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首页> 外文期刊>International Journal of Foundations of Computer Science >NEW EXTENSIONS OF PAIRING-BASED SIGNATURES INTO UNIVERSAL (MULTI) DESIGNATED VERIFIER SIGNATURES
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NEW EXTENSIONS OF PAIRING-BASED SIGNATURES INTO UNIVERSAL (MULTI) DESIGNATED VERIFIER SIGNATURES

机译:将基于对的签名新扩展为通用(多)指定的验证者签名

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摘要

The concept of universal designated verifier signatures was introduced by Steinfeld, Bull, Wang and Pieprzyk at Asiacrypt 2003. These signatures can be used as standard publicly verifiable digital signatures but have an additional functionality which allows any holder of a signature to designate the signature to any desired verifier. This designated verifier can check that the message was indeed signed, but is unable to convince anyone else of this fact. We propose new efficient constructions for pairing-based short signatures. Our first scheme is based on Boneh-Boyen signatures and its security can be analyzed in the standard security model. We prove its resistance to forgery assuming the hardness of the so-called strong Diffie-Hellman problem, under the knowledge-of-exponent assumption. The second scheme is compatible with the Boneh-Lynn-Shacham signatures and is proven unforgeable, in the random oracle model, under the assumption that the computational bilinear Diffie-Hellman problem is untractable. Both schemes are designed for devices with constrained computation capabilities since the signing and the designation procedure are pairing-free. Finally, we present extensions of these schemes in the multi-user setting proposed by Desmedt in 2003.
机译:通用指定验证者签名的概念是由Steinfeld,Bull,Wang和Pieprzyk在Asiacrypt 2003上引入的。这些签名可以用作标准的可公开验证的数字签名,但具有附加功能,允许签名的任何持有者将签名指定给任何人。所需的验证者。该指定的验证者可以检查该消息是否确实已签名,但是无法使其他任何人相信这一事实。我们为基于配对的短签名提出了新的有效构造。我们的第一个方案基于Boneh-Boyen签名,可以在标准安全模型中分析其安全性。我们在指数知识假设下,假设所谓的强Diffie-Hellman问题的难度,证明了其对伪造的抵抗力。第二种方案与Boneh-Lynn-Shacham签名兼容,并且在随机预言模型中,在计算双线性Diffie-Hellman问题不可解的假设下被证明是不可伪造的。两种方案都是针对具有受限计算能力的设备而设计的,因为签名和指定过程均无需配对。最后,我们介绍了Desmedt在2003年提出的多用户设置中这些方案的扩展。

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