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Institut
- Fachbereich 4 (111) (entfernen)
2010,9
Ontologies play an important role in knowledge representation for sharing information and collaboratively developing knowledge bases. They are changed, adapted and reused in different applications and domains resulting in multiple versions of an ontology. The comparison of different versions and the analysis of changes at a higher level of abstraction may be insightful to understand the changes that were applied to an ontology. While there is existing work on detecting (syntactical) differences and changes in ontologies, there is still a need in analyzing ontology changes at a higher level of abstraction like ontology evolution or refactoring pattern. In our approach we start from a classification of model refactoring patterns found in software engineering for identifying such refactoring patterns in OWL ontologies using DL reasoning to recognize these patterns.
2010,8
With the Multimedia Metadata Ontology (M3O), we have developed a sophisticated model for representing among others the annotation, decomposition, and provenance of multimedia metadata. The goal of the M3O is to integrate the existing metadata standards and metadata formats rather than replacing them. To this end, the M3O provides a scaffold needed to represent multimedia metadata. Being an abstract model for multimedia metadata, it is not straightforward how to use and specialize the M3O for concrete application requirements and existing metadata formats and metadata standards. In this paper, we present a step-by-step alignment method describing how to integrate and leverage existing multimedia metadata standards and metadata formats in the M3O in order to use them in a concrete application. We demonstrate our approach by integrating three existing metadata models: the Core Ontology on Multimedia (COMM), which is a formalization of the multimedia metadata standard MPEG-7, the Ontology for Media Resource of the W3C, and the widely known industry standard EXIF for image metadata
2010,7
Existing tools for generating application programming interfaces (APIs) for ontologies lack sophisticated support for mapping the logics-based concepts of the ontology to an appropriate object-oriented implementation of the API. Such a mapping has to overcome the fundamental differences between the semantics described in the ontology and the pragmatics, i.e., structure, functionalities, and behavior implemented in the API. Typically, concepts from the ontology are mapped one-to-one to classes in the targeted programming language. Such a mapping only produces concept representations but not an API at the desired level of granularity expected by an application developer. We present a Model-Driven Engineering (MDE) process to generate customized APIs for ontologies. This API generation is based on the semantics defined in the ontology but also leverages additional information the ontology provides. This can be the inheritance structure of the ontology concepts, the scope of relevance of an ontology concept, or design patterns defined in the ontology.
2010,6
We propose a new approach for mobile visualization and interaction of temporal information by integrating support for time with today's most prevalent visualization of spatial information, the map. Our approach allows for an easy and precise selection of the time that is of interest and provides immediate feedback to the users when interacting with it. It has been developed in an evolutionary process gaining formative feedback from end users.
2010,5
E-Mail-Forensik - IP-Adressen und ihre Zuordnung zu Internet-Teilnehmern und ihren Standorten
(2010)
Wesentliches Element des weltweiten Internets bildet der Adressraum der IP-Adressen, die den am Internet teilnehmenden Geräten ("IP-Hosts") zugewiesen sind. IP-Adressen (der Version 4) bestehen aus vier Zahlen zwischen 0 und 255 und repräsentieren viermal acht Bits, mit welchen insgesamt über vier Milliarden Adressen unterschieden werden können. Die zentrale Organisation IANA vergibt an fünf regionale Adressregistraturen Adressräume, welche sie an lokale Registraturen, Telecomanbieter und Internet-Service-Provider weiter verteilen. Diese Adressverteilung ist relativ stabil. Diese Zuordnung ist öffentlich zugänglich über so genannte whois-Abfragen aus Datenbanken der regionalen Registraturen. Die Internet-Service-Provider (ISP) vergeben IP-Adressen an ihre Nutzer. Die Zuordnung wird teilweise statisch mit langfristiger Bindung vorgenommen und teilweise dynamisch nur für die Dauer einer Datenverbindung. Die dynamische Adressverwaltung erlaubt es Internet-Service-Providern, mehr Nutzer zu bedienen, als ihr Adressraum an verschiedenen IPAdressen zulässt, da die Adressen von Geräten, die aus dem Internet ausscheiden, nicht wie bei der statischen Vergabe frei gehalten werden müssen, sondern an sich neu mit dem ISP verbindende Geräte vergeben werden können. In internen Tabellen verwalten die Internet-Service-Provider die Zuordnung von IP-Adressen zu den konkreten Anschlüssen ihrer Nutzer, außerdem protokollieren sie, welcher Anschluss wann welche IP-Adresse hatte . Diese Daten sind öffentlich nicht zugänglich, sondern müssen bei Bedarf mit gesetzlich geregelten Einschränkungen (Datenschutz) erfragt werden.
2010,4
The processing of data is often restricted by contractual and legal requirements for protecting privacy and IPRs. Policies provide means to control how and by whom data is processed. Conditions of policies may depend on the previous processing of the data. However, existing policy languages do not provide means to express such conditions. In this work we present a formal model and language allowing for specifying conditions based on the history of data processing. We base the model and language on XACML.
2010,3
Das Forschungsprojekt KMU 2.0 zielt auf die Gestaltung einer modernen Arbeitswelt ab, in der die Mitarbeiter eines Netzwerkes kleiner und mittlerer Unternehmen (KMU) ihre Kompetenzen, Kreativität und Ideen in einen unternehmensübergreifenden Austausch einbringen, um innovative Lösungen für Probleme aus dem Berufsalltag gemeinsam zu generieren. Hierüber gilt es neue Wege und Szenarien für das Management der unternehmensübergreifenden Zusammenarbeit in KMU-Netzwerken zu erforschen, mit Hinblick auf die Entstehung und Umsetzung von Innovationen für Probleme aus der modernen Arbeitswelt. Fokussiert wird dabei auf den Einsatz von Web 2.0-Technologien, die als Instrument hinsichtlich ihres Unterstützungspotentials bei der kooperativen Generierung von innovativen Lösungen untersucht werden. Zentrale Fragestellung dabei ist, ob der Einsatz von Web 2.0 in einem Netzwerk von KMU den Austausch innovativer Ideen durch Vernetzung der Mitarbeiter und ihres kreativen Potentials fördert. Praxispartner ist das WirtschaftsForum Neuwied e.V., ein im nördlichen Rheinland-Pfalz angesiedeltes Unternehmen, das aus ca. 115 Mitgliedern und 10.000 Mitarbeitern besteht und durch eine heterogene Struktur an Unternehmen unterschiedlichster Größen und Branchen sowie verschiedenster Leistungsangebote charakterisiert ist.
2010,2
2010,1
The novel mobile application csxPOI (short for: collaborative, semantic, and context-aware points-of-interest) enables its users to collaboratively create, share, and modify semantic points of interest (POI). Semantic POIs describe geographic places with explicit semantic properties of a collaboratively created ontology. As the ontology includes multiple subclassiffcations and instantiations and as it links to DBpedia, the richness of annotation goes far beyond mere textual annotations such as tags. With the intuitive interface of csxPOI, users can easily create, delete, and modify their POIs and those shared by others. Thereby, the users adapt the structure of the ontology underlying the semantic annotations of the POIs. Data mining techniques are employed to cluster and thus improve the quality of the collaboratively created POIs. The semantic POIs and collaborative POI ontology are published as Linked Open Data.
2009,20
In dieser Arbeit wird ein Mehrbenutzer-Annotationssystem namens myAnnotations vorgestellt, das mit Hilfe von sogenannten "Shared In-situ Problem Solving" Annotationen auf beliebigen Webseiten kollaborative Lern- und Arbeitsszenarien unterstützt. Hierbei wird insbesondere auf die Einsatzmöglichkeiten von "Shared In-situ Problem Solving" Annotationen beim kollaborativen Bearbeiten eines Textes und bei kollaborativen Lernerfolgskontrollen eingegangen.