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Deciphering Textual Authenticity: A Generalized Strategy through the Lens of Large Language Semantics for Detecting Human vs. Machine-Generated Text

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arxiv 2401.09407 v3 pith:D5LQB7UF submitted 2024-01-17 cs.CL cs.LG

classification cs.CLcs.LG
keywords textmachine-generateddomainsgeneratorsproduceddetectiondiverselimited
verification ladder T0 review T1 audit T2 compute T3 formal
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With the recent proliferation of Large Language Models (LLMs), there has been an increasing demand for tools to detect machine-generated text. The effective detection of machine-generated text face two pertinent problems: First, they are severely limited in generalizing against real-world scenarios, where machine-generated text is produced by a variety of generators, including but not limited to GPT-4 and Dolly, and spans diverse domains, ranging from academic manuscripts to social media posts. Second, existing detection methodologies treat texts produced by LLMs through a restrictive binary classification lens, neglecting the nuanced diversity of artifacts generated by different LLMs. In this work, we undertake a systematic study on the detection of machine-generated text in real-world scenarios. We first study the effectiveness of state-of-the-art approaches and find that they are severely limited against text produced by diverse generators and domains in the real world. Furthermore, t-SNE visualizations of the embeddings from a pretrained LLM's encoder show that they cannot reliably distinguish between human and machine-generated text. Based on our findings, we introduce a novel system, T5LLMCipher, for detecting machine-generated text using a pretrained T5 encoder combined with LLM embedding sub-clustering to address the text produced by diverse generators and domains in the real world. We evaluate our approach across 9 machine-generated text systems and 9 domains and find that our approach provides state-of-the-art generalization ability, with an average increase in F1 score on machine-generated text of 19.6\% on unseen generators and domains compared to the top performing existing approaches and correctly attributes the generator of text with an accuracy of 93.6\%.

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  1. Synthetic Artifact Auditing: Tracing LLM-Generated Synthetic Data Usage in Downstream Applications

    cs.LG 2025-02 conditional novelty 6.0 of 10

    A three-method auditing framework detects with roughly 87 to 97 percent accuracy whether classifiers, generators, and t-SNE plots were trained on or derived from LLM-generated synthetic data.

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