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Certificateless Key-Insulated Encryption: Cryptographic Primitive for Achieving Key-Escrow Free and Key-Exposure Resilience

机译:无证书的密钥隔离加密:用于实现无密钥托管和密钥暴露弹性的加密基元

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Certificateless encryption (CLE) alleviates the heavy certificate management in traditional public key encryption and the key escrow problem in the ID-based encryption simultaneously. Current CLE schemes assumed that the user's secret key is absolutely secure. Unfortunately, this assumption is too strong in case the CLE is deployed in the hostile setting and the leakage of a secret key is inevitable. In this paper, we present a new concept called a certificateless key-insulated encryption scheme (CL-KIE). We argue that this is an important cryptographic primitive that can be used to achieve key-escrow free and key-exposure resilience. We also present an efficient CL-KIE scheme based on bilinear pairing. After that, the security of our scheme is proved under the Bilinear Diffie-Hellman assumption in the random oracle model.
机译:无证书加密(CLE)减轻了传统公钥加密中繁琐的证书管理,同时减轻了基于ID的加密中的密钥托管问题。当前的CLE方案假定用户的密钥是绝对安全的。不幸的是,如果在敌对环境中部署CLE并不可避免地泄露密钥,那么这种假设就太强了。在本文中,我们提出了一种称为无证书密钥隔离加密方案(CL-KIE)的新概念。我们认为这是一个重要的加密原语,可用于实现无密钥托管和密钥暴露的恢复能力。我们还提出了一种基于双线性配对的有效CL-KIE方案。然后,在随机预言机模型的双线性Diffie-Hellman假设下证明了我们方案的安全性。

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