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New Constructions of Revocable Identity-Based Encryption From Multilinear Maps

机译:基于多线性映射的可撤销基于身份的加密的新构造

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A revocable identity-based encryption (RIBE) provides an efficient revocation method in IBE that a trusted authority periodically broadcasts an update key for nonrevoked users and a user can decrypt a ciphertext if he is not revoked in the update key. Boldyreva, Goyal, and Kumar (CCS 2008) defined RIBE and proposed an RIBE scheme that uses a tree-based revocation encryption scheme to revoke users’ private keys. In this paper, we devise a new technique for RIBE and propose RIBE schemes with a constant number of private key elements. We achieve the following results. We first devise a new technique for RIBE that combines a hierarchical IBE (HIBE) scheme and a public-key broadcast encryption (PKBE) scheme using multilinear maps. In contrast to the previous technique for RIBE, our technique uses a PKBE scheme in bilinear maps for revocation to achieve short private keys and update keys. Following our new technique for RIBE, we propose an RIBE scheme in three-leveled multilinear maps that combines the HIBE scheme of Boneh and Boyen (EUROCRYPT 2004) and the PKBE scheme of Boneh, Gentry, and Waters (CRYPTO 2005). The private key and update key of our scheme possess a constant number of group elements. Next, we propose another RIBE scheme with reduced public parameters and short keys by combining the HIBE scheme of Boneh and Boyen and the PKBE scheme of Boneh, Waters, and Zhandry (CRYPTO 2014), which uses multilinear maps. Compared with our first RIBE scheme, our second RIBE scheme requires high-leveled multilinear maps.
机译:可撤消的基于身份的加密(RIBE)在IBE中提供了一种有效的撤消方法,受信任的授权机构会定期广播未撤消用户的更新密钥,并且如果用户未在更新密钥中撤消该密文,则可以解密该密文。 Boldyreva,Goyal和Kumar(CCS 2008)定义了RIBE,并提出了RIBE方案,该方案使用基于树的吊销加密方案吊销用户的私钥。在本文中,我们为RIBE设计了一种新技术,并提出了具有恒定数量的私钥元素的RIBE方案。我们获得以下结果。我们首先为RIBE设计了一种新技术,该技术结合了分层IBE(HIBE)方案和使用多线性映射的公钥广播加密(PKBE)方案。与先前的RIBE技术相比,我们的技术在双线性映射中使用PKBE方案进行吊销,以实现短私钥和更新密钥。遵循我们针对RIBE的新技术,我们在三级多线性地图中提出了RIBE方案,该方案结合了Boneh和Boyen的HIBE方案(EUROCRYPT 2004)和Boneh,Gentry和Waters的PKBE方案(CRYPTO 2005)。我们方案的私钥和更新密钥具有恒定数量的组元素。接下来,我们通过结合Boneh和Boyen的HIBE方案和Boneh,Waters和Zhandry的PKBE方案(CRYPTO 2014),提出了一种减少公共参数和短键的RIBE方案(CRYPTO 2014)。与我们的第一个RIBE方案相比,我们的第二个RIBE方案需要高级多线性映射。

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