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Combining Microwave Radiometer and Wind Profiler Radar Measurements for High-Resolution Atmospheric Humidity Profiling

机译:结合微波辐射计和风廓线雷达测量获得高分辨率大气湿度曲线

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摘要

A self-consistent remote sensing physical method to retrieve atmospheric humidity high-resolution profiles by synergetic use of a microwave radiometer profiler (MWRP) and wind profiler radar (WPR) is illustrated. The proposed technique is based on the processing of WPR data for estimating the potential refractivity gradient profiles and their optimal combination with MWRP estimates of potential temperature profiles in order to fully retrieve humidity gradient profiles. The combined algorithm makes use of recent developments in WPR signal processing, computing the zeroth-, first-, and second-order moments of WPR Doppler spectra via a fuzzy logic method, which provides quality control of radar data in the spectral domain.On the other hand, the application of neural network to brightness temperatures, measured by a multichannel MWRP, can provide continuous estimates of tropospheric temperature and humidity profiles. Performance of the combined algorithm in retrieving humidity profiles is compared with simultaneous in situ radiosonde observations (raob's). The empirical sets of WPR and MWRP data were collected at the Atmospheric Radiation Measurement (ARM) Program's Southern Great Plains (SGP) site. Combined microwave radiometer and wind profiler measurements show encouraging results and significantly improve the spatial vertical resolution of atmospheric humidity profiles. Finally, some of the limitations found in the use of this technique and possible future improvements are also discussed.
机译:说明了通过协同使用微波辐射计轮廓仪(MWRP)和风廓线仪雷达(WPR)来检索大气湿度高分辨率轮廓的自洽遥感物理方法。所提出的技术基于用于估计潜在折射率梯度分布的WPR数据的处理及其与潜在温度分布的MWRP估计的最佳组合,以便完全检索湿度梯度分布。组合算法利用WPR信号处理的最新发展,通过模糊逻辑方法计算WPR多普勒频谱的零阶,一阶和二阶矩,从而在频谱域内提供雷达数据的质量控制。另一方面,将神经网络应用于通过多通道MWRP测量的亮度温度,可以连续估算对流层温度和湿度曲线。将组合算法在检索湿度曲线中的性能与同时进行的探空探空仪观测值(饶布氏)进行了比较。在大气辐射测量(ARM)计划的南部大平原(SGP)站点收集了WPR和MWRP的经验数据集。微波辐射计和风廓线仪的组合测量显示出令人鼓舞的结果,并显着提高了大气湿度廓线的空间垂直分辨率。最后,还讨论了使用此技术时发现的一些局限性以及将来可能的改进。

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