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Lattice-based Cryptography for IoT in A Quantum World: Are We Ready?

机译:在量子世界中用于物联网的基于格子的密码学:我们准备好了吗?

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The impending realization of scalable quantum computers has led to active research in Post Quantum Cryptography (PQC). The challenge is harder for embedded IoT (edge) devices, due to their pervasive diffusion in today's world as well as their stricter resources (tight area and energy budgets). Amongst various classes of quantum-resistant cryptography schemes, Lattice- based Cryptography (LBC) is emerging as one of the most viable, almost half of the `survivors' of second round of the NIST's PQC competition are lattice-based in construction. This paper surveys the practicality of deployment of these schemes. In this context, the state-of-the-art LBC implementations on the constrained devices (including low-power FPGAs and embedded microprocessors), leading in terms of low-power footprint, small area, compact bandwidth requirements and high performance is fairly evaluated and bench-marked. The work concludes by identifying a suite of some favorite LBC schemes in terms of various IoT critical performance bench-marks.
机译:可伸缩量子计算机的即将实现使人们对后量子密码学(PQC)进行了积极的研究。由于嵌入式物联网(边缘)设备在当今世界中的广泛普及以及其更严格的资源(紧凑的区域和能源预算),因此挑战面临着更大的挑战。在各种类型的抗量子密码方案中,基于格子的密码术(LBC)成为最可行的方法之一,在NIST PQC竞赛第二轮的“幸存者”中,几乎有一半是基于格网的构造。本文调查了部署这些方案的实用性。在这种情况下,公平地评估了受限设备(包括低功耗FPGA和嵌入式微处理器)在低功耗占位,小面积,紧凑带宽要求和高性能方面的领先水平的LBC实现。和基准。这项工作通过根据各种物联网关键性能基准确定一套最喜欢的LBC方案来结束。

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