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Modified Multi-Key Fully Homomorphic Encryption Based on NTRU Cryptosystem without Key-Switching 被引量:7
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作者 Xiaoliang Che Tanping Zhou +3 位作者 Ningbo Li Haonan Zhou Zhenhua Chen Xiaoyuan Yang 《Tsinghua Science and Technology》 SCIE EI CAS CSCD 2020年第5期564-578,共15页
The Multi-Key Fully Homomorphic Encryption (MKFHE) based on the NTRU cryptosystem is an important alternative to the post-quantum cryptography due to its simple scheme form,high efficiency,and fewer ciphertexts and ke... The Multi-Key Fully Homomorphic Encryption (MKFHE) based on the NTRU cryptosystem is an important alternative to the post-quantum cryptography due to its simple scheme form,high efficiency,and fewer ciphertexts and keys.In 2012,Lopez-Alt et al.proposed the first NTRU-type MKFHE scheme,the LTV12 scheme,using the key-switching and modulus-reduction techniques,whose security relies on two assumptions:the Ring Learning With Error (RLWE) assumption and the Decisional Small Polynomial Ratio (DSPR) assumption.However,the LTV12and subsequent NTRU-type schemes are restricted to the family of power-of-2 cyclotomic rings,which may affect the security in the case of subfield attacks.Moreover,the key-switching technique of the LTV12 scheme requires a circular application of evaluation keys,which causes rapid growth of the error and thus affects the circuit depth.In this paper,an NTRU-type MKFHE scheme over prime cyclotomic rings without key-switching is proposed,which has the potential to resist the subfield attack and decrease the error exponentially during the homomorphic evaluating process.First,based on the RLWE and DSPR assumptions over the prime cyclotomic rings,a detailed analysis of the factors affecting the error during the homomorphic evaluations in the LTV12 scheme is provided.Next,a Low Bit Discarded&Dimension Expansion of Ciphertexts (LBD&DEC) technique is proposed,and the inherent homomorphic multiplication decryption structure of the NTRU is proposed,which can eliminate the key-switching operation in the LTV12 scheme.Finally,a leveled NTRU-type MKFHE scheme is developed using the LBD&DEC and modulus-reduction techniques.The analysis shows that the proposed scheme compared to the LTV12 scheme can decrease the magnitude of the error exponentially and minimize the dimension of ciphertexts. 展开更多
关键词 NTRU-type Multi-Key Fully homomorphic Encryption(MKFHE) prime cyclotomic rings Low Bit Discarded(LBD) homomorphic multiplication decryption structure
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基于NTRU的多密钥同态加密方案解密结构 被引量:5
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作者 车小亮 周昊楠 +2 位作者 周潭平 李宁波 杨晓元 《计算机应用》 CSCD 北大核心 2020年第7期1959-1964,共6页
为了进一步提升NTRU型多密钥全同态加密(MKFHE)方案的安全性和效率,基于素数幂次分圆多项式环,研究了NTRU型多密钥同态加密的原始解密结构特点,并提出了两种多密钥同态解密结构改进优化方法。首先通过降低多项式系数,设计了"Regev-... 为了进一步提升NTRU型多密钥全同态加密(MKFHE)方案的安全性和效率,基于素数幂次分圆多项式环,研究了NTRU型多密钥同态加密的原始解密结构特点,并提出了两种多密钥同态解密结构改进优化方法。首先通过降低多项式系数,设计了"Regev-Style"多密钥解密结构;其次通过扩展密文维度,设计了"Ciphertext-Expansion"多密钥解密结构。通过与NTRU型多密钥同态加密方案的原始解密结构进行对比分析,结果表明"Regev-Style"多密钥解密结构降低了产生噪声的量级,用于NTRU型多密钥全同态加密方案设计时能减少密钥交换次数和模交换次数;"Ciphertext-Expansion"多密钥解密结构消除了密钥交换过程,降低了产生噪声的量级,且能更有效地处理重复用户的密文乘积。改进优化的多密钥解密结构的安全性均基于素数幂次分圆多项式环上的误差学习(LWE)问题和判定小多项式比(DSPR)假设,这些结构能较好地抵御子域攻击。通过选取合适的参数,它们可用于设计更加安全高效的NTRU型多密钥全同态加密方案。 展开更多
关键词 NTRU型多密钥同态加密 素数幂次分圆多项式环 同态乘法解密结构 小系数多项式 密文扩展
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