A new and highly efficient architecture for elliptic curve scalar point multiplication is presented. To achieve the maximum architectural and timing improvements we have reorganized and reordered the critical path of the Lopez-Dahab scalar point multiplication architecture such that logic structures are implemented in parallel and operations in the critical path are diverted to noncritical paths. The results we obtained show that with G = 55 our proposed design is able to compute GF(2163) elliptic curve scalar multiplication in 9.6 μs with the maximum achievable frequency of 250 MHz on Xilinx Virtex-4 (XC4VLX200), where G is the digit size of the underlying digit-serial finite field multiplier. Another implementation variant for less resou...
This work presents a scalable digit-parallel finite field polynomial multiplier architecture with a ...
This paper presents an area efficient and high-speed FPGA implementation of scalar multiplication us...
Abstract — The crypto-processors are required to perform large number of additions and multiplicatio...
A new and highly efficient architecture for elliptic curve scalar point multiplication which is opti...
A new and highly efficient architecture for elliptic curve scalar point multiplication which is opti...
In this paper we present two classes of scalar multiplication hardware architectures that compute a ...
The higher computational complexity of an elliptic curve scalar point multiplication operation limit...
In this paper we present a scalar multiplication hardware architecture that computes a constant-time...
Abstract—We present a new hardware realization of fast elliptic curve Multi-Scalar Point Multiplicat...
Abstract. We present a new hardware architecture to compute scalar multiplications in the group of r...
Elliptic Curve Cryptography (ECC) is one of the most popular public-key cryptosystems (PKC) today. R...
National audienceThe scalar multiplication is the main operation of cryptographic protocols based on...
This paper presents a Point Multiplication (PM) architecture of Elliptic-Curve Cryptography (ECC) ov...
Elliptic curve cryptography (ECC) offers a viable alternative to Rivest-Shamir-Adleman (RSA) by deli...
Abstract. This paper presents a fast implementation to compute the scalar multiplication of elliptic...
This work presents a scalable digit-parallel finite field polynomial multiplier architecture with a ...
This paper presents an area efficient and high-speed FPGA implementation of scalar multiplication us...
Abstract — The crypto-processors are required to perform large number of additions and multiplicatio...
A new and highly efficient architecture for elliptic curve scalar point multiplication which is opti...
A new and highly efficient architecture for elliptic curve scalar point multiplication which is opti...
In this paper we present two classes of scalar multiplication hardware architectures that compute a ...
The higher computational complexity of an elliptic curve scalar point multiplication operation limit...
In this paper we present a scalar multiplication hardware architecture that computes a constant-time...
Abstract—We present a new hardware realization of fast elliptic curve Multi-Scalar Point Multiplicat...
Abstract. We present a new hardware architecture to compute scalar multiplications in the group of r...
Elliptic Curve Cryptography (ECC) is one of the most popular public-key cryptosystems (PKC) today. R...
National audienceThe scalar multiplication is the main operation of cryptographic protocols based on...
This paper presents a Point Multiplication (PM) architecture of Elliptic-Curve Cryptography (ECC) ov...
Elliptic curve cryptography (ECC) offers a viable alternative to Rivest-Shamir-Adleman (RSA) by deli...
Abstract. This paper presents a fast implementation to compute the scalar multiplication of elliptic...
This work presents a scalable digit-parallel finite field polynomial multiplier architecture with a ...
This paper presents an area efficient and high-speed FPGA implementation of scalar multiplication us...
Abstract — The crypto-processors are required to perform large number of additions and multiplicatio...