Filtern
Erscheinungsjahr
- 2021 (45) (entfernen)
Dokumenttyp
- Dissertation (40)
- Masterarbeit (3)
- Habilitation (1)
- Ausgabe (Heft) zu einer Zeitschrift (1)
Sprache
- Englisch (45) (entfernen)
Schlagworte
- Umweltpsychologie (2)
- optimal control (2)
- Acceleration Structures (1)
- Amphibia (1)
- Aphid predator (1)
- Arzneimittel (1)
- Basic psychological needs (1)
- Bees (1)
- Bestäuber (1)
- Bestäubung (1)
Institut
- Fachbereich 7 (6)
- Institut für Computervisualistik (5)
- Institut für Integrierte Naturwissenschaften, Abt. Chemie (5)
- Institut für Integrierte Naturwissenschaften, Abt. Biologie (4)
- Institut für Wirtschafts- und Verwaltungsinformatik (4)
- Institute for Web Science and Technologies (4)
- Mathematisches Institut (3)
- Fachbereich 6 (2)
- Fachbereich 8 (2)
- Institut für Informatik (2)
- Institut für Management (2)
- Arbeitsbereich Diagnostik, Differentielle und Persönlichkeitspsychologie, Methodik und Evaluation (1)
- Arbeitsbereich Sozial- und Wirtschaftspsychologie (1)
- Institut für Anglistik und Amerikanistik (1)
- Institut für Bildung im Kindes- und Jugendalter (1)
- Institut für Integrierte Naturwissenschaften, Abt. Physik (1)
- Institut für Softwaretechnik (1)
- Institut für Umweltwissenschaften (1)
The protected areas of Rwanda are facing various challenges resulting from the anthropogenic activities of the surrounding communities especially in the adjacent area to Cyamudongo isolated rain forest, which results in climate change, soil degradation, and loss of biodiversity. Therefore, this study aims to broaden current knowledge on the impact of sustainable Agroforestry (AF) on the Carbon (C) stock and Biodiversity conservation on the surroundings of Cyamudongo isolated rain forest and Ruhande Arboretum.
To understand this, the permanent sample plots (PSPs) were established mainly in the designed four transects of four km long originating on the boundary of the Cyamudongo isolated rain forest following the slope gradient ranging from 1286 to 2015 m asl. A total number of 73 PSPs were established in the Cyamudongo study area while 3 PSPs were established in the Ruhande AF plot. The Arc Map GIS 10.4 was used to design and map the sampling areas while GPS was used for localization of collected items. Statistical significance was analyzed through the R-software especially for wood and soil variables while for biodiversity indicator species, MVSP Software 3.0 was used to determine the Shannon Diversity indices and similarities among species.
In this study, I have obtained comprehensive results demonstrating that in all study areas, the various AF tree species contribute differently to C stock and C sequestration and the amount of C stored and removed from the atmosphere depends on different factors such as tree species, plantation density, growth stage, or the age of establishment, applied management practices, wood specific density (WSD), wood C concentration, and climatic conditions. The estimated quantity of sequestrated C for 2 years and 34 years AF species were 13.11 t C ha -1 yr-1 (equivalent to 48 t CO2 ha -1 yr-1) and 6.85 t ha-1 yr-1 (equivalent to 25.1 t CO2 ha -1 yr-1) in Cyamudongo and Ruhande respectively. The estimated quantity of C stored by the Ruhande AF plot is 232.94 t ha-1. In Cyamudongo, the overall C stored by the AF systems was 823 t ha-1 by both young tree species established by the Cyamudongo Project (35.84 t ha-1) and C stored by existed AF species before the existence of the Project (787.12 t ha-1). In all study areas, the Grevillea robusta was found to contribute more to overall stored C compared to other species under this study.
The tests revealed differences in terms of nutrient contents (C, N, C: N ratio, K, Na, Ca, and Mg) for various AF tree species of Cyamudongo and Ruhande study areas. The differences in terms of correlation for various variables of AF tree species in different study areas varied with tree species, age, stage of growth, and tree shape. By comparing the correlation coefficients for various tree variables for young and mature AF tree species, the results showed a high correlation variability for young species than mature or old species recorded in different environmental conditions of Cyamudongo and Ruhande study areas.
The recorded soil pH mean value across in Cyamudongo study area is 4.2, which is very strongly acidic. The tests revealed that the soil pH, C, C: N ratio, OM, NH4+, NO3-+NO2-, PO43-, and CEC were significantly (P < 0.05) different in various soil depths whereas the N was not statistically significant. The pH, N, C: N ratio, CEC, NH4+, PO43-, and Al3+ showed a significant difference across land uses whereas the C and NO3-+NO2- did not show any statistical difference. All tested chemical elements showed a statistical difference as far as altitude ranges are concerned. The only NH4+, PO43-, and CEC showed significant differences with time whereas all other remaining chemical elements did not show any statistical significance. The bulk density of soil was statistically different across land uses and altitude ranges. The soil pH was very strongly correlated with CEC, Mg, and Ca in cropland (CL) whereas it was strongly correlated in both AF and natural forest (NF) except for Mg, which was moderately correlated in AF. Furthermore, its correlation with K was strong in CL, moderate in AF while it was weak in NF. Finally, the pH correlation with Na was weak in both AF and CL whereas it was negligible in NF. The overall estimated soil C stock of the study area was 16848 t ha -1.
The sustainable AF practices changed significantly the frequency of reptiles, amphibians, and flowering plants while there was no statistical change observed on ferns with time. In terms of species richness, 16 flowering plants, 14 ferns, 5 amphibians, and 3 reptiles were recorded and monitored. These findings add to a growing body of literature on the impact of AF on the C stock, soil improvement, and Biodiversity. It is recommended that further researches should be undertaken for the contribution of other AF tree species to the C stock found in the agricultural landscape around all protected areas of Rwanda and the impact on them on the soil and biodiversity.
We consider variational discretization of three different optimal control problems.
The first being a parabolic optimal control problem governed by space-time measure controls. This problem has a nice sparsity structure, which motivates our aim to achieve maximal sparsity on the discrete level. Due to the measures on the right hand side of the partial differential equation, we consider a very weak solution theory for the state equation and need an embedding into the continuous functions for the pairings to make sense. Furthermore, we employ Fenchel duality to formulate the predual problem and give results on solution theory of both the predual and the primal problem. Later on, the duality is also helpful for the derivation of algorithms, since the predual problem can be differentiated twice so that we can apply a semismooth Newton method. We then retrieve the optimal control by duality relations.
For the state discretization we use a Petrov-Galerkin method employing piecewise constant states and piecewise linear and continuous test functions in time. For the space discretization we choose piecewise linear and continuous functions. As a result the controls are composed of Dirac measures in space-time, centered at points on the discrete space-time grid. We prove that the optimal discrete states and controls converge strongly in L^q and weakly-* in Μ, respectively, to their smooth counterparts, where q ϵ (1,min{2,1+2/d}] is the spatial dimension. The variational discrete version of the state equation with the above choice of spaces yields a Crank-Nicolson time stepping scheme with half a Rannacher smoothing step.
Furthermore, we compare our approach to a full discretization of the corresponding control problem, precisely a discontinuous Galerkin method for the state discretization, where the discrete controls are piecewise constant in time and Dirac measures in space. Numerical experiments highlight the sparsity features of our discrete approach and verify the convergence results.
The second problem we analyze is a parabolic optimal control problem governed by bounded initial measure controls. Here, the cost functional consists of a tracking term corresponding to the observation of the state at final time. Instead of a regularization term for the control in the cost functional, we consider a bound on the measure norm of the initial control. As in the first problem we observe a sparsity structure, but here the control resides only in space at initial time, so we focus on the space discretization to achieve maximal sparsity of the control. Again, due to the initial measure in the partial differential equation, we rely on a very weak solution theory of the state equation.
We employ a dG(0) approximation of the state equation, i.e. we choose piecewise linear and continuous functions in space, which are piecewise constant in time for our ansatz and test space. Then, the variational discretization of the problem together with the optimality conditions induce maximal discrete sparsity of the initial control, i.e. Dirac measures in space. We present numerical experiments to illustrate our approach and investigate the sparsity structure
As third problem we choose an elliptic optimal control governed by functions of bounded variation (BV) in one space dimension. The cost functional consists of a tracking term for the state and a BV-seminorm in terms of the derivative of the control. We derive a sparsity structure for the derivative of the BV control. Additionally, we utilize the mixed formulation for the state equation.
A variational discretization approach with piecewise constant discretization of the state and piecewise linear and continuous discretization of the adjoint state yields that the derivative of the control is a sum of Dirac measures. Consequently the control is a piecewise constant function. Under a structural assumption we even get that the number of jumps of the control is finite. We prove error estimates for the variational discretization approach in combination with the mixed formulation of the state equation and confirm our findings in numerical experiments that display the convergence rate.
In summary we confirm the use of variational discretization for optimal control problems with measures that inherit a sparsity. We are able to preserve the sparsity on the discrete level without discretizing the control variable.
This thesis focuses on approximate inference in assumption-based argumentation frameworks. Argumentation provides a significant idea in the computerization of theoretical and practical reasoning in AI. And it has a close connection with AI, engaging in arguments to perform scientific reasoning. The fundamental approach in this field is abstract argumentation frameworks developed by Dung. Assumption-based argumentation can be regarded as an instance of abstract argumentation with structured arguments. When facing a large scale of data, a challenge of reasoning in assumption-based argumentation is how to construct arguments and resolve attacks over a given claim with minimal cost of computation and acceptable accuracy at the same time. This thesis proposes and investigates approximate methods that randomly select and construct samples of frameworks based on graphical dispute derivations to solve this problem. The presented approach aims to improve reasoning performance and get an acceptable trade-off between computational time and accuracy. The evaluation shows that for reasoning in assumption-based argumentation, in general, the running time is reduced with the cost of slightly low accuracy by randomly sampling and constructing inference rules for potential arguments over a query.
Echzeitbetriebssysteme für Systeme mit gemischten Kritikalitäten müssen unterschiedliche Arten von Software, wie z.B. Echtzeitanwendungen und Allzweckanwendungen, gleichzeitig unterstützen. Dabei müssen sie eine solide räumliche und zeitliche Isolation zwischen unabhängigen Softwarekomponenten bieten. Daher fokussieren sich aktuelle Echtzeitbetriebssysteme hauptsächlich auf Vorhersagbarkeit und ein berechenbares Worst-Case-Verhalten.
Allerdings bieten Allzweck-Betriebssysteme wie Linux häufig effizientere, aber weniger deterministische Mechanismen, welche die durchschnittliche Ausführungszeit signifikant erhöhen. Diese Thesis befasst sich mit der Kombination der beiden gegensätzlichen Anforderungen und zeigt Mechanismen zur Thread-Synchronisation mit einem effizienten Durchschnittsverhalten, ohne jedoch die Vorhersagbarkeit und das Worst-Case-Verhalten zu beeinträchtigen. Diese Thesis untersucht und bewertet den Entwurfsraum von Abkürzungen (engl. fast paths) bei der Umsetzung von typischen blockierenden Synchronisationsmechanismen wie Mutexen, Bedingungsvariablen, Zähl-Semaphoren, Barrieren oder Nachrichtenwarteschlangen. Der Ansatz ist dabei, unnötige Systemaufrufe zu vermeiden. Systemaufrufe haben im Vergleich zu anderen Prozessoroperationen, die im Benutzermodus verfügbar sind, wie z.B. atomaren Operationen, höhere Kosten. Insbesondere erforscht die Thesis Futexe, ein aktuelles Design für blockierende Synchronisationsmechanismen in Linux, welches den konkurrenzfreien Fall der Synchronisierung mithilfe atomarer Operationen im Benutzermodus löst und den Kern nur aufruft, um Threads zu suspendieren und aufzuwecken. Die Thesis untersucht auch nicht-unterbrechbare Monitore mit aktivem Warten. Dort wird ein effizienter Mechanismus mit Prioritätsschranken verwendet, um das sogenannte Lock-Holder-Preemption-Problem ohne Systemaufrufe zu vermeiden. Ebenfalls werden passende niedere Kernprimitive beschrieben, die effiziente Warte- und Benachrichtigungsoperationen ermöglichen. Die Evaluation zeigt, dass die vorgestellten Ansätze die durchschnittliche Leistung vergleichbar zu aktuellen Ansätzen in Linux verbessern. Gleichzeitig zeigt eine Analyse des Worst-Case Zeitverhaltens, dass die Ansätze nur konstante oder begrenzte zeitliche Mehraufwände auf der Ebene des Betriebssystemkerns benötigen. Die Nutzung dieser Abkürzungen ist ein lohnender Ansatz für den Entwurf von Systemen, die nicht nur Echtzeitanforderungen erfüllen, sondern auch Allzweckanwendungen gut unterstützen sollen.
Social media has changed how customers, businesses, employees, and job seekers form their reputation perceptions of a company, that is, how they form their evaluative judgements about a company’s products, services and behaviors towards constituencies. In pre-social media times, companies had control over what they communicated to their stakeholders, for example, by using corporate websites to convey a predefined image. With social media, multiple opinions, experiences, and company perceptions reach the wider public via multiple channels such as Twitter, Facebook, and other social networking sites that enable user-generated content. Although companies usually try to nurture an online reputation by running their own Facebook and Twitter profiles, a large amount of online content related to a company is produced by social media users and thus is beyond companies’ control. This habilitation thesis is devoted to studying consumer and employee responses to employee behavior in social media. Across eight different articles, with multiple studies each, this thesis aims to draw a full picture of how employee behavior in social media affects customers, other employees, job seekers, and the employing company as a whole.