Multiphase Simulated Annealing Based on Boltzmann and Bose-Einstein Distribution Applied to Protein Folding Problem

Author:

Frausto-Solis Juan1ORCID,Liñán-García Ernesto2,Sánchez-Hernández Juan Paulo3,González-Barbosa J. Javier1,González-Flores Carlos2,Castilla-Valdez Guadalupe1ORCID

Affiliation:

1. Instituto Tecnológico de Ciudad Madero, Tecnológico Nacional de México, Avenida Sor Juana Inés de la Cruz s/n, Colonia los Mangos, 89440 Ciudad Madero, TAMPS, Mexico

2. Universidad Autónoma de Coahuila, Ciudad Universitaria, 25280 Arteaga, COAH, Mexico

3. UPEMOR, Boulevard Cuauhnáhuac 566, Jiutepec, 62550 Mor México, CP, Mexico

Abstract

A new hybrid Multiphase Simulated Annealing Algorithm using Boltzmann and Bose-Einstein distributions (MPSABBE) is proposed. MPSABBE was designed for solving the Protein Folding Problem (PFP) instances. This new approach has four phases: (i) Multiquenching Phase (MQP), (ii) Boltzmann Annealing Phase (BAP), (iii) Bose-Einstein Annealing Phase (BEAP), and (iv) Dynamical Equilibrium Phase (DEP). BAP and BEAP are simulated annealing searching procedures based on Boltzmann and Bose-Einstein distributions, respectively. DEP is also a simulated annealing search procedure, which is applied at the final temperature of the fourth phase, which can be seen as a second Bose-Einstein phase. MQP is a search process that ranges from extremely high to high temperatures, applying a very fast cooling process, and is not very restrictive to accept new solutions. However, BAP and BEAP range from high to low and from low to very low temperatures, respectively. They are more restrictive for accepting new solutions. DEP uses a particular heuristic to detect the stochastic equilibrium by applying a least squares method during its execution. MPSABBE parameters are tuned with an analytical method, which considers the maximal and minimal deterioration of problem instances. MPSABBE was tested with several instances of PFP, showing that the use of both distributions is better than using only the Boltzmann distribution on the classical SA.

Publisher

Hindawi Limited

Subject

Computer Science Applications,Biochemistry, Genetics and Molecular Biology (miscellaneous),Biomedical Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Arrow of Time, Entropy, and Protein Folding: Holistic View on Biochirality;International Journal of Molecular Sciences;2022-03-28

2. A Peptides Prediction Methodology for Tertiary Structure Based on Simulated Annealing;Mathematical and Computational Applications;2021-04-29

3. GRSA Enhanced for Protein Folding Problem in the Case of Peptides;Axioms;2019-12-04

4. Protein Folding Problem in the Case of Peptides Solved by Hybrid Simulated Annealing Algorithms;Fuzzy Logic Augmentation of Neural and Optimization Algorithms: Theoretical Aspects and Real Applications;2018

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