Fortifying The Cosmos: Advancing Satellite Communication Security Through Cybersecurity Protocols
DOI:
https://doi.org/10.48047/0xz56f13Keywords:
—satellite communication, cybersecurity proto- cols, enhanced technique, encryption, authentication, intrusion detection, vulnerabilities, cyber threats.Abstract
As satellite communication becomes increasingly integral to industries such as telecommunications, navigation, and weather forecasting, it also becomes a more attractive target for cyber attacks. To address this growing concern, a robust security framework for satellite communication systems is developed. By identifying and analyzing existing vulnerabilities, a multi-layered approach is presented that integrates encryption, authentication, and intrusion detection protocols to safeguard satellite communication.
This comparative technique aims to bolster the security of satellite systems, ensuring the confidentiality, integrity, and availability of data transmitted through space. Through rigorous simulations and testing, the efficacy and efficiency of this approach in mitigating cyber threats and enhancing the overall security of satellite communication networks are demonstrated.
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References
Z. Lin, M. Lin, J.-B. Wang, T. de Cola and J. Wang, "Joint beamforming and power allocation for satelliteterrestrial integrated networks with non- orthogonal multiple access", IEEE J. Sel. Topics Signal Process., vol. 13, no. 3, pp. 657-670, Jun. 2019.
K. An, M. Lin, J. Ouyang and W.-P. Zhu, "Secure transmission in cognitive satellite terrestrial networks", IEEE J. Sel. Areas Commun., vol. 34, no. 11, pp. 3025-3037, Nov. 2016.
T. K. Rodrigues and N. Kato, "Network slicing with centralized and distributed reinforcement learning for combined satellite/ground networks in a 6G environment", IEEE Wireless Commun. vol. 29, no. 1, pp. 104-110, Feb. 2022.
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