Javascript must be enabled to continue!
Implementation of Speed-Efficient Key-Scheduling Process of AES for Secure Storage and Transmission of Data
View through CrossRef
Nowadays, a large number of digital data are transmitted worldwide using wireless communications. Therefore, data security is a significant task in communication to prevent cybercrimes and avoid information loss. The Advanced Encryption Standard (AES) is a highly efficient secure mechanism that outperforms other symmetric key cryptographic algorithms using message secrecy. However, AES is efficient in terms of software and hardware implementation, and numerous modifications are done in the conventional AES architecture to improve the performance. This research article proposes a significant modification to the AES architecture’s key expansion section to increase the speed of producing subkeys. The fork–join model of key expansion (FJMKE) architecture is developed to improve the speed of the subkey generation process, whereas the hardware resources of AES are minimized by avoiding the frequent computation of secret keys. The AES-FJMKE architecture generates all of the required subkeys in less than half the time required by the conventional architecture. The proposed AES-FJMKE architecture is designed and simulated using the Xilinx ISE 5.1 software. The Field Programmable Gate Arrays (FPGAs) behaviour of the AES-FJMKE architecture is analysed by means of performance count for hardware resources, delay, and operating frequency. The existing AES architectures such as typical AES, AES-PNSG, AES-AT, AES-BE, ISAES, AES-RS, and AES-MPPRM are used to evaluate the efficiency of AES-FJMKE. The AES-FJMKE implemented using Spartan 6 FPGA used fewer slices (i.e., 76) than the AES-RS.
Title: Implementation of Speed-Efficient Key-Scheduling Process of AES for Secure Storage and Transmission of Data
Description:
Nowadays, a large number of digital data are transmitted worldwide using wireless communications.
Therefore, data security is a significant task in communication to prevent cybercrimes and avoid information loss.
The Advanced Encryption Standard (AES) is a highly efficient secure mechanism that outperforms other symmetric key cryptographic algorithms using message secrecy.
However, AES is efficient in terms of software and hardware implementation, and numerous modifications are done in the conventional AES architecture to improve the performance.
This research article proposes a significant modification to the AES architecture’s key expansion section to increase the speed of producing subkeys.
The fork–join model of key expansion (FJMKE) architecture is developed to improve the speed of the subkey generation process, whereas the hardware resources of AES are minimized by avoiding the frequent computation of secret keys.
The AES-FJMKE architecture generates all of the required subkeys in less than half the time required by the conventional architecture.
The proposed AES-FJMKE architecture is designed and simulated using the Xilinx ISE 5.
1 software.
The Field Programmable Gate Arrays (FPGAs) behaviour of the AES-FJMKE architecture is analysed by means of performance count for hardware resources, delay, and operating frequency.
The existing AES architectures such as typical AES, AES-PNSG, AES-AT, AES-BE, ISAES, AES-RS, and AES-MPPRM are used to evaluate the efficiency of AES-FJMKE.
The AES-FJMKE implemented using Spartan 6 FPGA used fewer slices (i.
e.
, 76) than the AES-RS.
Related Results
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
BACKGROUND
Access to potable drinking water and sufficient sanitation continues to be an urgent global concern, particularly in developing regions where con...
Safety and Efficacy of Atezolizumab in Ovarian Cancer
Safety and Efficacy of Atezolizumab in Ovarian Cancer
Abstract
Introduction
Although the efficacy of PD-L1 blockade has been evaluated in analyses that combine pharmacologically distinct antibodies, the specific efficacy and safety of...
Design and implementation of MAES (modified Advanced Encryption Standard) algorithm in ANDROID for multimedia applications
Design and implementation of MAES (modified Advanced Encryption Standard) algorithm in ANDROID for multimedia applications
The most advanced and popular security protocol for wireless communication is WPA2 which uses Counter Mode with CBC-MAC (cypher block chaining message authentication code) Protocol...
Methods for safety and endpoint ascertainment: identification of adverse events through scrutiny of negatively adjudicated events
Methods for safety and endpoint ascertainment: identification of adverse events through scrutiny of negatively adjudicated events
Abstract
Background
The primary goal of phase 2 and 3 clinical trials is to evaluate the safety and effectiveness of therapeutic interventions, and efficient and reproducible ascer...
Modified AES-128 with Boundary-Based Splitting and Dynamic Output Encryption
Modified AES-128 with Boundary-Based Splitting and Dynamic Output Encryption
Encryption is essential for maintaining the confidentiality, integrity, and authenticity of data in today’s digital landscape. As cyber threats continue to escalate, the implementa...
Carbon Storage Assurance Facility Enterprise (CarbonSAFE): Carbon Storage Infrastructure Development for a Sustainable Future
Carbon Storage Assurance Facility Enterprise (CarbonSAFE): Carbon Storage Infrastructure Development for a Sustainable Future
The U.S. Department of Energy (DOE) Office of Fossil Energy and Carbon Management’s (FECM) Carbon Transport and Storage (CTS) Program focuses on addressing technical and non-techni...
2358. Safety Profiles of Three Major Types of COVID-19 Vaccine among Two Cohorts of People Living with HIV
2358. Safety Profiles of Three Major Types of COVID-19 Vaccine among Two Cohorts of People Living with HIV
Abstract
Background
Existing data on adverse effects (AEs) of COVID-19 vaccines among people living with human immunodeficiency ...
Minimum Adversarial Examples
Minimum Adversarial Examples
Deep neural networks in the area of information security are facing a severe threat from adversarial examples (AEs). Existing methods of AE generation use two optimization models: ...

