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Enabling Full-Size Public-Key Algorithms on 8-Bit Sensor Nodes

机译:在8位传感器节点上启用全尺寸公钥算法

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In this article we present the fastest known implementation of a modular multiplication for a 160-bit standard compliant elliptic curve (secpl60rl) for 8-bit micro controller which are typically used in WSNs. The major part (77%) of the processing time for an elliptic curve operation such as ECDSA or EC Diffie-Hellman is spent on modular multiplication. We present an optimized arithmetic algorithm which significantly speed up ECC schemes. The reduced processing time also yields a significantly lower energy consumption of ECC schemes. With our implementation results we can show that a 160-bit modular multiplication can be performed in 0.39 ms on an 8-bit AVR processor clocked at 7.37 MHz. This brings the vision of asymmetric cryptography in the field of WSNs with all its benefits for key-distribution and authentication a step closer to reality.
机译:在本文中,我们为8位微控制器(通常用于WSN)中的160位标准兼容椭圆曲线(secp160r)提供了最快的模块化乘法实现。诸如ECDSA或EC Diffie-Hellman之类的椭圆曲线运算的大部分处理时间(77%)都花在了模块乘法上。我们提出了一种优化的算法,可以显着加快ECC方案的速度。减少的处理时间还可以显着降低ECC方案的能耗。通过我们的实施结果,我们可以证明,在时钟为7.37 MHz的8位AVR处理器上,可以在0.39 ms内执行160位模块化乘法。这带来了WSN领域中的非对称加密技术的愿景,它在密钥分发和身份验证方面的所有优势都离现实越来越近了。

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