An access authentication algorithm based on a hierarchical identity-based signature over lattice for the space-ground integrated network

Zhuo Yi, Xuehui Du, Ying Liao, Xin Lu
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引用次数: 6

Abstract

Access authentication is a key technology to identify the legitimacy of mobile users when accessing the space-ground integrated networks (SGIN). A hierarchical identity-based signature over lattice (L-HIBS) based mobile access authentication mechanism is proposed to settle the insufficiencies of existing access authentication methods in SGIN such as high computational complexity, large authentication delay and no-resistance to quantum attack. Firstly, the idea of hierarchical identity-based cryptography is introduced according to hierarchical distribution of nodes in SGIN, and a hierarchical access authentication architecture is built. Secondly, a new L-HIBS scheme is constructed based on the Small Integer Solution (SIS) problem to support the hierarchical identity-based cryptography. Thirdly, a mobile access authentication protocol that supports bidirectional authentication and shared session key exchange is designed with the aforementioned L-HIBS scheme. Results of theoretical analysis and simulation experiments suggest that the L-HIBS scheme possesses strong unforgeability of selecting identity and adaptive selection messages under the standard security model, and the authentication protocol has smaller computational overhead and shorter private keys and shorter signature compared to given baseline protocols.
一种基于格上分层身份签名的空地集成网络访问认证算法
接入认证是识别移动用户接入地空综合网络合法性的一项关键技术。针对SGIN中现有接入认证方法计算复杂度高、认证延迟大、不抗量子攻击等不足,提出了一种基于分层身份签名over lattice (L-HIBS)的移动接入认证机制。首先,根据SGIN中节点的分层分布,引入了分层身份加密思想,构建了分层访问认证体系结构;其次,基于小整数解(SIS)问题构造了一种新的L-HIBS方案,以支持分层身份加密。第三,利用上述L-HIBS方案设计了支持双向认证和共享会话密钥交换的移动接入认证协议。理论分析和仿真实验结果表明,在标准安全模型下,L-HIBS方案具有较强的身份选择和自适应选择消息的不可伪造性,与给定的基准协议相比,该认证协议具有更小的计算开销、更短的私钥和签名。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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