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Consistency of Criteria in Building Interiors through the Analytic Hierarchy Process for Simulation of Feasible Evacuation Routesopen access

Authors
Osorio, Ever Enrique CastilloSeo, Min SongYoo, Hwan Hee
Issue Date
30-Nov-2020
Publisher
M Y U Scientific Publishing Division
Keywords
analytical hierarchy process; multicriteria; evacuation route; geometry; pathfinding algorithm
Citation
Sensors and Materials, v.32, no.11, pp 3835 - 3851
Pages
17
Indexed
SCIE
SCOPUS
Journal Title
Sensors and Materials
Volume
32
Number
11
Start Page
3835
End Page
3851
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/8340
DOI
10.18494/SAM.2020.2908
ISSN
0914-4935
Abstract
Disasters can happen anytime in urban areas, forcing people to evacuate buildings to safeguard their lives. Therefore, it is important that safe routes for the transit of people are first identified. However, when defining evacuation routes to safer places, the basic condition considered is the shortest distance, excluding other criteria related to the security of environmental elements. We propose the simulation of feasible evacuation routes under the influence of importance indexes obtained from the validation and consistency of the security criteria of building elements performed by the analytical hierarchy process (AHP). We find that the security criteria of building elements can be classified into ranges of a suitability model and validated in comparison matrices with consistency ratios (CR) < 10%, which guarantee data consistency. Furthermore, we obtain the importance indices S(n) interpreted by a variant of the A-star (A*) pathfinding algorithm, showing evacuation routes traced through safe areas, when performing simulations. Our results demonstrate the importance of the consistency of security criteria employed in the AHP, whose indexes highly influence the execution of the variant of the A* pathfinding algorithm when it determines safer rather than shorter evacuation routes, for different simulation scenarios.
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