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Wireless System for the Detection and Mitigation of Explosions in Tunnels

机译:探测和缓解隧道爆炸的无线系统

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Physical security challenges from explosions are amplified in confined spaces. The air-blast shock waves reflect and propagate throughout the confined space. This paper describes the process of designing, constructing, and validating a wireless system for identification of explosions in real time. Protection of critical infrastructure requires the creation of a reliable system which provides quick and accurate identification of the hazards and subsequent transmission of the alarm signal to response and rescue services. The proposed wireless system consists of transmitter and receiver modules spaced throughout the tunnel. The transmitter module contains sensors and a microprocessor equipped with blast identification software. The receiver module produces an alarm signal and activation signal for the operation of protecting devices. The experimental validation has been carried out at the underground experimental base of G. Tsulukidze Mining Institute, Tbilisi, Georgia. The results of the testing validated the main characteristics of the system, notably: 1. No false signals were generated during the series of 20 experiments 2. After a blast event, the duration for analyzing the potential threat is 2.4 msec and the duration for activating the protection device is 11 msec 3. The reliable transmission distance is 150 m (492 ft) in a straight tunnel and 50 m (164 ft) in a tunnel with a 90° bend.
机译:爆炸对人身安全的挑战在密闭空间中被放大。空气冲击波在整个受限空间中反射和传播。本文描述了一个用于实时识别爆炸的无线系统的设计、构建和验证过程。保护关键基础设施需要建立一个可靠的系统,该系统能够快速准确地识别危险,并随后将报警信号传输至响应和救援服务。拟议的无线系统由发射和接收模块组成,这些模块分布在整个隧道中。变送器模块包含传感器和配备爆炸识别软件的微处理器。接收器模块为保护装置的操作产生报警信号和激活信号。实验验证已在格鲁吉亚第比利斯G.Tsulukidze矿业研究所的地下实验基地进行。测试结果验证了系统的主要特征,尤其是:1。在一系列的20个实验中没有产生虚假信号2。爆炸事件发生后,分析潜在威胁的持续时间为2.4毫秒,激活保护装置的持续时间为11毫秒3。在直线隧道中,可靠传输距离为150米(492英尺),在90°弯曲的隧道中,可靠传输距离为50米(164英尺)。

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