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A New Stochastic Computing Paradigm for Nonlinear Painleve Ii Systems in Applications of Random Matrix Theory

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Date

2018

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Publisher

Springer Heidelberg

Open Access Color

Green Open Access

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Abstract

The aim of the present work is to investigate the stochastic numerical solutions of nonlinear Painleve II systems arising from studies of two-dimensional Yang-Mills theory, growth processes through fluctuation formulas in statistical physics, soft-edge random matrix distributions using the strength of bioinspired heuristics through artificial neural networks (ANNs), genetic algorithm (GA)-based evolutionary computations and interior-point techniques (IPTs). A new mathematical modelling of the system is formulated through ANNs by defining an error function that exactly satisfies the initial conditions. The weights of ANN models optimized through a memetic computing approach that is based on a global search with GAs, and IPTs are used for an efficient local search. The designed scheme is substantiated through comparative analysis with a fully explicit Range-Kutta numerical procedure on nonlinear Painleve II systems by taking different magnitudes of forcing factors. The accuracy and convergence of the proposed scheme are validated through statistics performed on large numbers of simulations.

Description

Raja, Muhammad Asif Zahoor/0000-0001-9953-822X; Ahmad, Iftikhar/0000-0002-8051-8111

Keywords

Turkish CoHE Thesis Center URL

Fields of Science

0103 physical sciences, 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology, 01 natural sciences

Citation

Raja, Muhammad Asif Zahoor...et al. (2018). "A new stochastic computing paradigm for nonlinear Painleve II systems in applications of random matrix theory", European Physical Journal Plus, Vol. 133, No. 7.

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Q2

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OpenCitations Citation Count
64

Source

The European Physical Journal Plus

Volume

133

Issue

7

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CrossRef : 42

Scopus : 81

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80

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80

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2

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6.14701517

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