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39篇 您的检索式:作者名="RIJMEN"
    题名 作者 年代 出处 被引量
1RECTANGLE: a bit-slice lightweight block cipher suitable for multiple platforms显示文摘In this paper, we propose a new lightweight block cipher named RECTANGLE. The main idea of the design of RECTANGLE is to allow lightweight and fast implementations using bit-slice techniques. RECTANGLE uses an SP-network. The substitution layer consists of 16 4 × 4 S-boxes in parallel. The permutation layer is composed of 3 rotations. As shown in this paper, RECTANGLE offers great performance in both hardware and software environment, which provides enough flexibility for different application scenario. The following are3 main advantages of RECTANGLE. First, RECTANGLE is extremely hardware-friendly. For the 80-bit key version, a one-cycle-per-round parallel implementation only needs 1600 gates for a throughput of 246 Kbits/s at100 k Hz clock and an energy efficiency of 3.0 p J/bit. Second, RECTANGLE achieves a very competitive software speed among the existing lightweight block ciphers due to its bit-slice style. Using 128-bit SSE instructions,a bit-slice implementation of RECTANGLE reaches an average encryption speed of about 3.9 cycles/byte for messages around 3000 bytes. Last but not least, we propose new design criteria for the RECTANGLE S-box.Due to our careful selection of the S-box and the asymmetric design of the permutation layer, RECTANGLE achieves a very good security-performance tradeoff. Our extensive and deep security analysis shows that the highest number of rounds that we can attack, is 18(out of 25).ZHANG WenTao BAO ZhenZhen LIN DongDai Vincent RIJMEN YANG Bo Han Ingrid VERBAUWHEDE 2015Science China Chemistry2015,58,12:22
2Linear hulls with correlation zero and linear cryptanalysis of block ciphers显示文摘Andrey Bogdanov Vincent Rijmen 2014Designs Codes and Cryptography2014,,3:2
3Linear hulls with correlation zero and linear cryptanalysis of block ciphers显示文摘Andrey Bogdanov Vincent Rijmen 2014Designs, Codes and Cryptography2014,,3:1
4Impossible meet-in-the-middle fault analysis on the LED lightweight cipher in VANETs显示文摘With the expansion of wireless technology, vehicular ad-hoc networks(VANETs) are emerging as a promising approach for realizing smart cities and addressing many serious traffic problems, such as road safety, convenience, and efficiency. To avoid any possible rancorous attacks, employing lightweight ciphers is most effective for implementing encryption/decryption, message authentication, and digital signatures for the security of the VANETs. Light encryption device(LED) is a lightweight block cipher with two basic keysize variants: LED-64 and LED-128. Since its inception, many fault analysis techniques have focused on provoking faults in the last four rounds to derive the 64-bit and 128-bit secret keys. It is vital to investigate whether injecting faults into a prior round enables breakage of the LED. This study presents a novel impossible meet-in-the-middle fault analysis on a prior round. A detailed analysis of the expected number of faults is used to uniquely determine the secret key. It is based on the propagation of truncated differentials and is surprisingly reminiscent of the computation of the complexity of a rectangle attack. It shows that the impossible meet-in-the-middle fault analysis could successfully break the LED by fault injections.Wei LI Vincent RIJMEN Zhi TAO Qingju WANG Hua CHEN Yunwen LIU Chaoyun LI Ya LIU 2018Science China(Information Sciences)2018,61,3:1
5Toward secure public key blockwise fragile authentication watermarking显示文摘Barreto P S L M Kim H Y Rijmen V 2002lEE Proc Vision Image Signal Processing2002,149,2:1
6AES implementation on a grain of sand显示文摘Feldhofer M Wolkerstorfer J Rijmen V 2005Information Security IEEE Proceedings2005,152,1:1
7The Block Cipher Square显示文摘Joan Daemen Lars Knudsen Vincent Rijmen 0,,:1
8Toward secure public2 key blockwise fragile authentication watermarking 显示文摘Barreto P S L M Kim H Y Rijmen V 2002IEE Proceedings of Vision Image and Signal Processing2002,149,2:1
9AES proposal:Rijndael显示文摘Joan Daemen Vincent Rijmen 1999The Rijn-dael Block Cipher1999,39,:1
10Similarity in depressive symptom profile in a population-based study of migrants in the Netherlands 显示文摘Schrier AC de Wit MA Rijmen F 2010Soc Psychiatry Psychiatr Epidemiol2010,45,10:1
11Using normal bases for compact hardware implementations of the AES S-box 显示文摘Svetla Nikova Vincent Rijmen Martin Schlaffer 2008Lecture Notes in Computer Science2008,5229,:1
12The block cipher square显示文摘DAEMEN J KUNDSEN L RIJMEN V 1997Dr Dobb''s Journal of Software Tools for Professional Programmer1997,22,10:1
13Adaptive biasing CMOS amplifier显示文摘Degrauwe M Rijmenants J Vittoz E A 1982IEEE J Sol Sta Circ1982,17,3:1
14Formal Relations and an Empirical Comparison among the Bi-Factor,the Testlet,and a Second-Order Multidimensional IRT Model显示文摘Rijmen F 2010Journal of Educational Measurement2010,47,3:1
15AES Proposal:Rijndael显示文摘Joan Daemen Vincent Rijmen 1999Document Version1999,,6:1
16Toward Secure Public-key Blockwise Fragile Authentication Watermarking显示文摘Barreto P S L M Kim H Y Rijmen V 2002IEE Proceedings -Vision Image and Signal Processing2002,149,2:1
17Rijndael: the advanced encryption standard显示文摘DAEMEN J RIJMEN V 0,,:1
18The Design of Rijindael : AES - the Advanced Eneryption Standard 显示文摘Joan Daemen Vincent Rijmen 2003Springer Verlag2003,,:1
19A Relation between a Between - itemMultidimensional IRT Model and the Mixture Rasch model 显示文摘Rijmen F De Boeck P 2005Psychometrika2005,70,3:1
20Statistical inference in generalized linear mixed models: a review显示文摘Tuerlinckx F Rijmen F Verbeke G 2006Br J Math Stat Psychol2006,59,2:1
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