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FPGA Can be Implemented Using Advanced Encryption Standard Algorithm | ||
journal of Artificial Intelligence in Electrical Engineering | ||
مقاله 4، دوره 3، شماره 9، شهریور 2014، صفحه 27-33 اصل مقاله (896.02 K) | ||
نویسنده | ||
Shahin Shafei | ||
چکیده | ||
This paper mainly focused on implementation of AES encryption and decryption standard AES- 128. All the transformations of both Encryption and Decryption are simulated using an iterative design approach in order to minimize the hardware consumption. This method can make it a very low-complex architecture, especially in saving the hardware resource in implementing the AES InverseSub Bytes module and Inverse Mix columns module. As the S -box is implemented by look-up-table in this design, the chip area and power can still be optimized. The new Mix Column transformation improves the performance of the inverse cipher and also reduces the complexity of the system that supports the inverse cipher. As a result this transformation has relatively low relevant diffusion power .This allows for scaling of the architecture towards vulnerable portable and cost-sensitive communications devices in consumer and military applications. | ||
کلیدواژهها | ||
AES؛ Encryption؛ decryption؛ FPGA | ||
مراجع | ||
1]Daemen J., and Rijmen V, "The Design of Rijndael: AES-the Advanced Encryption Standard", Springer-Verlag , 2002 [2]FIPS 197, “Advanced Encryption Standard (AES)”, November 26, 2001. [3]Tessier, R., and Burleson, W., “Reconfigurable computing for digital signal processing: a survey”, J.VLSI Signal Process, 2001, 28, (1-2), pp.7-27. [4]Ahmad, N.; Hasan, R.; Jubadi, W.M; “Design of AES S-Box using combinational logic optimization”, IEEE Symposium on Industrial Electronics & Applications (ISIEA), pp. 696-699, 2010. | ||
آمار تعداد مشاهده مقاله: 823 تعداد دریافت فایل اصل مقاله: 1,410 |