DocumentCode :
1835113
Title :
Low Cost Secure Computation for the General Client-Server Computation Model
Author :
Xiao, Liangliang ; Yen, I-Ling ; Bastani, Farokh
Author_Institution :
Dept. of Comput. Sci., Univ. of Texas at Dallas, Dallas, TX
fYear :
2008
fDate :
3-5 Dec. 2008
Firstpage :
19
Lastpage :
26
Abstract :
Due to the large number of attacks on open networks, information theft becomes a more and more severe problem. Secure computation can offer highly assured confidentiality protection to critical information and data against external and insider attacks. However, existing secure computation methods are not widely used in practice due to their excessive performance overheads and limited applicability. In this paper, we consider secure computation under a general client-server model which fits the computation of most modern application systems. A novel secure computation protocol has been developed to support highly efficient arithmetic operations. Since the algorithms are based on matrix computations, they are highly efficient. Due to its efficiency and applicability, our secure computation approach can benefit many application systems, including medical databases, secure financial systems, defense information systems, E-commerce systems, agent-based computing, etc.
Keywords :
client-server systems; matrix algebra; protocols; security of data; arithmetic operations; general client-server computation model; information theft; low cost secure computation; matrix computations; secure computation protocol; Central Processing Unit; Circuits; Computational efficiency; Computational modeling; Computer networks; Cryptography; Hardware; Information security; Protection; Protocols; Secure computation; eigenvalue; large integer factorization problem;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Assurance Systems Engineering Symposium, 2008. HASE 2008. 11th IEEE
Conference_Location :
Nanjing
ISSN :
1530-2059
Print_ISBN :
978-0-7695-3482-4
Type :
conf
DOI :
10.1109/HASE.2008.31
Filename :
4708860
Link To Document :
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