Threshold Discernible Ring Signatures View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

2012

AUTHORS

Swarun Kumar , Shivank Agrawal , Ramarathnam Venkatesan , Satyanarayana V. Lokam , C. Pandu Rangan

ABSTRACT

A ring signature [1] demonstrates that the signer who produced it is among a group A of n people, called a ring. A signer may produce a ring signature on any ring A he is part of, arbitrarily without any setup procedure or the consent of anyone in A. Several extensions of ring signatures have been proposed in literature. Step out ring signatures introduced in [2] address the issue of a ring member proving that she is not the original signer of a message, in case of dispute. First we show that the scheme in [2] has several flaws and design a correct scheme and prove formally the security of the same. Then we use the basic constructs of our scheme to design a protocol for a new problem, which we refer to as threshold discernible ring signatures. In threshold discernible ring signatures, a group B of t members can co-operate to identify the original signer of a ring signature that involved a group A of n alleged signers, where B ⊆ A and n ≥ t. This is the first time that this problem is considered in the literature. We formally prove the security of our scheme in the random oracle model and propose various extensions. More... »

PAGES

259-273

References to SciGraph publications

  • 2005. Short Linkable Ring Signatures for E-Voting, E-Cash and Attestation in INFORMATION SECURITY PRACTICE AND EXPERIENCE
  • 2001-07-13. Publicly Verifiable Secret Sharing in ADVANCES IN CRYPTOLOGY — EUROCRYPT ’96
  • 2000. An Efficient Verifiable Encryption Scheme for Encryption of Discrete Logarithms in SMART CARD RESEARCH AND APPLICATIONS
  • 2001-07-13. Efficient and Generalized Group Signatures in ADVANCES IN CRYPTOLOGY — EUROCRYPT ’97
  • 2006. A Requirement Centric Framework for Information Security Evaluation in ADVANCES IN INFORMATION AND COMPUTER SECURITY
  • 2005. Provable Security for Public Key Schemes in CONTEMPORARY CRYPTOLOGY
  • 2008. Step-Out Ring Signatures in MATHEMATICAL FOUNDATIONS OF COMPUTER SCIENCE 2008
  • 2000. Verifiable Encryption, Group Encryption, and Their Applications to Separable Group Signatures and Signature Sharing Schemes in ADVANCES IN CRYPTOLOGY — ASIACRYPT 2000
  • 2003. Practical Verifiable Encryption and Decryption of Discrete Logarithms in ADVANCES IN CRYPTOLOGY - CRYPTO 2003
  • 1991-01. Efficient signature generation by smart cards in JOURNAL OF CRYPTOLOGY
  • 2006. Short Linkable Ring Signatures Revisited in PUBLIC KEY INFRASTRUCTURE
  • 2004. Deniable Ring Authentication Revisited in ROBOCUP 2005: ROBOT SOCCER WORLD CUP IX
  • 2009-06. Step-out group signatures in COMPUTING
  • 2002. Deniable Ring Authentication in ADVANCES IN CRYPTOLOGY — CRYPTO 2002
  • 2001. How to Leak a Secret in ADVANCES IN CRYPTOLOGY — ASIACRYPT 2001
  • Book

    TITLE

    e-Business and Telecommunications

    ISBN

    978-3-642-25205-1
    978-3-642-25206-8

    Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/978-3-642-25206-8_17

    DOI

    http://dx.doi.org/10.1007/978-3-642-25206-8_17

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1044558925


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