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  • 1. Abbasi, A. G.
    et al.
    Muftic, Sead
    KTH, School of Information and Communication Technology (ICT), Communication: Services and Infrastucture (Closed 20120101), Communication Systems, CoS (closed 2012-01-01).
    Schmölzer, Gernot
    KTH, School of Information and Communication Technology (ICT), Communication: Services and Infrastucture (Closed 20120101), Communication Systems, CoS (closed 2012-01-01).
    CryptoNET: A model of generic security provider2010In: International Journal of Internet Technology and Secured Transactions, ISSN 1748-569X, E-ISSN 1748-5703, Vol. 2, no 3-4, 321-335 p.Article in journal (Refereed)
    Abstract [en]

    The model and design of a generic security provider provides a comprehensive set of security services, mechanisms, encapsulation methods, and security protocols for Java applications. The model is structured in four layers; each layer provides services to the upper layer and the top layer provide services to applications. The services reflect security requirements derived from a wide range of applications; from small desktop applications to large distributed enterprise environments. Based on the abstract model, this paper describes design and implementation of an instance of the provider comprising various generic security modules: symmetric key cryptography, asymmetric key cryptography, hashing, encapsulation, certificates management, creation and verification of signatures, and various network security protocols. This paper also describes the properties for extensibility, flexibility, abstraction, and compatibility of the Java security provider.

  • 2. Shibli, A.
    et al.
    Giambruno, Alessandro
    KTH, School of Information and Communication Technology (ICT), Communication: Services and Infrastucture (Closed 20120101), Communication Systems, CoS (closed 2012-01-01).
    Muftic, S.
    Security architecture and methodology for authorisation of mobile agents2010In: International Journal of Internet Technology and Secured Transactions, ISSN 1748-569X, E-ISSN 1748-5703, Vol. 2, no 3-4, 271-290 p.Article in journal (Refereed)
    Abstract [en]

    One approach to authorisation of mobile agents is to use extensible access control mark-up language (XACML) policies by assigning roles to agents and then enforcing role-based authorisation. In this paper we show how traditional XACML polices, used for user access control in distributed environments, can be used for mobile agents' access control. We use such polices to manage delegation of access rights from users to agents, while at the same time following the core principles of the XACML standard. We also propose a combination of policies that map users to their mobile agents and make access control decisions for mobile agents by evaluating complex policy sets. We have identified all architectural components along with the operations required for enforcement of authorisations of mobile agents during execution.

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