• Title/Summary/Keyword: Designated Confirmer Signature

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Designated Confirmor Undeniable Signatures Based on RSA (RSA 기반의 Designated Confirmor Undeniable 전자 서명)

  • 박주환;염대현;이필중
    • Proceedings of the Korea Institutes of Information Security and Cryptology Conference
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    • 2001.11a
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    • pp.195-201
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    • 2001
  • D. Chaum이 제안한 Undeniable Signatures[1]을 시작으로 undeniable signature에 대한 많은 scheme이 제안되었다. 일반적인 전자 서명에서는 누구나 검증을 할 수 있는데 비해, undeniable signature를 검증하기 위해서는 서명자의 협동이 필수적이다. 한편 confirmor를 따로 지정해서 confirmor에게 서명 검증 능력을 부여할 수 있는 Designated Confirmor Signatures[4]가 제안되었다. 본 논문에서는 T. Miyazaki가 제안한 RSA-Based Convertible Undeniable Signature Scheme[6]을 변형하여, Designated Confirmer Undeniable Signature System Based on RSA를 제안하고, 제안된 프로토콜을 분석한다.

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An Improved Privacy Preserving Construction for Data Integrity Verification in Cloud Storage

  • Xia, Yingjie;Xia, Fubiao;Liu, Xuejiao;Sun, Xin;Liu, Yuncai;Ge, Yi
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.8 no.10
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    • pp.3607-3623
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    • 2014
  • The increasing demand in promoting cloud computing in either business or other areas requires more security of a cloud storage system. Traditional cloud storage systems fail to protect data integrity information (DII), when the interactive messages between the client and the data storage server are sniffed. To protect DII and support public verifiability, we propose a data integrity verification scheme by deploying a designated confirmer signature DCS as a building block. The DCS scheme strikes the balance between public verifiable signatures and zero-knowledge proofs which can address disputes between the cloud storage server and any user, whoever acting as a malicious player during the two-round verification. In addition, our verification scheme remains blockless and stateless, which is important in conducting a secure and efficient cryptosystem. We perform security analysis and performance evaluation on our scheme, and compared with the existing schemes, the results show that our scheme is more secure and efficient.