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TinyPairing: A Fast and Lightweight Pairing-Based Cryptographic Library for Wireless Sensor Networks

机译:TinyPairing:用于无线传感器网络的基于轻量级配对的快速加密密码库

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Computing Bilinear Pairing on sensor platforms has become an important research topic since the introduction of pairing-based cryptography to Wireless Sensor Networks (WSNs). Some previous works have provided benchmarks for the pairing computation on sensors. However, a complete pairingbased cryptographic scheme requires much more than just a bilinear pairing operation, and little work has been done yet in this area. In this paper, we present the first fully functional pairing-based cryptographic library for WSNs. The library is fast and lightweight, and has an additional of one identity-based encryption scheme and two short signature schemes included. We also propose several new algorithms and techniques, and show that they significantly improve the speed and reduce the memory usage of the library. The performance results of implementing the three pairing-based cryptographic schemes show that pairingbased cryptosystems are feasible and applicable in WSNs. In particular, the amount of RAM and ROM taken by each of these pairing-based cryptographic schemes is no more than 10% and 20%, respectively, of the total capacities of a MICAz mote.
机译:自从将基于配对的密码学引入无线传感器网络(WSN)以来,在传感器平台上计算双线性配对已成为重要的研究课题。以前的一些工作为传感器配对计算提供了基准。但是,一个完整的基于配对的密码方案不仅需要双线性配对操作,而且在该领域还没有完成任何工作。在本文中,我们介绍了第一个针对WSN的全功能基于配对的密码库。该库既快速又轻巧,并且附加了一个基于身份的加密方案和两个简短签名方案。我们还提出了几种新的算法和技术,并表明它们可以显着提高速度并减少库的内存使用。实施三种基于配对的密码方案的性能结果表明,基于配对的密码系统是可行的,并且适用于WSN。特别地,这些基于配对的加密方案中的每一种所占用的RAM和ROM的量分别不超过MICAz节点总容量的10%和20%。

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