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Membrane Computing and Economics: Numerical P Systems

TLDR
It is proved that non-deterministic systems of this type, using polynomial production functions, characterize the Turing computable sets of natural numbers, while deterministic systems, with polynometric production functions having non-negative coefficients, compute strictly more than semilinear sets ofnatural numbers.
Abstract
With inspiration from the economic reality, where numbers are basic entities to work with, we propose a genuinely new kind of P systems, where numerical variables evolve, starting from initial values, by means of production functions and repartition protocols. We prove that non-deterministic systems of this type, using polynomial production functions, characterize the Turing computable sets of natural numbers, while deterministic systems, with polynomial production functions having non-negative coefficients, compute strictly more than semilinear sets of natural numbers. A series of research topics to be addressed in this framework are mentioned.

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Citations
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Coupled Neural P Systems

TL;DR: It is proved that CNP systems as number-generating devices are Turing universal and provided a small universal CNP system for function-computing devices.
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Development of membrane controllers for mobile robots

TL;DR: The experiments reported in this paper validate the concept and prove that the performance of a membrane controller is comparable to or better than that of other controllers (such as fuzzy logic controllers).
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Spiking neural P systems with inhibitory rules

TL;DR: It is proved that SNP-IR systems are Turing universal number accepting/generating devices, and is shown as a directed graph with inhibitory arcs, which seems to have more powerful control.
Journal ArticleDOI

Using enzymatic numerical P systems for modeling mobile robot controllers

TL;DR: This paper proposes a new class of NPSs, in which enzyme-like variables allow the existence of more than one production function in each membrane, while keeping the deterministic nature of the system.
Journal ArticleDOI

A Complete Arithmetic Calculator Constructed from Spiking Neural P Systems and its Application to Information Fusion

TL;DR: This is the first attempt to apply arithmetic operation SNPS to fuse multiple information and the effectiveness of the presented general arithmetic SNPS calculator is verified by means of several examples.
References
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Book

Membrane Computing: An Introduction

Gheorghe Paun
TL;DR: This chapter discusses Membrane Computing, What It Is and What It is Not, and attempts to get back to reality with open problems and Universality results.
Book

The mathematical theory of L systems

TL;DR: A survey of the different areas of the theory of developmental systems and languages in such a way that it discusses typical results obtained in each particular problem area.
Book

The encyclopedia of integer sequences

TL;DR: In this article, the authors present a set of hand-crafted hand-annotated hand-interpretation techniques for handling a "strange" sequence: How to Handle a Strange Sequence, How to See if a Sequence Is in the Table.