Construction of secure adaptive frequency hopping sequence sets based on AES algorithm

Dongpo Song,Peng Wei, Yongming Fu,Shilian Wang

IET COMMUNICATIONS(2024)

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Abstract
Communication security has become particularly crucial with the rapid development of the Internet of Things (IoT). Frequency hopping spread spectrum (FHSS) technology, a prevalent method in wireless communication, has a wide range of applications in the Internet of Things. Enhancing the security of frequency hopping sequences is an essential means to improve the security of frequency hopping communication in the Internet of Things, as the performance of frequency hopping sequences plays a crucial role in frequency hopping systems. This paper proposes constructing secure adaptive frequency hopping sequence sets based on the advanced encryption standard (AES) algorithm. As a block cipher algorithm with superior security, the AES algorithm can provide a fundamental guarantee for the security of the proposed frequency hopping sequences. The mapping methods from ciphertext sequences to frequency hopping sequences proposed in this paper can achieve the construction of frequency hopping sequences of any frequency set size to meet the requirements of adaptive frequency hopping. In addition, we also model and analyse the problem of overlapping spectrum band of the IoT groups in the industrial, scientific, and medical (ISM) band, aiming to achieve better packet transmission performance by adjusting the frequency set size. This paper leverages the advanced encryption standard algorithm to explore the construction of secure frequency hopping (FH) sequences and proposes two mapping methods tailored to scenarios where the number of frequency slots is either an integer power of two or not. The proposed FH sequence sets constructed via these methods exhibit adaptability to an arbitrary number of frequency slots, effectively fulfilling the requirements of adaptive frequency hopping systems. image
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Key words
frequency hop communication,random sequences,telecommunication security
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