Optimization Based Algorithms for Uncertainty Propagation Through Functions With Multidimensional Output Within Evidence Theory

Author:

Gogu Christian1,Qiu Youchun2,Segonds Stéphane1,Bes Christian1

Affiliation:

1. Université de Toulouse, INSA, UPS, Mines Albi, ISAE, ICA (Institut Clément Ader), 118, route de Narbonne, F-31062 Toulouse, France

2. Université de Toulouse, Institut de Mathématiques de Toulouse, 118 route de Narbonne, F-31062 Toulouse, France

Abstract

Evidence theory is one of the approaches designed specifically for dealing with epistemic uncertainty. This type of uncertainty modeling is often useful at preliminary design stages where the uncertainty related to lack of knowledge is the highest. While multiple approaches for propagating epistemic uncertainty through one-dimensional functions have been proposed, propagation through functions having a multidimensional output that need to be considered at once received less attention. Such propagation is particularly important when the multiple function outputs are not independent, which frequently occurs in real world problems. The present paper proposes an approach for calculating belief and plausibility measures by uncertainty propagation through functions with multidimensional, nonindependent output by formulating the problem as one-dimensional optimization problems in spite of the multidimensionality of the output. A general formulation is first presented followed by two special cases where the multidimensional function is convex and where it is linear over each focal element. An analytical example first illustrates the importance of considering all the function outputs at once when these are not independent. Then, an application example to preliminary design of a propeller aircraft then illustrates the proposed algorithm for a convex function. An approximate solution found to be almost identical to the exact solution is also obtained for this problem by linearizing the previous convex function over each focal element.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference27 articles.

1. Science, Uncertainty and Risk: The Problem of Complex Phenomena;Wagner;APS News

2. Error and Uncertainty in Modeling and Simulation;Oberkampf;Reliab. Eng. Syst. Saf.

3. Uncertainty and Sensitivity Analysis in the Presence of Stochastic and Subjective Uncertainty;Helton;J. Stat. Comput. Simul.

4. Variability, Uncertainty, and Error in Computational Simulation;Oberkampf

5. Towards a Unified Theory of Imprecise Probability;Walley;Int. J. Approx. Reason.

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