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新的无可信私钥生成中心的盲签名方案
引用本文:何俊杰,张帆,祁传达.新的无可信私钥生成中心的盲签名方案[J].计算机应用,2013,33(4):1061-1064.
作者姓名:何俊杰  张帆  祁传达
作者单位:1. 信阳师范学院 数学与信息科学学院,河南 信阳 464000 2. 信阳师范学院 计算机与信息技术学院, 河南 信阳 464000
基金项目:国家自然科学基金资助项目,河南省自然科学基金资助项目,河南省教育厅科学技术研究重点项目
摘    要:为了消除基于身份公钥密码体制中密钥托管带来的安全隐患,设计了一个基于身份的无需可信私钥生成中心(PKG)的盲签名方案。在随机预言机模型中证明了新方案对普通攻击者和半诚实的PKG的自适应选择消息和身份攻击是存在不可伪造的,安全性归约为计算Diffie-Hellman问题;而对恶意PKG的伪造攻击,合法签名者可以通过追溯算法向仲裁方证明签名是伪造的。

关 键 词:盲签名  基于身份  随机预言模型  离散对数  双线性对  
收稿时间:2012-10-15
修稿时间:2012-11-25

New blind signature scheme without trusted private key generator
HE Junjie , ZHANG Fan , QI Chuanda.New blind signature scheme without trusted private key generator[J].journal of Computer Applications,2013,33(4):1061-1064.
Authors:HE Junjie  ZHANG Fan  QI Chuanda
Affiliation:1. College of Mathematics and Information Science, Xinyang Normal University, Xinyang Henan 464000, China
2. College of Computer and Information Technology, Xinyang Normal University, Xinyang Henan 464000, China
Abstract:In order to eliminate the inherent key escrow problem in identity-based public key cryptosystem, a new identity-based blind signature scheme without trusted Private Key Generator (PKG) was proposed. Under the random oracle model, the scheme was proved to be existentially unforgeable against adaptive chosen message and identity attacks from common attackers or semi-honest PKG, and the security was reduced to computational Diffie-Hellman assumption. For the forgery attacks from the malicious PKG, the legitimate signer can prove to the arbitration institution that the signature is forged by trace algorithm.
Keywords:blind signature                                                                                                                          identity-based                                                                                                                          random oracle model                                                                                                                          discrete logarithm                                                                                                                          bilinear pairing
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