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Institut
- Fachbereich 4 (115) (entfernen)
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.
Designing Core Ontologies
(2011)
One of the key factors that hinders integration of distributed, heterogeneous information systems is the lack of a formal basis for modeling the complex, structured knowledge that is to be exchanged. To alleviate this situation, we present an approach based on core ontologies. Core ontologies are characterized by a high degree of axiomatization and formal precision. This is achieved by basing on a foundational ontology. In addition, core ontologies should follow a pattern-oriented design approach. By this, they are modular and extensible. Core ontologies allow for reusing the structured knowledge they define as well as integrating existing domainrnknowledge. The structured knowledge of the core ontologies is clearly separated from the domain-specific knowledge. Such core ontologies allow for both formally conceptualize their particular fields and to be flexibly combined to cover the needsrnof concrete, complex application domains. Over the last years, we have developed three independent core ontologies for events and objects, multimedia annotations, and personal information management. In this paper, we present the simultaneousrnuse and integration of our core ontologies at the example of a complex, distributed socio-technical system of emergency response. We describe our design approach for core ontologies and discuss the lessons learned in designing them. Finally, we elaborate on the beauty aspects of our core ontologies.
Schema information about resources in the Linked Open Data (LOD) cloud can be provided in a twofold way: it can be explicitly defined by attaching RDF types to the resources. Or it is provided implicitly via the definition of the resources´ properties.
In this paper, we analyze the correlation between the two sources of schema information. To this end, we have extracted schema information regarding the types and properties defined in two datasets of different size. One dataset is a LOD crawl from TimBL- FOAF profile (11 Mio. triple) and the second is an extract from the Billion Triples Challenge 2011 dataset (500 Mio. triple). We have conducted an in depth analysis and have computed various entropy measures as well as the mutual information encoded in this two manifestations of schema information.
Our analysis provides insights into the information encoded in the different schema characteristics. It shows that a schema based on either types or properties alone will capture only about 75% of the information contained in the data. From these observations, we derive conclusions about the design of future schemas for LOD.
The lack of a formal event model hinders interoperability in distributed event-based systems. Consequently, we present in this paper a formal model of events, called F. The model bases on an upper-level ontology and pro-vides comprehensive support for all aspects of events such as time and space, objects and persons involved, as well as the structural aspects, namely mereological, causal, and correlational relationships. The event model provides a flexible means for event composition, modeling of event causality and correlation, and allows for representing different interpretations of the same event. The foundational event model F is developed in a pattern-oriented approach, modularized in different ontologies, and can be easily extended by domain specifific ontologies.
The Multimedia Metadata Ontology (M3O) provides a generic modeling framework for representing multimedia metadata. It has been designed based on an analysis of existing metadata standards and metadata formats. The M3O abstracts from the existing metadata standards and formats and provides generic modeling solutions for annotations, decompositions, and provenance of metadata. Being a generic modeling framework, the M3O aims at integrating the existing metadata standards and metadata formats rather than replacing them. This is in particular useful as today's multimedia applications often need to combine and use more than one existing metadata standard or metadata format at the same time. However, applying and specializing the abstract and powerful M3O modeling framework in concrete application domains and integrating it with existing metadata formats and metadata standards is not always straightforward. Thus, we have developed a step-by-step alignment method that describes how to integrate existing multimedia metadata standards and metadata formats with the M3O in order to use them in a concrete application. We demonstrate our alignment method by integrating seven different existing metadata standards and metadata formats with the M3O and describe the experiences made during the integration process.
Networked RDF graphs
(2007)
Networked graphs are defined in this paper as a small syntactic extension of named graphs in RDF. They allow for the definition of a graph by explicitly listing triples as well as by SPARQL queries on one or multiple other graphs. By this extension it becomes possible to define a graph including a view onto other graphs and to define the meaning of a set of graphs by the way they reference each other. The semantics of networked graphs is defined by their mapping into logic programs. The expressiveness and computational complexity of networked graphs, varying by the set of constraints imposed on the underlying SPARQL queries, is investigated. We demonstrate the capabilities of networked graphs by a simple use case.
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.
Modeling and publishing Linked Open Data (LOD) involves the choice of which vocabulary to use. This choice is far from trivial and poses a challenge to a Linked Data engineer. It covers the search for appropriate vocabulary terms, making decisions regarding the number of vocabularies to consider in the design process, as well as the way of selecting and combining vocabularies. Until today, there is no study that investigates the different strategies of reusing vocabularies for LOD modeling and publishing. In this paper, we present the results of a survey with 79 participants that examines the most preferred vocabulary reuse strategies of LOD modeling. Participants of our survey are LOD publishers and practitioners. Their task was to assess different vocabulary reuse strategies and explain their ranking decision. We found significant differences between the modeling strategies that range from reusing popular vocabularies, minimizing the number of vocabularies, and staying within one domain vocabulary. A very interesting insight is that the popularity in the meaning of how frequent a vocabulary is used in a data source is more important than how often individual classes and properties arernused in the LOD cloud. Overall, the results of this survey help in understanding the strategies how data engineers reuse vocabularies, and theyrnmay also be used to develop future vocabulary engineering tools.
Social networking platforms as creativity fostering systems: research model and exploratory study
(2008)
Social networking platforms are enabling users to create their own content, share this content with anyone they invite and organize connections with existing or new online contacts. Within these electronic environments users voluntarily add comments on virtual boards, distribute their search results or add information about their expertise areas to their social networking profiles and thereby share it with acquaintances, friends and increasingly even with colleagues in the corporate world. As a result, it is most likely that the underlying knowledge sharing processes result in many new and creative ideas. The objective of our research therefore is to understand if and how social social networking platforms can enforce creativity. In addition, we look at how these processes could be embedded within the organizational structures that influence innovative knowledge sharing behavior. The basis for our research is a framework which focuses on the relations between intrinsic motivation, creativity and social networking platforms. First results of our empirical investigation of a social software platform called "StudiVZ.net" proved that our two propositions are valid.
Information systems research has started to use crowdsourcing platforms such as Amazon Mechanical Turks (MTurk) for scientific research, recently. In particular, MTurk provides a scalable, cheap work-force that can also be used as a pool of potential respondents for online survey research. In light of the increasing use of crowdsourcing platforms for survey research, the authors aim to contribute to the understanding of its appropriate usage. Therefore, they assess if samples drawn from MTurk deviate from those drawn via conventional online surveys (COS) in terms of answers in relation to relevant e-commerce variables and test the data in a nomological network for assessing differences in effects.
The authors compare responses from 138 MTurk workers with those of 150 German shoppers recruited via COS. The findings indicate, inter alia, that MTurk workers tend to exhibit more positive word-of mouth, perceived risk, customer orientation and commitment to the focal company. The authors discuss the study- results, point to limitations, and provide avenues for further research.
Semantic-Web-Technologien haben sich als Schlüssel für die Integration verteilter und heterogener Datenquellen im Web erwiesen, da sie die Möglichkeit bieten, typisierte Verknüpfungen zwischen Ressourcen auf dynamische Weise und nach den Prinzipien von sogenannten Dataspaces zu definieren. Die weit verbreitete Einführung dieser Technologien in den letzten Jahren führte zu einer großen Menge und Vielfalt von Datensätzen, die als maschinenlesbare RDF-Daten veröffentlicht wurden und nach ihrer Verknüpfung das sogenannte Web of Data bilden. Angesichts des großen Datenumfangs werden diese Verknüpfungen normalerweise durch Berechnungsmethoden generiert, den Inhalt von RDF-Datensätzen analysieren und die Entitäten und Schemaelemente identifizieren, die über die Verknüpfungen verbunden werden sollen. Analog zu jeder anderen Art von Daten müssen Links die Kriterien für Daten hoher Qualität erfüllen (z. B. syntaktisch und semantisch genau, konsistent, aktuell), um wirklich nützlich und leicht zu konsumieren zu sein. Trotz der Fortschritte auf dem Gebiet des maschinellen Lernens ist die menschliche Intelligenz für die Suche nach qualitativ hochwertigen Verbindungen nach wie vor von entscheidender Bedeutung: Menschen können Algorithmen trainieren, die Ausgabe von Algorithmen in Bezug auf die Leistung validieren, und auch die resultierenden Links erweitern. Allerdings sind Menschen – insbesondere erfahrene Menschen – nur begrenzt verfügbar. Daher kann die Ausweitung der Datenqualitätsmanagementprozesse von Dateneigentümern/-verlegern auf ein breiteres Publikum den Lebenszyklus des Datenqualitätsmanagements erheblich verbessern.
Die jüngsten Fortschritte bei Human Computation und bei Peer-Production-Technologien eröffneten neue Wege für Techniken zur Verwaltung von Mensch-Maschine-Daten, die es ermöglichten, Nicht-Experten in bestimmte Aufgaben einzubeziehen und Methoden für kooperative Ansätze bereitzustellen. Die in dieser Arbeit vorgestellten Forschungsarbeiten nutzen solche Technologien und untersuchen Mensch-Maschine-Methoden, die das Management der Verbindungsqualität im Semantic Web erleichtern sollen. Zunächst wird unter Berücksichtigung der Dimension der Verbindungsgenauigkeit eine Crowdsourcing Methode zur Ontology Alignment vorgestellt. Diese Methode, die auch auf Entitäten anwendbar ist, wird als Ergänzung zu automatischen Ontology Alignment implementiert. Zweitens werden neuartige Maßnahmen zur Dimension des Informationsgewinns eingeführt, die durch die Verknüpfungen erleichtert werden. Diese entropiezentrierten Maßnahmen liefern Datenmanagern Informationen darüber, inwieweit die Entitäten im verknüpften Datensatz Informationen in Bezug auf Entitätsbeschreibung, Konnektivität und Schemaheterogenität erhalten. Drittens wenden wir Wikidata - den erfolgreichsten Fall eines verknüpften Datensatzes, der von einer Gemeinschaft von Menschen und Bots kuratiert, verknüpft und verwaltet wird - als Fallstudie an und wenden deskriptive und prädiktive Data Mining-Techniken an, um die Ungleichheit der Teilnahme und den Nutzerschwung zu untersuchen. Unsere Ergebnisse und Methoden können Community-Managern helfen, Entscheidungen darüber zu treffen, wann/wie mit Maßnahmen zur Nutzerbindung eingegriffen werden soll. Zuletzt wird eine Ontologie zur Modellierung der Geschichte der Crowd-Beiträge auf verschiedenen Marktplätzen vorgestellt. Während der Bereich des Mensch-Maschine-Datenmanagements komplexe soziale und technische Herausforderungen mit sich bringt, zielen die Beiträge dieser Arbeit darauf ab, zur Entwicklung dieses noch aufstrebenden Bereichs beizutragen.
MapReduce with Deltas
(2011)
The MapReduce programming model is extended slightly in order to use deltas. Because many MapReduce jobs are being re-executed over slightly changing input, processing only those changes promises significant improvements. Reduced execution time allows for more frequent execution of tasks, yielding more up-to-date results in practical applications. In the context of compound MapReduce jobs, benefits even add up over the individual jobs, as each job gains from processing less input data. The individual steps necessary in working with deltas are being analyzed and examined for efficiency. Several use cases have been implemented and tested on top of Hadoop. The correctness of the extended programming model relies on a simple correctness criterion.
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.
We present a non-linear camera pose estimator, which is able to handle a combined input of point and line feature correspondences. For three or more correspondences, the estimator works on any arbitrary number and choice of the feature type, which provides an estimation of the pose on a preferably small and flexible amount of 2D-3D correspondences. We also give an analysis of different minimization techniques, parametrizations of the pose data, and of error measurements between 2D and 3D data. These will be tested for the usage of point features, lines and the combination case. The result shows the most stable and fast working non-linear parameter set for pose estimation in model-based tracking.
We introduce linear expressions for unrestricted dags (directed acyclic graphs) and finite deterministic and nondeterministic automata operating on them. Those dag automata are a conservative extension of the Tu,u-automata of Courcelle on unranked, unordered trees and forests. Several examples of dag languages acceptable and not acceptable by dag automata and some closure properties are given.
Software Projekte nutzen typischerweise mehrere externe Programmbibliotheken. Die Schnittstelle, die solch eine Programmbibliothek zur Verfügung stellt, wird als API (application programming interface) bezeichnet. APIs werden üblicherweise laufend weiterentwickelt, was es notwendig macht, dass die Anwendungen, welche sie verwenden, entsprechend modifiziert werden. Zudem kann es kann vorkommen, dass eine Programmbibliothek durch eine andere ersetzt werden soll, was ebenfalls zur Folge hat, dass die Anwendungen, wo die API verwendet wurde, modifiziert werden müssen. Den Vorgang eine Anwendung so zu modifizieren, dass eine andere API verwendet wird, bezeichnet man als API Migration. Manuelle API Migration ist eine mühselige und zeitintensive Aufgabe, deshalb ist automatische API Migration ein aktives Forschungsfeld. Ein verwandtes Forschungsgebiet ist API Analyse, welches Daten zur Verfügung stellt, die helfen können Werkzeuge für API Migration zu entwickeln. Die hier vorliegende Arbeit behandelt Techniken und Technologien für die Entwicklung von Werkzeugen für API Analyse und API Migration. Die Ergebnisse werden als Design Patterns präsentiert, welche auf unseren Erfahrungen mit API Analyse und API Migration innerhalb des Software Languages Teams basieren.
Diese Arbeit befasst sich mit der Evaluation verschiedener Erste Hilfe Applikationen für Smartphones. Diese werden mit der App "DefiNow!", welche von der Universität Koblenz entwickelt wurde, verglichen. Hierbei liegt der Schwerpunkt der Evaluation auf der Usability basierend auf den Softwareergonomischen Prinzipien der Iso Norm 9241-110.
Eine Usability Studie mit 74 Teilnehmern wurde durchgeführt und die daraus resultierenden Ergebnisse genutzt um die bestehende App "Defi Now!" hinsichtlich ihrer Usability zu optimieren.
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
In der heutigen Robotik-Forschung soll hauptsächlich die Interaktion von autonomen, mobilen Robotern mit vorher nicht bekannten Umgebungen ermöglicht werden. Eines der grundlegendsten Probleme, das in diesem Kontext gelöst werden muss, ist die Frage, wo der Roboter ist und wie seine Umgebung in unmittelbarer Nähe, aber auch an bereits besuchten Orten aussieht " das sogenannte SLAM Problem.
In dieser Arbeit wird ein GraphSLAM System vorgestellt, das einen graphbasierten Lösungsansatz für dieses Problem darstellt. Ein solches System besteht aus einem Frontend und einem Backend. Das Frontend hat die Aufgabe, aus den Sensordaten einen Graphen zu konstruieren, der die relative Lage der Messungen zueinander widerspiegelt. Da sich Messungen widersprechen können, ist ein solcher Graph im Allgemeinen inkonsistent. Das Backend hat nun die Aufgabe, diesen Graphen zu optimieren, d. h. eine Konfiguration der Knoten zu bestimmen, die sich nur minimal widerspricht. Knoten repräsentieren Roboterposen, die aufgrund der enthaltenen Rotationen sog. Mannigfaltigkeiten sind und keinen gewöhnlichen Vektorraum bilden. Dies wird in der Arbeit konsequent berücksichtigt, was zu einem sehr effizienten und eleganten Optimierungsverfahren führt.
Das Ziel dieser Masterarbeit ist, dass der Roboter Lisa komplexe Befehle verarbeiten und Information aus einem Kommando extrahieren kann, die benötigt werden, um eine komplexe Aufgabe als eine Sequenz von kleineren Aufgaben auszuführen. Um dieses Ziel zu erreichen wird das Bild, das Lisa von ihrer Umgebung hat, mit semantischen Informationen angereichert. Diese Informationen werden in ihre Karte eingefügt werden. Es wird angenommen, dass der komplexe Befehl bereits geparst worden ist. Deshalb ist die Verarbeitung des Inputs, um daraus einen geparsten Befehl zu erstellen, kein Teil dieser Masterarbeit. Die Karten, die Lisa aufbaut, werden mit semantischen Anmerkungen annotiert. Zu diesen Anmerkungen gehört jede Art von Informationen, die nützlich zur Ausführung allgemeiner Aufgaben sein könnte. Das kann zumBeispiel eine hierarchische Klassifizierungen von Orten, Objekten und Flächen sein. Die Abarbeitung des Befehls mit den zugehörigen Informationen über die Umgebung wird eine Sequenz von Aufgaben auslösen. Diese Aufgaben sind die bereits implementierten Fähigkeiten von Lisa, wie zum Beispiel Objekterkennung oder Navigation. Das Ziel dieser Masterarbeit ist aber nicht nur, die vorhandenen Aufgaben zu nutzen, sondern auch das Hinzufügen von neuen Aufgaben zu erleichtern.