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Generalized methods for automated theorem proving can be used to compute formula transformations such as projection elimination and knowledge compilation. We present a framework based on clausal tableaux suited for such tasks. These tableaux are characterized independently of particular construction methods, but important features of empirically successful methods are taken into account, especially dependency directed backjumping and branch local operation. As an instance of that framework an adaption of DPLL is described. We show that knowledge compilation methods can be essentially improved by weaving projection elimination partially into the compilation phase.
Knowledge compilation is a common technique for propositional logic knowledge bases. The idea is to transform a given knowledge base into a special normal form ([MR03],[DH05]), for which queries can be answered efficiently. This precompilation step is very expensive but it only has to be performed once. We propose to apply this technique to knowledge bases defined in Description Logics. For this, we introduce a normal form, called linkless concept descriptions, for ALC concepts. Further we present an algorithm, based on path dissolution, which can be used to transform a given concept description into an equivalent linkless concept description. Finally we discuss a linear satisfiability test as well as a subsumption test for linkless concept descriptions.
UML models and OWL ontologies constitute modeling approaches with different strength and weaknesses that make them appropriate for use of specifying different aspects of software systems. In particular, OWL ontologies are well suited to specify classes using an expressive logical language with highly flexible, dynamic and polymorphic class membership, while UML diagrams are much more suitable for specifying not only static models including classes and associations, but also dynamic behavior. Though MOF based metamodels and UML profiles for OWL have been proposed in the past, an integrated use of both modeling approaches in a coherent framework has been lacking so far. We present such a framework, TwoUse, for developing integrated models, comprising the benefits of UML models and OWL ontologies
Im Gesundheitswesen geht es nicht nur um die Vertraulichkeit von Patientendaten, sondern auch um ihre Integrität, von der die richtige Behandlung und Pflege des Patienten abhängen. Eine Maßnahme zur Absicherung eines Krankenhausinformationssystems (KIS) gegen unautorisierte Angreifer ist eine flexibel organisierte Zugriffskontrolle zum Schutz der patientenbezogenen Daten. Dieser Artikel beschreibt das Konzept einer rollenbasierten Zugriffskontrolle (RBAC - Role Based Access Control) und seine Einsatzmöglichkeiten im Gesundheitswesen.
This paper shows how multiagent systems can be modeled by a combination of UML statecharts and hybrid automata. This allows formal system specification on different levels of abstraction on the one hand, and expressing real-time system behavior with continuous variables on the other hand. It is not only shown how multi-robot systems can be modeled by a combination of hybrid automata and hierarchical state machines, but also how model checking techniques for hybrid automata can be applied. An enhanced synchronization concept is introduced that allows synchronization taking time and avoids state explosion to a certain extent.
In this paper we describe a series of projects on location based and personalised information systems. We start wit a basic research project and we show how we came with the help of two other more application oriented project to a product. This is developed by a consortium of enterprises and it already is in use in the city of Koblenz.
Die folgende Arbeit soll einen Überblick über bestehende Lösungen zur Interaktion in Erweiterten Realitäten (Augmented Reality) schaffen. Hierzu werden anhand dreier grundlegender Betrachtungsweisen unterschiedliche Interaktionskonzepte und -umsetzungen sowohl von der technischen, als auch von der konzeptuellen Seite her, vorgestellt. Neben Fragen der Visualisierung werden unterschiedliche Typen von Benutzungsschnittstellen vorstellt. Den größten Teil nehmen die drei typischen Interaktionsaufgaben Selektion- und Manipulation, Navigation und Systemkontrolle und die damit verbundenen Interaktionstechniken ein. Die Inhalte des Arbeitsberichts beschränken sich auf den Einsatz von Interaktionelementen in Augmented Reality Umgebungen. Dies geschieht in Abgrenzung zu Forschungsarbeiten auf dem Gebiet zu Interaktionstechniken in Virtual Reality Umgebungen (vollimmersiv oder auch desktoporientiert). Zwar standen und stehen viele Interaktionstechniken aus dem Bereich VR in der AR Pate, doch haben sich gerade im Bereich der AR neue Techniken und Konzepte entwickelt. Folglich sollen VR Techniken nur dann betrachtet werden, wenn Sie in AR Anwendungen angewendet wurden bzw. wenn ihre Anwendung sinnvoll erscheint.
This paper offers an informal overview and discussion on first order predicate logic reasoning systems together with a description of applications which are carried out in the Artificial Intelligence Research Group of the University in Koblenz. Furthermore the technique of knowledge compilation is shortly introduced.
The term "Augmented Reality (AR)" denotes the superposition of additional virtual objects and supplementary information over real images. The joint project Enhanced Reality (ER)1 aims at a generic AR-system. The ER-project is a cooperation of six different research groups of the Department of Computer Science at the University of Koblenz-Landau. According to Ronald Azuma an AR-system combines real and virtual environments, where the real and virtual objects are registered in 3-D, and it provides interactivity in real time [Azu97]. Enhanced Reality extends Augmented Reality by requiring the virtual objects to be seamlessly embedded into the real world as photo-realistic objects according to the exact lighting conditions. Furthermore, additional information supplying value-added services may be displayed and interaction of the user may even be immersive. The short-term goal of the ER-project is the exploration of ER-fundamentals using some specific research scenarios; the long-term goal is the development of a component-based ER-framework for the creation of ER-applications for arbitrary application areas. ER-applications are developed as single-user applications for users who are moving in a real environment and are wearing some kind of visual output device like see-through glasses and some mobile end device. By these devices the user is able to see reality as it is, but he can also see the virtual objects and the additional information about some value-added service. Furthermore he might have additional devices whereby he can interact with the available virtual objects. The development of a generic framework for ER-applications requires the definition of generic components which are customizable and composable to build concrete applications and it requires a homogeneous data model which supports all components equally well. The workgroup "Software Technology"2 is responsible for this subproject. This report gives some preliminary results concerning the derivation of a component-based view of ER. There are several augmented reality frameworks like ARVIKA, AMIRE, DWARF, MORGAN, Studierstube and others which offer some support for the development of AR-applications. All of them ease the use of existing subsystems like AR-Toolkit, OpenGL and others and leverage the generation process for realistic systems by making efficient use of those subsystems. Consequently, they highly rely on them.
In Enhanced Reality Umgebungen nimmt der Betrachter die Umgebung und zusätzliche, in eine halbdurchsichtige Datenbrille eingeblendete Informationen wahr. Das Kalibrierungsproblem der Datenbrille ist die Aufgabe, die eingeblendete Information mit dem korrekten realen Hintergrund zur Deckung zu bringen. Heutige Datenbrillen sind vergleichsweise klobig und schwer, deshalb kommt es häufig zu leichtem Verrutschen der Brille. Wird dieses Verrutschen nicht in die Position der Einblendung in der Brille einbezogen, so passt die Einblendung nicht mehr zum realen Hintergrund. Dies wird in Abbildung 1.1 exemplarisch dargestellt. Nach initialer Kalibrierung der teildurchsichtigen Datenbrille auf das Auge des Betrachters soll deshalb bei relativer Lageveränderung der Datenbrille zum Auge (durch leichtes Verrutschen) eine Re-Kalibrierung in Echtzeit automatisch erfolgen. Eine automatische Re-Kalibrierung bei Verrutschen wird von uns erstmalig erforscht.