Space-air-ground integrated networks (SAGINs), which have emerged as an expansion of terrestrial networks, provide flexible access, ubiquitous coverage, high-capacity backhaul, and emergency/disaster recovery for mobile users (MUs). While the massive benefits brought by SAGIN may improve the quality of service, unauthorized access to SAGIN entities is potentially dangerous. At present, conventional crypto-based authentication is facing challenges, such as the inability to provide continuous and transparent protection for MUs. In this article, we propose an AI-oriented two-phase multi-factor authentication scheme (ATMAS) by introducing intelligence to authentication. The satellite and network control center collaborate on continuous authentication, while unique spatial-temporal features, including service features and geographic features, are utilized to enhance the system security. Our further security analysis and performance evaluations show that ATMAS has proper security characteristics which can meet various security requirements. Moreover, we shed light on lightweight and efficient authentication mechanism design through a proper combination of spatial-temporal factors.
翻译:空天地一体化网络(SAGINs)作为对地面网络的扩展,为移动用户(MUs)提供了灵活的接入、无处不在的覆盖、高容量的回传和应急/灾难恢复功能。虽然SAGIN带来的巨大益处可能改善了服务质量,但对SAGIN实体的未经授权访问具有潜在的危险性。目前,传统的基于密码的身份认证面临诸多挑战,如无法为MUs提供连续和透明的保护。在本文中,我们通过在身份认证中引入智能,提出了一种AI导向的两阶段多因素认证方案(ATMAS)。卫星和网络控制中心共同进行连续认证,而包括服务特征和地理特征在内的独特的时空特征被利用来增强系统安全性。我们进一步的安全分析和性能评估表明,ATMAS具有适当的安全特性,可以满足各种安全要求。此外,通过合理的时空因素的组合,我们揭示了轻量级和高效的身份验证机制设计。