Dual-Phase Malicious User Detection Scheme for IM-OFDMA Systems Using IQ Imbalance

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Date

2025

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Wiley

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Abstract

Physical-layer security techniques have contributed to the achievement of various security objectives in an efficient and lightweight manner. Thus, these techniques have been widely considered for limited-resource networks such as Internet of Things networks. Among the different security objectives, malicious user detection by exploiting physical-layer parameters has demonstrated efficient performance. In this work, malicious user detection in the recently proposed index modulation-based orthogonal frequency division multiple access (IM-OFDMA) is addressed. The proposed malicious user detection scheme exploits the hardware impairments, especially the in-phase and quadrature imbalance parameters, for both legitimate and malicious users to design a dual-phase efficient detection scheme. The proposed scheme accounts for the special characteristics of IM-OFDMA transmission that are different from other multiple-access techniques. The performance of the proposed scheme was evaluated considering detection probability and false alarm probability performance metrics. Moreover, closed-form expressions of these metrics were derived for both phases and were validated by Monte Carlo simulation results under different configurations of IM-OFDMA systems.

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IM-OFDMA, Index Modulation, IQ Imbalance, Malicious User Detection, Physical Layer Authentication, Physical Layer Security

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Q3

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Q1

Source

Transactions on Emerging Telecommunications Technologies

Volume

36

Issue

10

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