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NSGA-II×Differential Evolution×A részecskesereg-optimalizálás (PSO)×
TudományterületOptimalizálásOptimalizálásOptimalizálás
MódszercsaládProcess / pipelineProcess / pipelineProcess / pipeline
Keletkezés éve200219971995
MegalkotóRainer Storn & Kenneth Price
TípusEvolutionary multi-objective optimisation algorithmPopulation-based stochastic metaheuristicPopulation-based metaheuristic / swarm intelligence
AlapműDeb, K., Pratap, A., Agarwal, S. & Meyarivan, T. (2002). A Fast and Elitist Multiobjective Genetic Algorithm: NSGA-II. IEEE Transactions on Evolutionary Computation, 6(2), 182-197. DOI ↗Storn, R. & Price, K. (1997). Differential Evolution – A Simple and Efficient Heuristic for Global Optimization over Continuous Spaces. Journal of Global Optimization, 11(4), 341–359. DOI ↗Kennedy, J. & Eberhart, R. (1995). Particle Swarm Optimization. IEEE International Conference on Neural Networks (ICNN), 1942-1948. DOI ↗
Alternatív nevekNSGA2, Non-dominated Sorting GA II, NSGA-II — Çok Amaçlı Evrimsel OptimizasyonDE algorithm, Diferansiyel Evrim (DE), DE optimizationPSO, swarm intelligence optimization, Parçacık Sürü Optimizasyonu (PSO)
Kapcsolódó456
ÖsszefoglalóNSGA-II (Non-dominated Sorting Genetic Algorithm II) is the standard reference algorithm for multi-objective evolutionary optimisation, introduced by Deb, Pratap, Agarwal and Meyarivan in 2002. Rather than collapsing multiple conflicting objectives into a single score, it evolves a population of candidate solutions across generations and returns a set of Pareto-optimal trade-off solutions — the Pareto front — using fast non-dominated sorting and a crowding distance metric to preserve diversity.Differential Evolution (DE), introduced by Rainer Storn and Kenneth Price in 1997, is a population-based stochastic optimisation algorithm designed for continuous parameter spaces. It generates candidate solutions by combining vector differences between existing population members, making it a powerful and parameter-lean alternative to Genetic Algorithms and Particle Swarm Optimisation when the search landscape is non-convex, multimodal, or poorly suited to gradient-based methods.Particle Swarm Optimization (PSO) is a population-based metaheuristic algorithm introduced by Kennedy and Eberhart in 1995, inspired by the collective movement of bird flocks and fish schools. Each candidate solution — called a particle — moves through the search space by updating its velocity and position based on its own best experience and the best experience of the entire swarm, enabling fast convergence across continuous optimization problems.
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ScholarGateMódszerek összehasonlítása: NSGA-II · Differential Evolution · Particle Swarm Optimization. Letöltve 2026-06-19, forrás: https://scholargate.app/hu/compare