Title
An Ecc Crypto Engine Based On Binary Edwards Elliptic Curve For Low-Cost Rfid Tag Chip
Abstract
This paper presents a high-performance 163-bit elliptic curve cryptographic (ECC) engine, based on binary Edwards curve, for low-cost radio frequency identification (RFID) tag chips. A security-enhanced ECC processor is designed and implemented in the algorithm level. This paper analyzes and optimizes the Karatsuba-Ofman divide and rule algorithm multiplier in finite field in ECC ALU module and implements the design efficiently in order to meet the power, area and timing requirements of RFID tags. According to the simulation results, the optimized design requires 14,200 equivalent gates area and 23,023 cycles with 0.93 mu J energy consumption for one encryption process.
Year
Venue
Keywords
2015
PROCEEDINGS OF 2015 IEEE 11TH INTERNATIONAL CONFERENCE ON ASIC (ASICON)
Radio Frequency Identification (RFID), Elliptical Curve Cryptography (ECC), Binary Edwards Curve, Karatsuba-Ofman multiplication algorithm
Field
DocType
ISSN
Elliptic Curve Digital Signature Algorithm,Computer science,Encryption,Chip,Elliptic curve cryptography,Radio-frequency identification,Elliptic curve,Edwards curve,Curve25519,Embedded system
Conference
2162-7541
Citations 
PageRank 
References 
0
0.34
0
Authors
6
Name
Order
Citations
PageRank
Cheng Wu131.08
Fan Yang210122.74
Xi Tan37314.27
Chao Wang4895190.04
Feng Chen501.01
Junyu Wang6256.88