5noThe computational power of membrane systems, in their different variants, can be studied by defining classes of problems that can be solved within given bounds on computation time or space, and comparing them with usual computational complexity classes related to the Turing Machine model. Here we will consider in particular membrane systems with active membranes (where new membranes can be created by division of existing membranes). The problems related to the definition of time/space complexity classes for membrane systems will be discussed, and the resulting hierarchy will be compared with the usual hierarchy of complexity classes, mainly through simulations of Turing Machines by (uniform families of) membrane systems with active membr...
Membrane computing is a branch of natural computing which abstracts computing models from the struct...
In this paper, a computational complexity theory within the framework of Membrane Computing is intr...
We characterise the computational complexity of biological systems to assess their utility as novel ...
We compare various computational complexity classes defined within the framework of membrane systems...
AbstractThe purpose of the present work is to give a general idea about the existing results and ope...
AbstractWe show how techniques in machine-based complexity can be used to analyze the complexity of ...
In this work we revisit the basic concepts, definitions of computational complexity theory in membr...
The purpose of the present work is to give a general idea about the existing results and open proble...
We define space complexity classes in the framework of membrane computing, giving some initial resul...
We define space complexity classes in the framework of membrane computing, giving some initial resul...
We prove that arbitrary single-tape Turing machines can be simulated by uniform families of P system...
AbstractThe purpose of the present work is to give a general idea about the existing results and ope...
We define space complexity classes in the framework of membrane computing, giving some initial resul...
5noP systems with active membranes are a variant of P systems where membranes play an active role du...
5noWe present some high-level open problems in the complexity theory of membrane systems, related to...
Membrane computing is a branch of natural computing which abstracts computing models from the struct...
In this paper, a computational complexity theory within the framework of Membrane Computing is intr...
We characterise the computational complexity of biological systems to assess their utility as novel ...
We compare various computational complexity classes defined within the framework of membrane systems...
AbstractThe purpose of the present work is to give a general idea about the existing results and ope...
AbstractWe show how techniques in machine-based complexity can be used to analyze the complexity of ...
In this work we revisit the basic concepts, definitions of computational complexity theory in membr...
The purpose of the present work is to give a general idea about the existing results and open proble...
We define space complexity classes in the framework of membrane computing, giving some initial resul...
We define space complexity classes in the framework of membrane computing, giving some initial resul...
We prove that arbitrary single-tape Turing machines can be simulated by uniform families of P system...
AbstractThe purpose of the present work is to give a general idea about the existing results and ope...
We define space complexity classes in the framework of membrane computing, giving some initial resul...
5noP systems with active membranes are a variant of P systems where membranes play an active role du...
5noWe present some high-level open problems in the complexity theory of membrane systems, related to...
Membrane computing is a branch of natural computing which abstracts computing models from the struct...
In this paper, a computational complexity theory within the framework of Membrane Computing is intr...
We characterise the computational complexity of biological systems to assess their utility as novel ...