Random Shifting Intelligent Reflecting Surface for OTP Encrypted Data Transmission
October 27, 2020 Β· Declared Dead Β· π IEEE Wireless Communications Letters
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Authors
Zijie Ji, Phee Lep Yeoh, Gaojie Chen, Cunhua Pan, Yan Zhang, Zunwen He, Hao Yin, Yonghui Li
arXiv ID
2010.14268
Category
cs.IT: Information Theory
Cross-listed
eess.SP
Citations
58
Venue
IEEE Wireless Communications Letters
Last Checked
5 months ago
Abstract
In this paper, we propose a novel encrypted data transmission scheme using an intelligent reflecting surface (IRS) to generate secret keys in wireless communication networks. We show that perfectly secure one-time pad (OTP) communications can be established by using a simple random phase shifting of the IRS elements. To maximize the secure transmission rate, we design an optimal time slot allocation algorithm for the IRS secret key generation and the encrypted data transmission phases. Moreover, a theoretical expression of the key generation rate is derived based on Poisson point process (PPP) for the practical scenario when eavesdroppers' channel state information (CSI) is unavailable. Simulation results show that employing our IRS-based scheme can significantly improve the encrypted data transmission performance for a wide-range of wireless channel gains and system parameters.
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