Lightweight IBE scheme for Wireless Sensor nodes

B. S. Adiga, M. Rajan, Ravishankara Shastry, V. Shivraj, P. Balamuralidhar
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引用次数: 16

Abstract

Application of cryptography for secure Wireless Sensor Networks poses challenging problems because all the cryptographic algorithms are computationally intensive and wireless nodes have limited resources. In this paper, we describe an Identity Based Elliptic Curve Cryptosystem (IBE-ECC) based on Tate pairing which is lightweight without any Public Key Infrastructure (PKI) and no key exchanges. In addition, we propose a novel lightweight IBE-ECC scheme in which encryption is performed with no Tate pairing (computationally intensive) and is used only in decryption. This scheme is relevant for wireless nodes and in particular for Internet of Things (IoT) framework, wherein the wireless nodes do only message encryption, whereas the decryption is delegated to centralized servers or Gateways. We have also implemented our proposed scheme on a mobile phone with android platform for performance analysis. We observed that our proposed IBE-ECC scheme outperforms the existing IBE scheme in terms of complexity and efficiency of operation. Further, our scheme is based on super singular elliptic curves E/GF(p) where p is a special prime of the form Crandall primes. For such primes modular reduction can be implemented efficiently fast using Mohan-Adiga algorithm.
无线传感器节点的轻量级IBE方案
由于所有的加密算法都是计算密集型的,并且无线节点的资源有限,因此加密技术在安全无线传感器网络中的应用具有挑战性。本文描述了一种基于Tate对的基于身份的椭圆曲线密码系统(IBE-ECC),它是轻量级的,不需要任何公钥基础设施(PKI)和密钥交换。此外,我们提出了一种新的轻量级IBE-ECC方案,其中加密执行时没有Tate配对(计算密集型),仅用于解密。该方案适用于无线节点,特别是物联网(IoT)框架,其中无线节点只进行消息加密,而解密则委托给集中的服务器或网关。我们还在android平台的手机上实现了我们提出的方案进行性能分析。我们观察到,我们提出的IBE- ecc方案在操作的复杂性和效率方面优于现有的IBE方案。进一步,我们的方案是基于超奇异椭圆曲线E/GF(p),其中p是一个特殊素数,其形式为Crandall素数。对于这类素数,采用Mohan-Adiga算法可以快速高效地实现模约简。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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