A Unified Framework for Context-Aware IoT Management and State-of-the-Art IoT Traffic Anomaly Detection

Fuente: arXiv
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Main Authors: Worae, Daniel Adu, Sheikh, Athar, Mastorakis, Spyridon
Format: Preprint
Published: 2024
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author Worae, Daniel Adu
Sheikh, Athar
Mastorakis, Spyridon
author_facet Worae, Daniel Adu
Sheikh, Athar
Mastorakis, Spyridon
contents The rapid expansion of Internet of Things (IoT) ecosystems has introduced growing complexities in device management and network security. To address these challenges, we present a unified framework that combines context-driven large language models (LLMs) for IoT administrative tasks with a fine-tuned anomaly detection module for network traffic analysis. The framework streamlines administrative processes such as device management, troubleshooting, and security enforcement by harnessing contextual knowledge from IoT manuals and operational data. The anomaly detection model achieves state-of-the-art performance in identifying irregularities and threats within IoT traffic, leveraging fine-tuning to deliver exceptional accuracy. Evaluations demonstrate that incorporating relevant contextual information significantly enhances the precision and reliability of LLM-based responses for diverse IoT administrative tasks. Additionally, resource usage metrics such as execution time, memory consumption, and response efficiency demonstrate the framework's scalability and suitability for real-world IoT deployments.
format Preprint
id arxiv_https___arxiv_org_abs_2412_19830
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Unified Framework for Context-Aware IoT Management and State-of-the-Art IoT Traffic Anomaly Detection
Worae, Daniel Adu
Sheikh, Athar
Mastorakis, Spyridon
Networking and Internet Architecture
Artificial Intelligence
The rapid expansion of Internet of Things (IoT) ecosystems has introduced growing complexities in device management and network security. To address these challenges, we present a unified framework that combines context-driven large language models (LLMs) for IoT administrative tasks with a fine-tuned anomaly detection module for network traffic analysis. The framework streamlines administrative processes such as device management, troubleshooting, and security enforcement by harnessing contextual knowledge from IoT manuals and operational data. The anomaly detection model achieves state-of-the-art performance in identifying irregularities and threats within IoT traffic, leveraging fine-tuning to deliver exceptional accuracy. Evaluations demonstrate that incorporating relevant contextual information significantly enhances the precision and reliability of LLM-based responses for diverse IoT administrative tasks. Additionally, resource usage metrics such as execution time, memory consumption, and response efficiency demonstrate the framework's scalability and suitability for real-world IoT deployments.
title A Unified Framework for Context-Aware IoT Management and State-of-the-Art IoT Traffic Anomaly Detection
topic Networking and Internet Architecture
Artificial Intelligence
url https://arxiv.org/abs/2412.19830