Bianca Truthe

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35ranked-venue papers
8as first author
9since 2021 · last 2026
0000-0003-0031-5275ORCID · verified

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Theory of computation · 34 · 8 first-author · 9 since 2021Artificial intelligence and machine learning · 1
YearPublicationVenuePosition
2026 Internal contextual grammars with resources restricted and structure limited selection
abstract
Abstract In this paper, we continue the research on the power of contextual grammars with selection languages from subfamilies of the family of regular languages. In the past, two independent hierarchies have been obtained for external and internal contextual grammars, one based on selection languages defined by structural properties (finite, monoidal, nilpotent, combinational, definite, ordered, non-counting, power-separating, suffix-closed, commutative, circular, or union-free languages), the other one based on selection languages defined by resources (number of non-terminal symbols, production rules, or states needed for generating or accepting them). In a previous paper, the language families of these hierarchies for external contextual grammars were compared and the hierarchies merged. In the present paper, we compare the language families of these hierarchies for internal contextual grammars and merge these hierarchies.
Bianca Truthe
Acta Informatica1
2026 External contextual grammars with resources restricted and structure limited selection
abstract
In this paper, we continue the research on the power of contextual grammars with selection languages from subfamilies of the family of regular languages. In the past, two independent hierarchies have been obtained for external and internal contextual grammars, one based on selection languages defined by structural properties (finite, monoidal, nilpotent, combinational, definite, ordered, non-counting, power-separating, suffix-closed, commutative, circular, or union-free languages), the other one based on selection languages defined by resources (number of non-terminal symbols, production rules, or states needed for generating or accepting them). In the present paper, we compare the language families of these hierarchies for external contextual grammars and merge the hierarchies.
Bianca Truthe
Inf. Comput.1
2023 Special Issue: Selected papers of the 15th International Conference on Language and Automata Theory and Applications, LATA 2021
Carlos Martín-Vide, Bianca Truthe
Inf. Comput.2
2022 A Survey on Computationally Complete Accepting and Generating Networks of Evolutionary Processors
Bianca Truthe
MCU1
2022 Special Issue: Selected papers of the 12th International Conference on Language and Automata Theory and Applications, LATA 2018
Carlos Martín-Vide, Bianca Truthe
Inf. Comput.2
2022 Special issue: Selected papers of the 13th International Conference on Language and Automata Theory and Applications, LATA 2019
Carlos Martín-Vide, Bianca Truthe
Inf. Comput.2
2022 Special Issue: Selected papers of the 14th International Conference on Language and Automata Theory and Applications, LATA 2020
Carlos Martín-Vide, Bianca Truthe
Inf. Comput.2
2021 Generative Capacity of Contextual Grammars with Subregular Selection Languages
abstract
A contextual grammar is a language generating mechanism inspired by generating sentences in natural languages. An existing string can be extended to a new string of the language by adjoining a context before and behind the string or by inserting it into the string around some subword. The first mode is called external derivation whereas the second mode is called internal derivation. If conditions are given, around which words which contexts can be adjoined, we speak about contextual grammars with selection. We give an overview about the generative capacity of contextual grammars (working externally or internally) where the selection languages belong to subregular language classes. All languages generated by contextual grammars where all selection languages are elements of a certain subregular language family form again a language family. We compare such families which are based on finite, monoidal, nilpotent, combinational, definite, suffix-closed, ordered, commutative, circular, non-counting, power-separating, or union-free languages, or based on languages defined by restrictions regarding the descriptional complexity.
Bianca Truthe
Fundam. Informaticae1
2021 Special Issue: Selected papers of the 11th International Conference on Language and Automata Theory and Applications, LATA 2017
Carlos Martín-Vide, Bianca Truthe
Inf. Comput.2
2019 Special Issue: Selected papers of the 10th International Conference on Language and Automata Theory and Applications, LATA 2016
Adrian-Horia Dediu, Carlos Martín-Vide, Bianca Truthe
Inf. Comput.3
2019 Special issue: Selected papers of the 9th International Conference on Language and Automata Theory and Applications, LATA 2015
Adrian-Horia Dediu, Carlos Martín-Vide, Bianca Truthe
J. Comput. Syst. Sci.3
2017 Selected papers of the 8th International Conference on Language and Automata Theory and Applications (LATA 2014)
Adrian-Horia Dediu, Carlos Martín-Vide, Bianca Truthe
Inf. Comput.3
2017 TCS Special Issue on Languages and Combinatorics in Theory and Nature
Florin Manea, Bianca Truthe, György Vaszil
Theor. Comput. Sci.2
2016 7th International Conference on Language and Automata Theory and Applications (LATA 2013)
Adrian-Horia Dediu, Carlos Martín-Vide, Bianca Truthe
Inf. Comput.3
2015 On the Power of Accepting Networks of Evolutionary Processors with Special Topologies and Random Context Filters
abstract
In this paper, we approach the problem of accepting all recursively enumerable languages by accepting networks of evolutionary processors (ANEPs, for short) with a fixed architecture. More precisely, we show that every recursively enumerable language can be accepted by an ANEP with an underlying graph in the form of a star with 13 nodes or by an ANEP with an underlying grid with 13 × 4 = 52 nodes as well as by ANEPs having underlying graphs in the form of a chain, a ring, or a wheel with 29 nodes each. In all these cases, the size and form as well as the general working strategy of the constructed networks do not depend on the accepted language; only the rewriting rules and the filters associated to each node of the networks depend on this language. Noteworthy is also the fact that the filtering process is implemented using random context conditions only. Our results answer problems which were left open in a paper published by J. Dassow and F. Manea at the conference on Descriptional Complexity of Formal Systems (DCFS) 2010 and improve a result published by B. Truthe at the conference on Non-Classical Models of Automata and Applications (NCMA) 2013.
Jürgen Dassow, Florin Manea, Bianca Truthe
Fundam. Informaticae3
2014 6th International Conference on Language and Automata Theory and Applications (LATA 2012)
Adrian-Horia Dediu, Carlos Martín-Vide, Bianca Truthe
Inf. Comput.3
2014 Accepting Networks of Evolutionary Processors with Subregular Filters
Florin Manea, Bianca Truthe
Theory Comput. Syst.2
2013 Networks of evolutionary processors: the power of subregular filters
Jürgen Dassow, Florin Manea, Bianca Truthe
Acta Informatica3
2012 Networks of evolutionary processors: computationally complete normal forms
Jürgen Dassow, Florin Manea, Bianca Truthe
Nat. Comput.3
2012 On external contextual grammars with subregular selection languages
Jürgen Dassow, Florin Manea, Bianca Truthe
Theor. Comput. Sci.3
2011 Networks of Evolutionary Processors with Subregular Filters
Jürgen Dassow, Florin Manea, Bianca Truthe
LATA3
2011 On Normal Forms for Networks of Evolutionary Processors
Jürgen Dassow, Florin Manea, Bianca Truthe
UC3
2011 On Networks of Evolutionary Processors with Filters Accepted by Two-State-Automata
abstract
In this paper, we study networks of evolutionary processors where the filters are chosen as special regular sets. We consider networks where all the filters belong to a set of languages that are accepted by deterministic finite automata with a fixed number of states. We show that if the number of states is bounded by two, then every recursively enumerable language can be generated by such a network. If the number of states is bounded by one, then not all regular languages but non-context-free languages can be generated.
Jürgen Dassow, Bianca Truthe
Fundam. Informaticae2
2011 The role of evolutionary operations in accepting hybrid networks of evolutionary processors
Jürgen Dassow, Victor Mitrana, Bianca Truthe
Inf. Comput.3
2011 3rd International Conference on Language and Automata Theory and Applications (LATA 2009)
Carlos Martín-Vide, Bianca Truthe
Inf. Comput.2
2010 Low Disruption Transformations on Cyclic Automata
abstract
We extend the edit operators of substitution, deletion, and insertion of a symbol over a word by introducing two new operators (partial copy and partial elimination) inspired by biological gene duplication. We define a disruption measure for an opera
Gema M. Martín, Francisco J. Vico, Jürgen Dassow, Bianca Truthe
Fundam. Informaticae4
2010 Target Based Accepting Networks of Evolutionary Processors
abstract
In this paper, a new definition of accepting networks – called target based accepting networks – is given. In a target based accepting network of evolutionary processors, each node is equipped with a target condition. As soon as a node contains a wor
Bianca Truthe
Fundam. Informaticae1
2009 On Accepting Networks of Evolutionary Processors with at Most Two Types of Nodes
Victor Mitrana, Bianca Truthe
LATA2
2009 On Networks of Evolutionary Processors with Nodes of Two Types
abstract
We discuss the power of networks of evolutionary processors where only two types of nodes are allowed. We prove that (up to an intersection with a monoid) every recursively enumerable language can be generated by a network with one deletion and one insertion node. Networks with an arbitrary number of deletion and substitution nodes only produce finite languages, and for each finite language one deletion node or one substitution node is sufficient. Networks with an arbitrary number of insertion and substitution nodes only generate context-sensitive languages, and (up to an intersection with a monoid) every context-sensitive language can be generated by a network with one substitution node and one insertion node. All results are optimal with respect to the number of nodes.
Artiom Alhazov, Carlos Martín-Vide, Bianca Truthe, Jürgen Dassow, Yurii Rogozhin
Fundam. Informaticae3
2009 Two collapsing hierarchies of subregularly tree controlled languages
Jürgen Dassow, Ralf Stiebe, Bianca Truthe
Theor. Comput. Sci.3
2007 On the Power of Networks of Evolutionary Processors
Jürgen Dassow, Bianca Truthe
MCU2
2007 On the number of components for some parallel communicating grammar systems
Jürgen Dassow, Bianca Truthe
Theor. Comput. Sci.2
2006 The finiteness of synchronous, tabled picture languages is decidable
Bianca Truthe
Theor. Comput. Sci.1
2004 A Method for Deciding the Finiteness of Deterministic Tabled Picture Languages
Bianca Truthe
Developments in Language Theory1
2003 On the Finiteness of Picture Languages of synchronous, simple non-deterministic Chain Code Picture Systems
Bianca Truthe
Fundam. Informaticae1