004 Datenverarbeitung; Informatik
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- 2011 (34) (entfernen)
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The estimation of various social objects is necessary in different fields of social life, science, education, etc. This estimation is usually used for forecasting, for evaluating of different properties and for other goals in complex man-machine systems. At present this estimation is possible by means of computer and mathematical simulation methods which is connected with significant difficulties, such as: - time-distributed process of receiving information about the object; - determination of a corresponding mathematical device and structure identification of the mathematical model; - approximation of the mathematical model to real data, generalization and parametric identification of the mathematical model; - identification of the structure of the links of the real social object. The solution of these problems is impossible without a special intellectual information system which combines different processes and allows predicting the behaviour of such an object. However, most existing information systems lead to the solution of only one special problem. From this point of view the development of a more general technology of designing such systems is very important. The technology of intellectual information system development for estimation and forecasting the professional ability of respondents in the sphere of education can be a concrete example of such a technology. Job orientation is necessary and topical in present economic conditions. It helps tornsolve the problem of expediency of investments to a certain sphere of education. Scientifically validated combined diagnostic methods of job orientation are necessary to carry out professional selection in higher education establishments. The requirements of a modern society are growing, with the earlier developed techniques being unable to correspond to them sufficiently. All these techniques lack an opportunity to account all necessary professional and personal characteristics. Therefore, it is necessary to use a system of various tests. Thus, the development of new methods of job orientation for entrants is necessary. The information model of the process of job orientation is necessary for this purpose. Therefore, it would be desirable to have an information system capable of giving recommendations concerning the choice of a trade on the basis of complex personal characteristics of entrants.
Tractography on HARDI data
(2011)
Diffusionsgewichtete Bildgebung ist eine wichtige Modalität in der klinischen Praxis. Sie stellt gegenwärtig die einzige Möglichkeit dar, nicht invasiv und in vivo Einblicke in das menschliche Gehirn zu erhalten. Die Einsatzgebiete dieser Technik sind sehr vielseitig. Sie wird zur Untersuchung des Gehirns, seiner Struktur, seiner Entwicklung und der Funktionsweisenseiner verschiedenen Areale einsetzt. Weiterhin spielt diese Modalität eine wichtige Rolle bei der Operationsplanung am Gehirn und der Untersuchung von Schlaganfall, Alzheimer und Multipler Sklerose. Diese Arbeit gibt eine kurze Einführung in die Bildgebungmittels MRT und geht auf die Entstehung diffusionsgewichtete Bilder ein. Darauf aufbauend wird der Diffusionstensor, die am meisten verbreitete Datenrepräsentation in der Diffusionsbildgebung, vorgestellt. Da die Repräsentation der Diffusion als Diffusionstensor erhebliche Einschränkungen darstellt, werden neue Methoden zur Datenrepräsentation vorgestellt und diskutiert. Diese neuen Methoden werden unter dem Begriff HARDI (Diffusionsbildgebung mit hoher Winkelauflösung, von engl. high angular resolution diffusion imaging) zusammengefasst. Weiterhin wird eine ausführliche Einführung in das Thema der Traktografie, der Rekonstruktion von Nervenbahnen im Gehirn, gegeben. Basierend auf diesem theoretischenWissen werden etablierte Algorithmen der Traktografie von Diffusionstensor- auf HARDI-Daten überführt. Dadurch wird die Rekonstruktion derNervenbahnen entscheidend verbessert. Es wird eine vollständig neue Methode vorgestellt, die in der Lage ist, Nervenbahnen sowohl auf einem Phantomdatensatz, als auch auf einem vom Menschen stammenden Gehirndatensatz zu rekonstruieren. Weiterhin wird ein neuartiger globaler Ansatz vorgestellt, um Voxel anhand ihrer Diffusionseigenschaften zu klassifizieren.
The semantic web and model-driven engineering are changing the enterprise computing paradigm. By introducing technologies like ontologies, metadata and logic, the semantic web improves drastically how companies manage knowledge. In counterpart, model-driven engineering relies on the principle of using models to provide abstraction, enabling developers to concentrate on the system functionality rather than on technical platforms. The next enterprise computing era will rely on the synergy between both technologies. On the one side, ontology technologies organize system knowledge in conceptual domains according to its meaning. It addresses enterprise computing needs by identifying, abstracting and rationalizing commonalities, and checking for inconsistencies across system specifications. On the other side, model-driven engineering is closing the gap among business requirements, designs and executables by using domain-specific languages with custom-built syntax and semantics. In this scenario, the research question that arises is: What are the scientific and technical results around ontology technologies that can be used in model-driven engineering and vice versa? The objective is to analyze approaches available in the literature that involve both ontologies and model-driven engineering. Therefore, we conduct a literature review that resulted in a feature model for classifying state-of-the-art approaches. The results show that the usage of ontologies and model-driven engineering together have multiple purposes: validation, visual notation, expressiveness and interoperability. While approaches involving both paradigms exist, an integrated approach for UML class-based modeling and ontology modeling is lacking so far. Therefore, we investigate the techniques and languages for designing integrated models. The objective is to provide an approach to support the design of integrated solutions. Thus, we develop a conceptual framework involving the structure and the notations of a solution to represent and query software artifacts using a combination of ontologies and class-based modeling. As proof of concept, we have implemented our approach as a set of open source plug-ins -- the TwoUse Toolkit. The hypothesis is that a combination of both paradigms yields improvements in both fields, ontology engineering and model-driven engineering. For MDE, we investigate the impact of using features of the Web Ontology Language in software modeling. The results are patterns and guidelines for designing ontology-based information systems and for supporting software engineers in modeling software. The results include alternative ways of describing classes and objects and querying software models and metamodels. Applications show improvements on changeability and extensibility. In the ontology engineering domain, we investigate the application of techniques used in model-driven engineering to fill the abstraction gap between ontology specification languages and programming languages. The objective is to provide a model-driven platform for supporting activities in the ontology engineering life cycle. Therefore, we study the development of core ontologies in our department, namely the core ontology for multimedia (COMM) and the multimedia metadata ontology. The results are domain-specific languages that allow ontology engineers to abstract from implementation issues and concentrate on the ontology engineering task. It results in increasing productivity by filling the gap between domain models and source code.
Improvements to the RMTI network routing daemon implementation and preparation of a public release
(2011)
Routing with Metric based Topology Investigation (RMTI) is an algorithm meant to extend distance-vector routing protocols. It is under research and development at the University of Koblenz-Landau since 1999 and currently implemented on top of the well-known Routing Information Protocol (RIP). Around midyear 2009, the latest implementation of RMTI included a lot of deprecated functionality. Because of this, the first goal of this thesis was the reduction of the codebase to a minimum. Beside a lot of reorganization and a general cleanup, this mainly involved the removal of some no longer needed modes as well as the separation of the formerly mandatory XTPeer test environment. During the second part, many test series were carried out in order to ensure the correctness of the latest RMTI implementation. A replacement for XTPeer was needed and several new ways of testing were explored. In conjunction with this thesis, the RMTI source code was finally released to the public under a free software license.