The Comparison of Multi-objective Preference Inference Based on Lexicographic and Weighted Average Models

In this paper, we consider the effect of different order relations on the solutions of Multi-Objective Constraint Optimization Problems (MOCOP) with tradeoffs, where the tradeoffs are given in the form of elicited or observed preferences over alternatives. In MOCOP, alternatives are evaluated on a n...

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Published in2015 IEEE 27th International Conference on Tools with Artificial Intelligence (ICTAI) pp. 88 - 95
Main Authors George, Anne-Marie, Razak, Abdul, Wilson, Nic
Format Conference Proceeding Journal Article
LanguageEnglish
Published IEEE 01.11.2015
Subjects
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ISSN1082-3409
DOI10.1109/ICTAI.2015.26

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Abstract In this paper, we consider the effect of different order relations on the solutions of Multi-Objective Constraint Optimization Problems (MOCOP) with tradeoffs, where the tradeoffs are given in the form of elicited or observed preferences over alternatives. In MOCOP, alternatives are evaluated on a number of objectives (utility scales) and thus correspond to utility vectors, the set of optimal solutions corresponds to the set of undominated alternatives with respect to some order relation on the utility vectors. Thus, the choice of an order relation on the utility vectors is crucial, a strong order relation results in a smaller set of solutions which can be helpful for the decision maker. Our focus lies on the comparison between Pareto, weighted average and lexicographic orderings. We show that every inference that can be made from a set of given preferences considering weighted average orders can be made for lexicographic orders as well. Further results on the relation between the sets of optimal solutions corresponding to lexicographic and weighted average orders are established under the distinction between strict and non-strict preferences. For solving MOCOP, we apply variants of Preference Inference for the different order relations as dominance checks. Our experimental results show that lexicographic orders give much stronger inferences than Pareto and weighted average orders. However, the lexicographic order based algorithm also results in a longer running time than the other two.
AbstractList In this paper, we consider the effect of different order relations on the solutions of Multi-Objective Constraint Optimization Problems (MOCOP) with tradeoffs, where the tradeoffs are given in the form of elicited or observed preferences over alternatives. In MOCOP, alternatives are evaluated on a number of objectives (utility scales) and thus correspond to utility vectors, the set of optimal solutions corresponds to the set of undominated alternatives with respect to some order relation on the utility vectors. Thus, the choice of an order relation on the utility vectors is crucial, a strong order relation results in a smaller set of solutions which can be helpful for the decision maker. Our focus lies on the comparison between Pareto, weighted average and lexicographic orderings. We show that every inference that can be made from a set of given preferences considering weighted average orders can be made for lexicographic orders as well. Further results on the relation between the sets of optimal solutions corresponding to lexicographic and weighted average orders are established under the distinction between strict and non-strict preferences. For solving MOCOP, we apply variants of Preference Inference for the different order relations as dominance checks. Our experimental results show that lexicographic orders give much stronger inferences than Pareto and weighted average orders. However, the lexicographic order based algorithm also results in a longer running time than the other two.
Author George, Anne-Marie
Razak, Abdul
Wilson, Nic
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Snippet In this paper, we consider the effect of different order relations on the solutions of Multi-Objective Constraint Optimization Problems (MOCOP) with tradeoffs,...
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SubjectTerms Artificial intelligence
Computational modeling
Conferences
Context
Context modeling
Expert systems
Inference
lexicographic models
Mathematical analysis
Mathematical models
Multi-objective optimization
Optimization
preference inference
Reliability
Utilities
Vectors (mathematics)
weighted average models
Title The Comparison of Multi-objective Preference Inference Based on Lexicographic and Weighted Average Models
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