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Universal Designated Verifier Signatures Without Random Oracles or Non-Black Box Assumptions

机译:通用指定的验证者签名,没有随机的Oracle或非黑匣子假设

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摘要

Universal designated verifier signatures (UDVS) were introduced in 2003 by Steinfeld et al. to allow signature holders to monitor the verification of a given signature in the sense that any plain signature can be publicly turned into a signature which is only verifiable by some specific designated verifier. Privacy issues, like non-dissemination of digital certificates, are the main motivations to study such primitives. In this paper, we propose two fairly efficient UDVS schemes which are secure (in terms of unforgeability and anonymity) in the standard model (i.e. without random oracles). Their security relies on algorithmic assumptions which are much more classical than assumptions involved in the two only known UDVS schemes in standard model to date. The latter schemes, put forth by Zhang et al. in 2005 and Vergnaud in 2006, rely on the Strong Diffie-Hellman assumption and the strange-looking knowledge of exponent assumption (KEA). Our schemes are obtained from Waters's signature and they do not need the KEA assumption. They are also the first random oracle-free constructions with the anonymity property.
机译:通用指定验证者签名(UDVS)由Steinfeld等人于2003年引入。从某种意义上讲,允许签名持有人监视给定签名的验证,即任何普通签名都可以公开转换为只能由某些特定的指定验证者验证的签名。像未分发数字证书一样,隐私问题是研究此类原语的主要动机。在本文中,我们提出了两种相当有效的UDVS方案,它们在标准模型(即没有随机预言机)中是安全的(就不可伪造性和匿名性而言)。它们的安全性依赖于算法假设,该假设比迄今为止标准模型中两个唯一已知的UDVS方案所涉及的假设要经典得多。后一种方案,由Zhang等人提出。分别在2005年和2006年的Vergnaud上依靠Strong Diffie-Hellman假设和指数假设(KEA)的怪异知识。我们的方案是从沃特世(Waters)的签名中获得的,不需要KEA假设。它们也是第一个具有匿名属性的无Oracle随机构造。

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