Title
An efficient countermeasure against correlation power-analysis attacks with randomized montgomery operations for DF-ECC processor
Abstract
Correlation power-analysis (CPA) attacks are a serious threat for cryptographic device because the key can be disclosed from data-dependent power consumption. Hiding power consumption of encryption circuit can increase the security against CPA attacks, but it results in a large overhead for cost, speed, and energy dissipation. Masking processed data such as randomized scalar or primary base point on elliptic curve is another approach to prevent CPA attacks. However, these methods requiring pre-computed data are not suitable for hardware implementation of real-time applications. In this paper, a new CPA countermeasure performing all field operations in a randomized Montgomery domain is proposed to eliminate the correlation between target and reference power traces. After implemented in 90-nm CMOS process, our protected 521-bit dual-field elliptic curve cryptographic (DF-ECC) processor can perform one elliptic curve scalar multiplication (ECSM) in 4.57ms over GF(p521) and 2.77ms over GF(2409) with 3.6% area and 3.8% power overhead. Experiments from an FPGA evaluation board demonstrate that the private key of unprotected device will be revealed within 103 power traces, whereas the same attacks on our proposal cannot successfully extract the key value even after 106 measurements.
Year
DOI
Venue
2012
10.1007/978-3-642-33027-8_32
CHES
Keywords
Field
DocType
reference power trace,efficient countermeasure,power overhead,data-dependent power consumption,521-bit dual-field elliptic curve,elliptic curve scalar multiplication,power consumption,cpa attack,correlation power-analysis attack,elliptic curve,df-ecc processor,new cpa countermeasure,power trace,randomized montgomery operation,side channel attacks
Scalar multiplication,Dissipation,Computer science,Cryptography,Parallel computing,Field-programmable gate array,Theoretical computer science,Encryption,Side channel attack,Public-key cryptography,Elliptic curve
Conference
Volume
ISSN
Citations 
7428
0302-9743
5
PageRank 
References 
Authors
0.45
19
4
Name
Order
Citations
PageRank
Jen-Wei Lee1785.59
Szu-Chi Chung2382.91
Hsie-Chia Chang347449.13
Chen-Yi Lee41211152.40