Field-test system for underground fire detection based on semiconductor gas sensor

P. Reimann, S. Horras, A. Schutze
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引用次数: 10

Abstract

Based on a single semiconductor (sc) gas sensor and sensors for temperature, relative humidity and gas flow we developed a system for fire detection in coal mines. These sensors are read-out by a high-dynamic-range hardware control and data acquisition platform, in which the sc-sensor is operated with an application-optimized temperature cycle to improve the stability and selectivity. A hierarchical evaluation strategy not only allows identification of smoldering fires (signified by CO and ethene in a specific ratio) but is also suitable for separating or quantifying typical interfering compounds (such as CH4, CO, NOX or H2) caused by operational situations thus helping to avoid costly false alarms. Currently, the developed field test system is running underground at different control points in the production line. After initial calibration, which is carried out in the lab, special algorithms for online re-calibration were developed.
基于半导体气体传感器的地下火灾探测现场测试系统
基于单半导体(sc)气体传感器和温度、相对湿度、气体流量传感器,研制了煤矿火灾探测系统。这些传感器由高动态范围的硬件控制和数据采集平台读出,其中sc传感器在应用优化的温度循环下运行,以提高稳定性和选择性。分层评估策略不仅可以识别闷烧火灾(以特定比例的CO和乙烯表示),而且还适用于分离或量化由操作情况引起的典型干扰化合物(如CH4, CO, NOX或H2),从而有助于避免代价高昂的误报。目前,开发的现场测试系统在地下运行,在生产线的不同控制点上运行。在实验室进行初始标定后,开发了专门的在线再标定算法。
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