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Low-power laser-based carbon monoxide sensor for fire and post-fire detection using a compact Herriott multipass cell

机译:基于低功耗激光的碳一氧化碳传感器,用于火灾和火灾后使用紧凑型Herriott多辅元箱

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With the anticipated retirement of Space Shuttles in the next few years, the re-supplying of short-lifetime sensors on the International Space Station (ISS) will be logistically more difficult. Carbon Monoxide (CO) is a well-known combustion product and its absence in a fire and post-fire environment is a reliable indicator for mission specialists that the air quality is at a safe to breathe level. We report on the development and performance of a prototype compact CO sensor, based on the PHOTONS platform [1], developed for the 1SS based on tunable diode laser absorption spectroscopy (TDLAS). A CO absorption line at ~4285cm~(-1) is targeted using a distributed-feedback (DFB) laser diode operating at room temperature. A custom designed Herriott multipass cell 16cm long, with an effective path length of 3.7 m is employed. Mechanical, optical and electronics systems are integrated into a compact package of dimensions measuring 12.4"x 3.4"x 5". Power consumption is less than 1 W, enabling prolonged battery life. A detection limit of 3 ppm is achieved when performing 40 second long temperature scans. A recent initial test at NASA-JSC was successful. Future improvements include the reduction of the sampling volume, scan time and an improved CO minimum detection limit.
机译:随着未来几年的预期退休,在国际空间站(ISS)上重新供应短寿命(ISS)将在逻辑上更困难。一氧化碳(CO)是一种众所周知的燃烧产物,其在火灾和消防后的环境中是一个可靠的特派团专家指标,即空气质量处于安全呼吸水平。我们报告了基于光子平台[1]的原型紧凑型CO传感器的开发和性能,该传感器为基于可调二极管激光吸收光谱(TDLA)的1SS开发。在室温下操作的分布式反馈(DFB)激光二极管,针对〜4285cm〜(-1)的CO吸收线。自定义设计的Herriott多峰电池16cm长,采用有效的路径长度为3.7米。机械,光纤和电子系统集成到压缩尺寸封装中,尺寸为12.4“x 3.4”x 5“。功耗小于1 W,从而实现电池寿命长度。在执行40秒时实现3 ppm的检测限为3 ppm温度扫描。最近在NASA-JSC的初步测试是成功的。未来的改进包括减少采样量,扫描时间和改进的CO最小检测限。

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