DocumentCode
3502547
Title
Digital Signature Algorithm Based on Hash Round Function and Self-Certified Public Key System
Author
Hai-Peng, Chen ; Xuan-Jing, Shen ; Wei, Wei
Author_Institution
Coll. of Comput. Sci. & Technol., Jilin Univ., Changchun
Volume
2
fYear
2009
fDate
7-8 March 2009
Firstpage
618
Lastpage
624
Abstract
Aiming directly at the frequently used digital signature technologies, which are weak to Substitution Attack and Homeostasis Attack, this article performs the hash transformation on messages before signature. Using the method proposed by J. Seberry, a hash round function is constructed, which simultaneously satisfies the characters of balance, high nonlinearity, strict avalanche criterion and realization of software. Moreover, making use of the hash round function, a new hash algorithm named HRFA (Hash Round Function Algorithm) is contrived. On this basis, aiming at the defect that the existing digital signature algorithms are weak to active attack and impersonation attack, using the hash algorithm named HRFA and the self-certified public key method proposed by Girault, a new kind of digital signature algorithm named H-S DSA (Hash Round Function and Self-certified Public Key System Digital Signature Algorithm) is raised and realized. Finally, this article analyzes the H-S DSA from two aspects of security and time-complexity.
Keywords
cryptography; digital signatures; public key cryptography; digital signature algorithm; hash round function; homeostasis attack; self-certified public key system; substitution attack; Algorithm design and analysis; Boolean algebra; Computer science; Decision support systems; Digital signatures; Educational technology; Nonlinear equations; Public key; Public key cryptography; Security; H-S DSA; HRFA; digital signature; hash round function; self-certified public key;
fLanguage
English
Publisher
ieee
Conference_Titel
Education Technology and Computer Science, 2009. ETCS '09. First International Workshop on
Conference_Location
Wuhan, Hubei
Print_ISBN
978-1-4244-3581-4
Type
conf
DOI
10.1109/ETCS.2009.399
Filename
4959114
Link To Document