DocumentCode
3318435
Title
A Two-party certificateless authenticated key agreement protocol without pairing
Author
Hou, Mengbo ; Xu, Qiuliang
Author_Institution
Sch. of Comput. Sci. & Technol., Shandong Univ., Jinan, China
fYear
2009
fDate
8-11 Aug. 2009
Firstpage
412
Lastpage
416
Abstract
Authenticated key agreement (AK) protocol is crucial in providing data confidentiality and integrity for subsequent communications among two or more parties over a public network. Certificateless public key cryptography (CL-PKC) combines the advantage of the identity-based public key cryptography (ID-PKC) and the traditional public key cryptography (PKC). Unfortunately, construction of CL-PKC and AK protocols has so far depended on the use of identity-based encryption, which results in the bilinear pairing-based schemes that need costly operations. We present a secure certificateless authenticated key agreement protocol without paring, based on the certificateless encryption scheme proposed by J. Baek et al. It shows that the newly proposed scheme is of nice efficiency and practical. Moreover, it provides perfect forward secrecy, PKG forward secrecy and almost all the other known security attributes, such as known-key secrecy, key-compromise impersonation resilience, unknown key-share resilience, known session-specific temporary information security, message independence and no key control.
Keywords
cryptographic protocols; public key cryptography; certificateless encryption scheme; certificateless public key cryptography; data confidentiality; data integrity; forward secrecy; identity-based public key cryptography; key secrecy; key-compromise impersonation resilience; known session-specific temporary information security; message independence; security attributes; two-party certificateless authenticated key agreement protocol; unknown key-share resilience; Authentication; Certification; Computer science; Cryptographic protocols; Galois fields; Identity-based encryption; Information security; Public key; Public key cryptography; Resilience; PKG forward secrecy; authenticated key agreement; certificateless-based cryptography; perfect forward secrecy;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Science and Information Technology, 2009. ICCSIT 2009. 2nd IEEE International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4244-4519-6
Electronic_ISBN
978-1-4244-4520-2
Type
conf
DOI
10.1109/ICCSIT.2009.5234917
Filename
5234917
Link To Document