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Novel Preprocessing Technique for Data Embedding in Engineering Code Generation Using Large Language Model
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We present four main contributions to enhance the performance of Large Language Models (LLMs) in generating domain-specific code: (i) utilizing LLM-based data splitting and data renovation techniques to improve the semantic representation of embeddings' space; (ii) introducing the Chain of Density for Renovation Credibility (CoDRC), driven by LLMs, and the Adaptive Text Renovation (ATR) algorithm for assessing data renovation reliability; (iii) developing the Implicit Knowledge Expansion and Contemplation (IKEC) Prompt technique; and (iv) effectively refactoring existing scripts to generate new and high-quality scripts with LLMs. By using engineering simulation software RedHawk-SC as a case study, we demonstrate the effectiveness of our data pre-processing method for expanding and categorizing scripts. When combined with IKEC, these techniques enhance the Retrieval-Augmented Generation (RAG) method in retrieving more relevant information, ultimately achieving a 73.33% "Percentage of Correct Lines" for code generation problems in MapReduce applications.
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Cited by 1 Pith paper
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JARVIS: A Multi-Agent Code Assistant for High-Quality EDA Script Generation
A multi-agent LLM framework with rule enforcement, compiler feedback, and retrieval achieves 92/93/81% pass@1 on three self-built EDA benchmarks, up from 67/62/43% for the best single model.
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