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Building Femtocell More Secure with Improved Proxy Signature

机译:通过改进的代理签名更安全地构建Femtocell

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Demand for the femtocell is largely credited to the surge in a more always best connected communication conscious public. 3GPP define new architecture and security requirement for Release 9 to deal with femtocell, Home eNode B referred as HeNB. In this paper, we analyze the HeNB security with respect to mutual authentication, access control, and secure key agreement. Our analysis pointed out that a number of security vulnerabilities have still not been addressed and solved by 3GPP technical specification. These include eavesdropping, man-in-the-middle attack, compromising subscriber access list, and masquerading as valid HeNB. To the best of our knowledge, any related research studying HeNB security was not published before. Towards this end, this paper proposes an improved authentication and key agreement mechanism for HeNB which adapts proxy-signature and proxy-signed proxy-signature. Through our elaborate analysis, we conclude that the proposed not only prevents the various security threats but also accomplishes minimum distance from user-tolerable authentication delay.
机译:对飞蜂窝的需求在很大程度上归因于始终保持最佳连接沟通意识的公众人数的激增。 3GPP定义了版本9的新架构和安全性要求,以处理毫微微小区,家庭eNode B(称为HeNB)。在本文中,我们从相互身份验证,访问控制和安全密钥协议方面分析了HeNB的安全性。我们的分析指出,3GPP技术规范尚未解决并解决许多安全漏洞。其中包括窃听,中间人攻击,损害用户访问列表以及伪装成有效的HeNB。据我们所知,有关HeNB安全性的任何相关研究以前都没有发表过。为此,本文提出了一种适用于HeNB的改进的认证和密钥协商机制,该机制可以适应代理签名和代理签名的代理签名。通过我们的详尽分析,我们得出的结论是,该提议不仅可以防止各种安全威胁,而且还可以实现距用户可容忍的身份验证延迟的最小距离。

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