Research on a Framework for Chinese Argot Recognition and Interpretation by Integrating Improved MECT Models

Author:

Li Mingfeng1,Li Xin12,Hu Mianning1,Yuan Deyu12

Affiliation:

1. School of Information and Network Security, People’s Public Security University of China, Beijing 102206, China

2. Key Laboratory of Security Prevention Technology and Risk Assessment of the Ministry of Public Security, Beijing 100038, China

Abstract

In underground industries, practitioners frequently employ argots to communicate discreetly and evade surveillance by investigative agencies. Proposing an innovative approach using word vectors and large language models, we aim to decipher and understand the myriad of argots in these industries, providing crucial technical support for law enforcement to detect and combat illicit activities. Specifically, positional differences in semantic space distinguish argots, and pre-trained language models’ corpora are crucial for interpreting them. Expanding on these concepts, the article assesses the semantic coherence of word vectors in the semantic space based on the concept of information entropy. Simultaneously, we devised a labeled argot dataset, MNGG, and developed an argot recognition framework named CSRMECT, along with an argot interpretation framework called LLMResolve. These frameworks leverage the MECT model, the large language model, prompt engineering, and the DBSCAN clustering algorithm. Experimental results demonstrate that the CSRMECT framework outperforms the current optimal model by 10% in terms of the F1 value for argot recognition on the MNGG dataset, while the LLMResolve framework achieves a 4% higher accuracy in interpretation compared to the current optimal model.The related experiments undertaken also indicate a potential correlation between vector information entropy and model performance.

Funder

China University of Political Science and Law (CUPSL) Cybersecurity and Law Enforcement Technology Innovation Project

111 Center

Research on cross-domain multi-source video surveillance network security system as a national key research and development project

Publisher

MDPI AG

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