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Retrieval of temperature from a multiple-channel Rayleigh-scatter lidar using an optimal estimation method

机译:使用最佳估计方法从多通道瑞利散射激光雷达中检索温度

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The measurement of temperature in the middle atmosphere with Rayleigh-scatter lidars is an important technique for assessing atmospheric change. Current retrieval schemes for this temperature have several shortcomings, which can be overcome by using an optimal estimation method (OEM). Forward models are presented that completely characterize the measurement and allow the simultaneous retrieval of temperature, dead time, and background. The method allows a full uncertainty budget to be obtained on a per profile basis that includes, in addition to the statistical uncertainties, the smoothing error and uncertainties due to Rayleigh extinction, ozone absorption, lidar constant, nonlinearity in the counting system, variation of the Rayleigh-scatter cross section with altitude, pressure, acceleration due to gravity, and the variation of mean molecular mass with altitude. The vertical resolution of the temperature profile is found at each height, and a quantitative determination is made of the maximum height to which the retrieval is valid. A single temperature profile can be retrieved from measurements with multiple channels that cover different height ranges, vertical resolutions, and even different detection methods. The OEM employed is shown to give robust estimates of temperature, which are consistent with previous methods, while requiring minimal computational time. This demonstrated success of lidar temperature retrievals using an OEM opens new possibilities in atmospheric science for measurement integration between active and passive remote sensing instruments. (C) 2015 Optical Society of America
机译:用瑞利散射激光雷达测量中层大气温度是评估大气变化的一项重要技术。当前针对该温度的检索方案有几个缺点,可以通过使用最佳估计方法(OEM)来克服。提出了正向模型,该模型可以完全表征测量结果并允许同时检索温度,空载时间和背景。该方法允许在每个配置文件的基础上获得完整的不确定性预算,除统计上的不确定性外,还包括平滑误差和瑞利消光,臭氧吸收,激光雷达常数,计数系统中的非线性,瑞利散射截面随高度,压力,重力引力以及平均分子量随高度的变化。在每个高度都可以找到温度分布的垂直分辨率,并定量确定有效取回的最大高度。可以从具有覆盖不同高度范围,垂直分辨率甚至不同检测方法的多个通道的测量结果中获取单个温度曲线。显示出所采用的OEM可以给出可靠的温度估计,与先前的方法一致,而所需的计算时间最少。这证明了使用OEM进行激光雷达温度检索的成功,为主动和被动遥感仪器之间的测量集成提供了大气科学的新可能性。 (C)2015年美国眼镜学会

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