The Effect of Ambient Temperature On Device Classification Based On Radio Frequency Fingerprint Recognition

Author:

YILMAZ Özkan1,YAZICI Mehmet Akif2

Affiliation:

1. Aselsan A.Ş.

2. Istanbul Technical University

Abstract

Physical layer authentication is an important technique for cybersecurity, especially in military scenarios. Device classification using radio frequency fingerprinting, which is based on recognizing device-unique characteristics of the transient waveform observed at the beginning of a transmission from a radio device, is a promising method in this context. In this study, the effect of the ambient temperature on the performance of radio device classification based on RF fingerprinting is investigated. The radio devices used in the study belong to the same brand, model, and production date, making the problem more difficult than classifying radio devices of different brands or models. Our results show that high levels of accuracy can be attained using convolutional neural network models such as ResNet50 when the test data and the training data are collected at the same temperature, whereas performance suffers when the test data and the training data belong to different temperature values. We also provide the performance figures of a blended training model that uses training data taken at various temperature values.

Publisher

Sakarya University Journal of Computer and Information Sciences

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Transmitter Identification With Contrastive Learning in Incremental Open-Set Recognition;IEEE Internet of Things Journal;2024-02-01

2. Preamble-based RF-DNA Fingerprinting Under Varying Temperatures;2023 12th Mediterranean Conference on Embedded Computing (MECO);2023-06-06

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