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Mostrando ítems 21-26 de 26
Artículo
Tissue P Systems With Channel States Working in the Flat Maximally Parallel Way
(IEEE Computer Society, 2016)
issue P systems with channel states are a class of bio-inspired parallel computational models, where rules are used in a sequential manner (on each channel, at most one rule can be used at each step). In this work, tissue ...
Artículo
Efficient solutions to hard computational problems by P systems with symport/antiport rules and membrane division
(Elsevier, 2015)
P systems are computing models inspired by some basic features of biological membranes. In this work, membrane division, which provides a way to obtain an exponential workspace in linear time, is introduced into (cell-like) ...
Artículo
Spiking Neural P systems with weights
(MIT Press, 2010)
A variant of spiking neural P systems with positive or negative weights on synapses is introduced, where the rules of a neuron fire when the potential of that neuron equals a given value. The involved values—weights, firing ...
Artículo
Computational efficiency and universality of timed P systems with membrane creation
(Springer, 2015)
P systems are a class of distributed parallel computing models inspired by the structure and the functioning of a living cell, where the execution of each rule is completed in exactly one time unit (a global clock ...
Artículo
An efficient time-free solution to SAT problem by P systems with proteins on membranes
(Elsevier, 2016)
P systems with proteins on membranes are a class of bio-inspired computing models,where the execution of each rule completes in exactly one time unit. However, in livingcells, the execution time of biochemical reactions ...
Artículo
An efficient time-free solution to QSAT problem using P systems with proteins on membranes
(Elsevier, 2017)
P systems are a class of distributed parallel computing devices inspired by some basicbehaviors of biological membranes, which have the restriction that each rule is executedin exactly one time unit. However, it is natural ...