Power/Area-Efficient ECC Processor Implementation for Resource-Constrained Devices

Author:

Zeghid Medien1ORCID,Sghaier Anissa2,Ahmed Hassan Yousif1ORCID,Abdalla Osman Ahmed3

Affiliation:

1. Department of Electrical Engineering, College of Engineering in Wadi Alddawasir, Prince Sattam Bin Abdulaziz University, Wadi Alddawasir 11991, Saudi Arabia

2. Electronics and Micro-Electronics Laboratory, Faculty of Sciences, University of Monastir, Monastir 5000, Tunisia

3. Department of Computer Science, University College of Tayma, University of Tabuk, Tabuk 71491, Saudi Arabia

Abstract

The use of resource-constrained devices is rising nowadays, and these devices mostly operate with sensitive data. Consequently, security is a key issue for these devices. In this paper, we propose a compact ECC (elliptic curve cryptography) architecture for resource-constrained devices based on López–Dahab (LD) projective point arithmetic operations on GF(2m). To achieve an efficient area-power hardware ECC implementation, an efficient digit-serial multiplier is developed. The proposed multiplier is built on a Bivariate Polynomial Basis representation and a modified Radix-n Interleaved Multiplication (mRnIM) method (for area and power complexities reduction). Furthermore, the LD-Montgomery point multiplication algorithm is adjusted for accurate scheduling in the compact ECC architecture to eliminate data reliance and improve signal management. Meanwhile, the area complexity is reduced by reuse of resources, and clock gating and asynchronous counter are exploited to reduce the power consumption. Finally, the proposed compact ECC architecture is implemented over GF(2m) (m = 163, 233, 283, 409, and 571) on Xilinx FPGAs’ (Field-Programmable Gate Array) Virtex 5, Virtex 6, and Virtex 7, showing that the efficiency of this design outperforms to date when compared to reported works individually. It utilizes less area and consumes low power. The FPGA results clearly demonstrate that the proposed ECC architecture is appropriate for constraint-resources devices.

Funder

the Deputyship for Research & Innovation, Ministry of Education in Saudi Arabia

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference33 articles.

1. Astorga, J., Barcelo, M., Urbieta, A., and Jacob, E. (2022). Revisiting the Feasibility of Public Key Cryptography in Light of IIoT Communications. Sensors, 22.

2. Miller, V.S. (1986, January 18–22). Use of elliptic curves in cryptography. Proceedings of the Advances in Cryptology—CRYPTO’85, Santa Barbara, CA, USA.

3. (2004). Standard Specifications for Public Key Cryptography (Standard No. IEEE 1363-2000).

4. (2010). Recommended Elliptic Curve Domain Parameters, Standards for Efficient Cryptography 2 (Standard No. SEC2).

5. Design of an Elliptic Curve Cryptography Processor for RFID Tag Chips;Liu;Sensors,2014

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