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Practical Signcryption [electronic resource] / edited by Alexander W. Dent, Yuliang Zheng.

By: Dent, Alexander W [editor.].
Contributor(s): Zheng, Yuliang [editor.] | SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Information Security and Cryptography: Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2010Description: XVIII, 274 p. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783540894117.Subject(s): Computer science | Data structures (Computer science) | Information systems | Computer Science | Data Structures, Cryptology and Information Theory | Information Systems and Communication ServiceDDC classification: 005.74 Online resources: Click here to access online
Contents:
Security Models for Signcryption -- Security for Signcryption: The Two-User Model -- Security for Signcryption: The Multi-User Model -- Signcryption Schemes -- Signcryption Schemes Based on the Diffie–Hellman Problem -- Signcryption Schemes Based on Bilinear Maps -- Signcryption Schemes Based on the RSA Problem -- Construction Techniques -- Hybrid Signcryption -- Concealment and Its Applications to Authenticated Encryption -- Parallel Signcryption -- Extensions of Signcryption -- Identity-Based Signcryption -- Key Establishment Using Signcryption Techniques -- Applications of Signcryption.
In: Springer eBooksSummary: In today’s world, data must be sent around the world cheaply and securely, and that requires origin authentication, integrity protection, and confidentiality – the recipient of a message should be able to ascertain who sent the message, be sure that the message has not been changed en route, and be sure that the data arrives without having been read by anyone else. The second editor invented signcryption, an area of cryptography that studies systems that simultaneously provide origin authentication, integrity protection and confidentiality for data. Signcryption schemes combine the features of digital signature schemes with those of public-key encryption schemes and aim to provide security guarantees in a way that is provably correct and significantly less computationally expensive than the “encrypt-then-sign” method most commonly adopted in public-key cryptography. This is the first comprehensive book on signcryption, and brings together leading authors from the field of cryptography in a discussion of the different methods for building efficient and secure signcryption schemes, and the ways in which these schemes can be used in practical systems. Chapters deal with the theory of signcryption, methods for constructing practical signcryption schemes, and the advantages of using such schemes in practical situations. The book will be of benefit to cryptography researchers, graduate students and practitioners.
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Security Models for Signcryption -- Security for Signcryption: The Two-User Model -- Security for Signcryption: The Multi-User Model -- Signcryption Schemes -- Signcryption Schemes Based on the Diffie–Hellman Problem -- Signcryption Schemes Based on Bilinear Maps -- Signcryption Schemes Based on the RSA Problem -- Construction Techniques -- Hybrid Signcryption -- Concealment and Its Applications to Authenticated Encryption -- Parallel Signcryption -- Extensions of Signcryption -- Identity-Based Signcryption -- Key Establishment Using Signcryption Techniques -- Applications of Signcryption.

In today’s world, data must be sent around the world cheaply and securely, and that requires origin authentication, integrity protection, and confidentiality – the recipient of a message should be able to ascertain who sent the message, be sure that the message has not been changed en route, and be sure that the data arrives without having been read by anyone else. The second editor invented signcryption, an area of cryptography that studies systems that simultaneously provide origin authentication, integrity protection and confidentiality for data. Signcryption schemes combine the features of digital signature schemes with those of public-key encryption schemes and aim to provide security guarantees in a way that is provably correct and significantly less computationally expensive than the “encrypt-then-sign” method most commonly adopted in public-key cryptography. This is the first comprehensive book on signcryption, and brings together leading authors from the field of cryptography in a discussion of the different methods for building efficient and secure signcryption schemes, and the ways in which these schemes can be used in practical systems. Chapters deal with the theory of signcryption, methods for constructing practical signcryption schemes, and the advantages of using such schemes in practical situations. The book will be of benefit to cryptography researchers, graduate students and practitioners.

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