US20260195493
2026-07-09
Physics
G06F30/13
The patent application describes a platform that leverages artificial intelligence (AI) and Generative Adversarial Networks (GAN) to automate the creation and modification of architectural design plans. This system processes user inputs, such as commands, sketches, or drawings, to generate optimized design layouts. It evaluates design elements like rooms, airflow paths, and structural components, providing suggestions for improvements and identifying inconsistencies. The platform is context-aware, assessing how user changes affect the overall design and its environment. It supports various input methods including gestures, text, and voice, offering real-time feedback on design conflicts and compliance issues.
The invention focuses on automating architectural design plan creation and modification using advanced AI technologies. It integrates AI and GANs to generate and optimize layouts, considering spatial configurations, architectural features, and structural components. The system provides real-time feedback on design improvements and supports collaborative processes, adapting to client-specific requirements and various project conditions. This enhances the design's adaptability to geographical, environmental, and technological constraints.
Historically, architectural design plans were manually crafted, a labor-intensive process. The introduction of computer-aided design (CAD) revolutionized this field by enabling precise digital representations and simulations of real-world conditions. Despite these advancements, generating and modifying plans remains complex, requiring skilled users to manually adjust elements and consider the impact of changes on the overall design. This invention seeks to simplify and automate these processes, reducing the time and expertise required for modifications.
The platform utilizes AI and GANs to transform architectural design processes, allowing users to input design requirements in multiple formats and receive optimized outputs. The AI engine interprets user inputs to create structural layouts, while the GAN generates creative design alternatives. The system accepts various input types, including text and voice commands, making it accessible to users with different skill levels. It can generate new designs or modify existing ones, analyzing compliance with design practices and building objectives.
The system supports dynamic updates to design plans based on user inputs, offering immediate feedback and alternative solutions. It allows for complex revisions by accommodating user preferences and site-specific constraints. For instance, it can adjust designs for environmental factors like steep slopes or high winds, suggesting modifications to structural elements and layouts. This adaptability ensures that the platform can handle diverse design challenges while maintaining functionality and aesthetic integrity.