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User dependent cryptography for security in future mobile telecommunication systems
In this paper we propose a user dependent scheme for enhancing security of the transmitted content in the future telecommunication systems. In order to achieve a higher level of security we introduce a scheme where the user identity gets involved in the encryption/decryption processes using an additional component for the block cipher which represents the user’s behavioural model. Applying such a scheme, in addition to introducing more difficulties to an attacker due to the user dependency of the cipher algorithm, gives the mobile operator the opportunity to ensure that a licensed service has not been shared by the customer. To show the feasibility of our approach we use the concept of invertible Boolean functions as an example
Management system requirements for wireless systems beyond 3G
This paper presents a comprehensive description of various management system requirements for systems beyond 3G, which have been identified as a result of the Software Based Systems activities within the Mobile VCE Core 2 program. Specific requirements for systems beyond 3G are discussed and potential technologies to address them proposed. The analysis has been carried out from network, service and security viewpoints
Authentication : can mobile environments be secured?
Due to the character of the original source materials and the nature of batch digitization, quality control issues may be present in this document. Please report any quality issues you encounter to [email protected], referencing the URI of the item.Includes bibliographical references (leaves 29-32).A mobile system is defined as a network in which one or more of the interconnection links is a wireless medium. Wireless media include but are not limited to, cellular or radio transmissions, satellite services, and wireless computer networks. The fundamental operations of storage, processing, and transmission of information are undergoing such rapid improvement that the application of securing mobile systems cannot keep up with the rate of advance. This research analyzes security problems and investigates possible solutions that stem from the absence of a "fixed" link between the user and service provider in mobile systems. This research approaches all security issues from the authentication standpoint, i.e. the process of reliably verifying the identity of two parties in a communication channel. Once identities have been verified, the channel authenticity must be maintained. Mobile communication systems that utilize three systems, symmetric ciphers, public key systems, and zero-knowledge techniques, are shown to be highly secure. The level security is not degraded due to the absence of a "fixed" link between the user and service provider
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