TY - JOUR A1 - Steininger, Michael A1 - Abel, Daniel A1 - Ziegler, Katrin A1 - Krause, Anna A1 - Paeth, Heiko A1 - Hotho, Andreas T1 - ConvMOS: climate model output statistics with deep learning JF - Data Mining and Knowledge Discovery N2 - Climate models are the tool of choice for scientists researching climate change. Like all models they suffer from errors, particularly systematic and location-specific representation errors. One way to reduce these errors is model output statistics (MOS) where the model output is fitted to observational data with machine learning. In this work, we assess the use of convolutional Deep Learning climate MOS approaches and present the ConvMOS architecture which is specifically designed based on the observation that there are systematic and location-specific errors in the precipitation estimates of climate models. We apply ConvMOS models to the simulated precipitation of the regional climate model REMO, showing that a combination of per-location model parameters for reducing location-specific errors and global model parameters for reducing systematic errors is indeed beneficial for MOS performance. We find that ConvMOS models can reduce errors considerably and perform significantly better than three commonly used MOS approaches and plain ResNet and U-Net models in most cases. Our results show that non-linear MOS models underestimate the number of extreme precipitation events, which we alleviate by training models specialized towards extreme precipitation events with the imbalanced regression method DenseLoss. While we consider climate MOS, we argue that aspects of ConvMOS may also be beneficial in other domains with geospatial data, such as air pollution modeling or weather forecasts. KW - Klima KW - Modell KW - Deep learning KW - Neuronales Netz KW - climate KW - neural networks KW - model output statistics Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-324213 SN - 1384-5810 VL - 37 IS - 1 ER - TY - JOUR A1 - Glémarec, Yann A1 - Lugrin, Jean-Luc A1 - Bosser, Anne-Gwenn A1 - Buche, Cédric A1 - Latoschik, Marc Erich T1 - Controlling the stage: a high-level control system for virtual audiences in Virtual Reality JF - Frontiers in Virtual Reality N2 - This article presents a novel method for controlling a virtual audience system (VAS) in Virtual Reality (VR) application, called STAGE, which has been originally designed for supervised public speaking training in university seminars dedicated to the preparation and delivery of scientific talks. We are interested in creating pedagogical narratives: narratives encompass affective phenomenon and rather than organizing events changing the course of a training scenario, pedagogical plans using our system focus on organizing the affects it arouses for the trainees. Efficiently controlling a virtual audience towards a specific training objective while evaluating the speaker’s performance presents a challenge for a seminar instructor: the high level of cognitive and physical demands required to be able to control the virtual audience, whilst evaluating speaker’s performance, adjusting and allowing it to quickly react to the user’s behaviors and interactions. It is indeed a critical limitation of a number of existing systems that they rely on a Wizard of Oz approach, where the tutor drives the audience in reaction to the user’s performance. We address this problem by integrating with a VAS a high-level control component for tutors, which allows using predefined audience behavior rules, defining custom ones, as well as intervening during run-time for finer control of the unfolding of the pedagogical plan. At its core, this component offers a tool to program, select, modify and monitor interactive training narratives using a high-level representation. The STAGE offers the following features: i) a high-level API to program pedagogical narratives focusing on a specific public speaking situation and training objectives, ii) an interactive visualization interface iii) computation and visualization of user metrics, iv) a semi-autonomous virtual audience composed of virtual spectators with automatic reactions to the speaker and surrounding spectators while following the pedagogical plan V) and the possibility for the instructor to embody a virtual spectator to ask questions or guide the speaker from within the Virtual Environment. We present here the design, and implementation of the tutoring system and its integration in STAGE, and discuss its reception by end-users. KW - virtual reality KW - virtual agent KW - behavior perception KW - public speaking KW - education Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-284601 SN - 2673-4192 VL - 3 ER - TY - THES A1 - Löffler, Andre T1 - Constrained Graph Layouts: Vertices on the Outer Face and on the Integer Grid T1 - Graphzeichnen unter Nebenbedingungen: Knoten auf der Außenfacette und mit ganzzahligen Koordinaten N2 - Constraining graph layouts - that is, restricting the placement of vertices and the routing of edges to obey certain constraints - is common practice in graph drawing. In this book, we discuss algorithmic results on two different restriction types: placing vertices on the outer face and on the integer grid. For the first type, we look into the outer k-planar and outer k-quasi-planar graphs, as well as giving a linear-time algorithm to recognize full and closed outer k-planar graphs Monadic Second-order Logic. For the second type, we consider the problem of transferring a given planar drawing onto the integer grid while perserving the original drawings topology; we also generalize a variant of Cauchy's rigidity theorem for orthogonal polyhedra of genus 0 to those of arbitrary genus. N2 - Das Einschränken von Zeichnungen von Graphen, sodass diese bestimmte Nebenbedingungen erfüllen - etwa solche, die das Platzieren von Knoten oder den Verlauf von Kanten beeinflussen - sind im Graphzeichnen allgegenwärtig. In dieser Arbeit befassen wir uns mit algorithmischen Resultaten zu zwei speziellen Einschränkungen, nämlich dem Platzieren von Knoten entweder auf der Außenfacette oder auf ganzzahligen Koordinaten. Für die erste Einschränkung untersuchen wir die außen k-planaren und außen k-quasi-planaren Graphen und geben einen auf monadische Prädikatenlogik zweiter Stufe basierenden Algorithmus an, der überprüft, ob ein Graph voll außen k-planar ist. Für die zweite Einschränkung untersuchen wir das Problem, eine gegebene planare Zeichnung eines Graphen auf das ganzzahlige Koordinatengitter zu transportieren, ohne dabei die Topologie der Zeichnung zu verändern; außerdem generalisieren wir eine Variante von Cauchys Starrheitssatz für orthogonale Polyeder von Geschlecht 0 auf solche von beliebigem Geschlecht. KW - Graphenzeichnen KW - Komplexität KW - Algorithmus KW - Algorithmische Geometrie KW - Kombinatorik KW - Planare Graphen KW - Polyeder KW - Konvexe Zeichnungen Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-215746 SN - 978-3-95826-146-4 SN - 978-3-95826-147-1 N1 - Parallel erschienen als Druckausgabe in Würzburg University Press, ISBN 978-3-95826-146-4, 32,90 EUR PB - Würzburg University Press CY - Würzburg ET - 1. Auflage ER - TY - JOUR A1 - Latoschik, Marc Erich A1 - Wienrich, Carolin T1 - Congruence and plausibility, not presence: pivotal conditions for XR experiences and effects, a novel approach JF - Frontiers in Virtual Reality N2 - Presence is often considered the most important quale describing the subjective feeling of being in a computer-generated and/or computer-mediated virtual environment. The identification and separation of orthogonal presence components, i.e., the place illusion and the plausibility illusion, has been an accepted theoretical model describing Virtual Reality (VR) experiences for some time. This perspective article challenges this presence-oriented VR theory. First, we argue that a place illusion cannot be the major construct to describe the much wider scope of virtual, augmented, and mixed reality (VR, AR, MR: or XR for short). Second, we argue that there is no plausibility illusion but merely plausibility, and we derive the place illusion caused by the congruent and plausible generation of spatial cues and similarly for all the current model’s so-defined illusions. Finally, we propose congruence and plausibility to become the central essential conditions in a novel theoretical model describing XR experiences and effects. KW - XR KW - experience KW - presence KW - congruence KW - plausibility KW - coherence KW - theory KW - prediction Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-284787 SN - 2673-4192 VL - 3 ER - TY - JOUR A1 - Böhler, Elmar A1 - Creignou, Nadia A1 - Galota, Matthias A1 - Reith, Steffen A1 - Schnoor, Henning A1 - Vollmer, Heribert T1 - Complexity Classifications for Different Equivalence and Audit Problems for Boolean Circuits JF - Logical Methods in Computer Science N2 - We study Boolean circuits as a representation of Boolean functions and conskier different equivalence, audit, and enumeration problems. For a number of restricted sets of gate types (bases) we obtain efficient algorithms, while for all other gate types we show these problems are at least NP-hard. KW - hierarchy KW - satisfiability problems Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-131121 VL - 8 IS - 3:27 SP - 1 EP - 25 ER - TY - THES A1 - Kosub, Sven T1 - Complexity and Partitions T1 - Komplexität von Partitionen N2 - Computational complexity theory usually investigates the complexity of sets, i.e., the complexity of partitions into two parts. But often it is more appropriate to represent natural problems by partitions into more than two parts. A particularly interesting class of such problems consists of classification problems for relations. For instance, a binary relation R typically defines a partitioning of the set of all pairs (x,y) into four parts, classifiable according to the cases where R(x,y) and R(y,x) hold, only R(x,y) or only R(y,x) holds or even neither R(x,y) nor R(y,x) is true. By means of concrete classification problems such as Graph Embedding or Entailment (for propositional logic), this thesis systematically develops tools, in shape of the boolean hierarchy of NP-partitions and its refinements, for the qualitative analysis of the complexity of partitions generated by NP-relations. The Boolean hierarchy of NP-partitions is introduced as a generalization of the well-known and well-studied Boolean hierarchy (of sets) over NP. Whereas the latter hierarchy has a very simple structure, the situation is much more complicated for the case of partitions into at least three parts. To get an idea of this hierarchy, alternative descriptions of the partition classes are given in terms of finite, labeled lattices. Based on these characterizations the Embedding Conjecture is established providing the complete information on the structure of the hierarchy. This conjecture is supported by several results. A natural extension of the Boolean hierarchy of NP-partitions emerges from the lattice-characterization of its classes by considering partition classes generated by finite, labeled posets. It turns out that all significant ideas translate from the case of lattices. The induced refined Boolean hierarchy of NP-partitions enables us more accuratly capturing the complexity of certain relations (such as Graph Embedding) and a description of projectively closed partition classes. N2 - Die klassische Komplexitätstheorie untersucht in erster Linie die Komplexität von Mengen, d.h. von Zerlegungen (Partitionen) einer Grundmenge in zwei Teile. Häufig werden aber natürliche Fragestellungen viel angemessener durch Zerlegungen in mehr als zwei Teile abgebildet. Eine besonders interessante Klasse solcher Fragestellungen sind Klassifikationsprobleme für Relationen. Zum Beispiel definiert eine Binärrelation R typischerweise eine Zerlegung der Menge aller Paare (x,y) in vier Teile, klassifizierbar danach, ob R(x,y) und R(y,x), R(x,y) aber nicht R(y,x), nicht R(x,y) aber dafür R(y,x) oder weder R(x,y) noch R(y,x) gilt. Anhand konkreter Klassifikationsprobleme, wie zum Beispiel der Einbettbarkeit von Graphen und der Folgerbarkeit für aussagenlogische Formeln, werden in der Dissertation Instrumente für eine qualitative Analyse der Komplexität von Partitionen, die von NP-Relationen erzeugt werden, in Form der Booleschen Hierarchie der NP-Partitionen und ihrer Erweiterungen systematisch entwickelt. Die Boolesche Hierarchie der NP-Partitionen wird als Verallgemeinerung der bereits bekannten und wohluntersuchten Boolesche Hierarchie über NP eingeführt. Während die letztere Hierarchie eine sehr einfache Struktur aufweist, stellt sich die Boolesche Hierarchie der NP-Partitionen im Falle von Zerlegungen in mindestens 3 Teile als sehr viel komplizierter heraus. Um einen Überblick über diese Hierarchien zu erlangen, werden alternative Beschreibungen der Klassen der Hierarchien mittels endlicher, bewerteter Verbände angegeben. Darauf aufbauend wird die Einbettungsvermutung aufgestellt, die uns die vollständige Information über die Struktur der Hierarchie liefert. Diese Vermutung wird mit verschiedene Resultaten untermauert. Eine Erweiterung der Booleschen Hierarchie der NP-Partitionen ergibt sich auf natürliche Weise aus der Charakterisierung ihrer Klassen durch Verbände. Dazu werden Klassen betrachtet, die von endlichen, bewerteten Halbordnungen erzeugt werden. Es zeigt sich, dass die wesentlichen Konzepte vom Verbandsfall übertragen werden können. Die entstehende Verfeinerung der Booleschen Hierarchie der NP-Partitionen ermöglicht die exaktere Analyse der Komplexität bestimmter Relationen (wie zum Beispiel der Einbettbarkeit von Graphen) und die Beschreibung projektiv abgeschlossener Partitionenklassen. KW - Partition KW - Boolesche Hierarchie KW - Komplexitätsklasse NP KW - Theoretische Informatik KW - Komplexitätstheorie KW - NP KW - Boolesche Hierarchie KW - Partitionen KW - Verbände KW - Halbordnungen KW - Theoretical computer science KW - computational complexity KW - NP KW - Boolean hierarchy KW - partitions KW - lattices KW - posets Y1 - 2001 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-2808 ER - TY - THES A1 - Spoerhase, Joachim T1 - Competitive and Voting Location T1 - Kompetitive und präferenzbasierte Standortprobleme N2 - We consider competitive location problems where two competing providers place their facilities sequentially and users can decide between the competitors. We assume that both competitors act non-cooperatively and aim at maximizing their own benefits. We investigate the complexity and approximability of such problems on graphs, in particular on simple graph classes such as trees and paths. We also develop fast algorithms for single competitive location problems where each provider places a single facilty. Voting location, in contrast, aims at identifying locations that meet social criteria. The provider wants to satisfy the users (customers) of the facility to be opened. In general, there is no location that is favored by all users. Therefore, a satisfactory compromise has to be found. To this end, criteria arising from voting theory are considered. The solution of the location problem is understood as the winner of a virtual election among the users of the facilities, in which the potential locations play the role of the candidates and the users represent the voters. Competitive and voting location problems turn out to be closely related. N2 - Wir betrachten kompetitive Standortprobleme, bei denen zwei konkurrierende Anbieter ihre Versorger sequenziell platzieren und die Kunden sich zwischen den Konkurrenten entscheiden können. Wir nehmen an, dass beide Konkurrenten nicht-kooperativ agieren und auf die Maximierung ihres eigenen Vorteils abzielen. Wir untersuchen die Komplexität und Approximierbarkeit solcher Probleme auf Graphen, insbesondere auf einfachen Graphklassen wie Bäumen und Pfaden. Ferner entwickeln wir schnelle Algorithmen für kompetitive Einzelstandortprobleme, bei denen jeder Anbieter genau einen Versorger errichtet. Im Gegensatz dazu geht es bei Voting-Standortproblemen um die Bestimmung eines Standorts, der die Benutzer oder Kunden soweit wie möglich zufrieden stellt. Solche Fragestellungen sind beispielsweise bei der Planung öffentlicher Einrichtungen relevant. In den meisten Fällen gibt es keinen Standort, der von allen Benutzern favorisiert wird. Daher muss ein Kompromiss gefunden werden. Hierzu werden Kriterien betrachtet, die auch in Wahlsystemen eingesetzt werden: Ein geeigneter Standort wird als Sieger einer gedachten Wahl verstanden, bei der die möglichen Standorte die zur Wahl stehenden Kandidaten und die Kunden die Wähler darstellen. Kompetitive Standortprobleme und Voting-Standortprobleme erweisen sich als eng miteinander verwandt. KW - Standortproblem KW - NP-hartes Problem KW - Approximationsalgorithmus KW - Graph KW - Effizienter Algorithmus KW - competitive location KW - voting location KW - NP-hardness KW - approximation algorithm KW - efficient algorithm KW - graph KW - tree KW - graph decomposition Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-52978 ER - TY - JOUR A1 - Hossfeld, Tobias A1 - Heegaard, Poul E. A1 - Kellerer, Wolfgang T1 - Comparing the scalability of communication networks and systems JF - IEEE Access N2 - Scalability is often mentioned in literature, but a stringent definition is missing. In particular, there is no general scalability assessment which clearly indicates whether a system scales or not or whether a system scales better than another. The key contribution of this article is the definition of a scalability index (SI) which quantifies if a system scales in comparison to another system, a hypothetical system, e.g., linear system, or the theoretically optimal system. The suggested SI generalizes different metrics from literature, which are specialized cases of our SI. The primary target of our scalability framework is, however, benchmarking of two systems, which does not require any reference system. The SI is demonstrated and evaluated for different use cases, that are (1) the performance of an IoT load balancer depending on the system load, (2) the availability of a communication system depending on the size and structure of the network, (3) scalability comparison of different location selection mechanisms in fog computing with respect to delays and energy consumption; (4) comparison of time-sensitive networking (TSN) mechanisms in terms of efficiency and utilization. Finally, we discuss how to use and how not to use the SI and give recommendations and guidelines in practice. To the best of our knowledge, this is the first work which provides a general SI for the comparison and benchmarking of systems, which is the primary target of our scalability analysis. KW - communication networks KW - performance KW - availability KW - scalability Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349403 VL - 11 ER - TY - RPRT A1 - Le, Duy Thanh A1 - Großmann, Marcel A1 - Krieger, Udo R. T1 - Cloudless Resource Monitoring in a Fog Computing System Enabled by an SDN/NFV Infrastructure T2 - Würzburg Workshop on Next-Generation Communication Networks (WueWoWas'22) N2 - Today’s advanced Internet-of-Things applications raise technical challenges on cloud, edge, and fog computing. The design of an efficient, virtualized, context-aware, self-configuring orchestration system of a fog computing system constitutes a major development effort within this very innovative area of research. In this paper we describe the architecture and relevant implementation aspects of a cloudless resource monitoring system interworking with an SDN/NFV infrastructure. It realizes the basic monitoring component of the fundamental MAPE-K principles employed in autonomic computing. Here we present the hierarchical layering and functionality within the underlying fog nodes to generate a working prototype of an intelligent, self-managed orchestrator for advanced IoT applications and services. The latter system has the capability to monitor automatically various performance aspects of the resource allocation among multiple hosts of a fog computing system interconnected by SDN. KW - Datennetz KW - fog computing KW - SDN/NVF KW - container virtualization KW - autonomic orchestration KW - docker Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-280723 ER - TY - JOUR A1 - Hentschel, Simon A1 - Kobs, Konstantin A1 - Hotho, Andreas T1 - CLIP knows image aesthetics JF - Frontiers in Artificial Intelligence N2 - Most Image Aesthetic Assessment (IAA) methods use a pretrained ImageNet classification model as a base to fine-tune. We hypothesize that content classification is not an optimal pretraining task for IAA, since the task discourages the extraction of features that are useful for IAA, e.g., composition, lighting, or style. On the other hand, we argue that the Contrastive Language-Image Pretraining (CLIP) model is a better base for IAA models, since it has been trained using natural language supervision. Due to the rich nature of language, CLIP needs to learn a broad range of image features that correlate with sentences describing the image content, composition, environments, and even subjective feelings about the image. While it has been shown that CLIP extracts features useful for content classification tasks, its suitability for tasks that require the extraction of style-based features like IAA has not yet been shown. We test our hypothesis by conducting a three-step study, investigating the usefulness of features extracted by CLIP compared to features obtained from the last layer of a comparable ImageNet classification model. In each step, we get more computationally expensive. First, we engineer natural language prompts that let CLIP assess an image's aesthetic without adjusting any weights in the model. To overcome the challenge that CLIP's prompting only is applicable to classification tasks, we propose a simple but effective strategy to convert multiple prompts to a continuous scalar as required when predicting an image's mean aesthetic score. Second, we train a linear regression on the AVA dataset using image features obtained by CLIP's image encoder. The resulting model outperforms a linear regression trained on features from an ImageNet classification model. It also shows competitive performance with fully fine-tuned networks based on ImageNet, while only training a single layer. Finally, by fine-tuning CLIP's image encoder on the AVA dataset, we show that CLIP only needs a fraction of training epochs to converge, while also performing better than a fine-tuned ImageNet model. Overall, our experiments suggest that CLIP is better suited as a base model for IAA methods than ImageNet pretrained networks. KW - Image Aesthetic Assessment KW - CLIP KW - language-image pre-training KW - text supervision KW - prompt engineering KW - AVA Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-297150 SN - 2624-8212 VL - 5 ER -