In one application of the invention, the workflow orchestration module (300) allows the user to use an object or Depending on the intention to create the environment, the user defines different production scenarios. If the redirection relates to an object, the workflow orchestration module (300), the creation or retrieval of an object image from the user, the object in question being 35 generating a three-dimensional model from an image, optimizing the created three-dimensional model a production workflow that includes the creation and, if necessary, animation 19 It can determine this. If user guidance relates to an environment, the workflow... Orchestration Module (300), a background, high dynamic range image-based environment, This involves creating a 360-degree panoramic environment and / or ambient light information. The production flow can be defined. User guidance applies to both the object and the environment. If related, the production processes relating to object and medium production constitute a common scene 5 They can be integrated into the production flow. Three-dimensional model production module (400), created by the system (100) or by the user from an image provided by, a natural language-based three-dimensional model description and / or utilizes an existing three-dimensional model provided by the user. 10 Three-dimensional model production module (400), AI-assisted three-dimensional model creation, at least one of the following processes: mesh optimization and model preview It performs this function. During the creation of an AI-assisted three-dimensional model... the two-dimensional view and / or textual description of the object, the three-dimensional view of the object in question. It is transformed into a model representing its geometry. Mesh optimization 15 In the immersive experience content of the three-dimensional model created during the process, animation a mesh structure suitable for use in processing and / or image generation processes is obtained. The prepared three-dimensional model is shown to the user. User approval. Approval, modification or re-creation of the said model via module (800) The request can be received. Thus, a three-dimensional 20 that is deemed unsuitable by the user... The model is prevented from being transferred to subsequent production stages. In one application of the invention, the three-dimensional model production module (400) uses Trellis, Tripo AI and / or It uses Blender. Three dimensional models are created by the three dimensional model production module (400). The 25-dimensional model can be created in GLB, FBX, and / or OBJ format. The model can be previewed through a model viewer. Environment production module (500), in which the created three-dimensional models will be presented It creates the environmental scene. The environment production module (500) has a high dynamic range. Image-based ambient light (HDRI) generation, background generation, ambient light estimation and / or 30 It performs at least one of the spatial background enhancement processes. In one application of the invention, the media production module (500) produces a high dynamic range image. It creates a file and / or an environment map. High dynamic range image-based. The environment allows for the illumination of the three-dimensional scene from different angles and the three-dimensional model's 35 the effects of light, shadow and reflection on their surfaces in harmony with the surrounding scene It enables its creation. The environment generation module (500) creates a 360-degree panoramic environment, different scenes It enables viewing from different directions. By the environment production module (500) The generated output can be created in HDR format. The generated environment is a three-dimensional model. at least one three 5 created by the production module (400) or provided by the user It can be combined with a three-dimensional model. Spatial adaptation and image creation module (600), the generated content is It adapts the content according to the geometry of the target physical display surface on which it will be presented. The target physical imaging surface is a planar surface, a cylindrical surface, a prismatic surface, etc. It can be a spatial imaging structure containing one surface and / or multiple surfaces. Spatial adaptation and image generation module (600), target physical imaging It obtains geometric information about its surface. Spatial adaptation and image generation. module (600), image coordinates of the content and 15 of the target physical imaging surface It establishes a mapping between surface coordinates. This mapping represents the target physical surface. the shape, dimensions, resolution, aspect ratio, and number of surfaces of the viewing surface, the relative positions of the surfaces, the angles between the surfaces and / or a specified It is created using a viewing point. Spatial adaptation and image creation. module (600), according to the created mapping, the content of the target physical imaging surface is related to the 20 dividing the content to be presented in the regions into sections, and geometrically shaping each content section It is carrying out its transformation. Spatial adaptation and image generation module (600), target physical imaging Geometric image generation process based on the geometric information of the surface 25 It performs this. Within the scope of geometry-sensitive image generation, cylindrical at least one of the following operations: matching, prism fitting and / or anamorphic correction This can be accomplished. In cylindrical mapping, the content is displayed in a cylindrical image. It is distributed across the surface in accordance with its presentation on the surface. Prism In the adaptation, the content will be presented on 30 different surfaces of the prismatic structure. The content is divided into sections, and these content sections correspond to the geometry of the relevant surfaces. It is adjusted accordingly. During anamorphic correction, the content is adjusted to the target physical image. Creating the desired perspective view from a defined viewing direction on the surface It is adapted in a way that will allow the image to stretch on the target surface. The risk of being squeezed, cut, or having its perspective distorted is reduced. 35 21 Spatial imaging is required when the target physical imaging surface contains multiple surfaces. Adaptation and image creation module (600), content to be presented on different surfaces. It creates perspective continuity and spatial continuity between its sections. Content sections, transitions between adjacent surfaces of an object or scene It is arranged in a way that preserves visual continuity. 5 Spatial adaptation and image generation module (600), multiple physical The content sections to be presented on the display surface with a common timing information. It synchronizes them temporally by associating them. This timing information is relevant to the... The frame number that enables the simultaneous presentation of frames belonging to content sections is 10. The time code may include playback start information and / or synchronization information. In this way, the parts of a moving object shown on different surfaces are displayed simultaneously. progress and prevent the fragmented perception of the shared scene is provided. Output preparation and distribution module (700), spatial adaptation and image generation Content adapted by module (600) according to the target physical imaging surface packaging and in an output format that can be used by the target imaging system. is preparing. In one application of the invention, the output preparation and distribution module (700) produces content in two dimensions or three-dimensional light-emitting diode display sculpture, planar light-emitting diode display, cylindrical screen, transparent light-emitting diode screen, holographic three-dimensional screen, projection mapping It is preparing the system and / or multi-faceted spatial media structure for use in various applications. Output preparation and distribution module (700), according to the technical specifications of the target imaging system. According to the codec, resolution and / or metadata information is determined. Metadata information is relevant to the codec. the physical surface on which the content section will be presented, the surface mapping, the playback order, timing information and / or synchronization information between content sections It may include. 30 Output preparation and distribution module (700), spatially adapted content in a delivery package containing codec, resolution and / or metadata information. It is preparing. In one application of the invention, the outputs are converted into a delivery format and FFmpeg is used for packaging. 35 22 User approval module (800), a series of intermediate outputs that can be presented to the user. It creates a user approval point at each of the production stages that make up the process. User approval module (800) is the intermediate output generated during the production phase in question. presenting the intermediate output to the user and asking the user to approve, modify or It receives an input regarding its reconstruction. User approval module (800), 5 in Figure 1. Although presented as a single functional block, it can also provide an intermediate output to the user. It is run after each of the production stages that make up the system. Accordingly, the user Approval module (800), two-dimensional content, three-dimensional model, environment, animated content and / or After creating spatially adapted content, the relevant intermediate output is given to the user. It can provide. The interim output cannot be displayed until the user approves it. The next production stage that uses it as input is not initiated. If user approval is obtained, the user approval module (800), workflow orchestration This allows the module (300) to start the next production phase. User approval This prevents the production process from proceeding to the next stage without receiving the product. Thus, the user 15 processing of an intermediate output deemed unsuitable in subsequent production stages and The use of additional computational resources for the intermediate output in question is prevented. If the user requests a change or re-creation, the agreement will be made. The subject is related to the 20 through the request input module (200) and workflow orchestration module (300). It is transferred to the production module. The relevant production stage is determined according to user request. This process is repeated, and the newly generated intermediate output is presented to the user again. In one application of the invention, the system (100) also consists of two production modules created by the production modules. 25-dimensional content, three-dimensional models, media files, animated content and / or 25 storing video outputs by associating them with the relevant production stage and user approval status. It includes a digital asset storage area. Workflow orchestration module (300), user-approved intermediate output digital asset It transfers the data from the storage area to the relevant next production module. By the user 30 If it is an interim output that needs to be modified or recreated, it is considered an approved output. It is not transferred to the next production stage. PNG in digital asset storage and / or two-dimensional content in JPG format, three-dimensional content in GLB, FBX and / or OBJ format three-dimensional models, HDR format media files and / or video outputs It can be stored. 35 23 Two-dimensional content production module (900), user intent and workflow orchestration module (300) requires the production flow defined by two-dimensional content production It is operated in this situation. Two-dimensional content production during image generation from text. module (900), textual scene or derived from natural language-based creative guidance. It creates an image using object definition. Image to image generation 5 during the previous stage of the system (100) provided by the user or the system An image that has been created is used to determine the visual structure of the new image. Style adaptation process using style reference or natural language provided by the user. Style definition based on background is applied to the visual qualities of the image being created. Through the removal process, an object within the image can be used in three-dimensional model production or 10 It can be separated from the background for use in stage design. In one application of the invention, the two-dimensional content generation module (900), Replicate application programming interface, generative artificial intelligence based on Stability AI, Flux and / or SDXL It uses the model. Content generated by the two-dimensional content production module (900) 15 It can be provided in PNG and / or JPG format. Animation module (1000), user intent and workflow orchestration module (300) if the production flow defined by [company name] requires animation production It is being run. Animation module (1000), single object animation, multiple objects 20 including at least one of the following processes: swarm animation, motion synthesis and / or scene transitions It performs the movement of a three-dimensional model in single-object animation. This is created. In swarm animation, the movements of multiple three-dimensional objects are created simultaneously. It is created collaboratively within the scene. Through movement synthesis, a three-dimensional object is formed. A sequence of movements is created, and through scene transitions, 25 different elements are presented. Transitions are made between scenes or visual situations. The invention is a animation module (1000) in the application, Blender, Python-based animation tools, It uses Hunyuan and / or WAN. Spatial adaptation and image generation module (600), 30 in an application of the invention Real-time image generation process for spatially adapted content. It performs the real-time image generation process, targeting physical imaging. Content frames or images adapted to the surface with low latency It enables its creation. 35 In alternative applications of the invention, the system (100) is in a cloud-based environment. It can be operated. The system (100) can be operated in virtual reality and / or augmented reality environments. 24 able to create suitable content, content for interactive physical installations. to prepare and / or multiple users collaborate on the same production workflow It enables him to do it. In one application of the invention, the system's (100) user interface is Next.js, React and / or 5 It is created using TypeScript. The system (100) is based on generative artificial intelligence models. The system (100) can be accessed via the Replicate application programming interface. Backend operations are performed using Node.js and / or routing handlers. It can be accomplished. The technical functions of the invention are based on a specific artificial intelligence model and application programming. interface, 3D modeling software, image rendering engine, or file It is not dependent on the form. Thus, the system (100) has different generative artificial intelligences. models, three-dimensional modeling systems, animation tools, image creation It can be implemented with motors and physical distribution infrastructures. 15 The present invention also enables the production of generative AI-powered immersive experience content. a system that enables end-to-end management through natural language-based user interaction It relates to the method. The invention's method involves a creative, natural language-based approach that requires the user to generate input. It begins with receiving guidance. The creative guidance in question is input module 20. (200) is interpreted through, user intent is determined and structured workflow Instructions are being created. A production workflow based on user intent, and the content to be used in that production workflow. The production tools are determined automatically. 25 of the determined content production tools... The operation is managed through the workflow orchestration module (300). Within the scope of the method, at least one two-dimensional content, three based on the determined user intent. 3D model, high dynamic range image-based environment, 360-degree panoramic environment and / or animated content is created. User intent is used to produce two-dimensional content. if required, two-dimensional content production, three-dimensional model production. in this case, three-dimensional model production requires the production of the environmental setting. High dynamic range image-based environment and / or 360-degree panoramic environment generation. and if it requires the production of animated content, it is created or user-generated. Animation of at least one three-dimensional model provided by 35 is being carried out. The generated content is based on the geometry of the target physical display surface. It is being adapted. The target physical imaging surface contains multiple surfaces. In this case, the perspective will be among the content sections to be presented on the surfaces in question. Continuity and spatial continuity are established, and content sections are arranged temporally. It is being synchronized. 5 Spatially adapted content is displayed by the target physical display system. It is packaged in a usable format and prepared for spatial distribution. The content is determined by a codec that is based on the technical specifications of the target physical display system. It is prepared as a delivery package containing resolution and / or metadata information. 10 Each of the production stages that follow one another and create an intermediate output that can be presented to the user. An interim output generated in one of the ways is presented to the user. User approval is obtained if necessary. The next production stage is initiated. Next production without user approval. Progression to the next stage is prevented. 15 If the user requests a change or re-creation, the agreement will be made. The request is then transferred to the relevant production stage, and the relevant production stage responds to the user's request. This is repeated accordingly. The newly generated interim output is presented to the user again, and the user Approval is being obtained. 20 The invented method involves the acquisition of creative guidance based on natural language, from physical to physical. progressing to the preparation of output that can be used on an immersive experience platform It carries out production processes within the same workflow. Thus, different productive processes are performed within the same workflow. artificial intelligence models, 3D printing tools, media production tools, animation 25 manual switching between systems, image generation software and distribution tools The need to do it is reduced. The scope of protection of the invention is specified in the claims attached hereto, and these details are strictly adhered to. The explanation cannot be limited to those given for illustrative purposes. Because a 30-year-old is an expert in the field. the person, without deviating from the main theme of the invention, in light of what has been described above, similar It is clear that these structures can emerge. 26 REFERENCE NUMBERS GIVEN IN THE FIGURE 100th System 200. Input module 300. Workflow Orchestration Module 400. Three-dimensional model production module 5 500. Environment production module 600. Spatial adaptation and image generation module 700. Output preparation and distribution module 800. User approval module 900. Two-dimensional content creation module 10 1000. Animation module
Claims
27 REQUESTS 1. Creating productive, AI-powered immersive experience content and The generated content is spatially presented on physical display surfaces. It is a system (100) that enables the preparation for distribution, and its feature is; 5 from a user by receiving creative guidance based on natural language, that creative guidance interpreting, determining user intent, and structured workflow instructions. an input module (200) configured to create, the specified user intent according to a production flow and the content production to be used in that flow. by automatically identifying the tools, 10 of which are the content production tools in question. a workflow orchestration module (300) structured to manage its operation, Depending on the defined user intent, at least one two-dimensional content, a three-dimensional model, high dynamic range image-based environment, 360-degree panoramic environment and / or At least one content production module configured for creating animated content, The generated content is 15 times more likely to be affected by the geometry of the target physical display surface. adapting, the target physical imaging surface containing multiple surfaces In this case, the perspective will be among the content sections to be presented on the surfaces in question. to establish continuity and spatial continuity and the content sections in question a spatial adaptation and image structured to synchronize creation module (600), spatially adapted content target physical 20 to package in a way that can be used by the imaging system and spatially an output preparation and distribution module configured to prepare for distribution (700) is included.
2. According to claim 1, a system (100) has the characteristic of; Consecutive and user 25 intermediate outputs created at each of the production stages that produce a presentable intermediate output to present the output to the user, to obtain user approval for the interim output, and to prevent proceeding to the next production stage without obtaining user approval It includes a configured user approval module (800).
3. A system (100) according to claim 1 or 2, whose characteristic is; input module (200) 30 A high-level scene description that explains the scene you want to create is mandatory. as input, and at least one visual reference, three-dimensional model, style reference and / or This involves configuring the system to accept additional user instructions as an optional input.
4. A system (100) according to any of the above requirements, and its feature is; input 35 object, environment, style in the module (200) natural language-based creative guidance a request parser that identifies information regarding motion, background and / or output type 28 and this creative direction leads to object production, medium production, two-dimensional content creation, three-dimensional model creation, animation creation and / or related activities It includes an intention determinant that determines whether or not it relates to a combination of these.
5. A system (100) according to any of the above requirements, and its feature is; workflow 5 The orchestration module (300), user guidance is related to an object in this case, the creation or retrieval of an object image, of the object in question the creation of a three-dimensional model from the image, the resulting three-dimensional model a production workflow that includes optimization and / or animation; If user guidance relates to an environment, then a background is required, 10 high dynamic range image-based environment, 360-degree panoramic environment and / or define a production flow that includes the generation of ambient light information. It is structured accordingly.
6. A system (100) according to any of the above requirements, and its characteristic is; 15 text to image generation, image to image generation, background removal and / or performing at least one of the style adaptation processes and creating a two-dimensional image. a two-dimensional content generation module that provides content in PNG and / or JPG format It contains (900).
7. A system (100) according to any of the above requirements, and its feature is; If the defined user intent requires the production of a three-dimensional model, from an image generated by the system or provided by the user, from a natural language-based three-dimensional model definition and / or by the user three AI-powered 25 by utilizing an existing three-dimensional model provided. 3D model creation, mesh optimization, and model preview a three-dimensional model structured to perform at least one of the following operations It includes the production module (400).
8. A system (100) according to any of the above requirements, and its characteristic is; 30 where the defined user intent necessitates environmental production, High dynamic range image-based environment generation, background generation, environmental at least one of the following processes: light estimation and / or spatial background enhancement It includes an environment production module (500) configured to perform. 35 9. A system (100) according to any of the above requirements, and its feature is; on at least one three-dimensional model created or provided by the user 29 Single object animation, the movement of multiple three-dimensional objects in the same scene. the swarm animation, motion synthesis and / or scene transition created within it It contains an animation module (1000) that performs at least one of the operations.
10. A system (100) according to any of the above requirements, and its characteristic is; 5 spatial adaptation and image creation module (600), where the content will be presented geometry-sensitive depending on the geometry of the target physical imaging surface to perform image generation; the target physical imaging surface If it is cylindrical, then cylindrical coupling; if it is prismatic, then prism coupling. If adaptation and anamorphic presentation are required, anamorphic correction 10 to perform the operation and multiple surfaces of the target physical imaging surface to perform multi-surface synchronization if it includes It is the structuring.
11. A system (100) according to any of the above requirements, and its feature is; output 15 The spatially adapted content of the preparation and distribution module (700) is two a three-dimensional or three-dimensional light-emitting diode display sculpture, planar light-emitting diode display, cylindrical display, transparent light-emitting diode display, holographic three-dimensional screen, projection matching system and / or multi-surface spatial media structure converting the content into a suitable format for presentation and targeting the intended audience 20 Codec, resolution and / or metadata determined according to the technical specifications of the system. It is structured to prepare the information as a delivery package.
12. A system (100) according to any of the above requirements, and its feature is; user approval module (800), 25 relating to intermediate output created in a production stage. to receive the change and / or recreation request from the user and request input module (200) and workflow orchestration module (300) related It is configured to be transferred to the production module.
13. A system (100) according to any of the above requirements, and its characteristic is; 30 spatial adaptation and image creation module (600), spatially Real-time image generation process for adapted content It is structured to accomplish this.
14. Creating productive AI-powered immersive experience content and 35 The generated content is spatially presented on physical display surfaces. It is a method that enables preparation for distribution, and its characteristic feature is that it naturally receives input from a user. Receiving language-based creative guidance, that creative guidance user intent is determined through interpretation and a structured workflow. the creation of instructions, a production flow based on the defined user intent, and the content creation tools to be used in the production workflow in question will be automatically Identification, management of the operation of the identified content production tools, identified 5 Depending on user intent, at least one two-dimensional content, a three-dimensional model, and high dynamic range. intermittent image-based environment, 360-degree panoramic environment and / or animated content creation, rendering the created content on the target physical display surface. Adapting according to its geometry, multiple target physical imaging surfaces If it includes a surface, the content sections to be presented on those surfaces are 10. creating perspective continuity and spatial continuity between them and the aforementioned Synchronizing content sections, spatially adapting content to the target packaged in a way that can be used by a physical imaging system and It includes the steps to prepare for spatial distribution.
15. It is a method according to claim 14, and its characteristic is that it consists of successive steps and provides the user with intermediates created at each of the production stages that produce a presentable intermediate output the output is presented to the user, and the user's approval of that interim output is obtained. proceeding to the next production stage without obtaining the user's approval It includes the prevention step. 20 16. A method according to claim 14 or 15, characterized by its ability to create the desired scene. a high-level scene description explaining the situation is required as an input, and at least one visual reference, three-dimensional model, style reference and / or additional user instructions It involves taking it as an optional input. 25 17. A method according to any of claims 14 to 16, characterized by being natural language-based. object, medium, style, motion, background and / or output type in creative direction Identifying the relevant information and the creative direction in question towards object production, environment production, two-dimensional content production, three-dimensional model production, animation 30 determining whether it relates to the production of and / or a combination thereof It includes the steps.
18. A method according to any of 15 to 17, the characteristic of which is; user If the orientation relates to an object, then an object image is 35 the creation or extraction of a three-dimensional image of the object in question. model generation, optimization of the created three-dimensional model and / or 31 Defining a production flow that includes animation; user If the orientation relates to an environment, then a background, high dynamic range image-based environment, 360-degree panoramic environment and / or Defining a production flow that includes generating ambient light information. It includes the following steps. 5 19. A method according to any of claims 14 to 18, characterized by its ability to convert text to image. image generation, image-to-image generation, background removal and / or style adaptation At least one of these processes must be carried out and the generated two-dimensional content must be converted to PNG. This includes steps to provide it in JPG format and / or other formats. 10 20. A method according to any of claims 14 to 19, whose characteristic is that it is created or a natural language-based three-dimensional model from an image provided by the user from the definition and / or an existing three-dimensional model provided by the user Creating AI-powered three-dimensional models using mesh 15 At least one of the optimization and model preview processes must be performed, and The generated three-dimensional model must be provided in GLB, FBX and / or OBJ format. It includes the steps.
21. A method according to any of claims 14 to 20, characterized by its high dynamic range. Interval image-based environment generation, background generation, ambient light estimation and / or performing at least one of the spatial background enhancement processes and a high dynamic range image file and / or environment map It includes the steps involved in its creation.
22. A method according to any of claims 14 to 21, whose characteristic is that it is created or single object on at least one three-dimensional model provided by the user animation shows the movement of multiple three-dimensional objects within the same scene. the most effective of the swarm animation, motion synthesis and / or scene transition processes that create it It involves the step of carrying out at least one of them. 30 23. A method according to any of claims 14 to 22, characterized by its content. depending on the geometry of the target physical imaging surface to be presented Performing geometry-sensitive image generation; target physical If the viewing surface is cylindrical, cylindrical mapping; prismatic 35 in which case it requires prism adaptation and an anamorphic presentation In this case, anamorphic correction is performed and the target physical 32 Multiple surfaces when the viewing surface contains more than one surface It includes the steps to perform the synchronization.
24. A method according to any of claims 14 to 23, characterized by its spatial nature. The adapted content is a two-dimensional or three-dimensional light-emitting diode screen sculpture, 5 planar light-emitting diode screen, cylindrical screen, transparent light-emitting diode screen, holographic three-dimensional display, projection mapping system and / or multi-surface transforming it into a format suitable for presentation within a spatial media structure and the wording The subject matter is determined according to the technical specifications of the target viewing system. 10 in a delivery package containing codec, resolution and / or metadata information. It includes the preparation steps.
25. A method according to any of claims 14 to 24, the characteristic of which is a production. Modifying and / or recreating the intermediate output generated during this phase. the request is received from the user and that request is sent to the relevant production stage 15 the steps of transferring the relevant production stage and repeating it according to user demand It includes.
26. A method according to any of claims 14 to 25, characterized by its spatial nature. The image generation process for the adapted content is done in real-time 20 It includes the step of implementation.