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A Two-Stage Adaptive Differential Evolution Algorithm with Accompanying Populations
by
Zhou, Liwen
, Jiang, Zeyun
, Zhang, Qingxia
, Min, Chao
, Zhang, Min
in
accompanying populations
/ Adaptive algorithms
/ adaptive parameters
/ Algorithms
/ Analysis
/ differential evolution
/ Efficiency
/ Elitism
/ Evolutionary algorithms
/ Evolutionary computation
/ Genetic algorithms
/ Markov chains
/ Markov processes
/ optimization algorithms
/ Population (statistical)
/ staged evolution
/ Statistical methods
2025
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A Two-Stage Adaptive Differential Evolution Algorithm with Accompanying Populations
by
Zhou, Liwen
, Jiang, Zeyun
, Zhang, Qingxia
, Min, Chao
, Zhang, Min
in
accompanying populations
/ Adaptive algorithms
/ adaptive parameters
/ Algorithms
/ Analysis
/ differential evolution
/ Efficiency
/ Elitism
/ Evolutionary algorithms
/ Evolutionary computation
/ Genetic algorithms
/ Markov chains
/ Markov processes
/ optimization algorithms
/ Population (statistical)
/ staged evolution
/ Statistical methods
2025
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Do you wish to request the book?
A Two-Stage Adaptive Differential Evolution Algorithm with Accompanying Populations
by
Zhou, Liwen
, Jiang, Zeyun
, Zhang, Qingxia
, Min, Chao
, Zhang, Min
in
accompanying populations
/ Adaptive algorithms
/ adaptive parameters
/ Algorithms
/ Analysis
/ differential evolution
/ Efficiency
/ Elitism
/ Evolutionary algorithms
/ Evolutionary computation
/ Genetic algorithms
/ Markov chains
/ Markov processes
/ optimization algorithms
/ Population (statistical)
/ staged evolution
/ Statistical methods
2025
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A Two-Stage Adaptive Differential Evolution Algorithm with Accompanying Populations
Journal Article
A Two-Stage Adaptive Differential Evolution Algorithm with Accompanying Populations
2025
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Overview
Stochastic simulations are often used to determine the crossover rates and step size of evolutionary algorithms to avoid the tuning process, but they cannot fully utilize information from the evolutionary process. A two-stage adaptive differential evolution algorithm (APDE) is proposed in this article based on an accompanying population, and it has unique mutation strategies and adaptive parameters that conform to the search characteristics. The global exploration capability can be enhanced by the accompanying population to achieve a balance between global exploration and local search. This algorithm has proven to be convergent with a probability of 1 using the theory of Markov chains. In numerical experiments, the APDE is statistically compared with nine comparison algorithms using the CEC2005 and CEC2017 standard set of test functions, and the results show that the APDE is statistically superior to the comparison methods.
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