Introduction The exploration of bio-inspired art design using sustainable biomaterials has gained significant attention due to the increasing demand for environmentally responsible artistic practices. Traditional methods often focus on either aesthetic innovation or environmental sustainability, but rarely achieve a harmonious integration of both. This paper introduces the Eco-Causal Design Synthesizer, a novel framework that addresses this gap by integrating three pivotal modules: the Constraint-Aware Material Optimizer, the Agent-Driven Aesthetic Planner, and the Probabilistic Sustainability Evaluator. Methods These modules work in synergy to optimize material selection, aesthetic planning, and sustainability evaluation, ensuring a balance between artistic creativity and ecological responsibility. The framework is further refined through two strategic innovations: Causal Constraint Modeling, which elucidates the interdependencies between material properties, design features, and sustainability metrics, and Synergistic Causal–Uncertainty Integration, which employs probabilistic methods to manage variability in biomaterial properties and environmental conditions. Results and Discussion Experimental results demonstrate that the proposed methodology significantly enhances the eco-friendliness of art designs while maintaining high aesthetic standards. The implications of this research are profound, offering a comprehensive solution for artists and designers seeking to align their creative processes with sustainability objectives. By leveraging bio-inspired principles and advanced optimization techniques, this framework not only contributes to the field of sustainable art design but also sets a precedent for future research in eco-friendly artistic innovation.
Yong Jia (1601683) (Wed,) studied this question.
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