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Mostrando ítems 31-40 de 63
Ponencia
Looking for Computers in the Biological Cell. After Twenty Years
(Fénix Editora, 2015)
Ponencia
Solving Problems in a Distributed Way in Membrane Computing: dP Systems
(Fénix Editora, 2010)
Although P systems are distributed parallel computing devices, no explicit way of handling the input in a distributed way in this framework was considered so far. This note proposes a distributed architecture (based on ...
Ponencia
Asynchronous Spiking Neural P Systems with Local Synchronization
(Fénix Editora, 2012)
Spiking neural P systems (SN P systems, for short) are a class of distributed parallel computing devices inspired from the way neurons communicate by means of spikes. Asynchronous SN P systems are non-synchronized systems, ...
Ponencia
2006 Research Topics in Membrane Computing
(Fénix Editora, 2006)
This is a list of research topics prepared on the occasion of the Fourth Brainstorming Week on Membrane Computing, Sevilla, January 30 - February 3, 2006 (hence the title). The selection is subjective, the presentation ...
Ponencia
Some Open Problems about Numerical P Systems
(Fénix Editora, 2013)
Some open problems and research topics related to numerical P systems are formulated { also recalling the problems from the corresponding section of the \mega- paper produced for the previous BWMC
Libro
Ponencia
Matrix Languages, Register Machines, Vector Addition Systems
(Fénix Editora, 2005)
We give a direct and simple proof of the equality of Parikh images of lan- guages generated by matrix grammars with appearance checking with the sets of vectors generated by register machines. As a particular case, we ...
Ponencia
P Systems with Active Membranes and Two Polarizations
(Fénix Editora, 2004)
P systems with active membranes using only two electrical charges and only rules of types (a) and (c) assigned to at most two membranes are shown to be computationally complete { thus improving the previous result of ...
Libro
Ponencia
Tissue-like P Systems with Channel-States
(Fénix Editora, 2004)
We consider tissue-like P systems with states associated with the links (we call them synapses) between cells, controlling the passage of objects across the links. We investigate the computing power of such devices for ...