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Efficient identity-based threshold decryption scheme from bilinear pairings

机译:基于双线性对的基于身份的有效阈值解密方案

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摘要

Using Shamir's secret sharing scheme to indirectly share the identity-based private key in the form of a pairing group element, we propose an efficient identity-based threshold decryption scheme from pairings and prove its security in the random oracle model. This new paring-based scheme features a few improvements compared with other schemes in the literature. The two most noticeable features are its efficiency, by drastically reducing the number of pairing computations, and the ability it gives the user to share the identity-based private key without requiring any access to a private key generator. With the ability it gives the user to share the identity-based private key, our ID-based threshold decryption (IBTD) scheme, the second of its kind, is significantly more efficient than the first scheme, which was developed by Baek and Zheng, at the expense of a slightly increased ciphertext length. In fact, our IBTD scheme tries to use as few bilinear pairings as possible, especially without depending on the suite of Baek-Zheng secret sharing tools based on pairings.
机译:利用Shamir的秘密共享方案以配对组元素的形式间接共享基于身份的私钥,我们从配对中提出了一种有效的基于身份的阈值解密方案,并在随机预言模型中证明了其安全性。与文献中的其他方案相比,这种基于配对的新方案具有一些改进。两个最引人注目的功能是它的效率(通过大大减少配对计算的数量)以及它使用户能够共享基于身份的私钥而不需要访问私钥生成器的能力。凭借其赋予用户共享基于身份的私钥的能力,我们的第二种基于ID的阈值解密(IBTD)方案比由Baek和Zheng开发的第一种方案的效率要高得多,以略微增加密文长度为代价。实际上,我们的IBTD方案尝试使用尽可能少的双线性配对,尤其是在不依赖于基于配对的Baek-Zheng秘密共享工具套件的情况下。

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