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Currently network security of institutions highly depend on firewalls, which are used to separate untrusted network from trusted one by enforcing security policies. Security policies used in firewalls are ordered set of rules where each rule is represented as a predicate and an action. This paper proposes modeling of firewall rules via directed acyclic graphs (DAG), from which test cases can be automatically...
The 3 most important issues for anomaly detection based intrusion detection systems by using data mining methods are: feature selection, data value normalization, and the choice of data mining algorithms. In this paper, we study primarily the feature selection of network traffic and its impact on the detection rates. We use KDD CUP 1999 dataset as the sample for the study. We group the features of...
The paper describes some of important technologies in the firearm identification using forensic ballistics specimens. The mapping of micro-surfaces on regions on the specimens for comparison to establish identification according to the precision of measurement of the features has been proposed. The physical techniques of linescan, laser depth proofing, and photonic 3D topography can be developed into...
This position paper proposes a research agenda for the field of security testing. It gives a critical account of the state of the art as seen by a practitioner and identifies questions that research failed to answer so far, or failed to answer in such a way that it would have had an impact in the real world. Three categories of research problems are proposed: theory of vulnerabilities, theory of security...
We propose an approach to generate and execute tests of the conformance of a system to a given security policy. The method is rule-based: it generates test cases directly from a security policy expressed as a set of security requirements, using two relations: one between predicates appearing in the rules and elementary test cases, called tiles, used to test predicates in the system, and another one...
We present the use of swept wavelength interferometry for distributed fiber-optic temperature measurements in a nuclear reactor. The sensors consisted of 2-m segments of commercially available, single mode optical fibers. The interrogation technique is based on measuring the spectral shift of the intrinsic Rayleigh backscatter signal along the optical fiber and converting the spectral shift to temperature.
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