Hits ?▲ |
Authors |
Title |
Venue |
Year |
Link |
Author keywords |
171 | Karl Bringmann, Tobias Friedrich 0001 |
The maximum hypervolume set yields near-optimal approximation. |
GECCO |
2010 |
DBLP DOI BibTeX RDF |
approximation, performance measures, multiobjective optimization, hypervolume indicator |
155 | Anne Auger, Johannes Bader 0002, Dimo Brockhoff, Eckart Zitzler |
Articulating user preferences in many-objective problems by sampling the weighted hypervolume. |
GECCO |
2009 |
DBLP DOI BibTeX RDF |
preference articulation, monte carlo sampling, hypervolume indicator |
147 | Dimo Brockhoff, Eckart Zitzler |
Improving hypervolume-based multiobjective evolutionary algorithms by using objective reduction methods. |
IEEE Congress on Evolutionary Computation |
2007 |
DBLP DOI BibTeX RDF |
|
139 | Anne Auger, Johannes Bader 0002, Dimo Brockhoff, Eckart Zitzler |
Investigating and exploiting the bias of the weighted hypervolume to articulate user preferences. |
GECCO |
2009 |
DBLP DOI BibTeX RDF |
preference articulation, hypervolume indicator |
115 | Xiuling Zhou, Chengyi Sun, Ning Mao, Wenjuan Li |
Generalization of HSO algorithm for computing hypervolume for multiobjective optimization problems. |
IEEE Congress on Evolutionary Computation |
2007 |
DBLP DOI BibTeX RDF |
|
115 | Mario Köppen, Katrin Franke |
Pareto-dominated Hypervolume Measure: An Alternative Approach to Color Morphology. |
HIS |
2007 |
DBLP DOI BibTeX RDF |
|
107 | Hisao Ishibuchi, Noritaka Tsukamoto, Yuji Sakane, Yusuke Nojima |
Indicator-based evolutionary algorithm with hypervolume approximation by achievement scalarizing functions. |
GECCO |
2010 |
DBLP DOI BibTeX RDF |
evolutionary multiobjective optimization (emo), hypervolume, indicator-based evolutionary algorithm (ibea), many objectives |
99 | Karl Bringmann, Tobias Friedrich 0001 |
Approximating the Least Hypervolume Contributor: NP-Hard in General, But Fast in Practice. |
EMO |
2009 |
DBLP DOI BibTeX RDF |
|
91 | Tobias Friedrich 0001, Christian Horoba, Frank Neumann 0001 |
Multiplicative approximations and the hypervolume indicator. |
GECCO |
2009 |
DBLP DOI BibTeX RDF |
indicator-based algorithms, evolutionary algorithms, approximation, multi-objective optimization, hypervolume indicator |
91 | Lyndon While |
A New Analysis of the LebMeasure Algorithm for Calculating Hypervolume. |
EMO |
2005 |
DBLP DOI BibTeX RDF |
hypervolume, evolutionary computation, performance metrics, Multi-objective optimisation |
83 | Eckart Zitzler, Dimo Brockhoff, Lothar Thiele |
The Hypervolume Indicator Revisited: On the Design of Pareto-compliant Indicators Via Weighted Integration. |
EMO |
2007 |
DBLP DOI BibTeX RDF |
|
83 | Lyndon While, Philip Hingston, Luigi Barone, Simon Huband |
A faster algorithm for calculating hypervolume. |
IEEE Trans. Evol. Comput. |
2006 |
DBLP DOI BibTeX RDF |
|
83 | Darrin C. Edwards, Charles E. Metz, Robert M. Nishikawa |
The hypervolume under the ROC hypersurface of "Near-Guessing" and Near-Perfect" observers in N-class classification tasks. |
IEEE Trans. Medical Imaging |
2005 |
DBLP DOI BibTeX RDF |
|
75 | Tamara Ulrich, Johannes Bader 0002, Eckart Zitzler |
Integrating decision space diversity into hypervolume-based multiobjective search. |
GECCO |
2010 |
DBLP DOI BibTeX RDF |
diversity in decision space, multiobjective optimization, hypervolume indicator |
67 | Hisao Ishibuchi, Yuji Sakane, Noritaka Tsukamoto, Yusuke Nojima |
Single-objective and multi-objective formulations of solution selection for hypervolume maximization. |
GECCO |
2009 |
DBLP DOI BibTeX RDF |
indicator-based evolutionary algorithm, solution selection, solution set optimization, evolutionary multi-objective optimization |
67 | Lucas Bradstreet, Lyndon While, Luigi Barone |
A Fast Incremental Hypervolume Algorithm. |
IEEE Trans. Evol. Comput. |
2008 |
DBLP DOI BibTeX RDF |
|
67 | Lucas Bradstreet, Lyndon While, Luigi Barone |
Incrementally maximising hypervolume for selection in multi-objective evolutionary algorithms. |
IEEE Congress on Evolutionary Computation |
2007 |
DBLP DOI BibTeX RDF |
|
67 | Lyndon While, Lucas Bradstreet, Luigi Barone, Philip Hingston |
Heuristics for optimizing the calculation of hypervolume for multi-objective optimization problems. |
Congress on Evolutionary Computation |
2005 |
DBLP DOI BibTeX RDF |
|
67 | Michael Emmerich, Nicola Beume, Boris Naujoks |
An EMO Algorithm Using the Hypervolume Measure as Selection Criterion. |
EMO |
2005 |
DBLP DOI BibTeX RDF |
|
64 | Boris Naujoks, Nicola Beume, Michael T. M. Emmerich |
Multi-objective optimisation using S-metric selection: application to three-dimensional solution spaces. |
Congress on Evolutionary Computation |
2005 |
DBLP DOI BibTeX RDF |
|
51 | Zack Z. Zhu |
Constraint handling with modified hypervolume indicator for multi-objective optimization problems. |
GECCO (Companion) |
2010 |
DBLP DOI BibTeX RDF |
multi-objective evolutionary computation, constraint handling |
51 | Dimo Brockhoff, Tobias Friedrich 0001, Frank Neumann 0001 |
Analyzing Hypervolume Indicator Based Algorithms. |
PPSN |
2008 |
DBLP DOI BibTeX RDF |
|
51 | Qing Yang 0007, Shengchao Ding |
Novel Algorithm to Calculate Hypervolume Indicator of Pareto Approximation Set. |
ICIC (3) |
2007 |
DBLP DOI BibTeX RDF |
|
43 | Thomas Voß, Tobias Friedrich 0001, Karl Bringmann, Christian Igel |
Scaling up indicator-based MOEAs by approximating the least hypervolume contributor: a preliminary study. |
GECCO (Companion) |
2010 |
DBLP DOI BibTeX RDF |
hypervolume, mo-cma-es, approximation, multi-objective optimization, evolution strategy, covariance matrix adaptation |
40 | Siwei Jiang, Zhihua Cai |
A Novel Hybrid Particle Swarm Optimization for Multi-Objective Problems. |
AICI |
2009 |
DBLP DOI BibTeX RDF |
Uniform Design, Particle Swam OPtimization, Minimum Reduce Hypervolume, Multi-Objective Optimization, Differential Evolution, Spread |
38 | Guotong Wu, Tianye Shu, Ke Shang, Hisao Ishibuchi |
Normalization in R2-Based Hypervolume and Hypervolume Contribution Approximation. |
SSCI |
2023 |
DBLP DOI BibTeX RDF |
|
38 | Ke Shang, Hisao Ishibuchi, Yang Nan 0001, Weiyu Chen |
Transformation-based Hypervolume Indicator: A Framework for Designing Hypervolume Variants. |
SSCI |
2020 |
DBLP DOI BibTeX RDF |
|
38 | Jingda Deng, Qingfu Zhang 0001 |
Approximating Hypervolume and Hypervolume Contributions Using Polar Coordinate. |
IEEE Trans. Evol. Comput. |
2019 |
DBLP DOI BibTeX RDF |
|
35 | Benjamin Schmitt, Alexander A. Pasko, Christophe Schlick |
Constructive Hypervolume Modeling Using Extended Space Mappings. |
Heterogeneous Objects Modelling and Applications |
2008 |
DBLP DOI BibTeX RDF |
|
35 | Víctor A. Braberman, Jorge Lucángeli Obes, Alfredo Olivero, Fernando Schapachnik |
Hypervolume Approximation in Timed Automata Model Checking. |
FORMATS |
2007 |
DBLP DOI BibTeX RDF |
|
32 | Coromoto León, Gara Miranda, Carlos Segura |
Hyperheuristics for a Dynamic-Mapped Multi-Objective Island-Based Model. |
IWANN (2) |
2009 |
DBLP DOI BibTeX RDF |
|
32 | Wolfgang Ponweiser, Tobias Wagner 0001, Dirk Biermann, Markus Vincze |
Multiobjective Optimization on a Limited Budget of Evaluations Using Model-Assisted -Metric Selection. |
PPSN |
2008 |
DBLP DOI BibTeX RDF |
Efficient Global Optimization, Design and Analysis of Computer Experiments, metric, Multiobjective Optimization, Real-World Problems |
32 | Hisao Ishibuchi, Noritaka Tsukamoto, Yusuke Nojima |
Iterative approach to indicator-based multiobjective optimization. |
IEEE Congress on Evolutionary Computation |
2007 |
DBLP DOI BibTeX RDF |
|
32 | Matteo Nicolini |
A Two-Level Evolutionary Approach to Multi-criterion Optimization of Water Supply Systems. |
EMO |
2005 |
DBLP DOI BibTeX RDF |
|
24 | Rudolf Berghammer, Tobias Friedrich 0001, Frank Neumann 0001 |
Set-based multi-objective optimization, indicators, and deteriorative cycles. |
GECCO |
2010 |
DBLP DOI BibTeX RDF |
performance measures, multiobjective optimization, cycles, hypervolume indicator |
24 | Miqing Li, Jinhua Zheng |
Spread Assessment for Evolutionary Multi-Objective Optimization. |
EMO |
2009 |
DBLP DOI BibTeX RDF |
Hypervolume, Boundary solution, Multi-objective optimization, Performance assessment, Spread |
24 | Elena L. Kartasheva, Valery Adzhiev, Alexander A. Pasko, Oleg Fryazinov, Vladimir A. Gasilov |
Discretization of functionally based heterogeneous objects. |
Symposium on Solid Modeling and Applications |
2003 |
DBLP DOI BibTeX RDF |
constructive hypervolume, mesh, finite element analysis, attributes, volume modeling, function representation, heterogeneous objects, cellular representation |
19 | Ke Shang, Tianye Shu, Hisao Ishibuchi |
Learning to Approximate: Auto Direction Vector Set Generation for Hypervolume Contribution Approximation. |
IEEE Trans. Evol. Comput. |
2024 |
DBLP DOI BibTeX RDF |
|
19 | Shulei Liu, Handing Wang, Wen Yao, Wei Peng |
Surrogate-Assisted Environmental Selection for Fast Hypervolume-Based Many-Objective Optimization. |
IEEE Trans. Evol. Comput. |
2024 |
DBLP DOI BibTeX RDF |
|
19 | Liang Zhao, Qingfu Zhang 0001 |
Hypervolume-Guided Decomposition for Parallel Expensive Multiobjective Optimization. |
IEEE Trans. Evol. Comput. |
2024 |
DBLP DOI BibTeX RDF |
|
19 | Ping Guo 0007, Cheng Gong, Xi Lin, Zhiyuan Yang, Qingfu Zhang 0001 |
Exploring the Adversarial Frontier: Quantifying Robustness via Adversarial Hypervolume. |
CoRR |
2024 |
DBLP DOI BibTeX RDF |
|
19 | Maomao Liang, Liangying Wang, Lijin Wang, Yiwen Zhong |
A hypervolume-based cuckoo search algorithm with enhanced diversity and adaptive scaling factor. |
Appl. Soft Comput. |
2024 |
DBLP DOI BibTeX RDF |
|
19 | Kaan Deveci, Onder Guler |
Ranking intuitionistic fuzzy sets with hypervolume-based approach: An application for multi-criteria assessment of energy alternatives. |
Appl. Soft Comput. |
2024 |
DBLP DOI BibTeX RDF |
|
19 | Jorge Alberto Soria-Alcaraz, Gabriela Ochoa, Marco Aurelio Sotelo-Figueroa, Andrés Espinal |
Hypervolume Indicator as an Estimator for Adaptive Operator Selection in an On-Line Multi-objective Hyper-heuristic. |
New Directions on Hybrid Intelligent Systems |
2024 |
DBLP DOI BibTeX RDF |
|
19 | Yong Pang, Yitang Wang, Shuai Zhang, Xiaonan Lai, Wei Sun 0030, Xueguan Song |
An Expensive Many-Objective Optimization Algorithm Based on Efficient Expected Hypervolume Improvement. |
IEEE Trans. Evol. Comput. |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Ke Shang, Weiyu Chen, Weiduo Liao, Hisao Ishibuchi |
HV-Net: Hypervolume Approximation Based on DeepSets. |
IEEE Trans. Evol. Comput. |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Yang Nan 0001, Ke Shang, Hisao Ishibuchi, Linjun He |
An Improved Local Search Method for Large-Scale Hypervolume Subset Selection. |
IEEE Trans. Evol. Comput. |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Yong Pang, Liangliang Yang, Yitang Wang, Xiaonan Lai, Wei Sun 0030, Xueguan Song |
A Latin hypervolume design for irregular sampling spaces and its application in the analysis of cracks. |
Eng. Comput. |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Jude T. Anderson, David M. Williams |
Space-time hypervolume meshing part 1: Point insertion, geometric predicates, and bistellar flips. |
CoRR |
2023 |
DBLP DOI BibTeX RDF |
|
19 | |
Optimal Scalarizations for Sublinear Hypervolume Regret. |
CoRR |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Chengxin Wen, Peiqiu Huang, Shaolong Shi, Lihua Li |
A hypervolume-based evolutionary algorithm for rescue robot assignment problem of nuclear accident. |
Appl. Intell. |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Yang Nan 0001, Tianye Shu, Hisao Ishibuchi |
Two-Stage Lazy Greedy Inclusion Hypervolume Subset Selection for Large-Scale Problem. |
SMC |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Andrzej Jaszkiewicz, Piotr Zielniewicz |
On-line Quick Hypervolume Algorithm. |
GECCO Companion |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Hisao Ishibuchi, Lie Meng Pang, Ke Shang |
Effects of Dominance Modification on Hypervolume-based and IGD-based Performance Evaluation Results of NSGA-II. |
GECCO |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Han Zhu, Ke Shang, Hisao Ishibuchi |
STHV-Net: Hypervolume Approximation based on Set Transformer. |
GECCO |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Xiaoyuan Zhang, Xi Lin 0001, Bo Xue, Yifan Chen, Qingfu Zhang 0001 |
Hypervolume Maximization: A Geometric View of Pareto Set Learning. |
NeurIPS |
2023 |
DBLP BibTeX RDF |
|
19 | Yang Nan 0001, Hisao Ishibuchi, Tianye Shu, Ke Shang |
Two-Stage Greedy Approximated Hypervolume Subset Selection for Large-Scale Problems. |
EMO |
2023 |
DBLP DOI BibTeX RDF |
|
19 | André H. Deutz, Michael Emmerich, Hao Wang 0025 |
The Hypervolume Indicator Hessian Matrix: Analytical Expression, Computational Time Complexity, and Sparsity. |
EMO |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Jim Boelrijk, Bernd Ensing, Patrick Forré |
Multi-objective optimization via equivariant deep hypervolume approximation. |
ICLR |
2023 |
DBLP BibTeX RDF |
|
19 | Samuel Daulton, Maximilian Balandat, Eytan Bakshy |
Hypervolume Knowledge Gradient: A Lookahead Approach for Multi-Objective Bayesian Optimization with Partial Information. |
ICML |
2023 |
DBLP BibTeX RDF |
|
19 | Guotong Wu, Tianye Shu, Yang Nan 0001, Ke Shang, Hisao Ishibuchi |
Ensemble R2-based Hypervolume Contribution Approximation. |
SSCI |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Ke Shang, Tianye Shu, Guotong Wu, Yang Nan 0001, Lie Meng Pang, Hisao Ishibuchi |
Empirical Hypervolume Optimal µ-Distributions on Complex Pareto Fronts. |
SSCI |
2023 |
DBLP DOI BibTeX RDF |
|
19 | Ke Shang, Hisao Ishibuchi, Weiyu Chen, Yang Nan 0001, Weiduo Liao |
Hypervolume-Optimal μ-Distributions on Line/Plane-Based Pareto Fronts in Three Dimensions. |
IEEE Trans. Evol. Comput. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | S. C. Maree, Tanja Alderliesten, Peter A. N. Bosman |
Uncrowded Hypervolume-Based Multiobjective Optimization with Gene-Pool Optimal Mixing. |
Evol. Comput. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Luís Paquete, Britta Schulze, Michael Stiglmayr, Ana C. Lourenço |
Computing representations using hypervolume scalarizations. |
Comput. Oper. Res. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Alper Türkyilmaz, Özlem Senvar, Irem Ünal, Serol Bulkan |
A hybrid genetic algorithm based on a two-level hypervolume contribution measure selection strategy for bi-objective flexible job shop problem. |
Comput. Oper. Res. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Youwei He, Jinju Sun, Peng Song, Xuesong Wang |
Variable-fidelity hypervolume-based expected improvement criteria for multi-objective efficient global optimization of expensive functions. |
Eng. Comput. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | André H. Deutz, Michael T. M. Emmerich, Hao Wang 0025 |
The Hypervolume Indicator Hessian Matrix: Analytical Expression, Computational Time Complexity, and Sparsity. |
CoRR |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Kaan Deveci, Onder Guler |
A Hypervolume Based Approach to Rank Intuitionistic Fuzzy Sets and Its Extension to Multi-criteria Decision Making Under Uncertainty. |
CoRR |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Ke Shang, Tianye Shu, Hisao Ishibuchi |
Learning to Approximate: Auto Direction Vector Set Generation for Hypervolume Contribution Approximation. |
CoRR |
2022 |
DBLP BibTeX RDF |
|
19 | Ke Shang, Weiyu Chen, Weiduo Liao, Hisao Ishibuchi |
HV-Net: Hypervolume Approximation based on DeepSets. |
CoRR |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Jim Boelrijk, Bernd Ensing, Patrick Forré |
Multi-objective optimization via equivariant deep hypervolume approximation. |
CoRR |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Hao Wang 0025, Kaifeng Yang, Michael Affenzeller, Michael Emmerich |
Probability Distribution of Hypervolume Improvement in Bi-objective Bayesian Optimization. |
CoRR |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Alma A. M. Rahat, Tinkle Chugh, Jonathan E. Fieldsend, Richard Allmendinger 0001, Kaisa Miettinen |
Efficient Approximation of Expected Hypervolume Improvement using Gauss-Hermite Quadrature. |
CoRR |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Qingyu Wang, Takuji Nakashima, Chenguang Lai, Bo Hu, Xinru Du, Zhongzheng Fu, Taiga Kanehira, Yasufumi Konishi, Hiroyuki Okuizumi, Hidemi Mutsuda |
Enhanced expected hypervolume improvement criterion for parallel multi-objective optimization. |
J. Comput. Sci. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Andreia P. Guerreiro, Carlos M. Fonseca, Luís Paquete |
The Hypervolume Indicator: Computational Problems and Algorithms. |
ACM Comput. Surv. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Cristian Sandoval, Oliver Cuate, Luis C. González, Leonardo Trujillo, Oliver Schütze |
Towards fast approximations for the hypervolume indicator for multi-objective optimization problems by Genetic Programming. |
Appl. Soft Comput. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Zhao Wang, Maoguo Gong, Peng Li, Jie Gu, Weidong Tian |
A hypervolume distribution entropy guided computation resource allocation mechanism for the multiobjective evolutionary algorithm based on decomposition. |
Appl. Soft Comput. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Shulei Liu, Handing Wang, Wen Yao |
A surrogate-assisted evolutionary algorithm with hypervolume triggered fidelity adjustment for noisy multiobjective integer programming. |
Appl. Soft Comput. |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Andrzej Jaszkiewicz, Piotr Zielniewicz |
Greedy Decremental Quick Hypervolume Subset Selection Algorithms. |
PPSN (2) |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Alma A. M. Rahat, Tinkle Chugh, Jonathan E. Fieldsend, Richard Allmendinger 0001, Kaisa Miettinen |
Efficient Approximation of Expected Hypervolume Improvement Using Gauss-Hermite Quadrature. |
PPSN (1) |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Tianye Shu, Ke Shang, Yang Nan 0001, Hisao Ishibuchi |
Direction Vector Selection for R2-Based Hypervolume Contribution Approximation. |
PPSN (2) |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Ke Shang, Weiduo Liao, Hisao Ishibuchi |
HVC-Net: Deep Learning Based Hypervolume Contribution Approximation. |
PPSN (1) |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Damy M. F. Ha, Timo M. Deist, Peter A. N. Bosman |
Hybridizing Hypervolume-Based Evolutionary Algorithms and Gradient Descent by Dynamic Resource Allocation. |
PPSN (2) |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Diana Cristina Valencia-Rodríguez, Carlos Artemio Coello Coello |
Multi-Objective Evolutionary Algorithm Based on the Linear Assignment Problem and the Hypervolume Approximation Using Polar Coordinates (MOEA-LAPCO). |
PPSN (2) |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Chengxin Wen |
A Hypervolume Approximation Method Based on Angular Point. |
CEC |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Raquel Hernández Gómez, Jesús Guillermo Falcón-Cardona, Carlos A. Coello Coello |
Considerations in the Incremental Hypervolume Algorithm of the WFG. |
MICAI (1) |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Tingting Chen, Zhanqi Xu, Fan Yang, Yunbo Li |
Adaptive Evolution Algorithm Based on Hypervolume Awareness for Controller Placement. |
ICCT |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Aitor Arrieta |
Is the revisited hypervolume an appropriate quality indicator to evaluate multi-objective test case selection algorithms? |
GECCO |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Xinyu Liang, Cai Dai, Na Ye |
Multi-objective particle swarm optimization algorithm based on decomposition and hypervolume for synthesis gas production. |
CIS |
2022 |
DBLP DOI BibTeX RDF |
|
19 | Ke Shang, Hisao Ishibuchi, Linjun He, Lie Meng Pang |
A Survey on the Hypervolume Indicator in Evolutionary Multiobjective Optimization. |
IEEE Trans. Evol. Comput. |
2021 |
DBLP DOI BibTeX RDF |
|
19 | Andreia P. Guerreiro, Vasco M. Manquinho, José Rui Figueira |
Exact hypervolume subset selection through incremental computations. |
Comput. Oper. Res. |
2021 |
DBLP DOI BibTeX RDF |
|
19 | Gaurav Dhiman, Mukesh Soni, Hari Mohan Pandey, Adam Slowik, Harsimran Kaur |
A novel hybrid hypervolume indicator and reference vector adaptation strategies based evolutionary algorithm for many-objective optimization. |
Eng. Comput. |
2021 |
DBLP DOI BibTeX RDF |
|
19 | Faran Irshad, Stefan Karsch, Andreas Döpp |
Expected hypervolume improvement for simultaneous multi-objective and multi-fidelity optimization. |
CoRR |
2021 |
DBLP BibTeX RDF |
|
19 | Ke Shang, Hisao Ishibuchi, Weiyu Chen, Yang Nan 0001, Weiduo Liao |
Hypervolume-Optimal μ-Distributions on Line/Plane-based Pareto Fronts in Three Dimensions. |
CoRR |
2021 |
DBLP BibTeX RDF |
|
19 | Samuel Daulton, Maximilian Balandat, Eytan Bakshy |
Parallel Bayesian Optimization of Multiple Noisy Objectives with Expected Hypervolume Improvement. |
CoRR |
2021 |
DBLP BibTeX RDF |
|
19 | Timo M. Deist, Monika Grewal, Frank J. W. M. Dankers, Tanja Alderliesten, Peter A. N. Bosman |
Multi-Objective Learning to Predict Pareto Fronts Using Hypervolume Maximization. |
CoRR |
2021 |
DBLP BibTeX RDF |
|
19 | Sumit Mishra, Srinibas Swain, Sangita Sarmah, Carlos A. Coello Coello |
Hypervolume by Slicing Objective Algorithm: An Improved Version. |
CEC |
2021 |
DBLP DOI BibTeX RDF |
|
19 | Yang Nan 0001, Ke Shang, Hisao Ishibuchi, Linjun He |
A Two-stage Hypervolume Contribution Approximation Method Based on R2 Indicator. |
CEC |
2021 |
DBLP DOI BibTeX RDF |
|
19 | Zhou Zhou, Zuling Wang, Tingting Pang, Jing Wei, Ze Chen |
A Competition-Cooperation Evolutionary Algorithm with Bidirectional Multi-population Local Search and Local Hypervolume-based Strategy for Multi-objective Optimization. |
CEC |
2021 |
DBLP DOI BibTeX RDF |
|