A High-Speed Elliptic Curve Cryptography Processor for Teleoperated Systems Security

Author:

Xiao Yong1ORCID,Lin Weibin1,Zhao Yun1,Cui Chao1,Cai Ziwen1

Affiliation:

1. Electric Power Research Institute of CSG, Guangzhou, Guangdong, 510663, China

Abstract

Teleoperated robotic systems are those in which human operators control remote robots through a communication network. The deployment and integration of teleoperated robot’s systems in the medical operation have been hampered by many issues, such as safety concerns. Elliptic curve cryptography (ECC), an asymmetric cryptographic algorithm, is widely applied to practical applications because its far significantly reduced key length has the same level of security as RSA. The efficiency of ECC on GF (p) is dictated by two critical factors, namely, modular multiplication (MM) and point multiplication (PM) scheduling. In this paper, the high-performance ECC architecture of SM2 is presented. MM is composed of multiplication and modular reduction (MR) in the prime field. A two-stage modular reduction (TSMR) algorithm in the SCA-256 prime field is introduced to achieve low latency, which avoids more iterative subtraction operations than traditional algorithms. To cut down the run time, a schedule is put forward when exploiting the parallelism of multiplication and MR inside PM. Synthesized with a 0.13 um CMOS standard cell library, the proposed processor consumes 341.98k gate areas, and each PM takes 0.092 ms.

Funder

Independent High Safe Security Chip Research for the Metering and Electricity Program

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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1. A Survey of the Social Internet of Vehicles: Secure Data Issues, Solutions, and Federated Learning;IEEE Intelligent Transportation Systems Magazine;2023-03

2. Implementation of a Safe and Efficient Point Multiplication for SM2 Algorithm;2023 IEEE 6th Information Technology,Networking,Electronic and Automation Control Conference (ITNEC);2023-02-24

3. A Novel Low-Area Point Multiplication Architecture for Elliptic-Curve Cryptography;Electronics;2021-11-04

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