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Elliptic curve based zero knowledge proofs and their applicability on resource constrained devices

机译:基于椭圆曲线的零知识证明及其在资源受限设备上的适用性

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摘要

As the Internet of Things (IOT) arises, the use of low-end devices on a daily basis increases. The wireless nature of communication that these devices provide raises security and privacy issues. For protecting a user's privacy, cryptography offers the tool of zero knowledge proofs (ZKP). In this paper, we study well-established ZKP protocols based on the discrete logarithm problem and we adapt them to the Elliptic Curve Cryptography (ECC) setting, which consists an ideal candidate for embedded implementations. Then, we implement the proposed protocols on Wiselib, a generic and open source algorithmic library. For the first time, we present a thorough evaluation of the protocols on two popular hardware platforms equipped with low end microcontrollers (Jennic JN5139, TI MSP430) and 802.15.4 RF transceivers, in terms of code size, execution time, message size and energy requirements. This work's results can be used from developers who wish to achieve certain levels of privacy in their applications. © 2011 IEEE.
机译:随着物联网(IOT)的兴起,低端设备的使用量每天都在增加。这些设备提供的通信的无线性质引发了安全性和隐私问题。为了保护用户的隐私,加密技术提供了零知识证明(ZKP)工具。在本文中,我们研究了基于离散对数问题的成熟的ZKP协议,并将其调整为椭圆曲线密码学(ECC)设置,该椭圆曲线密码学是嵌入式实现的理想选择。然后,我们在通用开放源代码算法库Wiselib上实现建议的协议。首次,我们在代码大小,执行时间,消息大小和能耗方面,对配备低端微控制器(Jennic JN5139,TI MSP430)和802.15.4 RF收发器的两个流行硬件平台上的协议进行了全面评估。要求。希望在其应用程序中实现一定程度的隐私的开发人员可以使用这项工作的结果。 ©2011 IEEE。

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