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A model of anytime algorithm performance for bi-objective optimization., , и . J. Glob. Optim., 79 (2): 329-350 (2021)Multi-objective Local Search Based on Decomposition., , , , и . PPSN, том 9921 из Lecture Notes in Computer Science, стр. 431-441. Springer, (2016)Decision/Objective Space Trajectory Networks for Multi-objective Combinatorial Optimisation., , , и . EvoCOP, том 13987 из Lecture Notes in Computer Science, стр. 211-226. Springer, (2023)An Ensemble Indicator-Based Density Estimator for Evolutionary Multi-objective Optimization., , и . PPSN (2), том 12270 из Lecture Notes in Computer Science, стр. 201-214. Springer, (2020)Landscape features and automated algorithm selection for multi-objective interpolated continuous optimisation problems., , , , и . GECCO, стр. 421-429. ACM, (2021)Designing parallelism in surrogate-assisted multiobjective optimization based on decomposition., , , , , и . GECCO, стр. 462-470. ACM, (2020)On the Combined Impact of Population Size and Sub-problem Selection in MOEA/D., , , , и . EvoCOP, том 12102 из Lecture Notes in Computer Science, стр. 131-147. Springer, (2020)Shake Them All! - Rethinking Selection and Replacement in MOEA/D., , , и . PPSN, том 8672 из Lecture Notes in Computer Science, стр. 641-651. Springer, (2014)Designing Helper Objectives in Multi-Objectivization., , , и . CEC, стр. 1-8. IEEE, (2024)On the Effects of Smoothing Rugged Landscape by Different Toy Problems: A Case Study on UBQP., , , , , и . CEC, стр. 1-8. IEEE, (2024)