Detection technology for trapped and buried people

M. Loschonsky, C. Feige, O. Rogall, S. Fisun, L. Reindl
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引用次数: 22

Abstract

In this contribution we discuss the first results of a running project1, I-LOV, within the German national research program for civil security funded by the German Federal Ministry of Education and Research (BMBF) concerning improved time efficiency and reliable novel detection systems for search and rescue. Classical detection technology covers borescopes and geophones in combination with K-9 units for search and rescue missions in ruins, detritus and cones of debris. An improved and time efficient approach for search of vital signs can be realised with UWB (ultra wide band) radar systems, where a very short wide band pulse is transmitted, or with continuous wave (CW) radar systems for measuring movements like respiration. An improvement of CW with a frequency modulation (FM) leads to FMCW radar systems allowing measuring the distance to targets, i.e. buried people. The search for people carrying electronic RF-devices can be assisted with pulse radar systems. Frequency filters of such devices can be exposed to a radar pulse near the filters' resonance frequency and an echo can be detected enabling the localization of a device and probably of the owner, too.
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被困、被埋人员的探测技术
在本文中,我们讨论了由德国联邦教育和研究部(BMBF)资助的德国国家民用安全研究计划中正在运行的项目1 I-LOV的第一批结果,该项目涉及提高搜索和救援的时间效率和可靠的新型检测系统。传统的探测技术包括探测仪和检波器,以及K-9部队,在废墟、碎屑和碎片锥中进行搜索和救援任务。通过超宽带(UWB)雷达系统(传输非常短的宽带脉冲)或连续波(CW)雷达系统(用于测量呼吸等运动),可以实现一种改进的、节省时间的生命体征搜索方法。利用调频(FM)对连续波进行改进,使FMCW雷达系统能够测量到目标(即被埋人)的距离。脉冲雷达系统可以帮助搜索携带电子射频设备的人员。这种设备的频率滤波器可以暴露在接近滤波器共振频率的雷达脉冲中,并且可以检测到回波,从而实现设备和可能的所有者的定位。
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