scholarly journals Video Encryption and Decryption using Modified AES Algorithm

Author(s):  
Pavana M
Symmetry ◽  
2019 ◽  
Vol 11 (12) ◽  
pp. 1484 ◽  
Author(s):  
Oluwakemi Christiana Abikoye ◽  
Ahmad Dokoro Haruna ◽  
Abdullahi Abubakar ◽  
Noah Oluwatobi Akande ◽  
Emmanuel Oluwatobi Asani

The wide acceptability of Advanced Encryption Standard (AES) as the most efficient of all of the symmetric cryptographic techniques has further opened it up to more attacks. Efforts that were aimed at securing information while using AES is still being undermined by the activities of attackers This has further necessitated the need for researchers to come up with ways of enhancing the strength of AES. This article presents an enhanced AES algorithm that was achieved by modifying its SubBytes and ShiftRows transformations. The SubBytes transformation is modified to be round key dependent, while the ShiftRows transformation is randomized. The rationale behind the modification is to make the two transformations round key dependent, so that a single bit change in the key will produce a significant change in the cipher text. The conventional and modified AES algorithms are both implemented and evaluated in terms avalanche effect and execution time. The modified AES algorithm achieved an avalanche effect of 57.81% as compared to 50.78 recorded with the conventional AES. However, with 16, 32, 64, and 128 plain text bytes, the modified AES recorded an execution time of 0.18, 0.31, 0.46, and 0.59 ms, respectively. This is slightly higher than the results obtained with the conventional AES. Though a slightly higher execution time in milliseconds was recorded with the modified AES, the improved encryption and decryption strength via the avalanche effects measured is a desirable feat.


2021 ◽  
pp. 154-163
Author(s):  
Michael Babayan ◽  
Alexander Buglak ◽  
Nikita Gordov ◽  
Irina Pilipenko ◽  
Larisa Cherckesova ◽  
...  
Keyword(s):  

2014 ◽  
Vol 644-650 ◽  
pp. 1911-1914
Author(s):  
Shao Min Zhang ◽  
Yu Fang Gan ◽  
Bao Yi Wang

Considering the confidentiality and integrity of big data in cloud storage, a MapReduce-based AES parallelization scheme is designed by using MapReduce framework of the open source Hadoop in this paper. The scheme takes full advantage of MapReduce and modern cryptography technologies to parallelize AES encryption and decryption process, in the way of data decomposition, which speeds up the efficiency in the implementation of encryption and decryption. Meanwhile, mix plaintext, separate storage and other technical means are taken into account in this scheme to ensure the confidentiality and security of the key and the ciphertext. By analyzing the performance, it is proved that the time consumption of new scheme is significantly reduced comparing with the traditional method.


2013 ◽  
Vol 791-793 ◽  
pp. 1497-1500
Author(s):  
Jin Hui Zhao ◽  
Xiao Hong Wang

On the Internet, most of media information is transmitted in plaintext. Some others can easily tamper or intercut the information, so there are threats to those information transmitted in plaintext. This paper designs a model of video encryption which uses AES algorithm and the model is based on FPGA platform. The model does the encryption in paralleling on XUPV5-110T development board. The encryption model can ensure the security and integrity of media information during the transmission process between a certain links on the network.


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