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Titlebook: Membrane Computing; 12th International C Marian Gheorghe,Gheorghe Păun,Sergey Verlan Conference proceedings 2012 Springer-Verlag GmbH Berli

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楼主: Perforation
发表于 2025-3-30 10:00:40 | 显示全部楼层
An Adaptive Algorithm for P System Synchronizationorithm by allowing the general to delegate a more central cell in the P system to send the final command to synchronize. With . being the eccentricity of the general and . denoting the radius of the underlying digraph, our new algorithm guarantees to synchronize all cells of the system, between . + 
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Chemical Analog Computers for Clock Frequency Control Based on P Modulestrol loops and regulator circuits are expected to exhibit a high functional similarity to technical counterparts subsumed by analog computers. A fascinating example is given by circadian clocks providing an endogenous biological rhythm adapted to the daily variation of sunlight and darkness. Its und
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Evolutionary Design of a Simple Membrane Systemr fulfilling a specific task by using a quantum-inspired evolutionary algorithm and the P-lingua simulator. The design consists of the pre-defined membrane structure and initial objects, a set of possible evolution rules, the coding technique of membrane systems, evolutionary operators and a fitness
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Formal Verification of P Systems with Active Membranes through Model Checkings with static structure have been considered. This paper makes significant advances in this area by considering P systems with active membranes, in particular P systems with division rules. The paper presents a theoretical framework for addressing this problem and reports on a complex case study inv
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Basic Concurrency Resolution in Clock-Free P Systemse processes in this model more similar to the chemical processes in the biological cell, but also poses similar design problems as in concurrent programming. In this paper an attempt is made to solve synchronisation problems in clock-free P systems using the approaches commonly used in concurrent pr
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Asynchronous Extended Spiking Neural P Systems with Astrocytespses. In this work, we consider this system in the non-synchronized (i.e., asynchronous) mode: in any step, when a neuron is enabled, it is not obligatorily fired, making a global clock dispensable. It is proved that asynchronous spiking neural P systems with astrocytes are universal (when using ext
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A P–Lingua Based Simulator for Spiking Neural P Systems(they are equivalent in power to Turing machines) and computational efficiency of this kind of systems. These devices have been shown capable of providing polynomial time solutions to computationally hard problems by making use of an exponential workspace constructed in a natural way. In order to ex
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Computing with Multi-membranesly universal model, where computations are performed by transferring objects among membranes with fluxes specified by membrane contents. Arithmetical functions can be naturally described and, remarkably, the algorithms can be described by means of pure geometrical forms without any textual informati
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Membrane Computing978-3-642-28024-5Series ISSN 0302-9743 Series E-ISSN 1611-3349
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