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Evaluation of an airborne triple-pulsed 2 mu m IPDA lidar for simultaneous and independent atmospheric water vapor and carbon dioxide measurements

机译:评估机载三脉冲2微米IPDA激光雷达,用于同时和独立地测量大气中的水蒸气和二氧化碳

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摘要

Water vapor and carbon dioxide are the most dominant greenhouse gases directly contributing to the Earth's radiation budget and global warming. A performance evaluation of an airborne triple-pulsed integrated path differential absorption (IPDA) lidar system for simultaneous and independent monitoring of atmospheric water vapor and carbon dioxide column amounts is presented. This system leverages a state-of-the-art Ho:Tm:YLF triple-pulse laser transmitter operating at 2.05 mu m wavelength. The transmitter provides wavelength tuning and locking capabilities for each pulse. The IPDA lidar system leverages a low risk and technologically mature receiver system based on InGaAs pin detectors. Measurement methodology and wavelength setting are discussed. The IPDA lidar return signals and error budget are analyzed for airborne operation on-board the NASA B-200. Results indicate that the IPDA lidar system is capable of measuring water vapor and carbon dioxide differential optical depth with 0.5% and 0.2% accuracy, respectively, from an altitude of 8 km to the surface and with 10 s averaging. Provided availability of meteorological data, in terms of temperature, pressure, and relative humidity vertical profiles, the differential optical depth conversion into weighted-average column dry-air volume-mixing ratio is also presented. (C) 2015 Optical Society of America
机译:水蒸气和二氧化碳是最主要的温室气体,直接导致地球的辐射预算和全球变暖。提出了一种机载三脉冲集成路径差分吸收(IPDA)激光雷达系统的性能评估,该系统可同时独立监测大气中的水蒸气和二氧化碳柱量。该系统利用了最新的Ho:Tm:YLF三脉冲激光发射器,该发射器在2.05μm波长下工作。发射器为每个脉冲提供波长调谐和锁定功能。 IPDA激光雷达系统利用了基于InGaAs引脚检测器的低风险且技术成熟的接收器系统。讨论了测量方法和波长设置。针对NASA B-200的机载操作,分析了IPDA激光雷达返回信号和误差预算。结果表明,IPDA激光雷达系统能够在距地面8 km处平均10 s的时间内,分别以0.5%和0.2%的精度测量水蒸气和二氧化碳的差分光学深度。提供气象数据的可用性,包括温度,压力和相对湿度的垂直分布,还介绍了将差分光学深度转换为加权平均柱干空气体积混合比的方法。 (C)2015年美国眼镜学会

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