This article presents a latency-optimized implementation of the SIMECK lightweight block cipher on a field-programmable-gate-array (FPGA) platform with a block and key lengths of 32 and 64 bits. The critical features of our architecture include parallelism, pipelining, and a dedicated controller. Parallelism splits the digits of the key and data blocks into smaller segments. Then, we use each segmented key and data block in parallel for encryption and decryption computations. Splitting key and data blocks helps reduce the required clock cycles. A two-stage pipelining is used to shorten the critical path and to improve the clock frequency. A dedicated controller is implemented to provide control functionalities. For the performance evaluatio...
Security mechanisms to protect our systems and data from malicious adversaries have become essential...
Abstract—In this paper, two different FPGA implementa-tions of the lightweight cipher PRESENT are pr...
Abstract. LED and PHOTON are new ultra-lightweight cryptographic algorithms aiming at resource-const...
This article presents a latency-optimized implementation of the SIMECK lightweight block cipher on a...
Recently, due to the advent of resource-constrained trends, such as smartphones and smart devices, t...
The technical analysis used in determining which of the NESSIE candidates will be selected as a stan...
We introduce SPEEDY, a family of ultra low-latency block ciphers. We mix engineering expertise into ...
Abstract. The technical analysis used in determining which of the NESSIE candidates will be selected...
The lightweight cryptography is used for low available resources devices such as radio frequency ide...
NESSIE is a 3-year research project (2000-2002). The goal of the project is to put forward some algo...
NESSIE is a 3-year research project (2000-2002). The goal of the project is to put forward some algo...
We introduce SPEEDY, a family of ultra low-latency block ciphers. We mix engineering expertise into ...
SEA – Scalable Encryption Algorithm is a block cipher based symmetric encryption scheme, particularl...
Abstract—Fast stream ciphers are used extensively for en-crypted data transmission in mobile network...
This paper presents a block cipher that is optimized with respect to latency when implemented in har...
Security mechanisms to protect our systems and data from malicious adversaries have become essential...
Abstract—In this paper, two different FPGA implementa-tions of the lightweight cipher PRESENT are pr...
Abstract. LED and PHOTON are new ultra-lightweight cryptographic algorithms aiming at resource-const...
This article presents a latency-optimized implementation of the SIMECK lightweight block cipher on a...
Recently, due to the advent of resource-constrained trends, such as smartphones and smart devices, t...
The technical analysis used in determining which of the NESSIE candidates will be selected as a stan...
We introduce SPEEDY, a family of ultra low-latency block ciphers. We mix engineering expertise into ...
Abstract. The technical analysis used in determining which of the NESSIE candidates will be selected...
The lightweight cryptography is used for low available resources devices such as radio frequency ide...
NESSIE is a 3-year research project (2000-2002). The goal of the project is to put forward some algo...
NESSIE is a 3-year research project (2000-2002). The goal of the project is to put forward some algo...
We introduce SPEEDY, a family of ultra low-latency block ciphers. We mix engineering expertise into ...
SEA – Scalable Encryption Algorithm is a block cipher based symmetric encryption scheme, particularl...
Abstract—Fast stream ciphers are used extensively for en-crypted data transmission in mobile network...
This paper presents a block cipher that is optimized with respect to latency when implemented in har...
Security mechanisms to protect our systems and data from malicious adversaries have become essential...
Abstract—In this paper, two different FPGA implementa-tions of the lightweight cipher PRESENT are pr...
Abstract. LED and PHOTON are new ultra-lightweight cryptographic algorithms aiming at resource-const...