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Efficient and Anonymous Two-Factor User Authentication in WirelessSensor Networks: Achieving User Anonymity with Lightweight SensorComputation

机译:无线中的高效匿名两要素用户身份验证传感器网络:使用轻型传感器实现用户匿名计算方式

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摘要

A smart-card-based user authentication scheme for wireless sensor networks (hereafter referred to as a SCA-WSN scheme) is designed to ensure that only users who possess both a smart card and the corresponding password are allowed to gain access to sensor data and their transmissions. Despite many research efforts in recent years, it remains a challenging task to design an efficient SCA-WSN scheme that achieves user anonymity. The majority of published SCA-WSN schemes use only lightweight cryptographic techniques (rather than public-key cryptographic techniques) for the sake of efficiency, and have been demonstrated to suffer from the inability to provide user anonymity. Some schemes employ elliptic curve cryptography for better security but require sensors with strict resource constraints to perform computationally expensive scalar-point multiplications; despite the increased computational requirements, these schemes do not provide user anonymity. In this paper, we present a new SCA-WSN scheme that not only achieves user anonymity but also is efficient in terms of the computation loads for sensors. Our scheme employs elliptic curve cryptography but restricts its use only to anonymous user-to-gateway authentication, thereby allowing sensors to perform only lightweight cryptographic operations. Ourscheme also enjoys provable security in a formal model extended from the widelyaccepted Bellare-Pointcheval-Rogaway (2000) model to capture the user anonymityproperty and various SCA-WSN specific attacks (e.g., stolen smart card attacks,node capture attacks, privileged insider attacks, and stolen verifierattacks).
机译:设计用于无线传感器网络的基于智能卡的用户身份验证方案(以下称为SCA-WSN方案),以确保仅允许同时拥有智能卡和相应密码的用户才能访问传感器数据和他们的传播。尽管近年来进行了许多研究工作,但是设计一种实现用户匿名的有效SCA-WSN方案仍然是一项艰巨的任务。为了提高效率,大多数已发布的SCA-WSN方案仅使用轻量级加密技术(而不是公共密钥加密技术),并且已证明其无法提供用户匿名性。某些方案采用椭圆曲线密码术以提高安全性,但需要具有严格资源限制的传感器来执行计算量大的标量点乘法。尽管增加了计算需求,但是这些方案并未提供用户匿名性。在本文中,我们提出了一种新的SCA-WSN方案,该方案不仅可以实现用户匿名,而且在传感器的计算负荷方面也很有效。我们的方案采用椭圆曲线加密,但仅将其使用限制于匿名用户到网关身份验证,从而允许传感器仅执行轻量级的加密操作。我们的该方案在广泛推广的正式模型中也享有可证明的安全性接受Bellare-Pointcheval-Rogaway(2000)模型来捕获用户匿名财产和各种SCA-WSN特定攻击(例如,被盗的智能卡攻击,节点捕获攻击,特权内部攻击和验证程序被盗攻击)。

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