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Validation of brightness and physical temperature from two scanning microwave radiometers in the 60aEuro-GHz O-2 band using radiosonde measurements

机译:使用探空仪测量从两个60aEuro-GHz O-2波段的微波扫描辐射计验证亮度和物理温度

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摘要

In this paper, we address the assessment of the tropospheric performance of a new temperature radiometer (TEMPERA) at 60aEuro-GHz. With this goal, an intercomparison campaign was carried out at the aerological station of MeteoSwiss in Payerne (Switzerland). The brightness temperature and the tropospheric temperature were assessed by means of a comparison with simultaneous and collocated radiosondes that are launched twice a day at this station. In addition, the TEMPERA performances are compared with the ones from a commercial microwave radiometer (HATPRO), which has some different instrumental characteristics and uses a different inversion algorithm. Brightness temperatures from both radiometers were compared with the ones simulated using a radiative transfer model and atmospheric profiles from radiosondes. A total of 532 cases were analyzed under all weather conditions and evidenced larger brightness temperature deviations between the two radiometers and the radiosondes for the most transparent channels. Two different retrievals for the TEMPERA radiometer were implemented in order to evaluate the effect of the different channels on the temperature retrievals. The comparison with radiosondes evidenced better results very similar to the ones from HATPRO, when the eight more opaque channels were used. The study shows the good performance of TEMPERA to retrieve temperature profiles in the troposphere. The inversion method of TEMPERA is based on the optimal estimation method. The main advantage of this algorithm is that there is no necessity for radiosonde information to achieve good results in contrast to conventional methods as neural networks or lineal regression. Finally, an assessment of the effect of instrumental characteristics as the filter response and the antenna pattern on the brightness temperature showed that they can have an important impact on the most transparent channels.
机译:在本文中,我们讨论了在60aEuro-GHz下对新型温度辐射计(TEMPERA)对流层性能的评估。为了实现这一目标,在瑞士佩耶恩的MeteoSwiss气象站进行了比对活动。通过与每天两次发射的同步并置无线电探空仪进行比较,评估了亮度温度和对流层温度。此外,将TEMPERA的性能与商用微波辐射仪(HATPRO)的性能进行了比较,后者具有一些不同的仪器特性并使用了不同的反演算法。将两个辐射计的亮度温度与使用辐射传输模型和探空仪的大气廓线模拟的温度进行了比较。在所有天气条件下,总共对532例案例进行了分析,结果表明,对于最透明的通道,两个辐射计和探空仪之间的亮度温度偏差较大。为了评估不同通道对温度检索的影响,对TEMPERA辐射计进行了两种不同的检索。当使用八个以上的不透明通道时,与无线电探空仪的比较证明了更好的结果,与HATPRO的结果非常相似。研究表明,TEMPERA在对流层中检索温度剖面的良好性能。 TEMPERA的反演方法基于最佳估计方法。该算法的主要优点是,与传统方法(如神经网络或线性回归)相比,探空仪信息无需获得良好的结果。最后,评估仪器特性(滤波器响应和天线方向图)对亮度温度的影响表明,它们可能对最透明的通道产生重要影响。

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