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Article | Open Access

A Novel Unified Framework for Automated Generation and Multimodal Validation of UML Diagrams

Van-Viet Nguyen1Huu-Khanh Nguyen2Kim-Son Nguyen1Thi Minh-Hue Luong1Duc-Quang Vu1Trung-Nghia Phung3The-Vinh Nguyen1( )
Faculty of Information Technology, Thai Nguyen University of Information and Communication Technology, Thai Nguyen, 250000, Viet Nam
Distance Learning Center, Thai Nguyen University, Thai Nguyen, 250000, Viet Nam
Faculty of Arts and Communications, Thai Nguyen University of Information and Communication Technology, Thai Nguyen, 250000, Viet Nam
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Abstract

It remains difficult to automate the creation and validation of Unified Modeling Language (UML) diagrams due to unstructured requirements, limited automated pipelines, and the lack of reliable evaluation methods. This study introduces a cohesive architecture that amalgamates requirement development, UML synthesis, and multimodal validation. First, LLaMA-3.2-1B-Instruct was utilized to generate user-focused requirements. Then, DeepSeek-R1-Distill-Qwen-32B applies its reasoning skills to transform these requirements into PlantUML code. Using this dual-LLM pipeline, we constructed a synthetic dataset of 11,997 UML diagrams spanning six major diagram families. Rendering analysis showed that 89.5% of the generated diagrams compile correctly, while invalid cases were detected automatically. To assess quality, we employed a multimodal scoring method that combines Qwen2.5-VL-3B, LLaMA-3.2-11B-Vision-Instruct and Aya-Vision-8B, with weights based on MMMU performance. A study with 94 experts revealed strong alignment between automatic and manual evaluations, yielding a Pearson correlation of r=0.82 and a Fleiss’ Kappa of 0.78. This indicates a high degree of concordance between automated metrics and human judgment. Overall, the results demonstrated that our scoring system is effective and that the proposed generation pipeline produces UML diagrams that are both syntactically correct and semantically coherent. More broadly, the system provides a scalable and reproducible foundation for future work in AI-driven software modeling and multimodal verification.

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Computer Modeling in Engineering & Sciences
Article number: 33

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Cite this article:
Nguyen V-V, Nguyen H-K, Nguyen K-S, et al. A Novel Unified Framework for Automated Generation and Multimodal Validation of UML Diagrams. Computer Modeling in Engineering & Sciences, 2026, 146(1): 33. https://doi.org/10.32604/cmes.2025.075442

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Received: 31 October 2025
Accepted: 18 December 2025
Published: 29 January 2026
© The Author 2026.

This work is licensed under a Creative Commons Attribution 4.0 International License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.