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Compact and Simple RLWE Based Key Encapsulation Mechanism

机译:基于紧凑和简单的RLWE的密钥封装机制

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摘要

In this paper, we propose a key encapsulation scheme based on NewHope and Kyber, two NIST post-quantum standardization project candidates. Our scheme is based on NewHope, thus it is simple and has fast implementation while it is making use of smaller key sizes and easily changeable security level advantages of Kyber. The scheme heavily use recent advances on Number Theoretic Transform (NTT) in a way that transformation from one degree polynomial to another is easy. To make it possible, we changed the definition of component in component-wise multiplication during polynomial multiplication and show that changing security level only requires to change the size of polynomial and the definition of component. Our scheme has 11.5% smaller communication cost for the same security level comparing with NewHope. In addition, it is at least 17% faster C implementation comparing with non-optimized Kyber implementation from the first round of the NIST standardization process.
机译:在本文中,我们提出了一个基于NewHope和Kyber的密钥封装方案,这是两个NIST量子后标准化项目的候选人。我们的方案基于NewHope,因此它使用简单的密钥大小和Kyber易于更改的安全级别优势,并且操作简单且实现快速。该方案大量使用了数论变换(NTT)的最新进展,使得从一个多项式到另一个多项式的转换变得容易。为了使之成为可能,我们在多项式乘法过程中更改了按分量乘法的分量的定义,并表明更改安全级别仅需要更改多项式的大小和分量的定义。与NewHope相比,在相同安全级别下,我们的方案的通信成本降低了11.5%。此外,与第一轮NIST标准化流程中未优化的Kyber实施相比,它的C实施速度至少快17%。

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