• Title/Summary/Keyword: 소방조난

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Design and Implementation of Fire distress Detection and Rescue user Terminal (소방조난 탐지구조 단말장치 설계 및 제작)

  • Kim, Kun-Joong;Na, Sang-Guen;Kim, Young-Wan
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2012.05a
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    • pp.557-559
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    • 2012
  • The fire distress detection and rescue user terminal, which rescue the survivor by using the direction finding of distress place and sensing techniques, was design and implemented. The user terminal provides the rescue function in the place of evil surroundings that can not be available the communication facilities. The rescue user terminal provides the portable configuration, which consists of a RF board with radio frequency of 2.45 GHz and inner antenna, and a control board. The inner antenna with $60^{\circ}$ or $120^{\circ}$ directivity, which use the triangulation, detects the rescue signal from survivor. The rescue was managed by allotment of user ID and can use the bidirectional audio channel using radio frequency of 5.8 GHz.

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Implementation of the Location Tracking and Distress Check System among Firefighters in Indoor Environments (실내 환경에서 소방대원간의 조난확인 및 위치추적 시스템 구현)

  • Lee, Kwang-Hee;Lee, Sung-Yeob;Ko, Bong-Jin
    • Journal of Advanced Navigation Technology
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    • v.18 no.1
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    • pp.90-94
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    • 2014
  • This paper suggests the system that allows nearby firefighters to read about the transmission direction of a distress signal and track the location by RSSI of received distress signal which is transmitted wirelessly after sensing the distress signal of a firefighter using the Wireless Sensor Network(WSN) based on IEEE 802.15.4 and Received Signal Strength Indicator(RSSI) in the building. Also, It was confirmed that the location tracking using RSSI is possible because the difference between theoretical value and experimental value is little when experiment using the proposed system.

A Comparative Analysis on Accident Occurrences in Korea and Japan (한일 사고 발생 실태 비교 분석)

  • Lee Eui-Pyeong
    • Fire Science and Engineering
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    • v.19 no.3 s.59
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    • pp.1-12
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    • 2005
  • June 1, 2004, National Emergency Management Agency was established, and one of its aims is to reduce the percentage of accident occurrence and damage scale to that of developed countries in 10 years. In this paper, Korea is compared with Japan in the view of actual conditions of accident occurrence in order to compare Korea with developed countries. In the case .of Korea, traffic accidents, fire accidents, careless accidents, drowning accidents, climbing accidents occur frequently. Decreasing these accidents is a major target to reduce the accident occurrence. Also, home accidents of babies and elders who are unable to avoid dangers are frequent. Studies focusing on those related accidents are required.

LBS법의 순기능과 역기능

  • Choe, Seong-Won
    • Digital Contents
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    • no.10 s.137
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    • pp.60-63
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    • 2004
  • 퇴근길에 필요한 물품을 사려고 네이트 드라이브를 가동해 근처에 할인마트를 찾았다. 네이트 드라이브에서 제공하는 방향을 따라 할인마트에 들어섰다. 핸드폰에 메시지가 도착해서 보니 그 할인마트에서 사용할 수 있는 쿠폰이 문자메시지로 날라왔다. 쿠폰을 이용해 필요한 물건을 좀더 싸게 산 다음 다시 시계를 보니 중요한 TV 프로를 봐야할 시간이 얼마 안남았다. 차에 올라타고 다시 네이트 드라이브를 가동해 가장 빠른길 안내를 받아 가까스로 늦지않게 도착했다. 미래의 얘기가 아니다. 지금도 비슷한 서비스가 제공되고 있지만, 곧 지금보다 정확하고 편리한 서비스가 우리곁에 다가올 예정이다. 정부는 9월 14일 국무회의를 열어 소방관서 등 공공구조기관이 긴급 구조요청을 받을 경우 위치정보사업자에게 개인 위치정보의 제공을 요청할 수 있도록 하는 것 등을 주요 골자로 한‘위치정보의 이용 및 보호 등에 관한 법률안(이후 LBS법)’을 제정키로 했으며, 이 법안은 9월 20일 현재 정기국회 통과를 기다리고 있다. 또 최근에 위치정보에 관한 사건이 두 가지가 발생했다. 하나는 삼성SDI 근로자들이 자신도 모르게 휴대폰 위치확인서비스를 통해 감시를 받아왔다는 것이고, 또 하나는 조난당한 등산객의 위치확인을 하지 못해 끝내 숨지는 사고가 발생했다는 것이다. 위의 두 사건은 남의 일이 아닌 우리 자신들의 일이 될 수도 있는 것이다. 이슈가 되고 있는 LBS법의 의미와 이 법이 우리 생활에 어떻게 작용할 것인지에 대해 살펴보고자 한다

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Hiker Mobility Model and Mountain Distress Simulator for Location Estimation of Mountain Distress Victim (산악 조난자의 위치추정을 위한 이동성 모델 및 조난 시뮬레이터)

  • Kim, Hansol;Cho, Yongkyu;Jo, Changhyuk
    • Journal of the Korea Society for Simulation
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    • v.31 no.3
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    • pp.55-61
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    • 2022
  • Currently police and fire departments use a Network/Wifi/GPS based emergency location positioning system established by mobile carriers to directly link with the device of the people who request the rescue to accurately position the expected location in the call area. However in the case of mountain rescue it is difficult to rescue the victim in golden time because the location of the search area cannot be limited when the victim is located in a radio shadow area of the mountain or the device power is off and this situation become worse if victim fail to report 911 by himself due to the injury. In this paper, we are expected to solve the previous problem by propose the mobile telecommunication forensic simulator consist of time series of cell information, human mobility model which include some general and specific features (age, gender, behavioral characteristics of victim, etc.) and intelligent infer system. The results of analysis appear in heatmap of polygons on the map based on the probability of the expected location information of the victim. With this technology we are expected to contribute to rapid and accurate lifesaving by reducing the search area of rescue team.