TY - JOUR A1 - Kunz, Meik A1 - Liang, Chunguang A1 - Nilla, Santosh A1 - Cecil, Alexander A1 - Dandekar, Thomas T1 - The drug-minded protein interaction database (DrumPID) for efficient target analysis and drug development JF - Database N2 - The drug-minded protein interaction database (DrumPID) has been designed to provide fast, tailored information on drugs and their protein networks including indications, protein targets and side-targets. Starting queries include compound, target and protein interactions and organism-specific protein families. Furthermore, drug name, chemical structures and their SMILES notation, affected proteins (potential drug targets), organisms as well as diseases can be queried including various combinations and refinement of searches. Drugs and protein interactions are analyzed in detail with reference to protein structures and catalytic domains, related compound structures as well as potential targets in other organisms. DrumPID considers drug functionality, compound similarity, target structure, interactome analysis and organismic range for a compound, useful for drug development, predicting drug side-effects and structure–activity relationships. KW - drug-minded protein KW - database Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147369 VL - 2016 ER - TY - JOUR A1 - Ali, Qasim A1 - Montenegro, Sergio T1 - Decentralized control for scalable quadcopter formations JF - International Journal of Aerospace Engineering N2 - An innovative framework has been developed for teamwork of two quadcopter formations, each having its specified formation geometry, assigned task, and matching control scheme. Position control for quadcopters in one of the formations has been implemented through a Linear Quadratic Regulator Proportional Integral (LQR PI) control scheme based on explicit model following scheme. Quadcopters in the other formation are controlled through LQR PI servomechanism control scheme. These two control schemes are compared in terms of their performance and control effort. Both formations are commanded by respective ground stations through virtual leaders. Quadcopters in formations are able to track desired trajectories as well as hovering at desired points for selected time duration. In case of communication loss between ground station and any of the quadcopters, the neighboring quadcopter provides the command data, received from the ground station, to the affected unit. Proposed control schemes have been validated through extensive simulations using MATLAB®/Simulink® that provided favorable results. KW - scalable quadcopter Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146704 VL - 2016 ER - TY - JOUR A1 - Ali, Qasim A1 - Montenegro, Sergio T1 - Explicit Model Following Distributed Control Scheme for Formation Flying of Mini UAVs JF - IEEE Access N2 - A centralized heterogeneous formation flight position control scheme has been formulated using an explicit model following design, based on a Linear Quadratic Regulator Proportional Integral (LQR PI) controller. The leader quadcopter is a stable reference model with desired dynamics whose output is perfectly tracked by the two wingmen quadcopters. The leader itself is controlled through the pole placement control method with desired stability characteristics, while the two followers are controlled through a robust and adaptive LQR PI control method. Selected 3-D formation geometry and static stability are maintained under a number of possible perturbations. With this control scheme, formation geometry may also be switched to any arbitrary shape during flight, provided a suitable collision avoidance mechanism is incorporated. In case of communication loss between the leader and any of the followers, the other follower provides the data, received from the leader, to the affected follower. The stability of the closed-loop system has been analyzed using singular values. The proposed approach for the tightly coupled formation flight of mini unmanned aerial vehicles has been validated with the help of extensive simulations using MATLAB/Simulink, which provided promising results. KW - quadcopter KW - robustness KW - intelligent vehicles KW - rotors KW - mathematical model KW - aerodynamics KW - adaptation models KW - vehicle dynamics KW - unmanned aerial vehicle KW - distributed control KW - formation flight KW - model following Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146061 N1 - (c) 2016 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other users, including reprinting/ republishing this material for advertising or promotional purposes, creating new collective works for resale or redistribution to servers or lists, or reuse of any copyrighted components of this work in other works VL - 4 IS - 397-406 ER - TY - JOUR A1 - Lugrin, Jean-Luc A1 - Latoschik, Marc Erich A1 - Habel, Michael A1 - Roth, Daniel A1 - Seufert, Christian A1 - Grafe, Silke T1 - Breaking Bad Behaviors: A New Tool for Learning Classroom Management Using Virtual Reality JF - Frontiers in ICT N2 - This article presents an immersive virtual reality (VR) system for training classroom management skills, with a specific focus on learning to manage disruptive student behavior in face-to-face, one-to-many teaching scenarios. The core of the system is a real-time 3D virtual simulation of a classroom populated by twenty-four semi-autonomous virtual students. The system has been designed as a companion tool for classroom management seminars in a syllabus for primary and secondary school teachers. This will allow lecturers to link theory with practice using the medium of VR. The system is therefore designed for two users: a trainee teacher and an instructor supervising the training session. The teacher is immersed in a real-time 3D simulation of a classroom by means of a head-mounted display and headphone. The instructor operates a graphical desktop console, which renders a view of the class and the teacher whose avatar movements are captured by a marker less tracking system. This console includes a 2D graphics menu with convenient behavior and feedback control mechanisms to provide human-guided training sessions. The system is built using low-cost consumer hardware and software. Its architecture and technical design are described in detail. A first evaluation confirms its conformance to critical usability requirements (i.e., safety and comfort, believability, simplicity, acceptability, extensibility, affordability, and mobility). Our initial results are promising and constitute the necessary first step toward a possible investigation of the efficiency and effectiveness of such a system in terms of learning outcomes and experience. KW - virtual reality training KW - immersive classroom management KW - immersive classroom KW - virtual agent interaction KW - student simulation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147945 VL - 3 IS - 26 ER - TY - JOUR A1 - Ankenbrand, Markus J. A1 - Weber, Lorenz A1 - Becker, Dirk A1 - Förster, Frank A1 - Bemm, Felix T1 - TBro: visualization and management of de novo transcriptomes JF - Database N2 - RNA sequencing (RNA-seq) has become a powerful tool to understand molecular mechanisms and/or developmental programs. It provides a fast, reliable and cost-effective method to access sets of expressed elements in a qualitative and quantitative manner. Especially for non-model organisms and in absence of a reference genome, RNA-seq data is used to reconstruct and quantify transcriptomes at the same time. Even SNPs, InDels, and alternative splicing events are predicted directly from the data without having a reference genome at hand. A key challenge, especially for non-computational personnal, is the management of the resulting datasets, consisting of different data types and formats. Here, we present TBro, a flexible de novo transcriptome browser, tackling this challenge. TBro aggregates sequences, their annotation, expression levels as well as differential testing results. It provides an easy-to-use interface to mine the aggregated data and generate publication-ready visualizations. Additionally, it supports users with an intuitive cart system, that helps collecting and analysing biological meaningful sets of transcripts. TBro’s modular architecture allows easy extension of its functionalities in the future. Especially, the integration of new data types such as proteomic quantifications or array-based gene expression data is straightforward. Thus, TBro is a fully featured yet flexible transcriptome browser that supports approaching complex biological questions and enhances collaboration of numerous researchers. KW - database Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147954 VL - 2016 ER - TY - JOUR A1 - Baier, Pablo A. A1 - Baier-Saip, Jürgen A. A1 - Schilling, Klaus A1 - Oliveira, Jauvane C. T1 - Simulator for Minimally Invasive Vascular Interventions: Hardware and Software JF - Presence N2 - In the present work, a simulation system is proposed that can be used as an educational tool by physicians in training basic skills of minimally invasive vascular interventions. In order to accomplish this objective, initially the physical model of the wire proposed by Konings has been improved. As a result, a simpler and more stable method was obtained to calculate the equilibrium configuration of the wire. In addition, a geometrical method is developed to perform relaxations. It is particularly useful when the wire is hindered in the physical method because of the boundary conditions. Then a recipe is given to merge the physical and the geometrical methods, resulting in efficient relaxations. Moreover, tests have shown that the shape of the virtual wire agrees with the experiment. The proposed algorithm allows real-time executions, and furthermore, the hardware to assemble the simulator has a low cost. KW - simulation system KW - educational tool KW - invasive vascular interventions Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-140580 SN - 1531-3263 VL - 25 IS - 2 ER - TY - THES A1 - Kindermann, Philipp T1 - Angular Schematization in Graph Drawing N2 - Graphs are a frequently used tool to model relationships among entities. A graph is a binary relation between objects, that is, it consists of a set of objects (vertices) and a set of pairs of objects (edges). Networks are common examples of modeling data as a graph. For example, relationships between persons in a social network, or network links between computers in a telecommunication network can be represented by a graph. The clearest way to illustrate the modeled data is to visualize the graphs. The field of Graph Drawing deals with the problem of finding algorithms to automatically generate graph visualizations. The task is to find a "good" drawing, which can be measured by different criteria such as number of crossings between edges or the used area. In this thesis, we study Angular Schematization in Graph Drawing. By this, we mean drawings with large angles (for example, between the edges at common vertices or at crossing points). The thesis consists of three parts. First, we deal with the placement of boxes. Boxes are axis-parallel rectangles that can, for example, contain text. They can be placed on a map to label important sites, or can be used to describe semantic relationships between words in a word network. In the second part of the thesis, we consider graph drawings visually guide the viewer. These drawings generally induce large angles between edges that meet at a vertex. Furthermore, the edges are drawn crossing-free and in a way that makes them easy to follow for the human eye. The third and final part is devoted to crossings with large angles. In drawings with crossings, it is important to have large angles between edges at their crossing point, preferably right angles. N2 - Graphen sind häufig verwendete Werkzeuge zur Modellierung von Zusammenhängen zwischen Daten. Ein Graph ist eine binäre Relation zwischen Objekten, das heißt er besteht aus einer Menge von Objekten (Knoten) und einer Menge von Paaren von Objekten (Kanten). Netzwerke sind übliche Beispiele für das Modellieren von Daten als ein Graph. Beispielsweise lassen sich Beziehungen zwischen Personen in einem sozialen Netzwerk oder Netzanbindungen zwischen Computern in einem Telekommunikationsnetz als Graph darstellen. Die modellierten Daten können am anschaulichsten dargestellt werden, indem man die Graphen visualisiert. Der Bereich des Graphenzeichnens behandelt das Problem, Algorithmen zum automatischen Erzeugen von Graphenvisualisierungen zu finden. Das Ziel ist es, eine "gute" Zeichnung zu finden, was durch unterschiedliche Kriterien gemessen werden kann; zum Beispiel durch die Anzahl der Kreuzungen zwischen Kanten oder durch den Platzverbrauch. In dieser Arbeit beschäftigen wir uns mit Winkelschematisierung im Graphenzeichnen. Darunter verstehen wir Zeichnungen, in denen die Winkel (zum Beispiel zwischen Kanten an einem gemeinsamen Knoten oder einem Kreuzungspunkt) möglichst groß gestaltet sind. Die Arbeit besteht aus drei Teilen. Im ersten Teil betrachten wir die Platzierung von Boxen. Boxen sind achsenparallele Rechtecke, die zum Beispiel Text enthalten. Sie können beispielsweise auf einer Karte platziert werden, um wichtige Standorte zu beschriften, oder benutzt werden, um semantische Beziehungen zwischen Wörtern in einem Wortnetzwerk darzustellen. Im zweiten Teil der Arbeit untersuchen wir Graphenzeichnungen, die den Betrachter visuell führen. Im Allgemeinen haben diese Zeichnungen große Winkel zwischen Kanten, die sich in einem Knoten treffen. Außerdem werden die Verbindungen kreuzungsfrei und so gezeichnet, dass es dem menschlichen Auge leicht fällt, ihnen zu folgen. Im dritten und letzten Teil geht es um Kreuzungen mit großen Winkeln. In Zeichnungen mit Kreuzungen ist es wichtig, dass die Winkel zwischen Kanten an Kreuzungspunkten groß sind, vorzugsweise rechtwinklig. KW - graph drawing KW - angular schematization KW - boundary labeling KW - contact representation KW - word clouds KW - monotone drawing KW - smooth orthogonal drawing KW - simultaneous embedding KW - right angle crossing KW - independent crossing KW - Graphenzeichnen KW - Winkel KW - Kreuzung KW - v Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112549 SN - 978-3-95826-020-7 (print) SN - 978-3-95826-021-4 (online) PB - Würzburg University Press CY - Würzburg ER - TY - GEN T1 - Jahresbericht 2014 T1 - Annual Report 2014 N2 - Jahresbericht 2014 des Rechenzentrums der Universität Würzburg N2 - Annual Report 2014 of the Computer Center, University of Wuerzburg T3 - Jahresbericht des Rechenzentrums der Universität Würzburg - 2014 KW - Rechenzentrum Universität Würzburg KW - annual report KW - Computer Center University of Wuerzburg KW - Jahresbericht Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-124432 UR - https://www.rz.uni-wuerzburg.de/infos/publikationen/ ER - TY - THES A1 - Busch, Stephan T1 - Robust, Flexible and Efficient Design for Miniature Satellite Systems T1 - Moderne Kleinstsatelliten - Zwischen Robustheit, Flexibilität und Effizienz N2 - Small satellites contribute significantly in the rapidly evolving innovation in space engineering, in particular in distributed space systems for global Earth observation and communication services. Significant mass reduction by miniaturization, increased utilization of commercial high-tech components, and in particular standardization are the key drivers for modern miniature space technology. This thesis addresses key fields in research and development on miniature satellite technology regarding efficiency, flexibility, and robustness. Here, these challenges are addressed by the University of Wuerzburg’s advanced pico-satellite bus, realizing a generic modular satellite architecture and standardized interfaces for all subsystems. The modular platform ensures reusability, scalability, and increased testability due to its flexible subsystem interface which allows efficient and compact integration of the entire satellite in a plug-and-play manner. Beside systematic design for testability, a high degree of operational robustness is achieved by the consequent implementation of redundancy of crucial subsystems. This is combined with efficient fault detection, isolation and recovery mechanisms. Thus, the UWE-3 platform, and in particular the on-board data handling system and the electrical power system, offers one of the most efficient pico-satellite architectures launched in recent years and provides a solid basis for future extensions. The in-orbit performance results of the pico-satellite UWE-3 are presented and summarize successful operations since its launch in 2013. Several software extensions and adaptations have been uploaded to UWE-3 increasing its capabilities. Thus, a very flexible platform for in-orbit software experiments and for evaluations of innovative concepts was provided and tested. N2 - Miniaturisierte Satellitensysteme übernehmen zunehmend eine entscheidende Rolle in der fortschreitenden Globalisierung und Demokratisierung der Raumfahrt. Großes Innovationspotential und neue Kommerzialisierungschancen verspricht der effektive Einsatz von Kleinstsatelliten in zukünftigen fraktionierten Missionen für Erdbeobachtungs- und Kommunikationsanwendungen. Basierend auf vielen kleinen kooperierenden Systemen können diese Systeme zukünftig große multifunktionale Satelliten ergänzen oder ersetzen. Die Herausforderung bei der Entwicklung miniaturisierter Satellitensysteme ist die Gratwanderung zwischen der im Rahmen der Miniaturisierung notwendigen Effizienz, der für die Erfüllung der Mission geforderten Zuverlässigkeit und der wünschenswerten Wiederverwendbarkeit und Erweiterbarkeit zur Realisierung agiler Kleinstsatellitenserien. Diese Arbeit adressiert verschiedene Aspekte für den optimalen Entwurf robuster, flexibler und effizienter Kleinstsatelliten am Beispiel des UWE Pico-Satelliten Bus der Universität Würzburg. Mit dem Ziel der Entwicklung einer soliden Basisplattform für zukünftige Kleinstsatelliten-Formationen wurden entsprechende Designansätze im Rahmen des UWE-3 Projektes in einem integralen Designansatz konsistent umgesetzt. Neben der Entwicklung von effizienten Redundanzkonzepten mit minimalem Overhead für den optimalen Betrieb auf Ressourcen-limitierten Kleinstsatelliten wurde ein modularer Satellitenbus entworfen, der als eine robuste und erweiterbare Basis für zukünftige Missionen dienen soll. Damit realisiert UWE-3 eine der effizientesten Kleinstsatelliten-Architekturen die in den letzten Jahren in den Orbit gebracht wurde. Dargestellte Missionsergebnisse fassen den erfolgreichen Betrieb des Satelliten seit seinem Launch in Jahr 2013 zusammen. T3 - Forschungsberichte in der Robotik = Research Notes in Robotics - 11 KW - Kleinsatellit KW - Fehlertoleranz KW - Miniaturisierung KW - Modularität KW - Picosatellite KW - Satellit Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-136523 SN - 978-3-945459-10-2 ER - TY - GEN T1 - Jahresbericht 2015 T1 - Annual Report 2015 N2 - Jahresbericht 2015 des Rechenzentrums der Universität Würzburg N2 - Annual Report 2015 of the Computer Center, University of Wuerzburg T3 - Jahresbericht des Rechenzentrums der Universität Würzburg - 2015 KW - Julius-Maximilians-Universität Würzburg. Rechenzentrum KW - annual report KW - Computer Center University of Wuerzburg KW - Jahresbericht KW - RZUW Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-136599 UR - https://www.rz.uni-wuerzburg.de/wir/publikationen/ ER -