TY - JOUR A1 - Zeeshan, Ahmed T1 - Towards Performance Measurement and Metrics Based Analysis of PLA Applications N2 - This article is about a measurement analysis based approach to help software practitioners in managing the additional level complexities and variabilities in software product line applications. The architecture of the proposed approach i.e. ZAC is designed and implemented to perform preprocessesed source code analysis, calculate traditional and product line metrics and visualize results in two and three dimensional diagrams. Experiments using real time data sets are performed which concluded with the results that the ZAC can be very helpful for the software practitioners in understanding the overall structure and complexity of product line applications. Moreover the obtained results prove strong positive correlation between calculated traditional and product line measures. KW - Programmierbare logische Anordnung KW - Analysis KW - Measurement KW - Software product lines KW - Variability Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-68188 ER - TY - JOUR A1 - Kaiser, Dennis A1 - Lesch, Veronika A1 - Rothe, Julian A1 - Strohmeier, Michael A1 - Spieß, Florian A1 - Krupitzer, Christian A1 - Montenegro, Sergio A1 - Kounev, Samuel T1 - Towards Self-Aware Multirotor Formations JF - Computers N2 - In the present day, unmanned aerial vehicles become seemingly more popular every year, but, without regulation of the increasing number of these vehicles, the air space could become chaotic and uncontrollable. In this work, a framework is proposed to combine self-aware computing with multirotor formations to address this problem. The self-awareness is envisioned to improve the dynamic behavior of multirotors. The formation scheme that is implemented is called platooning, which arranges vehicles in a string behind the lead vehicle and is proposed to bring order into chaotic air space. Since multirotors define a general category of unmanned aerial vehicles, the focus of this thesis are quadcopters, platforms with four rotors. A modification for the LRA-M self-awareness loop is proposed and named Platooning Awareness. The implemented framework is able to offer two flight modes that enable waypoint following and the self-awareness module to find a path through scenarios, where obstacles are present on the way, onto a goal position. The evaluation of this work shows that the proposed framework is able to use self-awareness to learn about its environment, avoid obstacles, and can successfully move a platoon of drones through multiple scenarios. KW - self-aware computing KW - unmanned aerial vehicles KW - multirotors KW - quadcopters KW - intelligent transportation systems Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200572 SN - 2073-431X VL - 9 IS - 1 ER - TY - RPRT A1 - Höweler, Malte A1 - Xiang, Zuo A1 - Höpfner, Franz A1 - Nguyen, Giang T. A1 - Fitzek, Frank H. P. T1 - Towards Stateless Core Networks: Measuring State Access Patterns T2 - Würzburg Workshop on Next-Generation Communication Networks (WueWoWas'22) N2 - Future mobile communication networks, such as 5G and beyond, can benefit from Virtualized Network Functions (VNFs) when deployed on cloud infrastructures to achieve elasticity and scalability. However, new challenges arise as to managing states of Network Functions (NFs). Especially control plane VNFs, which are mainly found in cellular core networks like the 5G Core (5GC), received little attention since the shift towards virtualizing NFs. Most existing solutions for these core networks are often complex, intrusive, and are seldom compliant with the standard. With the emergence of 5G campus networks, UEs will be mainly machine-type devices. These devices communicate more deterministically, bringing new opportunities for elaborated state management. This work presents an emulation environment to perform rigorous measurements on state access patterns. The emulation comes with a fully parameterized Markov model for the UE to examine a wide variety of different devices. These measurements can then be used as a solid base for designing an efficient, simple, and standard conform state management solution that brings us further towards stateless core networks. KW - Datennetz KW - 5GC KW - VNF KW - SBA KW - measurements KW - MTC Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-280770 ER - TY - JOUR A1 - Kraft, Robin A1 - Reichert, Manfred A1 - Pryss, Rüdiger T1 - Towards the interpretation of sound measurements from smartphones collected with mobile crowdsensing in the healthcare domain: an experiment with Android devices JF - Sensors N2 - The ubiquity of mobile devices fosters the combined use of ecological momentary assessments (EMA) and mobile crowdsensing (MCS) in the field of healthcare. This combination not only allows researchers to collect ecologically valid data, but also to use smartphone sensors to capture the context in which these data are collected. The TrackYourTinnitus (TYT) platform uses EMA to track users' individual subjective tinnitus perception and MCS to capture an objective environmental sound level while the EMA questionnaire is filled in. However, the sound level data cannot be used directly among the different smartphones used by TYT users, since uncalibrated raw values are stored. This work describes an approach towards making these values comparable. In the described setting, the evaluation of sensor measurements from different smartphone users becomes increasingly prevalent. Therefore, the shown approach can be also considered as a more general solution as it not only shows how it helped to interpret TYT sound level data, but may also stimulate other researchers, especially those who need to interpret sensor data in a similar setting. Altogether, the approach will show that measuring sound levels with mobile devices is possible in healthcare scenarios, but there are many challenges to ensuring that the measured values are interpretable. KW - mHealth KW - crowdsensing KW - tinnitus KW - noise measurement KW - environmental sound Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-252246 SN - 1424-8220 VL - 22 IS - 1 ER - TY - RPRT A1 - Vomhoff, Viktoria A1 - Geissler, Stefan A1 - Gebert, Steffen A1 - Hossfeld, Tobias T1 - Towards Understanding the Global IPX Network from an MVNO Perspective T2 - KuVS Fachgespräch - Würzburg Workshop on Modeling, Analysis and Simulation of Next-Generation Communication Networks 2023 (WueWoWAS’23) N2 - In this paper, we work to understand the global IPX network from the perspective of an MVNO. In order to do this, we provide a brief description of the global architecture of mobile carriers. We provide initial results with respect to mapping the vast and complex interconnection network enabling global roaming from the point of view of a single MVNO. Finally, we provide preliminary results regarding the quality of service observed under global roaming conditions. KW - global IPX network Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-322121 ER - TY - RPRT A1 - Raffeck, Simon A1 - Geißler, Stefan A1 - Hoßfeld, Tobias T1 - Towards Understanding the Signaling Traffic in 5G Core Networks T2 - KuVS Fachgespräch - Würzburg Workshop on Modeling, Analysis and Simulation of Next-Generation Communication Networks 2023 (WueWoWAS’23) N2 - The Fifth Generation (5G) communication technology, its infrastructure and architecture, though already deployed in campus and small scale networks, is still undergoing continuous changes and research. Especially, in the light of future large scale deployments and industrial use cases, a detailed analysis of the performance and utilization with regard to latency and service times constraints is crucial. To this end, a fine granular investigation of the Network Function (NF) based core system and the duration for all the tasks performed by these services is necessary. This work presents the first steps towards analyzing the signaling traffic in 5G core networks, and introduces a tool to automatically extract sequence diagrams and service times for NF tasks from traffic traces. KW - signaling traffic KW - 5G core network Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-322106 ER - TY - THES A1 - Saska, Martin T1 - Trajectory planning and optimal control for formations of autonomous robots T1 - Die Bahnplanung und die optimale Steuerung für Formationen der autonomen Roboter N2 - In this thesis, we present novel approaches for formation driving of nonholonomic robots and optimal trajectory planning to reach a target region. The methods consider a static known map of the environment as well as unknown and dynamic obstacles detected by sensors of the formation. The algorithms are based on leader following techniques, where the formation of car-like robots is maintained in a shape determined by curvilinear coordinates. Beyond this, the general methods of formation driving are specialized and extended for an application of airport snow shoveling. Detailed descriptions of the algorithms complemented by relevant stability and convergence studies will be provided in the following chapters. Furthermore, discussions of the applicability will be verified by various simulations in existing robotic environments and also by a hardware experiment. N2 - In dieser Arbeit präsentieren wir neuartige Algorithmen für die Steuerung der Formationen der nichtholonomen Roboter und ihre optimale Bahnplanung. Die Algorithmen beruhen auf "leader-follower" Techniken. Die Formationen der "car-like" Roboter sind in einer bestimmten Form von "curvilinear" Koordinaten gehalten. Die Steuerungmethoden der Formationen sind spezialisiert und erweitert um ihre Anwendung auf das Flughafenschneeschaufeln. In dieser Arbeit werden die detaillierten Beschreibungen der Algorithmen durch entsprechende Stabilität- und Konvergenz-Studien gestellt. Ihre Anwendbarkeit wird durch verschiedene Simulationen und eine Hardware-Experiment überprüft. T3 - Forschungsberichte in der Robotik = Research Notes in Robotics - 3 KW - Autonomer Roboter KW - Mobiler Roboter KW - Optimale Kontrolle KW - Formation KW - Steuerung KW - formation driving KW - mobile robots KW - snow shoveling KW - receding horizon control KW - model predictive control KW - trajectory planning Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-53175 SN - 978-3-923959-56-3 ER - TY - THES A1 - Freiberg, Martina T1 - UI-, User-, & Usability-Oriented Engineering of Participative Knowledge-Based Systems T1 - UI-, Benutzer-, & Usability-orientierte Entwicklung partizipativer Wissensbasierter Systeme N2 - Knowledge-based systems (KBS) face an ever-increasing interest in various disciplines and contexts. Yet, the former aim to construct the ’perfect intelligent software’ continuously shifts to user-centered, participative solutions. Such systems enable users to contribute their personal knowledge to the problem solving process for increased efficiency and an ameliorated user experience. More precisely, we define non-functional key requirements of participative KBS as: Transparency (encompassing KBS status mediation), configurability (user adaptability, degree of user control/exploration), quality of the KB and UI, and evolvability (enabling the KBS to grow mature with their users). Many of those requirements depend on the respective target users, thus calling for a more user-centered development. Often, also highly expertise domains are targeted — inducing highly complex KBs — which requires a more careful and considerate UI/interaction design. Still, current KBS engineering (KBSE) approaches mostly focus on knowledge acquisition (KA) This often leads to non-optimal, little reusable, and non/little evaluated KBS front-end solutions. In this thesis we propose a more encompassing KBSE approach. Due to the strong mutual influences between KB and UI, we suggest a novel form of intertwined UI and KB development. We base the approach on three core components for encompassing KBSE: (1) Extensible prototyping, a tailored form of evolutionary prototyping; this builds on mature UI prototypes and offers two extension steps for the anytime creation of core KBS prototypes (KB + core UI) and fully productive KBS (core KBS prototype + common framing functionality). (2) KBS UI patterns, that define reusable solutions for the core KBS UI/interaction; we provide a basic collection of such patterns in this work. (3) Suitable usability instruments for the assessment of the KBS artifacts. Therewith, we do not strive for ’yet another’ self-contained KBS engineering methodology. Rather, we motivate to extend existing approaches by the proposed key components. We demonstrate this based on an agile KBSE model. For practical support, we introduce the tailored KBSE tool ProKEt. ProKEt offers a basic selection of KBS core UI patterns and corresponding configuration options out of the box; their further adaption/extension is possible on various levels of expertise. For practical usability support, ProKEt offers facilities for quantitative and qualitative data collection. ProKEt explicitly fosters the suggested, intertwined development of UI and KB. For seamlessly integrating KA activities, it provides extension points for two selected external KA tools: For KnowOF, a standard office based KA environment. And for KnowWE, a semantic wiki for collaborative KA. Therewith, ProKEt offers powerful support for encompassing, user-centered KBSE. Finally, based on the approach and the tool, we also developed a novel KBS type: Clarification KBS as a mashup of consultation and justification KBS modules. Those denote a specifically suitable realization for participative KBS in highly expertise contexts and consequently require a specific design. In this thesis, apart from more common UI solutions, we particularly also introduce KBS UI patterns especially tailored towards Clarification KBS. N2 - Das Interesse an wissensbasierten Systemen (WBS) in verschiedensten Fachdisziplinen und Anwendungskontexten wächst nach wie vor stetig. Das frühere Ziel — intelligente Software als Expertenersatz — verschiebt sich dabei allerdings kontinuierlich in Richtung partizipativer, nutzerzentrierter Anwendungen. Solche Systeme erlauben dem Benutzer, das vorhandene persönliche Hintergrundwissen in den Problemlösungsprozess mit einzubringen um die Effizienz des Systems zu steigern und die User Experience zu verbessern. Konkret definieren wir für partizipative WBS die folgenden, nichtfunktionalen Anforderungen: Transparenz (umfassende Vermittlung des Systemstatus), Konfigurierbarkeit (Anpassbarkeit an verschiedene Benutzer und Grad der Benutzerkontrolle und Explorationsmöglichkeit), Qualität sowohl der Wissensbasis als auch der Benutzeroberfläche und Fortentwickelbarkeit (Fähigkeit des WBS analog zu den Kenntnissen seiner Nutzer zu reifen). Viele dieser Anforderungen hängen stark von den jeweiligen Nutzern ab. Im Umkehrschluss erfordert dies eine nutzerzentriertere Entwicklung solcher Systeme. Die häufig sehr fachspezifischen Zieldomänen haben meist entsprechend komplexe Wissensbasen zur Folge. Dies verlangt erst Recht nach einem wohlüberlegten, durchdachten UI- und Inkteraktionsdesign. Dem zum Trotz fokussieren aktuelle WBS Entwicklungsansätze jedoch nach wie vor auf der Wissensformalisierung. Mit der Folge, dass oft keine optimalen, schlecht wiederverwendbare und nur teilweise (oder gar nicht) evaluierte WBS UI/Interaktionslösungen entstehen. Die vorliegende Dissertation schlägt einen allumfassenderen WBS Entwicklungsansatz vor. Unter Berücksichtigung der starken, wechselseitigen Beeinflussung von Wissensbasis und UI ist dieser geprägt durch eine starke Verzahnung von Wissensbasis- und UI-Entwicklung. Der Ansatz stützt sich auf drei Kernkomponenten für allumfassende Entwicklung wissensbasierter Systeme: (1) Extensible Prototyping, eine adaptierte Form des evolutionären Prototyping. Extensible Prototyping basiert auf hochentwickelten UI Prototypen und definiert zwei Erweiterungsschritte um jederzeit WBS-Kernprototypen (Wissensbasis und Kern-UI) beziehungsweise voll funktionale wissensbasierte Anwendungen (WBS Kernprototyp und Rahmenfunktionalität) zu erstellen. (2) WBS UI Patterns. Diese Patterns, oder Muster, definieren wiederverwendbare Lösungen für die Kern-UI und -Inkteraktion. In dieser Arbeit stellen wir eine Sammlung grundlegender WBS UI Patterns vor. (3) Passende Usability Techniken die sich speziell für die Evaluation von WBS Software eignen. Insgesamt streben wir keine weitere, in sich geschlossene WBS Entwicklungsmethodologie an. Vielmehr motivieren wir, existierende, Wissensformalisierungs-lastige Ansätze um die vorgeschlagenen Kernkomponenten zu erweitern. Wir demonstrieren das am agilen Prozessmodell für wissensbasierte Systeme. Für die praktische Umsetzung des vorgestellten Ansatzes stellen wir außerdem das spezialisierte WBS Prototyping- und Softwareentwicklungswerkzeug ProKEt vor. ProKEt unterstützt eine Auswahl der interessantesten WBS UI Patterns sowie zugehöriger Konfigurationsoptionen. Deren weitere Anpassung beziehungsweise Erweiterung ist auf verschiedenen Expertise-Leveln möglich. Um ebenso die Anwendung von Usability Techniken zu unterstützen, bietet ProKEt weiterhin Funktionalität für die quantitative und qualitative Datensammlung. Auch baut ProKEt bewusst auf die strikt verzahnte Entwicklung von UI- und Wissensbasis. Für die einfache und nahtlose Integration von Wissensformalisierung in den Gesamtprozess unterstützt ProKEt zwei externe Wissensformalisierungs-Werkzeuge: KnowOF, eine Wissensformalisierungsumgebung welche standartisierte Office Dokumente nutzt. Und KnowWE, ein semantisches Wiki für die kollaborative Wissensformalisierung im Web. Damit ist ProKEt ein mächtiges Werkzeug für umfassende, nutzerzentrierte WBS Entwicklung. Mithilfe des Entwicklungsansatzes und des Werkzeugs ProKEt haben wir weiterhin einen neuartigen WBS Typ entwickelt: Wissensbasierte Klärungssysteme, im Wesentlichen ein Mashup aus Beratungs-, Erklärungs- und Rechtfertigungskomponente. Diese Systeme stellen eine angepasste Realisierung von partizipativen WBS für höchst fachliche Kontexte dar und verlangten entsprechend nach einem sehr speziellen Design. In der vorliegenden Arbeit stellen wir daher neben allgemeinen WBS UI Patterns auch einige spezialisierte Varianten für wissensbasierte Klärungssysteme vor. KW - Wissensbasiertes System KW - Knowledge-based Systems Engineering KW - Expert System KW - Usability KW - UI and Interaction Design KW - User Participation KW - Expertensystem Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-106072 SN - 978-3-95826-012-2 (print) SN - 978-3-95826-013-9 (online) PB - Würzburg University Press ER - TY - RPRT A1 - Grigorjew, Alexej A1 - Schumann, Lukas Kilian A1 - Diederich, Philip A1 - Hoßfeld, Tobias A1 - Kellerer, Wolfgang T1 - Understanding the Performance of Different Packet Reception and Timestamping Methods in Linux T2 - KuVS Fachgespräch - Würzburg Workshop on Modeling, Analysis and Simulation of Next-Generation Communication Networks 2023 (WueWoWAS’23) N2 - This document briefly presents some renowned packet reception techniques for network packets in Linux systems. Further, it compares their performance when measuring packet timestamps with respect to throughput and accuracy. Both software and hardware timestamps are compared, and various parameters are examined, including frame size, link speed, network interface card, and CPU load. The results indicate that hardware timestamping offers significantly better accuracy with no downsides, and that packet reception techniques that avoid system calls offer superior measurement throughput. KW - packet reception method KW - timestamping method KW - Linux Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-322064 ER - TY - INPR A1 - Nassourou, Mohamadou T1 - Understanding the Vex Rendering Engine N2 - The Visual Editor for XML (Vex)[1] used by TextGrid [2]and other applications has got rendering and layout engines. The layout engine is well documented but the rendering engine is not. This lack of documenting the rendering engine has made refactoring and extending the editor hard and tedious. For instance many CSS2.1 and upcoming CSS3 properties have not been implemented. Software developers in different projects such as TextGrid using Vex would like to update its CSS rendering engine in order to provide advanced user interfaces as well as support different document types. In order to minimize the effort of extending Vex functionality, I found it beneficial to write a basic documentation about Vex software architecture in general and its CSS rendering engine in particular. The documentation is mainly based on the idea of architectural layered diagrams. In fact layered diagrams can help developers understand software’s source code faster and easier in order to alter it, and fix errors. This paper is written for the purpose of providing direct support for exploration in the comprehension process of Vex source code. It discusses Vex software architecture. The organization of packages that make up the software, the architecture of its CSS rendering engine, an algorithm explaining the working principle of its rendering engine are described. KW - Cascading Style Sheets KW - Softwarearchitektur KW - CSS KW - Processing model KW - Software architecture KW - Software design Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-51333 ER -