期刊文献+

基于时空棱柱的人员搜寻范围优化 被引量:4

The Optimization of the Search Area in a Search and Rescue Process based on GIS
原文传递
导出
摘要 在人员搜寻过程中,地理信息技术的应用能帮助缩小搜寻的空间范围、合理分配搜救资源,从而提高搜救效率、节约时间和资金投入。本文首先探讨了户外搜救过程中,地理信息技术在协助划定搜寻的空间范围和分配应急资源方面的应用;在此基础上,将时间作为连续变化的因素进行分析,以时间地理学对人员搜寻的时空范围进行优化;利用时空棱柱工具表达失踪对象和搜救资源各自的时空约束,继而确定他们各自随着时间变化的潜在活动范围;通过求解搜救资源和失踪对象的时空交集,来确定每个搜救资源最优的搜寻范围的外边界;通过将各资源的最优搜索范围的外边界进行综合分析,来求解在多个资源协作情况下的最小搜寻范围和各资源对应的搜索起点,实现对搜救资源的合理分配;最后,在ArcGIS平台上对该方法进行了实现和模拟。搜救案例展示该方法划定的人员搜寻范围在空间上更小,时间上更为精确,有助于分配救援资源和提高搜救效率。 Nowadays, people are more likely to participate in outdoor activities which results in the increase of people's missing. In the process of search and rescue, the application of geographic information technology is able to help the search team to narrow the search area and allocate the search resources. As a result, GIS'application improves the efficiency and saves time and cost. This paper firstly discussed the role of GIS in determining the search area and allocating the search resources in the search and rescue process. Then, based on time-geography tools, this paper optimized the search process on considering that time is a continuous variable. Space-time prism, which is one of the most important tools in time-geography theory, was used to express the spatio-temporal constraints of missing person as well as the search teams. The missing person can only be found in places where both the rescue team and missing person can reach at the same time. The aim of an optimization for the research and rescue process is to find the right place where both the missing person and the search team can arrive at the same time. In the spatio-temporal environment, this kind of place is the intersection of both sides' spacetime prisms. So, the search team only needs to search people in the intersection time and space of the prisms. In this way, the search area was narrowed and the time period was identified more precisely. When other search teams joins in the search process, the final search area is obtained after the intersection of every resource's search area is calculated. At the same time, the search boundary for each resource is also obtained. Each resource can take actions according to its search boundary. This paper used ArcGIS software platform to achieve the optimization process. A search and rescue process using simulated data was presented afterwards. Compared with traditional buffer analysis method, the search area calculated from this method is smaller and the search time is more precise. This method can be u
出处 《地球信息科学学报》 CSCD 北大核心 2014年第4期531-536,共6页 Journal of Geo-information Science
基金 刚果(布)一号公路二期工程关键技术(横向课题)
关键词 搜救 时空约束 时空棱柱 搜寻范围 地理信息系统 search and rescue spatio-temporal constraints space-time prism search area GIS
  • 相关文献

参考文献24

  • 1Ferguson D. GIS for wilderness search and rescue[R].Washington D. C.: ESRI Federal User Conference, 2008. 被引量:1
  • 2Ela G K. Epidemiology of wilderness search and rescuein New Hampshire, 1999-2001[J]. Wilderness & EnvironmentalMedicine, 2004,15(1):11-17. 被引量:1
  • 3Abi- Zeid I, Doyon B. Using a geographic decision supportsystem to plan search and rescue operations[J]. InternationalJournal of Emergency Management, 2003,1(4):346-362. 被引量:1
  • 4Abi-Zeid I, Frost J R. SARPlan: A decision support systemfor Canadian search and rescue operations[J]. EuropeanJournal of Operational Research, 2005,162(3):630-653. 被引量:1
  • 5Ferguson D. Geospatial modeling for the optimization ofsearch and rescue strategies[R]. Sutton, WV: WVAGPMembership Meeting, 2013. 被引量:1
  • 6李守英,马祖军,郑斌.洪灾被困人员搜救的模糊定位-路径问题优化模型[J].交通运输工程学报,2010,10(6):88-93. 被引量:3
  • 7雷秋霞,陈维锋,黄丁发,郭红梅,魏昌盛.地震现场搜救力量部署辅助决策系统研究[J].地震研究,2011,34(3):384-388. 被引量:7
  • 8高艳平.海上落水人员漂移方位判断方法研究与仿真[J].计算机仿真,2012,29(11):290-293. 被引量:2
  • 9Vafaeinezhad A R, Alesheikh, AA, Nouri J. Developing aspatio-temporal model of risk management for earthquakelife detection rescue team[J]. International Journal of EnvironmentalScience and Technology, 2010,7(2):243-250. 被引量:1
  • 10Longley P A, Goodchild M F, Maguire D J, et al. Geographicalinformation systems: principles, techniques,management and applications (2nd Edition) [M]. NewYork: JohnWiley, 2005,845-858. 被引量:1

二级参考文献120

共引文献221

同被引文献88

引证文献4

二级引证文献28

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部