TY - JOUR A1 - Gageik, Nils A1 - Strohmeier, Michael A1 - Montenegro, Sergio T1 - An Autonomous UAV with an Optical Flow Sensor for Positioning and Navigation JF - International Journal of Advanced Robotic Systems N2 - A procedure to control all six DOF (degrees of freedom) of a UAV (unmanned aerial vehicle) without an external reference system and to enable fully autonomous flight is presented here. For 2D positioning the principle of optical flow is used. Together with the output of height estimation, fusing ultrasonic, infrared and inertial and pressure sensor data, the 3D position of the UAV can be computed, controlled and steered. All data processing is done on the UAV. An external computer with a pathway planning interface is for commanding purposes only. The presented system is part of the AQopterI8 project, which aims to develop an autonomous flying quadrocopter for indoor application. The focus of this paper is 2D positioning using an optical flow sensor. As a result of the performed evaluation, it can be concluded that for position hold, the standard deviation of the position error is 10cm and after landing the position error is about 30cm. KW - Autonomous UAV KW - Quadrocopter KW - Quadrotor KW - Optical Flow KW - positioning KW - navigation Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-96368 ER - TY - THES A1 - Peng, Dongliang T1 - An Optimization-Based Approach for Continuous Map Generalization T1 - Optimierung für die kontinuierliche Generalisierung von Landkarten N2 - Maps are the main tool to represent geographical information. Geographical information is usually scale-dependent, so users need to have access to maps at different scales. In our digital age, the access is realized by zooming. As discrete changes during the zooming tend to distract users, smooth changes are preferred. This is why some digital maps are trying to make the zooming as continuous as they can. The process of producing maps at different scales with smooth changes is called continuous map generalization. In order to produce maps of high quality, cartographers often take into account additional requirements. These requirements are transferred to models in map generalization. Optimization for map generalization is important not only because it finds optimal solutions in the sense of the models, but also because it helps us to evaluate the quality of the models. Optimization, however, becomes more delicate when we deal with continuous map generalization. In this area, there are requirements not only for a specific map but also for relations between maps at difference scales. This thesis is about continuous map generalization based on optimization. First, we show the background of our research topics. Second, we find optimal sequences for aggregating land-cover areas. We compare the A$^{\!\star}$\xspace algorithm and integer linear programming in completing this task. Third, we continuously generalize county boundaries to provincial boundaries based on compatible triangulations. We morph between the two sets of boundaries, using dynamic programming to compute the correspondence. Fourth, we continuously generalize buildings to built-up areas by aggregating and growing. In this work, we group buildings with the help of a minimum spanning tree. Fifth, we define vertex trajectories that allow us to morph between polylines. We require that both the angles and the edge lengths change linearly over time. As it is impossible to fulfill all of these requirements simultaneously, we mediate between them using least-squares adjustment. Sixth, we discuss the performance of some commonly used data structures for a specific spatial problem. Seventh, we conclude this thesis and present open problems. N2 - Maps are the main tool to represent geographical information. Users often zoom in and out to access maps at different scales. Continuous map generalization tries to make the changes between different scales smooth, which is essential to provide users with comfortable zooming experience. In order to achieve continuous map generalization with high quality, we optimize some important aspects of maps. In this book, we have used optimization in the generalization of land-cover areas, administrative boundaries, buildings, and coastlines. According to our experiments, continuous map generalization indeed benefits from optimization. N2 - Landkarten sind das wichtigste Werkzeug zur Repräsentation geografischer Information. Unter der Generalisierung von Landkarten versteht man die Aufbereitung von geografischen Informationen aus detaillierten Daten zur Generierung von kleinmaßstäbigen Karten. Nutzer von Online-Karten zoomen oft in eine Karte hinein oder aus einer Karte heraus, um mehr Details bzw. mehr Überblick zu bekommen. Die kontinuierliche Generalisierung von Landkarten versucht die Änderungen zwischen verschiedenen Maßstäben stetig zu machen. Dies ist wichtig, um Nutzern eine angenehme Zoom-Erfahrung zu bieten. Um eine qualitativ hochwertige kontinuierliche Generalisierung zu erreichen, kann man wichtige Aspekte bei der Generierung von Online-Karten optimieren. In diesem Buch haben wir Optimierung bei der Generalisierung von Landnutzungskarten, von administrativen Grenzen, Gebäuden und Küstenlinien eingesetzt. Unsere Experimente zeigen, dass die kontinuierliche Generalisierung von Landkarten in der Tat von Optimierung profitiert. KW - land-cover area KW - administrative boundary KW - building KW - morphing KW - data structure KW - zooming KW - Generalisierung KW - Landnutzungskartierung KW - Optimierung Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-174427 SN - 978-3-95826-104-4 SN - 978-3-95826-105-1 N1 - Parallel erschienen als Druckausgabe in Würzburg University Press, 978-3-95826-104-4, 24,90 EUR. PB - Würzburg University Press CY - Würzburg ET - 1. Auflage ER - TY - INPR A1 - Dandekar, Thomas T1 - Analysing the phase space of the standard model and its basic four forces from a qubit phase transition perspective: implications for large-scale structure generation and early cosmological events N2 - The phase space for the standard model of the basic four forces for n quanta includes all possible ensemble combinations of their quantum states m, a total of n**m states. Neighbor states reach according to transition possibilities (S-matrix) with emergent time from entropic ensemble gradients. We replace the “big bang” by a condensation event (interacting qubits become decoherent) and inflation by a crystallization event – the crystal unit cell guarantees same symmetries everywhere. Interacting qubits solidify and form a rapidly growing domain where the n**m states become separated ensemble states, rising long-range forces stop ultimately further growth. After that very early events, standard cosmology with the hot fireball model takes over. Our theory agrees well with lack of inflation traces in cosmic background measurements, large-scale structure of voids and filaments, supercluster formation, galaxy formation, dominance of matter and life-friendliness. We prove qubit interactions to be 1,2,4 or 8 dimensional (agrees with E8 symmetry of our universe). Repulsive forces at ultrashort distances result from quantization, long-range forces limit crystal growth. Crystals come and go in the qubit ocean. This selects for the ability to lay seeds for new crystals, for self-organization and life-friendliness. We give energy estimates for free qubits vs bound qubits, misplacements in the qubit crystal and entropy increase during qubit decoherence / crystal formation. Scalar fields for color interaction and gravity derive from the permeating qubit-interaction field. Hence, vacuum energy gets low only inside the qubit crystal. Condensed mathematics may advantageously model free / bound qubits in phase space. KW - phase space KW - cosmology KW - emergent time KW - qubit KW - phase transition KW - bit Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-298580 ER - TY - THES A1 - Hock, David Rogér T1 - Analysis and Optimization of Resilient Routing in Core Communication Networks T1 - Analyse und Optimierung von ausfallsicherem Routing in Kernkommunikationsnetzen N2 - Routing is one of the most important issues in any communication network. It defines on which path packets are transmitted from the source of a connection to the destination. It allows to control the distribution of flows between different locations in the network and thereby is a means to influence the load distribution or to reach certain constraints imposed by particular applications. As failures in communication networks appear regularly and cannot be completely avoided, routing is required to be resilient against such outages, i.e., routing still has to be able to forward packets on backup paths even if primary paths are not working any more. Throughout the years, various routing technologies have been introduced that are very different in their control structure, in their way of working, and in their ability to handle certain failure cases. Each of the different routing approaches opens up their own specific questions regarding configuration, optimization, and inclusion of resilience issues. This monograph investigates, with the example of three particular routing technologies, some concrete issues regarding the analysis and optimization of resilience. It thereby contributes to a better general, technology-independent understanding of these approaches and of their diverse potential for the use in future network architectures. The first considered routing type, is decentralized intra-domain routing based on administrative IP link costs and the shortest path principle. Typical examples are common today's intra-domain routing protocols OSPF and IS-IS. This type of routing includes automatic restoration abilities in case of failures what makes it in general very robust even in the case of severe network outages including several failed components. Furthermore, special IP-Fast Reroute mechanisms allow for a faster reaction on outages. For routing based on link costs, traffic engineering, e.g. the optimization of the maximum relative link load in the network, can be done indirectly by changing the administrative link costs to adequate values. The second considered routing type, MPLS-based routing, is based on the a priori configuration of primary and backup paths, so-called Label Switched Paths. The routing layout of MPLS paths offers more freedom compared to IP-based routing as it is not restricted by any shortest path constraints but any paths can be setup. However, this in general involves a higher configuration effort. Finally, in the third considered routing type, typically centralized routing using a Software Defined Networking (SDN) architecture, simple switches only forward packets according to routing decisions made by centralized controller units. SDN-based routing layouts offer the same freedom as for explicit paths configured using MPLS. In case of a failure, new rules can be setup by the controllers to continue the routing in the reduced topology. However, new resilience issues arise caused by the centralized architecture. If controllers are not reachable anymore, the forwarding rules in the single nodes cannot be adapted anymore. This might render a rerouting in case of connection problems in severe failure scenarios infeasible. N2 - Routing stellt eine der zentralen Aufgaben in Kommunikationsnetzen dar. Es bestimmt darüber, auf welchem Weg Verkehr von der Quelle zum Ziel transportiert wird. Durch geschicktes Routing kann dadurch eine Verteilung der Verkehrsflüsse zum Beispiel zur Lastverteilung erreicht werden. Da Fehler in Kommunikationsnetzen nicht vollständig verhindert werden können, muss Routing insbesondere ausfallsicher sein, d.h., im Falle von Fehlern im Netz muss das Routing weiterhin in der Lage sein, Pakete auf alternativen Pfaden zum Ziel zu transportieren. Es existieren verschiedene gängige Routingverfahren und Technologien, die sich hinsichtlich Ihrer Arbeitsweise, Ihrer Kontrollstrukturen und Ihrer Funktionalität in bestimmten Fehlerszenarien unterscheiden. Für diese verschiedenen Ansätze ergeben sich jeweils eigene Fragestellungen hinsichtlich der Konfiguration, der Optimierung und der Berücksichtigung von Ausfallsicherheit. Diese Doktorarbeit behandelt am Beispiel bestimmter Technologien einige konkrete Fragestellungen zur Analyse und Optimierung der Ausfallsicherheit. Sie liefert damit einen Beitrag zum besseren generellen Verständnis verschiedenartiger Routingansätze und deren unterschiedlichen Potentials für den Einsatz in zukünftigen Netzarchitekturen. Zuerst wird dezentrales Routing behandelt, basierend auf administrativen Linkgewichten und dem Prinzip der kürzesten Pfade, wie es beispielsweise in den Protokollen IS-IS und OSPF genutzt wird. Diese Routingverfahren beinhalteten automatische Rekonvergenz-Mechanismen um im Falle von Fehlern auf der verbleibenden Netzstruktur weiterhin einen Transport von Verkehr zu ermöglichen. Spezielle IP-Fast Reroute Mechanismen ermöglichen zudem eine schnelle Reaktion im Falle von Fehlern. Routing basierend auf Linkgewichten lässt sich nur indirekt durch die Wahl geeigneter Gewichte beeinflussen und optimieren. Die zweite in der Doktorarbeit behandelte Routingart ist MPLS-basiertes Routing, bei dem Labels für Pakete verwendet werden und Pakete anhand sogenannter vorkonfigurierter Label Switched Paths weitergeleitet werden. Diese Technologie bietet mehr Freiheiten bei der Wahl des Pfadlayouts, was aber wiederum im Allgemeinen einen erhöhten Konfigurationsaufwand mit sich bringt. Schließlich greift die Doktorarbeit auch das Routing in SDN Netzen auf. Dort erfolgt eine Trennung von Control Plane und Data Plane, so dass einzelne dedizierte Controller die Routingentscheidungen festlegen und ansonsten einfache Switches mit reduzierter Komplexität den Verkehr lediglich entsprechend der festgelegten Regeln weiterleiten. Dies ermöglicht die größte Freiheit bei der Konfiguration des Routing bringt aber wiederum neue Fragestellungen bedingt durch die zentralen Kontrolleinheiten mit sich. T3 - Würzburger Beiträge zur Leistungsbewertung Verteilter Systeme - 02/14 KW - Leistungsbewertung KW - Verteiltes System KW - Routing KW - Netzwerk KW - Optimization KW - Routing KW - Software Defined Networking KW - Optimierung Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-101681 SN - 1432-8801 ER - TY - JOUR A1 - Greubel, André A1 - Andres, Daniela A1 - Hennecke, Martin T1 - Analyzing reporting on ransomware incidents: a case study JF - Social Sciences N2 - Knowledge about ransomware is important for protecting sensitive data and for participating in public debates about suitable regulation regarding its security. However, as of now, this topic has received little to no attention in most school curricula. As such, it is desirable to analyze what citizens can learn about this topic outside of formal education, e.g., from news articles. This analysis is both relevant to analyzing the public discourse about ransomware, as well as to identify what aspects of this topic should be included in the limited time available for this topic in formal education. Thus, this paper was motivated both by educational and media research. The central goal is to explore how the media reports on this topic and, additionally, to identify potential misconceptions that could stem from this reporting. To do so, we conducted an exploratory case study into the reporting of 109 media articles regarding a high-impact ransomware event: the shutdown of the Colonial Pipeline (located in the east of the USA). We analyzed how the articles introduced central terminology, what details were provided, what details were not, and what (mis-)conceptions readers might receive from them. Our results show that an introduction of the terminology and technical concepts of security is insufficient for a complete understanding of the incident. Most importantly, the articles may lead to four misconceptions about ransomware that are likely to lead to misleading conclusions about the responsibility for the incident and possible political and technical options to prevent such attacks in the future. KW - media analysis KW - informal education KW - IT security KW - ransomware KW - misconceptions Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-313746 SN - 2076-0760 VL - 12 IS - 5 ER - TY - JOUR A1 - Zirkel, J. A1 - Cecil, A. A1 - Schäfer, F. A1 - Rahlfs, S. A1 - Ouedraogo, A. A1 - Xiao, K. A1 - Sawadogo, S. A1 - Coulibaly, B. A1 - Becker, K. A1 - Dandekar, T. T1 - Analyzing Thiol-Dependent Redox Networks in the Presence of Methylene Blue and Other Antimalarial Agents with RT-PCR-Supported in silico Modeling JF - Bioinformatics and Biology Insights N2 - BACKGROUND: In the face of growing resistance in malaria parasites to drugs, pharmacological combination therapies are important. There is accumulating evidence that methylene blue (MB) is an effective drug against malaria. Here we explore the biological effects of both MB alone and in combination therapy using modeling and experimental data. RESULTS: We built a model of the central metabolic pathways in P. falciparum. Metabolic flux modes and their changes under MB were calculated by integrating experimental data (RT-PCR data on mRNAs for redox enzymes) as constraints and results from the YANA software package for metabolic pathway calculations. Several different lines of MB attack on Plasmodium redox defense were identified by analysis of the network effects. Next, chloroquine resistance based on pfmdr/and pfcrt transporters, as well as pyrimethamine/sulfadoxine resistance (by mutations in DHF/DHPS), were modeled in silico. Further modeling shows that MB has a favorable synergism on antimalarial network effects with these commonly used antimalarial drugs. CONCLUSIONS: Theoretical and experimental results support that methylene blue should, because of its resistance-breaking potential, be further tested as a key component in drug combination therapy efforts in holoendemic areas. KW - methylene blue KW - malaria KW - elementary mode analysis KW - drug KW - resistance KW - combination therapy KW - pathway KW - metabolic flux Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-123751 N1 - This is an open access article. Unrestricted non-commercial use is permitted provided the original work is properly cited. VL - 6 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 - INPR A1 - Nassourou, Mohamadou T1 - Assisting Analysis and Understanding of Quran Search Results with Interactive Scatter Plots and Tables N2 - The Quran is the holy book of Islam consisting of 6236 verses divided into 114 chapters called suras. Many verses are similar and even identical. Searching for similar texts (e.g verses) could return thousands of verses, that when displayed completely or partly as textual list would make analysis and understanding difficult and confusing. Moreover it would be visually impossible to instantly figure out the overall distribution of the retrieved verses in the Quran. As consequence reading and analyzing the verses would be tedious and unintuitive. In this study a combination of interactive scatter plots and tables has been developed to assist analysis and understanding of the search result. Retrieved verses are clustered by chapters, and a weight is assigned to each cluster according to number of verses it contains, so that users could visually identify most relevant areas, and figure out the places of revelation of the verses. Users visualize the complete result and can select a region of the plot to zoom in, click on a marker to display a table containing verses with English translation side by side. KW - Text Mining KW - Visualisierung KW - Koran KW - Information Visualization KW - Visual Text Mining KW - Scatter Plot KW - Quran Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-55840 ER - TY - INPR A1 - Nassourou, Mohamadou T1 - Assisting Understanding, Retention, and Dissemination of Religious Texts Knowledge with Modeling, and Visualization Techniques: The Case of The Quran N2 - Learning a book in general involves reading it, underlining important words, adding comments, summarizing some passages, and marking up some text or concepts. Once deeper understanding is achieved, one would like to organize and manage her/his knowledge in such a way that, it could be easily remembered and efficiently transmitted to others. In this paper, books organized in terms of chapters consisting of verses, are considered as the source of knowledge to be modeled. The knowledge model consists of verses with their metadata and semantic annotations. The metadata represent the multiple perspectives of knowledge modeling. Verses with their metadata and annotations form a meta-model, which will be published on a web Mashup. The meta-model with linking between its elements constitute a knowledge base. An XML-based annotation system breaking down the learning process into specific tasks, helps constructing the desired meta-model. The system is made up of user interfaces for creating metadata, annotating chapters’ contents according to user selected semantics, and templates for publishing the generated knowledge on the Internet. The proposed software system improves comprehension and retention of knowledge contained in religious texts through modeling and visualization. The system has been applied to the Quran, and the result obtained shows that multiple perspectives of information modeling can be successfully applied to religious texts. It is expected that this short ongoing study would motivate others to engage in devising and offering software systems for cross-religions learning. KW - Wissensmanagement KW - Koran KW - Knowledge Modeling KW - Meta-model KW - Knowledge Management KW - Content Management KW - Quran Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-55927 ER - TY - JOUR A1 - Wolff, Alexander A1 - Rutter, Iganz T1 - Augmenting the Connectivity of Planar and Geometric Graphs JF - Journal of Graph Algorithms and Applications N2 - In this paper we study connectivity augmentation problems. Given a connected graph G with some desirable property, we want to make G 2-vertex connected (or 2-edge connected) by adding edges such that the resulting graph keeps the property. The aim is to add as few edges as possible. The property that we consider is planarity, both in an abstract graph-theoretic and in a geometric setting, where vertices correspond to points in the plane and edges to straight-line segments. We show that it is NP-hard to � nd a minimum-cardinality augmentation that makes a planar graph 2-edge connected. For making a planar graph 2-vertex connected this was known. We further show that both problems are hard in the geometric setting, even when restricted to trees. The problems remain hard for higher degrees of connectivity. On the other hand we give polynomial-time algorithms for the special case of convex geometric graphs. We also study the following related problem. Given a planar (plane geometric) graph G, two vertices s and t of G, and an integer c, how many edges have to be added to G such that G is still planar (plane geometric) and contains c edge- (or vertex-) disjoint s{t paths? For the planar case we give a linear-time algorithm for c = 2. For the plane geometric case we give optimal worst-case bounds for c = 2; for c = 3 we characterize the cases that have a solution. Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-97587 ER -