空间信息网络抗卫星入侵低延迟认证

W. Meng, Kaiping Xue, Jie Xu, Jianan Hong, Nenghai Yu
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引用次数: 18

摘要

随着移动通信技术的发展,空间信息网(SIN)以其提供可扩展的接入服务的优势被提出以满足日益增长的移动通信需求。在网络安全中,身份验证对于防止网络资源被非法访问具有重要的安全意义。然而,由于链路高度暴露和传输时延极高的特点,使得设计一种安全、快速的认证方案变得困难。虽然已有的一些研究尝试设计了SIN的认证协议,但没有考虑到无法忍受的认证延迟和卫星妥协的风险。面对这些问题,我们设计了一种基于代理签名的SIN认证方案,该方案中认证的交互过程只在移动用户和卫星节点之间实现,从而减少了较长的认证实现延迟。此外,我们利用代理签名来降低卫星被攻击的风险。安全性和性能分析结果表明,该方案能够提供所需的安全性,并大大降低了认证延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Latency Authentication Against Satellite Compromising for Space Information Network
With an advancement of mobile communication technology, the space information network (SIN) has been proposed to meet the increasing demands of mobile communication due to its advantage of providing great expanding access services. In SIN, authentication is significant for the security to prevent the network resource from unauthorized access. However, the features of highly exposed links and extremely high propagation delay make it difficult to design a secure and fast authentication scheme for SIN. Although some existing researches have tried to design authentication protocols for SIN, they haven't taken the intolerable authentication delay and the risk of satellite compromising into consideration. Faced with these problems, we design a proxy signature-based authentication scheme for SIN, in which, the interaction process of authentication can be only implemented between the mobile user and the satellite node, thus reducing the long authentication implementation delay. Furthermore, we utilize the proxy signature to mitigate the risk of satellites being attacked. The results of security and performance analysis show that the proposed scheme can provide the required security and largely reduce the authentication latency.
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