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Fundamenta Informaticae is an international journal publishing original research results in all areas of theoretical computer science. Papers are encouraged contributing:
- solutions by mathematical methods of problems emerging in computer science
- solutions of mathematical problems inspired by computer science.
Topics of interest include (but are not restricted to): theory of computing, complexity theory, algorithms and data structures, computational aspects of combinatorics and graph theory, programming language theory, theoretical aspects of programming languages, computer-aided verification, computer science logic, database theory, logic programming, automated deduction, formal languages and automata theory, concurrency and distributed computing, cryptography and security, theoretical issues in artificial intelligence, machine learning, pattern recognition, algorithmic game theory, bioinformatics and computational biology, quantum computing, probabilistic methods, & algebraic and categorical methods.
Authors: Kurbalija, Vladimir | Ivanović, Mirjana | von Bernstorff, Charlotte | Nachtwei, Jens | Burkhard, Hans-Dieter
Article Type: Research Article
Abstract: This paper outlines the primary steps to investigate if artificial agents can be considered as true substitutes of humans. Based on a Socially augmented microworld (SAM) human tracking behavior was analyzed using time series. SAM involves a team of navigators jointly steering a driving object along different virtual tracks containing obstacles and forks. Speed and deviances from track are logged, producing high-resolution time series of individual (training) and cooperative tracking behavior. In the current study 52 time series of individual tracking behavior on training tracks were clustered according to different similarity measures. Resulting clusters were used to predict cooperative tracking …behavior in fork situations. Results showed that prediction was well for tracking behavior shown at the first and, moderately well at the third fork of the cooperative track: navigators switched from their trained to a different tracking style and then back to their trained behavior. This matches with earlier identified navigator types, which were identified on visual examination. Our findings on navigator types will serve as a basis for the development of artificial agents, which can be compared later to behavior of human navigators. Show more
Keywords: Socially augmented microworld, time series analysis, artificial agents
DOI: 10.3233/FI-2014-965
Citation: Fundamenta Informaticae, vol. 129, no. 1-2, pp. 133-147, 2014
Authors: Polkowski, Lech | Semeniuk-Polkowska, Maria
Article Type: Research Article
Abstract: In this essay, we analyze various often semantically identified notions of separating things. In doing this, we contrast the set–theoretical approach based on the notion of an element/point with the mereological approach based on the notion of a part, hence, pointless. We address time aspect of the notion of a boundary and related notions as well as approximate notions defined in the realm of rough (approximate) mereology.
Keywords: spatial reasoning, boundary, mereology, mereotopology
DOI: 10.3233/FI-2014-966
Citation: Fundamenta Informaticae, vol. 129, no. 1-2, pp. 149-159, 2014
Authors: Szpyrka, Marcin | Matyasik, Piotr | Mrówka, Rafał | Kotulski, Leszek
Article Type: Research Article
Abstract: The paper presents a formal description of a subset of the Alvis language designed for the modelling and formal verification of concurrent systems. Alvis combines possibilities of a formal models verification with flexibility and simplicity of practical programming languages. Alvis provides a graphical modelling of interconnections among agents and a high level programming language used for the description of agents behaviour. Its semantic depends on the so-called system layer. The most universal system layer α0 , described in the paper, makes Alvis similar to other formal languages like Petri nets, process algebras, time automata, etc.
Keywords: Alvis modelling language, concurrent systems, formal methods
DOI: 10.3233/FI-2014-967
Citation: Fundamenta Informaticae, vol. 129, no. 1-2, pp. 161-176, 2014
Authors: Wiśniewski, Piotr | Stencel, Krzysztof
Article Type: Research Article
Abstract: Unified State Model (USM) is a single data model that allows conveying objects of major programming languages and databases. USM exploits and emphasizes common properties of their data models. USM is equipped with mappings from these data models onto it. With USM at hand, we have faced the next natural research question whether numerous query languages for the data subsumed by USM can be clearly mapped onto a common language. We have designed and proposed such a language called the Unified Query Language (UQL). UQL is intended to be a minimalistic and elegant query language that allows expressing queries of …languages of data models covered by USM. In this paper we define UQL and its concise set of operators. Next we conduct a mild introduction into UQL features by showing examples of SQL and ODMG OQL queries and their mapping onto UQL. We conclude by presenting the mapping of the theoretical foundations of these two major query languages onto UQL. They are the multiset relational algebra and the object query algebra. This is an important step towards the establishment of a fully-fledged common query language for USM and its subsumed data models. Show more
DOI: 10.3233/FI-2014-968
Citation: Fundamenta Informaticae, vol. 129, no. 1-2, pp. 177-192, 2014
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