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Evaluation of Cut-Off Frequency and Correction of Filter-Induced Phase Lag and Attenuation in Eddy Covariance Analysis of Turbulence Data

机译:湍流数据涡动协方差分析中的截止频率评估和滤波器引起的相位滞后和衰减校正

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摘要

A recursive filter adopted for online eddy covariance analysis of turbulence data inthe atmospheric surface layer is revisited, and its properties and performanceare evaluated by means of concepts and methods developed in digital signal analysis.A rigorous estimate of effective cut-off frequency is derived along with an estimateof filter induced phase lag. Accordingly, filter design criteria are revised and variouseffects of parameter choice are assessed. Furthermore suitable corrections for compensating filter induced distortion, i.e., phase lag and attenuation, are proposed. The modified filter is tested on: (a) An artificial time series (random noise superimposed to `slow' sinusoidal signal); (b) turbulence data from field measurements. In case (a) the retrieval of input signal parameters is appreciably improved. In case (b) a better agreement with a Gaussian moving average is obtained, at lower computational cost.
机译:回顾了用于大气表层湍流数据在线涡动协方差分析的递归滤波器,并通过数字信号分析中开发的概念和方法对它的性质和性能进行了评估,得出了有效截止频率的严格估计以及滤波器引起的相位滞后的估计。因此,修改了滤波器设计标准,并评估了参数选择的各种效果。此外,提出了用于补偿滤波器引起的失真的适当校正,即相位滞后和衰减。修改后的滤波器在以下条件下进行测试:(a)人工时间序列(随机噪声叠加到“慢”正弦信号上); (b)来自野外测量的湍流数据。在(a)的情况下,输入信号参数的检索得到明显改善。在情况(b)中,以较低的计算成本获得了与高斯移动平均值的更好一致性。

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