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Titlebook: Information and Communications Security; 11th International C Sihan Qing,Chris J. Mitchell,Guilin Wang Conference proceedings 2009 Springer

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楼主: 契约
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Conference proceedings 2009nferenceseriesis anestablished forum that bringstogether people from universities,researchinstitutes, industry and governmentinstitutions, who work in a range of ?elds within information and communications security. The ICICS conferencesgiveattendeestheopportunitytoexchangenewideasandinvestigate dev
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0302-9743 e ICICS conferenceseriesis anestablished forum that bringstogether people from universities,researchinstitutes, industry and governmentinstitutions, who work in a range of ?elds within information and communications security. The ICICS conferencesgiveattendeestheopportunitytoexchangenewideasandinves
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Public Key Encryption without Random Oracle Made Truly Practical security against adaptive chosen ciphertext attack without a random oracle. We also compare the modified Zheng-Seberry scheme with related encryption schemes in terms of efficiency and underlying assumptions, supporting our conclusion that the modified Zheng-Seberry scheme is preferable to its competitors.
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Biometric-Based Non-transferable Anonymous Credentialstion relies on constructions for fuzzy extractors that allow one to extract and reproduce a random string from noisy biometric images. We first examine security requirements of biometric key generators, and then show how they can be integrated with anonymous credentials to achieve a high degree of non-transferability and security.
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Measuring Information Flow in Reactive Processesd in the distance between state transformations given by a process metric. Finally, we show that there is a connection between our leakage definition and mutual information in the framework of information theory.
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Trusted Isolation Environment: An Attestation Architecture with Usage Control Modeles. With its continuous and mutable feature and obligation support, we construct the TIE with flexibility. Lastly, we propose our attestation architecture with UCON. gaining the benefits of scalable and lightweight.
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A User-Mode-Kernel-Mode Co-operative Architecture for Trustable Computingde co-operative architecture for trustable computing in which a secure application in user mode works in co-operation with the privileged system management software in kernel mode. We argue for the necessity of co-operation between a secure application and the secure service code in kernel mode, and showcase the practicality of this method.
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