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Titlebook: Information Security Applications; 8th International Wo Sehun Kim,Moti Yung,Hyung-Woo Lee Conference proceedings 2007 Springer-Verlag Berli

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书目名称Information Security Applications
副标题8th International Wo
编辑Sehun Kim,Moti Yung,Hyung-Woo Lee
视频video
丛书名称Lecture Notes in Computer Science
图书封面Titlebook: Information Security Applications; 8th International Wo Sehun Kim,Moti Yung,Hyung-Woo Lee Conference proceedings 2007 Springer-Verlag Berli
描述The 8th International Workshop on Information Security Applications (WISA 2007) was held on Jeju Island, Korea during August 27–29, 2007. The workshop was sponsored by the Korea Institute of Information Security and Cryptology (KIISC), the Electronics and Telecommunications Research Institute (ETRI) and the Ministry of Information and Communication (MIC). WISAaimsatprovidingaforumforprofessionalsfromacademiaandindustry to present their work and to exchange ideas. The workshop covers all technical aspects of security applications, including cryptographic and non-cryptographic techniques. We were very pleased and honored to serve as the Program Committee Co-chairs of WISA 2007. The Program Committee received 95 papers from 20 countries, and accepted 27 papers for the full presentation track. The papers were selected after an extensive and careful refereeing process in which each paper was reviewed by at least three members of the Program Committee. In addition to the contributed papers, the workshop had three special talks. Moti Yung gave a tutorial talk, entitled “Somebody You Know: The Fourth Factor of Authentication.” Kihong Park and Nasir Memon gave invited talks, entitled “React
出版日期Conference proceedings 2007
关键词AES; Error-correcting Code; Signatur; access control; algorithm; algorithms; anonymity; authentication; biom
版次1
doihttps://doi.org/10.1007/978-3-540-77535-5
isbn_softcover978-3-540-77534-8
isbn_ebook978-3-540-77535-5Series ISSN 0302-9743 Series E-ISSN 1611-3349
issn_series 0302-9743
copyrightSpringer-Verlag Berlin Heidelberg 2007
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Windows Vault: Prevention of Virus Infection and Secret Leakage with Secure OS and Virtual Machineof the proposed system can import data securely from the second workstation to the first through security guaranteed channel between the two workstations. The user can also read e-mail from the Internet on the first without fear of virus infection, and as a result the user does not need to be aware that she/he uses the two workstations.
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Comparative Studies in Key Disagreement Correction Process on Wireless Key Agreement Systemwhere one eavesdropper exists more than 40cm from .. After adopting this error-correcting code, we should transact 200 wireless packets between the nodes to share a 128-bit unguessable key against an eavesdropper.
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Efficient Implementation of the Pairing on Mobilephones Using BREWon ubiquitous devices. Indeed the processing speed of our implementation in ARM9 processors on BREW achieves under 100 milliseconds using the supersingular curve over .. It has become fast enough for implementing security applications using the pairing on mobilephones.
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An Architecture Providing Virtualization-Based Protection Mechanisms Against Insider Attacksing insider attacks. We believe that these requirements are also representative of other scenarios. We develop a four layered protection architecture by using virtualization techniques based on these requirements. Therefore, the proposed architecture prevents insider attacks in scenarios with similar requirements as well.
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Implementation of BioAPI Conformance Test Suite Using BSP Testing Modelrmance of the CTS, the experiment was performed using both commercial fingerprint verification and identification BSPs. The developed CTS will be installed at Korean National Biometrics Test Center and used to test whether commercial biometrics products are compliant to BioAPI.
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Iteration Bound Analysis and Throughput Optimum Architecture of SHA-256 (384,512) for Hardware Impleughput and determine the architecture that achieves this throughput. In addition to providing the throughput optimal architecture for SHA2, the techniques presented can also be used to analyze and design optimal architectures for some other iterative hash algorithms.
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