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首页> 外文期刊>Journal of Applied Meteorology >Evaluating the quality of ground-based microwave radiometer measurements and retrievals using detrended fluctuation and spectral analysis methods
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Evaluating the quality of ground-based microwave radiometer measurements and retrievals using detrended fluctuation and spectral analysis methods

机译:使用去趋势波动和频谱分析方法评估地面微波辐射计的测量和检索质量

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摘要

Time series both of microwave radiometer brightness temperature measurements at 23.8 and 31.4 GHz and of retrievals of water vapor and liquid water path from these brightness temperatures are evaluated using the detrended fluctuation analysis method. As quantified by the parameter #alpha#, this method (i) enables identification of the timescales over which noise dominates the time series and (ii) characterizes the temporal range of correlations in the time series. The more common spectral analysismethod is also used to assess the data, and its results are compared with those from the detrended fluctuation analysis method. The assumption that measurements should have certain scaling properties allows the quality of the measurements to be characterized. The additional assumption that the scaling properties of the measurements of an atmospheric quantity are preserved in a useful retrieval provides a means for evaluating the retrieval itself. Applying these two assumptions to microwave radiometer measurements and retrievals demonstrates three points. First, the retrieved water vapor path during cloudy-sky periods can be dominated by noise on shorter-than-30-min timescales (#alpha# exponent = 0.1) and exhibits no scaling behavior at longer timescales. However, correlations in the brightness temperatures and liquid water path retrievals are found to be consistent with a power-law behavior for timescales up to 3 h with an a exponent equal to approximately 0.3, as in other geophysical phenomena. Second, clear-sky, moist atmospheres show the expected scaling for both measurements and retrievals of the water vapor path. Third, during clear-sky, dry atmospheric days, instrument noise from the 31.4-GHz channel compromises the quality of the water vapor path retrieval. The detrended fluctuation analysis method is thus proposed as means for assessing the quality of both the instrument data and the retrieved parameters obtained from these data.
机译:使用去趋势波动分析方法评估了微波辐射计在23.8 GHz和31.4 GHz处的亮度温度测量的时间序列以及从这些亮度温度获取水蒸气和液体水路径的时间序列。如参数#alpha#所量化的,此方法(i)能够识别噪声在时间序列中占主导地位的时间尺度,并且(ii)表征时间序列中相关性的时间范围。更常用的光谱分析方法也用于评估数据,并将其结果与去趋势波动分析方法的结果进行比较。测量应该具有一定的缩放属性的假设可以表征测量的质量。在有用的检索中保留大气量测量的缩放比例属性的其他假设为评估检索本身提供了一种手段。将这两个假设应用于微波辐射计的测量和检索,可以证明三个要点。首先,在多云的天空期间,在短于30分钟的时间尺度(#alpha#指数= 0.1)上,噪声可以控制所取回的水蒸气路径,而在较长的时间尺度上则不表现出缩放行为。然而,与其他地球物理现象一样,在长达3 h的时间范围内,亮度温度和液态水路径反演的相关性与幂律行为一致,指数约等于0.3。其次,晴空潮湿的空气显示出水蒸气路径的测量和恢复的预期比例。第三,在晴空,干燥的白天,来自31.4 GHz通道的仪器噪声会损害水蒸气路径获取的质量。因此提出了去趋势波动分析方法,作为评估仪器数据和从这些数据获得的检索参数的质量的手段。

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