Searching for "Rijndael/AES." – sorted by Relevance.
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Rijndael for AES
- ������ � ���� ������ ������� for AES Rijndael for AES Rijndael for AES Rijndael for AES Rijndael
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A Specification for The AES Algorithm Rijndael (by Joan Daemen & Vincent Rijmen) A
- A Specification for The AES Algorithm Rijndael (by Joan Daemen & Vincent Rijmen) A
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A 2.29 Gbits/sec, 56 mW Non-Pipelined Rijndael AES Encryption IC in a 1.8V, 0.18 m CMOS Technology
- A 2.29 Gbits/sec, 56 mW Non-Pipelined Rijndael AES Encryption IC in a 1.8V, 0.18 mm CMOS
- Cited by 5 (2 self) – Add To MetaCart
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Security of a wide trail design
- that are both efficient and secure against linear and differential cryptanalysis. Rijndael, the AES
- Cited by 1 (0 self) – Add To MetaCart
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Improving the Upper Bound on the Maximum Average Linear Hull Probability for Rijndael
- cryptanalysis. Application of this method to Rijndael (AES) yields an upper bound of UB = 2 \Gamma75 when 7
- Cited by 11 (6 self) – Add To MetaCart
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Reconfigurable Implementation for the AES Algorithm
- Rijndael (AES) implementations based on the Molen ¢¤£ -coded processor. Two types of FPGAs, Xilinx
- Cited by 1 (0 self) – Add To MetaCart
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for Rijndael
- by the authors in [11] for evaluating the provable security of the AES (Rijndael) against linear cryptanalysis
- Cited by 1 (1 self) – Add To MetaCart
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A High Performance VLSI Architecture for Advanced Encryption Standard(AES) Algorithm
- of architectures for the VLSI implementation of AES Rijndael algorithm are reported [4], [5], [6], [7], [8]. It can
- Cited by 4 (3 self) – Add To MetaCart
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Dual of New Method for Upper Bounding the Maximum Average Linear Hull Probability for SPNs
- (AES) Application of the above dual result to Rijndael (the AES selection) [2] is simple, since
- Cited by 3 (3 self) – Add To MetaCart
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PowerAttacksResistanceofCryptographicS-boxeswithaddedError
- researcheffortsinvolvingfaultinjectionandpoweranalysisattacks. Section3brieflydescribes theRijndael(AES)andKasumialgorithms. Ourproposedimplementationofthetwo
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