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Optimal Broadcast Encryption from Pairings and LWE

机译:配对和LWE的最佳广播加密

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摘要

Boneh, Waters and Zhandry (CRYPTO 2014) used multilinear maps to provide a solution to the long-standing problem of public-key broadcast encryption (BE) where all parameters in the system are small. In this work, we improve their result by providing a solution that uses only bilinear maps and Learning With Errors (LWE). Our scheme is fully collusion-resistant against any number of colluders, and can be generalized to an identity-based broadcast system with short parameters. Thus, we reclaim the problem of optimal broadcast encryption from the land of "Obfustopia". Our main technical contribution is a ciphertext policy attribute based encryption (CP-ABE) scheme which achieves special efficiency properties - its ciphertext size, secret key size, and public key size are all independent of the size of the circuits supported by the scheme. We show that this special CP-ABE scheme implies BE with optimal parameters; but it may also be of independent interest. Our constructions rely on a novel interplay of bilinear maps and LWE, and are proven secure in the generic group model.
机译:Boneh,Waters和Zhandry(CRYPTO 2014)使用多线性映射为长期存在的公钥广播加密(BE)问题提供了解决方案,该问题系统中的所有参数都很小。在这项工作中,我们通过提供仅使用双线性映射和有错误学习(LWE)的解决方案来改善其结果。我们的方案完全抵御任何数量的串谋者的勾结,并且可以推广到具有短参数的基于身份的广播系统。因此,我们从“ Obfustopia”领域收回了最佳广播加密的问题。我们的主要技术贡献是基于密文策略属性的加密(CP-ABE)方案,该方案可实现特殊的效率属性-密文大小,秘密密钥大小和公共密钥大小均独立于该方案支持的电路大小。我们表明,这种特殊的CP-ABE方案暗含具有最佳参数的BE。但它也可能具有独立利益。我们的构造依赖于双线性映射和LWE的新颖相互作用,并且在通用组模型中被证明是安全的。

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