Uses genetic programming and evolutionary algorithms to automate structural timber design, generating production-ready i-joist floor layouts in under 30 minutes. This system reduces design costs by over 5% compared to human designers, minimizes material wastage, and increases productivity by enabling 24/7 design capabilities.
Funding
Funding not disclosed
Founders
Product
Problem
The manual design of structural timber layouts for I-joist floors is a time-consuming process, often leading to suboptimal material usage and increased construction costs. Human designers may struggle to quickly explore multiple design options and optimize for both structural integrity and cost-effectiveness.
Solution
DAISY is an AI-powered construction design automation platform that uses genetic programming and evolutionary algorithms to generate optimized structural timber designs for I-joist floors. The system automates the design process, producing production-ready layouts in under 30 minutes. By leveraging AI, DAISY minimizes material wastage, reduces construction costs, and increases design productivity through 24/7 availability. The platform enables users to quickly evaluate design options and optimize for cost and structural efficiency.
Target Audience
DAISY targets structural engineers, architects, and construction professionals involved in timber frame design and construction, particularly those seeking to optimize I-joist floor layouts.
Features
- AI-driven design automation using genetic programming and evolutionary algorithms
- Automated generation of production-ready I-joist floor layouts
- Optimization for minimal material wastage and reduced construction costs
- 24/7 design capabilities for increased productivity
- Output of designs in PDF format with cost summaries and component files
- Export options for .dwg, .rvt, and .dxf file formats