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Physics-in-the-Loop: A Hybrid Agentic Architecture for Validated CAD Engineering Design

About

Large Language Models (LLMs) can generate Computer-Aided Design (CAD), yet lack physical comprehension required for reliable engineering design. Instead of attempting to implicitly learn physical laws from data, we propose a Hybrid Agentic-Physical Architecture that embeds validated knowledge-based engineering tools directly into the decision making loop of autonomous AI agents. In this framework, engineering design is formulated as a closed-loop, sequential decision making process guided by explicit physical verification. Based on a load case, dedicated agents iteratively plan, generate, evaluate, and revise engineering designs using knowledge-based tools as a feedback signal. We introduce a benchmark dataset and metrics for assessing functional validity in generative CAD. Our system generates more complex and physically verified designs, with a 4.2 increase in structural complexity and improving compile rate by 3.5% compared to similar agentic methods. The codebase, prompts and dataset will be made publicly available to support reproducibility and future research.

Elias Berger, Muhammad Usama, Jan Mehlst\"aubl, Bernhard Saske, Kristin Paetzold-Byhain• 2026

Related benchmarks

TaskDatasetResultRank
CAD GenerationHybrid Agentic Architecture CAD Evaluation Set
Execution Success (R1)97.5
4
CAD Object GenerationCAD Design Load Cases
Safety Factor (DQ1)4.97
4
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