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Verification and validation of an atmospheric boundary layer passive remote sensing technique using midwave infrared downwelling radiance

机译:使用中波红外下辐射辐射的大气边界层被动遥感技术的验证与确认

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Passive radiometric remote sensing of the lower atmospheric is an attractive alternative to conventional techniques such as balloonsondes and active radiometric sensing with lidars. Measurements can be made with high sampling frequency, with complete safety and covertness, and with no loss in performance during day or night operation. A recently developed inversion algorithm generates vertical profiles of temperature and water vapor partial pressure from midwave infrared downwelling radiance to a ground based spectroradiometer. The technique is fast allowing real-time profile computation. Profiles up to 1 km altitude can be obtained for temperature and up to 0.5 to 1 km altitude for water vapor depending on the level of relative humidity. As with any new technique a verification and validation process must be performed to achieve acceptance. The verification is based on the fact that sound physical principles are employed with accepted databases (HITRAN spectroscopic database). The validation is based on comparisons with balloonsonde, MET tower, and Raman lidar measurements, and comparisons with MODTRAN 4 calculations of downwelling radiance using known profiles. An introduction to the inversion algorithm emphasizing verification is presented. This is followed by a discussion of the results from the comparison study.
机译:较低大气层的被动辐射遥感是常规技术(例如气球探测和带激光雷达的主动辐射遥感)的一种有吸引力的替代方法。可以高采样频率进行测量,具有完全的安全性和隐蔽性,并且在白天或晚上的操作中都不会降低性能。最近开发的反演算法可生成从中波红外下行辐射到地面分光辐射计的温度和水蒸气分压的垂直分布图。该技术快速允许实时配置文件计算。根据相对湿度的高低,可以获得温度高达1 km的剖面图,而获得水蒸气的高达0.5-1 km的剖面图。与任何新技术一样,必须执行验证和确认过程才能获得认可。验证基于这样的事实,即公认的数据库(HITRAN光谱数据库)采用了合理的物理原理。验证是基于与气球气球,MET塔和拉曼激光雷达测量值的比较,以及与MODTRAN 4使用已知剖面进行的井下辐射率计算的比较。介绍了强调验证的反演算法。接下来是对比较研究结果的讨论。

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