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This minor thesis shows a way to optimise a generated oracle to achieve shorter runtimes. Shorter runtimes of test cases allows the execution of more test cases in the same time. The execution of more test cases leads to a higher confidence in the software-quality. Oracles can be derived from specifications. However specifications are used for different purposes and therefore are not necessarily executable. Even if the are executable it might be with only a high runtime. Those two facts come mostly from the use of quantifiers in the logic. If the quantifier-range is not bounded, respectively if the bounds are outside the target language-datatype-limits, the specification is too expressive to be exported into a program. Even if the bounds inside the used datatype-limits, the quantification is represented as a loop which leads to a runtime blowup, especially if quantifiers are nested. This work explains four different possibilities to reduce the execution time of the oracle by manipulating the quantified formular whereas this approach is only applicable if the quantified variables are of type Integer.
This thesis introduces fnnlib, a C++ library for recurrent neural network simulations that I developed between October 2009 and March 2010 at Osaka University's Graduate School of Engineering. After covering the theory behind recurrent neural networks, backpropagation through time, recurrent neural networks with parametric bias, continuous-time recurrent neural networks, and echo state networks, the design of the library is explained. All of the classes as well as their interrelationships are presented along with reasons as to why certain design decisions were made. Towards the end of the thesis, a small practical example is shown. Also, fnnlib is compared to other neural network libraries.
Das Ziel dieser Studienarbeit ist es, einen Roboterarm in einen bestehenden Software-Stackrnzu integrieren, damit ein darauf basierender Roboter beim Wettbewerb RoboCup @Home teilnehmen kann. Der Haushaltsroboter Lisa (Lisa Is a Service Android) muss für den @Home-Wettbewerb unter anderem Gegenstände aus Regalen entnehmen und an Personen weiterreichen. Bisher war dafür nur ein Gripper, also ein an der mobilen Plattform in Bodennähe angebrachter "Zwicker" vorhanden. Nun steht dem Roboter ein "Katana Linux Robot" der Schweizer Firma Neuronics zur Verfügung, ein Roboter in Form eines Arms. Dieser wird auf LISA montiert und nimmt über verschiedene Schnittstellen Befehle entgegen. Er besteht aus sechs Gliedern mit entsprechend vielen Freiheitsgraden. Im Robbie-Softwarestack muss ein Treiber für diesen Arm integriert und eine Pfadplanung erstellt werden. Letztere soll bei der Bewegung des Arms sowohl Kollisionen mit Hindernissen vermeiden als auch natürlich wirkende Bewegungsabläufe erstellen.
In recent development, attempts have been made to integrate UML and OWL into one hybrid modeling language, namely TwoUse. This aims at making use of the benefits of both modeling languages and overcoming the restrictions of each. In order to create a modeling language that will actually be used in software development an integration with OCL is needed. This integration has already been described at the contextual level in, however an implementation is lacking so far. The scope of this paper is the programatical implementation of the integration of TwoUse with OCL. In order to achieve this, two different OCL implementations that already provide parsing and interpretation functionalities for expressions over regular UML. This paper presents two attempts to extend existing OCL implementations, as well as a comparison of the existing approaches.