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Efficient Decryption Algorithms for Extension Field Cancellation Type Encryption Schemes

机译:扩展字段取消类型加密方案的高效解密算法

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Extension Field Cancellation (EFC) was proposed by Alan et al. at PQCrypto 2016 as a new trapdoor for constructing secure multivariate encryption cryptographic schemes. Along with this trapdoor, two schemes EFC_p~- and EFC_(pt~2)~- that apply this trapdoor and some modifiers were proposed. Though their security seems to be high enough, their decryption efficiency has room for improvement. In this paper, we introduce a new and more efficient decryption approach for EFC_p~- and EFC_(pt~2)~-, which manages to avoid all redundant computation involved in the original decryption algorithms, and theoretically speed up the decryption process of EFC_p~- and EFC_(pt~2)~- by around 3.4 and 8.5 times, respectively, under 128-bit security parameters with our new designed private keys for them. Meanwhile, our approach does not interfere with the public key, so the security remains the same. The implementation results of both decryption algorithms for EFC_p~- and EFC_(pt~2)~- are also provided.
机译:扩展场消除(EFC)由Alan等人提出。在PQCrypto 2016上作为构建安全的多元加密密码方案的新活门。与此陷阱门一起,提出了应用该陷阱门的两种方案EFC_p〜-和EFC_(pt〜2)〜-以及一些修改器。尽管它们的安全性似乎足够高,但是其解密效率仍有改进的空间。在本文中,我们为EFC_p〜-和EFC_(pt〜2)〜-引入了一种新的更有效的解密方法,该方法可以避免原始解密算法中涉及的所有冗余计算,并在理论上加快EFC_p的解密过程在使用我们为它们设计的新私钥的128位安全性参数下,〜-和EFC_(pt〜2)〜-分别大约是3.4和8.5倍。同时,我们的方法不会干扰公钥,因此安全性保持不变。还提供了针对EFC_p〜-和EFC_(pt〜2)〜-的两种解密算法的实现结果。

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