A Mobile Application for Navigating the Optimal Escape Route in Accidents and Emergency Situations

모바일 어플리케이션을 이용한 재난상황 발생 시 최적 대피경로 설정

  • Cho, Sung Hyun (Department of Chemical Engineering, Myongji University) ;
  • Joo, Ki Don (Department of Chemical Engineering, Myongji University) ;
  • Kang, Hoon (Department of Chemical Engineering, Myongji University) ;
  • Park, Kyo Shik (Department of Chemical Engineering, Myongji University) ;
  • Shin, Dong Il (Department of Chemical Engineering, Myongji University)
  • 조성현 (명지대학교 화학공학과) ;
  • 주기돈 (명지대학교 화학공학과) ;
  • 강훈 (명지대학교 화학공학과) ;
  • 박교식 (명지대학교 화학공학과) ;
  • 신동일 (명지대학교 화학공학과)
  • Received : 2015.04.20
  • Accepted : 2015.06.01
  • Published : 2015.06.30

Abstract

In early 2011, the Fukushima nuclear power plant had greater damage due to earthquake in Japan, and the awareness of safety has increased. In particular, special response systems should be required to handle disaster situations in plant sites which are likely to occur for large disasters. In this study, a program is designed to set up optimum escape routes, by a smart phone application, when a disaster situation occurs. This program could get information of the cumulative damage from sensors and display the escape route of the smallest damage in real-time on the screen. Utilizing our application in real-time evacuation has advantage in reducing cumulative damage. The optimal evacuation route, focusing on horizontal path, is calculated based on getting the data of fire, detected radioactivity and hazardous gas. Thus, using our application provides information of optimal evacuation to people who even can not hear sensor alarms or do not know geography, without requiring additional costs except fixed sensors or server network deployment cost. As a result, being informed of real-time escape route, the user could behave rapidly with suitable response to individual situation resulting in improved evacuation than simply reacting to existing warning alarms.

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Acknowledgement

본 연구는 산업통상자원부 산업기술혁신사업의 '고압 독성가스 사고피해 기반 안전관리 기술개발' 과제(과제번호: 20132010500050)의 성과입니다.