Zhang Yuanyuan, Zhai Zhibo
School of Computer Science, Hubei University of Technology, Wuhan, China.
PLoS One. 2021 Apr 26;16(4):e0250205. doi: 10.1371/journal.pone.0250205. eCollection 2021.
Satellite communication has played an important part in many different industries because of its advantages of wide coverage, strong disaster tolerance and high flexibility. The security of satellite communication systems has always been the concern of many scholars. Without authentication, user should not obtain his/her required services. Beyond that, the anonymity also needs to be protected during communications. In this study, we design an efficient and provably secure key agreement scheme for satellite communication systems. In each session, we replace user's true identity by a temporary identity, which will be updated for each session, to guarantee the anonymity. Because the only use of lightweight algorithms, our proposed scheme has high performance. Furthermore, the security of the proposed scheme is proved in the real-or-random model and the performance analysis shows that the proposed scheme is more efficient than some other schemes for satellite communication systems.
卫星通信因其覆盖范围广、抗灾能力强和灵活性高的优点,在许多不同行业中发挥了重要作用。卫星通信系统的安全性一直是众多学者关注的问题。未经认证,用户不应获得其所需的服务。除此之外,通信过程中的匿名性也需要得到保护。在本研究中,我们为卫星通信系统设计了一种高效且可证明安全的密钥协商方案。在每个会话中,我们用一个临时身份替换用户的真实身份,该临时身份将在每个会话中更新,以保证匿名性。由于仅使用轻量级算法,我们提出的方案具有高性能。此外,该方案的安全性在真实或随机模型中得到了证明,性能分析表明,该方案比其他一些卫星通信系统方案更高效。