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A lightweight mutual authentication mechanism for network mobility in IEEE 802.16e wireless networks

机译:IEEE 802.16e无线网络中用于网络移动的轻量级双向身份验证机制

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Many mobile network nodes (MNNs) in public transport move together as a large-scale mobile network. Therefore, RFC 3963 proposes a network layer solution called network mobility (NEMO) as the basic support protocol for network mobility management. NEMO is designed so that network mobility is transparent to nodes in the mobile network, thereby reducing the signaling overhead. However, NEMO does not specify how authentication, authorization and accounting (AAA) should be handled, and it inherits the drawbacks of long handoff latency from Mobile IPv6 (MIPv6). In this paper, we develop a lightweight mutual authentication mechanism (LMAM) with low computational overhead and achieve local authentication based on NEMO and the AAA model over IEEE 802.16e networks. Moreover, LMAM can resist various attacks. In addition, we propose an enhanced hierarchical Mobile IPv6 (E-HMIPv6) scheme to reduce intra-domain handoff latency. We then integrate LMAM into E-HMIPv6 without increasing the signaling overhead. Our analysis results show that the integrated scheme, called LE-HMIPv6 outperforms existing schemes in terms of authentication and handoff latency.
机译:公共交通中的许多移动网络节点(MNN)作为大型移动网络一起移动。因此,RFC 3963提出了一种称为网络移动性(NEMO)的网络层解决方案,作为网络移动性管理的基本支持协议。 NEMO的设计使网络移动性对移动网络中的节点透明,从而减少了信令开销。但是,NEMO未指定应如何处理身份验证,授权和计费(AAA),它继承了移动IPv6(MIPv6)的较长切换延迟的缺点。在本文中,我们开发了一种轻量级的双向身份验证机制(LMAM),该机制具有较低的计算开销,并在IEEE 802.16e网络上基于NEMO和AAA模型实现了本地身份验证。而且,LMAM可以抵抗各种攻击。此外,我们提出了一种增强的分层移动IPv6(E-HMIPv6)方案,以减少域内切换延迟。然后,我们将LMAM集成到E-HMIPv6中,而不会增加信令开销。我们的分析结果表明,在身份验证和切换延迟方面,称为LE-HMIPv6的集成方案优于现有方案。

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