DocumentCode :
248742
Title :
An alternative version of HTTPS to provide non-repudiation security property
Author :
Resondry, Stassia ; Boudaoud, K. ; Kamel, Michel ; Bertrand, Yoann ; Riveill, Michel
Author_Institution :
I3S, Univ. Nice Sophia Antipolis, Nice, France
fYear :
2014
fDate :
4-8 Aug. 2014
Firstpage :
536
Lastpage :
541
Abstract :
The number of mobile devices connected to the Internet is rapidly growing, inducing security issues that cannot be prevented by common mechanisms such as HTTPS. Indeed, mobile environments require light algorithms that can reduce the power-consumption and extend battery life. Moreover, HTTPS does not offer fine-grained control over the security properties such as integrity, confidentiality or authenticity. This lack of flexibility can be problematic for both power-consumption and security robustness. To overcome these issues, we have proposed in previous works a modular architecture, called LECCSAM, based on security components to secure any communication protocol by adding the required security properties. In the context of HTTP, it provides an alternative version of HTTPS by adding the integrity, confidentiality, and authenticity properties to HTTP separately or in block (i.e. only one property or any combinations of two or more properties), depending on the user needs and usage context. In this paper, we propose to extend this alternative version of HTTPS with the non-repudiation property. Preliminary results of the performance evaluation are encouraging.
Keywords :
Internet; computer network performance evaluation; computer network security; data integrity; mobile computing; telecommunication power management; transport protocols; trusted computing; HTTPS; Internet; LECCSAM; authenticity properties; battery life; communication protocol; confidentiality properties; flexible component-based approach; integrity properties; mobile devices; mobile environment; modular architecture; nonrepudiation property; nonrepudiation security property; performance evaluation; power consumption reduction; secured transactions; security components; security properties; security robustness; usage context; user needs; Cryptography; Mobile communication; Mobile handsets; Performance evaluation; Protocols; Servers; HTTPS; Security properties; communication protocols; non-repudiation; security components;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications and Mobile Computing Conference (IWCMC), 2014 International
Conference_Location :
Nicosia
Print_ISBN :
978-1-4799-7324-8
Type :
conf
DOI :
10.1109/IWCMC.2014.6906413
Filename :
6906413
Link To Document :
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