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A Lightweight and Secure Group Key Based Handover Authentication Protocol for the Software-Defined Space Information Network

机译:基于轻量级和安全组的基于密钥的软件定义空间信息网络的切换认证协议

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With rapid advances in satellite technology, space information network (SIN) has been proposed to meet the increasing demands of ubiquitous mobile communication due to its advantages in providing extensive access services. However, due to satellites' resource constraint and SIN's highly dynamic topology, it poses a challenge on management and resource utilization in the development of SIN. There have been some works integrating the software defined network (SDN) into SIN, defined as software defined space information network (SD-SIN), so as to simplify the management and improve resource utilization in SIN. However, these works ignore the security issue in SD-SIN. Meanwhile, the existing security mechanisms in SDN are still unable to cope with the uniqueness of satellite network, and some other critical security issues still haven't yet been well addressed. In this paper, based on (t, n) secret sharing, an SIN-specific lightweight group key agreement protocol is proposed for SD-SIN to ensure both the security and applicability. Moreover, considering the highly dynamic network topology, we also design a group key-based secure handover authentication scheme to reduce the overhead of handover authentication. Security analysis shows that the handover authentication protocol can resist to various known attacks. In addition, further performance evaluation shows its efficiency in terms of computation and communication overheads. Finally, the simulation results of computing overhead to the network entities demonstrate that our protocol is feasible in practical implementation.
机译:随着卫星技术的快速进步,已经提出了空间信息网络(SIN),以满足普遍存在移动通信的日益增长的需求,因为它在提供广泛的接入服务方面的优势。然而,由于卫星资源限制和罪的高度动态拓扑,它对犯罪的发展和资源利用构成了挑战。将软件定义的网络(SDN)集成到SIN中,定义为软件定义空间信息网络(SD-SIN),以简化管理和提高SIN的资源利用。但是,这些作品忽略了SD-SIN中的安全问题。同时,SDN现有的安全机制仍然无法应对卫星网络的唯一性,其他一些关键安全问题尚未得到很好的解决。本文基于(t,n)秘密共享,提出了一种针对SD-SIN的SIN特定的轻量级组关键协议协议,以确保安全性和适用性。此外,考虑到高度动态的网络拓扑,我们还设计了一种基于钥匙的安全切换认证方案,以减少切换认证的开销。安全性分析表明,切换认证协议可以抵抗各种已知攻击。此外,进一步的性能评估表明了其在计算和通信开销方面的效率。最后,计算到网络实体的开销的仿真结果证明我们的协议在实际实施方面是可行的。

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