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SECURE ROAMING OF KEY ASSOCIATION SCHEME PROVIDING PERFECT FORWARD SECRECY IN IEEE 802.16

机译:安全漫游关键协会计划,在IEEE 802.16中提供完美的前锋保密

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To date, IEEE 802.16 WiMAX has been seen increasingly as a fairly promising technique for next wireless communication networks to provide broadband wireless access, to which has been paid more attention by more and more researchers. When it comes to communication schemes or protocols in wireless networks, security is worth being considered as a critical issue. Likewise, in IEEE 802.16, researchers proposed a lot of security schemes or protocols based on IEEE 802.16 standard. However, these proposed protocols still suffer from plenty of malicious attacks. In this paper, we describe and analyze the security issues of the authentication and key management protocols in WiMAX, which are very vulnerable to many attacks. Then we focus Xu, Matthews, and Huang proposed protocol, secure roaming of key association during handover. Although it settles the problem with re-launch the authentication and key management when an MSS roams into from one base station to the other base station, could not guarantee the forward secrecy and backward secrecy at all. So we may also propose a possible solution, secure roaming of key association scheme providing perfect forward secrecy, which adopts elliptic curve cryptography and offers faster computational efficiency than RSA public key algorithm.
机译:迄今为止,IEEE 802.16 WiMAX越来越多地作为下一个无线通信网络提供宽带无线访问的相当有希望的技术,越来越多的研究人员获得了更多的关注。谈到无线网络中的通信方案或协议时,安全性值得被视为一个关键问题。同样,在IEEE 802.16中,研究人员提出了许多基于IEEE 802.16标准的安全方案或协议。然而,这些拟议的议定书仍然遭受大量恶意攻击。在本文中,我们描述了WiMAX认证和密钥管理协议的安全问题,这很容易受到许多攻击。然后我们专注于徐,马修斯和黄拟议的协议,在切换期间确保关键关联的漫游。虽然它通过重新启动认证和密钥管理时解决了问题,但是当MSS漫游到另一个基站到另一个基站时,虽然无法保证前向保密和后向保密。因此,我们还可能提出了一种可能的解决方案,确保了提供完整的前向保密的关键关联方案的漫游,其采用椭圆曲线密码,并提供比RSA公钥算法更快的计算效率。

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