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September 27, 2025Applied Sciences3 citationsOpen Access

Exploring the Potential of Anomaly Detection Through Reasoning with Large Language Models

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SPSungjune ParkDCDaeseon Choi

Key Points

  • Anomaly detection achieved up to 0.96 accuracy in spam detection through chain-of-thought prompting.
  • Techniques like zero-shot and few-shot prompting showcased significant flexibility in handling multiple tasks.
  • Traditional models require specific training, which consumes time and resources, emphasizing the value of prompt engineering.
  • Future research aims to expand the applicability and scalability of prompt engineering in anomaly detection.

Abstract

In recent years, anomaly detection in digital environments has become a critical research area due to issues such as spam messages and fake news, which can lead to privacy breaches, social disruption, and undermined information reliability. Traditional anomaly detection models often require specific training for each task, resulting in significant time and resource consumption and limited flexibility. This study explores the use of Prompt Engineering with Transformer-based Large Language Models (LLMs) to address these challenges more efficiently. By comparing techniques such as Zero-shot, Few-shot, Chain-of-Thought (CoT), Self-Consistency (SC), and Tree-of-Thought (ToT) prompting, the study identifies CoT and SC as particularly effective, achieving up to 0.96 accuracy in spam detection without the need for task-specific training. However, ToT exhibited limitations due to biases and misinterpretation. The findings emphasize the importance of selecting appropriate prompting strategies to optimize LLM performance across various tasks, highlighting the potential of Prompt Engineering to reduce costs and improve the adaptability of anomaly detection systems. Future research is needed to explore the broader applicability and scalability of these methods. Additionally, this study includes a survey of Prompt Engineering techniques applicable to anomaly detection, examining strategies such as Self-Refine and Retrieval-Augmented Generation to further enhance detection accuracy and adaptability.

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Cite This Study

Park et al. (2025) studied this question.

synapsesocial.com/papers/68d7be5eeebfec0fc52374dahttps://doi.org/10.3390/app151910384
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