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Multiobjective Optimization

Multi-objective optimization (also known as multi-objective programming, vector optimization, multicriteria optimization, multiattribute optimization or Pareto optimization) is an area of multiple criteria decision making that is concerned with mathematical optimization problems involving more than one objective function to be optimized simultaneously. Multi-objective optimization has been applied in many fields of science, including engineering, economics and logistics where optimal decisions need to be taken in the presence of trade-offs between two or more conflicting objectives. Minimizing cost while maximizing comfort while buying a car, and maximizing performance whilst minimizing fuel consumption and emission of pollutants of a vehicle are examples of multi-objective optimization problems involving two and three objectives, respectively. In practical problems, there can be more than three objectives.

Papers

Showing 6170 of 155 papers

TitleStatusHype
Evolutionary Multiparty Distance MinimizationCode0
Towards Fairness-Aware Multi-Objective Optimization0
Balancing the trade-off between cost and reliability for wireless sensor networks: a multi-objective optimized deployment methodCode0
Bi-fidelity Evolutionary Multiobjective Search for Adversarially Robust Deep Neural Architectures0
Towards KAB2S: Learning Key Knowledge from Single-Objective Problems to Multi-Objective Problem0
A Survey on Learnable Evolutionary Algorithms for Scalable Multiobjective Optimization0
Digital Twin Data Modelling by Randomized Orthogonal Decomposition and Deep Learning0
Modeling the Material-Inventory Transportation Problem Using Multi-Objective Optimization0
An Effective and Efficient Evolutionary Algorithm for Many-Objective Optimization0
Balancing Exploration and Exploitation for Solving Large-scale Multiobjective Optimization via Attention Mechanism0
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