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Optimized Identity-Based Encryption from Bilinear Pairing for Lightweight Devices

机译:轻量级设备的双线性配对优化基于身份的加密

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摘要

Lightweight devices such as smart cards and RFID tags have a very limited hardware resource, which could be too weak to cope with asymmetric-key cryptography. It would be desirable if the cryptographic algorithm could be optimized in order to better use hardware resources. In this paper, we demonstrate how identity-based encryption algorithms from bilinear pairing can be optimized so that hardware resources can be saved. We notice that the identity-based encryption algorithms from bilinear pairing in the literature must perform both elliptic curve group operations and multiplicative group operations, which consume a lot of hardware resources. We manage to eliminate the need of multiplicative group operations for encryption. This is a significant discovery since the hardware structure can be simplified for implementing pairing-based cryptography. Our experimental results show that our encryption algorithm saves up to 47 percent memory (27,239 RAM bits) in FPGA implementation.
机译:诸如智能卡和RFID标签之类的轻型设备的硬件资源非常有限,可能太弱而无法应对非对称密钥加密。如果可以优化密码算法以便更好地使用硬件资源,将是合乎需要的。在本文中,我们演示了如何优化双线性配对中基于身份的加密算法,从而可以节省硬件资源。我们注意到,文献中基于双线性配对的基于身份的加密算法必须同时执行椭圆曲线组操作和乘法组操作,这会消耗大量硬件资源。我们设法消除了对乘法组操作进行加密的需求。这是一个重大发现,因为可以简化硬件结构以实现基于配对的加密。我们的实验结果表明,在FPGA实现中,我们的加密算法最多可节省47%的内存(27,239 RAM位)。

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