Asymptotic Hitting Time for a Simple Evolutionary Model of Protein Folding

Author:

Ladret Véronique

Abstract

We consider two versions of a simple evolutionary algorithm (EA) model for protein folding at zero temperature, namely the (1 + 1)-EA on the LeadingOnes problem. In this schematic model, the structure of the protein, which is encoded as a bit-string of length n, is evolved to its native conformation through a stochastic pathway of sequential contact bindings. We study the asymptotic behavior of the hitting time, in the mean case scenario, under two different mutations: the one-flip, which flips a unique bit chosen uniformly at random in the bit-string, and the Bernoulli-flip, which flips each bit in the bit-string independently with probability c/n, for some c+ (0 ≤ cn). For each algorithm, we prove a law of large numbers, a central limit theorem, and compare the performance of the two models.

Publisher

Cambridge University Press (CUP)

Subject

Statistics, Probability and Uncertainty,General Mathematics,Statistics and Probability

Cited by 9 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. Analyzing randomized search heuristics via stochastic domination;Theoretical Computer Science;2019-06

2. Solving Problems with Unknown Solution Length at Almost No Extra Cost;Algorithmica;2018-07-03

3. Probabilistic Analysis of the (1+1)-Evolutionary Algorithm;Evolutionary Computation;2018-06

4. The $$(1+1)$$ ( 1 + 1 ) Elitist Black-Box Complexity of LeadingOnes;Algorithmica;2017-03-21

5. The (1+1) Elitist Black-Box Complexity of LeadingOnes;Proceedings of the Genetic and Evolutionary Computation Conference 2016;2016-07-20

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