Presentation 2014-03-03
Application of Exhaustive Analysis to Tsunami Evacuation Planning
Tomohisa YAMASHITA, Itsuki NODA,
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Abstract(in English) In this paper, we apply an exhaustive analysis with a pedestrian simulation environment to huge-scale pedestrian flow in evacuating against tsunami. The exhaustive analysis is a method for understanding the tendency of behavior of a social system based on simulation results under various conditions. The purpose of the exhaustive analysis is not only searching the optimal solutions but also revealing stability of the optimal solutions and difference between optimal and worst cases. Our simulation environment consists of the CrowdWalk pedestrian simulator and the PRACTIS simulation controller. CrowdWalk is based on a one-dimensional space model for high speed calculation. PRACTIS carries out an exhaustive and efficient analysis in a cluster environment to support effective decision-making, enabling pedestrians to be guided according to various criteria. With the exhaustive analysis with a pedestrian simulation environment we verify evacuation plan of ten thousand persons against tsunami from the point of view of overlapping of evacuation routes.
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Keyword(in English) exhoustive analysis / evacuation planning / tsunami evacuation / pedestrian simulation
Paper # AI2013-45
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Conference Information
Committee AI
Conference Date 2014/2/24(1days)
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Registration To Artificial Intelligence and Knowledge-Based Processing (AI)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Application of Exhaustive Analysis to Tsunami Evacuation Planning
Sub Title (in English)
Keyword(1) exhoustive analysis
Keyword(2) evacuation planning
Keyword(3) tsunami evacuation
Keyword(4) pedestrian simulation
1st Author's Name Tomohisa YAMASHITA
1st Author's Affiliation Center for Service Research, National Institute of Advanced Industrial Science and Technology (AIST):PRESTO, The Japan Science and Technology Agency (JST)()
2nd Author's Name Itsuki NODA
2nd Author's Affiliation Center for Service Research, National Institute of Advanced Industrial Science and Technology (AIST)
Date 2014-03-03
Paper # AI2013-45
Volume (vol) vol.113
Number (no) 459
Page pp.pp.-
#Pages 6
Date of Issue