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Yet Another Way to Construct Digital Signature in the Standard Model

机译:在标准模型中构造数字签名的另一种方法

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Till now, there are not many ways to construct signature schemes in the standard model and recently many researchers show great interest in constructing secure signatures in the standard model. CCA secure publicly verifiable public key encryption in the standard model (PVPKE) is an new interesting primitive with cipher text's validity/integrity can be publicly verified. In this paper, we propose a new way to construct signature schemes in the standard model. That is, transforming CCA secure publicly verifiable public key encryption schemes into signature schemes. Our transformation based on the following facts: 1)The signature scheme and CCA secure publicly verifiable public key encryption scheme share the same "publicly verifiability" property. 2) The signature scheme requires the signatures cannot be malleable and CCA secure publicly verifiable public key encryption also require the cipher texts can not be malleable.3) Public key encryption and digital signature schemes can be viewed as dual of each other. By utilizing these facts, we try to give a new way to construct signature scheme in the standard model.
机译:到目前为止,在标准模型中构建签名方案的方法还很少,最近,许多研究人员对在标准模型中构建安全签名表现出极大的兴趣。 CCA标准模型(PVPKE)中的安全可公开验证的公共密钥加密是一种新的有趣原语,其密文的有效性/完整性可以公开验证。在本文中,我们提出了一种在标准模型中构造签名方案的新方法。即,将CCA安全可公开验证的公钥加密方案转换为签名方案。我们基于以下事实进行转换:1)签名方案和CCA安全的可公开验证的公共密钥加密方案具有相同的“可公开验证”属性。 2)签名方案要求签名不可延展,而CCA安全的可公开验证的公钥加密也要求密文不可延展。3)公钥加密方案和数字签名方案可以看作是双重的。利用这些事实,我们尝试提供一种在标准模型中构造签名方案的新方法。

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