MIMO Technology is Used to Improve the Security Capacity Stability of Rayleigh Wiretap Channel
DOI:
https://doi.org/10.62051/ijcsit.v4n1.16Keywords:
Rayleigh wiretap channel, MIMO, Channel State Information, Safe capacity, Physical Layer SecurityAbstract
This paper analyzes the security capacity when the Rayleigh channel codec is known, and studies the relationship between the transmit power, the estimation error and the security capacity difference. The results show that the increase of transmit power can make the security capacity difference tend to a stable value, which indicates that the influence of imperfect channel state information on the security capacity tends to be stable. By comparing the transmission power of SISO system and MIMO system, it is proved that MIMO system usually has higher transmission power under the same received power, so it is more suitable for improving the security capacity stability of Rayleigh channel.
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[1] Liu, Y., Hsiao-Hwa, C., Wang, L., & Meng, W. (2019). Artificial noisy MIMO systems under correlated scattering rayleigh fading -- A physical layer security approach. Ithaca: doi: https://doi.org/10.1109/JSYST.2019.2922848
[2] R.Ezzine, M. Wiese, C. Deppe and H. Boche, "A Proof of a Single-Letter Capacity Formula for MIMO Gauss-Markov Rayleigh Fading Channels," in IEEE Transactions on Information Theory, vol. 69, no. 11, pp. 6878-6896,Nov.2023,doi:10.1109/TIT.2023.3295472.
[3] F.R. Ghadi and G. A. Hodtani, "Copula-Based Analysis of Physical Layer Security Performances Over Correlated Rayleigh Fading Channels," in IEEE Transactions on Information Forensics and Security, vol. 16, pp. 431-440, 2021, doi: 10.1109/TIFS.2020.3014553.
[4] E. Björnson and L. Sanguinetti, “Rayleigh fading modeling and channel hardening for reconfigurable intelligent surfaces,” IEEE Wireless Commun. Lett., vol. 10, no. 4, pp. 830–834, Apr. 2021.
[5] C. Xiao, J. Wu, S.-Y. Leong, Y. R. Zheng, and K. B. Letaief, “A discrete- time model for triply selective MIMO Rayleigh fading channels,” IEEE Trans. Wireless Commun., vol. 3, no. 5, pp. 1678–1688, Sep. 2004.C.
[6] C. Xiao and Y. R. Zheng, “Ergodic capacity, capacity distribution and outage capacity of MIMO time-varying and frequency-selective Rayleigh fading channels,” in Proc. 41st Annu. Allerton Conf. Commun. Control Computing., Springfield, IL, USA, Oct. 2003, pp. 346–355.
[7] C. Xiao and Y. R. Zheng, “On the Ergodic capacity of MIMO triply selective Rayleigh fading channels,” IEEE Trans. Wireless Commun., vol. 7, no. 6, pp. 2272–2279, Jun. 2008.
[8] R.K. Hindustani, Dharmendra Dixit, Sanjeev Sharma, Vimal Bhatia, Outage probability of multiple-IRS-assisted SISO wireless communications over Rician fading, Physical Communication, Volume 59, 2023, 102102, ISSN 1874-4907, https://doi.org/10.1016/j.phycom.2023.102102.
[9] M. Li, S. Kundu, D. A. Pados and S. N. Batalama, "Waveform Design for Secure SISO Transmissions and Multicasting," in IEEE Journal on Selected Areas in Communications, vol. 31, no. 9, pp. 1864-1874, September 2013, doi: 10.1109/JSAC.2013.130918.
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