DocumentCode :
3532152
Title :
A high throughput low power compact AES S-box implementation using composite field arithmetic and Algebraic Normal Form representation
Author :
Wong, M.M. ; Wong, M.L.D.
Author_Institution :
Swinburne Univ. of Technol. (Sarawak Campus), Kuching, Malaysia
fYear :
2010
fDate :
3-4 Aug. 2010
Firstpage :
318
Lastpage :
323
Abstract :
In this work, our aim is to achieve a high throughput compact AES S-box with minimal power consumption. In most VLSI implementations, there exist a definite trade off between hardware performance and its operating requirements. In this work, we propose a novel pipelining arrangement over the compact composite field AES S-box such that both high throughput and low power are optimized. Our S-box outperformed the conventional pipelined AES S-box from three perspectives, (i) the most optimum (compact and short critical path) composite field AES S-box is used, which has different arithmetic properties compared to previous works; (ii) Algebraic Normal Form (ANF) representation is utilized to induce consistent and optimal pipelining arrangement; and (iii) Fine-grain pipelining is applied in the GF (24) multiplier. As such, a higher throughput rate is attained and at the same time the dynamic hazards is mitigated. A high throughput of 3.3 Gbps with a low power consumption of 34.98 mW and total of 95 LE (Logic Element) composite field AES S-box is reported in this work.
Keywords :
algebra; cryptography; AES S-box; VLSI; algebraic normal form representation; bit rate 3.3 Gbit/s; composite field arithmetic; fine-grain pipelining; power 34.98 mW; Arithmetic; Circuits; Cryptography; Energy consumption; Hardware; Hazards; NIST; Pipeline processing; Throughput; Very large scale integration; Advanced Encryption Standard (AES) S-box; Algebraic Normal Form (ANF); composite field arithmetic (CFA); low power; pipeline;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Quality Electronic Design (ASQED), 2010 2nd Asia Symposium on
Conference_Location :
Penang
Print_ISBN :
978-1-4244-7809-5
Type :
conf
DOI :
10.1109/ASQED.2010.5548317
Filename :
5548317
Link To Document :
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