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Institut
- Fachbereich 4 (116) (entfernen)
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.
Hybrid systems are the result of merging the two most commonly used models for dynamical systems, namely continuous dynamical systems defined by differential equations and discrete-event systems defined by automata. One can view hybrid systems as constrained systems, where the constraints describe the possible process flows, invariants within states, and transitions on the one hand, and to characterize certain parts of the state space (e.g. the set of initial states, or the set of unsafe states) on the other hand. Therefore, it is advantageous to use constraint logic programming (CLP) as an approach to model hybrid systems. In this paper, we provide CLP implementations, that model hybrid systems comprising several concurrent hybrid automata, whose size is only straight proportional to the size of the given system description. Furthermore, we allow different levels of abstraction by making use of hierarchies as in UML statecharts. In consequence, the CLP model can be used for analyzing and testing the absence or existence of (un)wanted behaviors in hybrid systems. Thus in summary, we get a procedure for the formal verification of hybrid systems by model checking, employing logic programming with constraints.
Hybrid automata are used as standard means for the specification and analysis of dynamical systems. Several researches have approached them to formally specify reactive Multi-agent systems situated in a physical environment, where the agents react continuously to their environment. The specified systems, in turn, are formally checked with the help of existing hybrid automata verification tools. However, when dealing with multi-agent systems, two problems may be raised. The first problem is a state space problem raised due to the composition process, where the agents have to be parallel composed into an agent capturing all possible behaviors of the multi-agent system prior to the verification phase. The second problem concerns the expressiveness of verification tools when modeling and verifying certain behaviors. Therefore, this paper tackles these problems by showing how multi-agent systems, specified as hybrid automata, can be modeled and verified using constraint logic programming(CLP). In particular, a CLP framework is presented to show how the composition of multi-agent behaviors can be captured dynamically during the verification phase. This can relieve the state space complexity that may occur as a result of the composition process. Additionally, the expressiveness of the CLP model flexibly allows not only to model multi-agent systems, but also to check various properties by means of the reachability analysis. Experiments are promising to show the feasibility of our approach.
This work addresses the challenge of calibrating multiple solid-state LIDAR systems. The study focuses on three different solid-state LIDAR sensors that implement different hardware designs, leading to distinct scanning patterns for each system. Consequently, detecting corresponding points between the point clouds generated by these LIDAR systems—as required for calibration—is a complex task. To overcome this challenge, this paper proposes a method that involves several steps. First, the measurement data are preprocessed to enhance its quality. Next, features are extracted from the acquired point clouds using the Fast Point Feature Histogram method, which categorizes important characteristics of the data. Finally, the extrinsic parameters are computed using the Fast Global Registration technique. The best set of parameters for the pipeline and the calibration success are evaluated using the normalized root mean square error. In a static real-world indoor scenario, a minimum root mean square error of 7 cm was achieved. Importantly, the paper demonstrates that the presented approach is suitable for online use, indicating its potential for real-time applications. By effectively calibrating the solid-state LIDAR systems and establishing point correspondences, this research contributes to the advancement of multi-LIDAR fusion and facilitates accurate perception and mapping in various fields such as autonomous driving, robotics, and environmental monitoring.
This paper describes the robot Lisa used by team homer@UniKoblenz of the University of Koblenz Landau, Germany, for the participation at the RoboCup@Home 2017 in Nagoya, Japan. A special focus is put on novel system components and the open source contributions of our team. We have released packages for object recognition, a robot face including speech synthesis, mapping and navigation, speech recognition interface via android and a GUI. The packages are available (and new packages will be released) on
http://wiki.ros.org/agas-ros-pkg.
This paper describes the robot Lisa used by team
homer@UniKoblenz of the University of Koblenz Landau, Germany, for the participation at the RoboCup@Home 2016 in Leipzig, Germany. A special focus is put on novel system components and the open source contributions of our team. We have released packages for object recognition, a robot face including speech synthesis, mapping and navigation, speech recognition interface via android and a GUI. The packages are available (and new packages will be released) on http://wiki.ros.org/agas-ros-pkg.
CAMPUS NEWS - artificial intelligence methods combined for an intelligent information network
(2008)
In this paper we describe a network for distributing personalised information with the usage of artificial intelligence methods. Reception of this information should be possible with everyday mobile equipment. Intelligent filtering and spam protection aim at integrating this technology into our environment. Information on the system architecture and usage of the installation are also presented.
Conventional security infrastructures in the Internet cannot be directly adopted to ambient systems, especially if based on short-range communication channels: Personal, mobile devices are used and the participants are present during communication, so privacy protection is a crucial issue. As ambient systems cannot rely on an uninterrupted connection to a Trust Center, certiffed data has to be veriffed locally. Security techniques have to be adjusted to the special environment. This paper introduces a public key infrastructure (PKI) to provide secure communication channels with respect to privacy, confidentiality, data integrity, non-repudiability, and user or device authentication. It supports three certiffcate levels with a different balance between authenticity and anonymity. This PKI is currently under implementation as part of the iCity project.
An empirical study to evaluate the location of advertisement panels by using a mobile marketing tool
(2009)
The efficiency of marketing campaigns is a precondition for business success. This paper discusses a technique to transfer advertisement content vie Bluetooth technology and collects market research information at the same time. Conventional advertisement media were enhanced by devices to automatically measure the number, distance, frequency and exposure time of passersby, making information available to evaluate both the wireless media as well as the location in general. This paper presents a study analyzing these data. A cryptographic one-way function protects privacy during data acquisition.
Distanzvektor-Routing-Protokolle sind Interior-Gateway-Protokolle, bei denen jeder Router anhand der Informationen, die er von seinen Nachbarn erhält, eine Routingtabelle mit den kürzesten Wegen und dazugehörigen Kosten zu allen anderen Routern des Netzwerks aufbaut. Distanzvektor-Routing-Protokolle sehen jedoch nur unzureichende Mechanismen vor, um die Sicherheit ihrer Operationen zu gewährleisten. Es wird vielmehr einfach davon ausgegangen, dass die Umgebung vertrauenswürdig ist. Router können sich aber aus verschiedenen Gründen böswillig verhalten und falsche Routingupdates einschleusen um das Routing zu manipulieren. Authentizität und Integrität der übermittelten Routinginformationen müssen daher sichergestellt werden; dabei soll eine Balance zwischen Nutzen und Performance gefunden werden.
Diese Arbeit untersucht verschiedene Lösungsansätze, die sich die Erfüllung dieser Anforderungen zum Ziel gesetzt haben, und stellt deren Vor- und Nachteile einander gegenüber.
The paper deals with a specific introduction into probability propagation nets. Starting from dependency nets (which in a way can be considered the maximum information which follows from the directed graph structure of Bayesian networks), the probability propagation nets are constructed by joining a dependency net and (a slightly adapted version of) its dual net. Probability propagation nets are the Petri net version of Bayesian networks. In contrast to Bayesian networks, Petri nets are transparent and easy to operate. The high degree of transparency is due to the fact that every state in a process is visible as a marking of the Petri net. The convenient operability consists in the fact that there is no algorithm apart from the firing rule of Petri net transitions. Besides the structural importance of the Petri net duality there is a semantic matter; common sense in the form of probabilities and evidencebased likelihoods are dual to each other.
In this paper, we demonstrate by means of two examples how to work with probability propagation nets (PPNs). The fiirst, which comes from the book by Peng and Reggia [1], is a small example of medical diagnosis. The second one comes from [2]. It is an example of operational risk and is to show how the evidence flow in PPNs gives hints to reduce high losses. In terms of Bayesian networks, both examples contain cycles which are resolved by the conditioning technique [3].