首页> 外文会议>IFIP WG 8.4/8.9 International Cross Domain Conference and Workshop on Multidisciplinary Research and Practice for Business, Enterprise and Health Information Systems >Shifting Primes: Extension of Pseudo-Mersenne Primes to Optimize ECC for MSP430-Based Future Internet of Things Devices
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Shifting Primes: Extension of Pseudo-Mersenne Primes to Optimize ECC for MSP430-Based Future Internet of Things Devices

机译:转换素线:扩展伪Mersenne的Primes,以优化ECC为MSP430的未来物联网设备

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Security support for small and smart devices is one of the most important issues in the Future Internet of things, since technologies such as 6LoWPAN are opening the access to the real world through Internet. 6LoWPAN devices are highly constrained in terms of computational capabilities, memory, communication bandwidth, and battery power. Therefore, in order to support security, it is necessary to implement new optimized and scalable cryptographic mechanisms, which provide security, authentication, privacy and integrity to the communications. Our research is focused on the mathematical optimization of cryptographic primitives for Public Key Cryptography (PKC) based on Elliptic Curve Cryptography (ECC) for 6LoWPAN. Specifically, the contribution presented is a set of mathematical optimizations and its implementation for ECC in the 6LoWPAN devices based on the microprocessor Texas Instrument MSP430. The optimizations presented are focused on Montgomery multiplication operation, which has been implemented with bit shifting, and the definition of special pseudo-Mersenne primes, which we have denominated "shifting primes". These optimizations allow to implement the scalar multiplication (operation used for ECC operations) reaching a time of 1, 2665 seconds, which is 42, 8% lower of the reached by the state of the art solution TinyECC (2, 217 seconds).
机译:对于小型和智能设备的安全支持是未来事物互联网中最重要的问题之一,因为6LowPan等技术正在通过互联网开放对现实世界的访问。 6LowPAN设备在计算能力,存储器,通信带宽和电池电量方面受到高度约束。因此,为了支持安全性,有必要实现新的优化和可扩展的加密机制,它为通信提供安全性,身份验证,隐私和完整性。我们的研究专注于基于椭圆曲线加密(ECC)对6LowPan的公钥加密(PKC)的加密原语数学优化。具体地,所呈现的贡献是基于微处理器Texas仪器MSP430的6LowPAN设备中的ECC的一组数学优化及其实现。所提出的优化专注于蒙哥马利乘法操作,该操作已经用位转移实现,以及特殊的伪Mersenne素材的定义,我们指出了“移位素材”。这些优化允许实现标量乘法(用于ECC操作的操作),达到1,2665秒的时间,这是由ART Solution Tinyecc(2,217秒)的状态达到的42,8%。

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