TY - JOUR
T1 - An identity-based proxy signature on NTRU lattice
AU - Zhu, Hongfei
AU - Tan, Yu'an
AU - Yu, Xiao
AU - Xue, Yuan
AU - Zhang, Qikun
AU - Zhu, Liehuang
AU - Li, Yuanzhang
N1 - Publisher Copyright:
© 2018 Chinese Institute of Electronics.
PY - 2018/3/10
Y1 - 2018/3/10
N2 - Proxy signature plays an important role in distributed systems, mobile agent applications, distributed shared object systems, global distribution networks and mobile communications etc., since it allows the original signer to delegate another proxy signer to sign the message instead of himself. However, the proxy signature schemes constructed on the number theory cannot resist quantum computers attack and depend on the public key infrastructure. To mitigate these problems, the alternative schemes are Identity-based proxy signature constructed on lattice. In this paper, an identity-based proxy signature scheme based on Number theorem research unit (NTRU) lattice is proposed and proven secure in the random oracle. Compared with the other existing identity-based proxy signature schemes, the proposed scheme outperforms them in terms of original signer’s signature size and signing key size and proxy signer’s signing key size.
AB - Proxy signature plays an important role in distributed systems, mobile agent applications, distributed shared object systems, global distribution networks and mobile communications etc., since it allows the original signer to delegate another proxy signer to sign the message instead of himself. However, the proxy signature schemes constructed on the number theory cannot resist quantum computers attack and depend on the public key infrastructure. To mitigate these problems, the alternative schemes are Identity-based proxy signature constructed on lattice. In this paper, an identity-based proxy signature scheme based on Number theorem research unit (NTRU) lattice is proposed and proven secure in the random oracle. Compared with the other existing identity-based proxy signature schemes, the proposed scheme outperforms them in terms of original signer’s signature size and signing key size and proxy signer’s signing key size.
KW - Identity based proxy signature
KW - NTRU lattice
KW - Quantum computers attack
KW - Unforgeability
UR - http://www.scopus.com/inward/record.url?scp=85047634979&partnerID=8YFLogxK
U2 - 10.1049/cje.2017.09.008
DO - 10.1049/cje.2017.09.008
M3 - Article
AN - SCOPUS:85047634979
SN - 1022-4653
VL - 27
SP - 297
EP - 303
JO - Chinese Journal of Electronics
JF - Chinese Journal of Electronics
IS - 2
ER -