DocumentCode
2364152
Title
Secure and Efficient Two-Party Authenticated Key Agreement Protocol from Certificateless Public Key Encryption Scheme
Author
Hou, Mengbo ; Xu, Qiuliang
Author_Institution
Sch. of Comput. Sci. & Technol., Shandong Univ., Jinan, China
fYear
2009
fDate
25-27 Aug. 2009
Firstpage
894
Lastpage
897
Abstract
As the fundamental building block for secure communication in the open network, authenticated key agreement protocols are usually constructed in the public key setting. Certificateless public key cryptography combines the advantage of the identity-based public key cryptography (ID-PKC) and the traditional PKI. In this paper, we present a secure and efficient two-party authenticated key agreement protocol based on the efficient certificateless public key encryption scheme due to Cheng and Comley. Security analysis shows that it achieves perfect forward secrecy, PKG forward secrecy and almost all the other known security attributes for authenticated key agreement protocol, 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. Compared to other comparable schemes, it is more secure and has nice efficiency.
Keywords
cryptographic protocols; open systems; public key cryptography; telecommunication security; PKI; certificateless public key encryption; forward secrecy; identity-based public key cryptography; key-compromise impersonation resilience; known session-specific temporary information security; known-key secrecy; message independence; open network; secure communication; security analysis; two-party authenticated key agreement protocol; unknown key-share resilience; Authentication; Communication system control; Computer science; Cryptographic protocols; Identity-based encryption; Information analysis; Information security; Public key; Public key cryptography; Resilience; authenticated key agreement; certificateless public key cryptography; identity-based cryptography; key replicating attack; perfect forward secrecy;
fLanguage
English
Publisher
ieee
Conference_Titel
INC, IMS and IDC, 2009. NCM '09. Fifth International Joint Conference on
Conference_Location
Seoul
Print_ISBN
978-1-4244-5209-5
Electronic_ISBN
978-0-7695-3769-6
Type
conf
DOI
10.1109/NCM.2009.19
Filename
5331637
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