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Mean spectral characteristics of acoustic gravity waves in the thermosphere-ionosphere determined from Dynasonde data

机译:由Dynasonde数据确定的热重力-电离层中声重力波的平均频谱特征

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摘要

Wave-like disturbances have been observed in the ionospheric plasma for several decades using a wide range of remote sensing techniques. In this paper, the use of Dynasonde-derived ionospheric “tilt” measurements is demonstrated to determine the dominant features of the underlying acoustic gravity wave spectrum and its height variation. The diurnal ionospheric variability introduces data gaps of varying length and distribution at any constant height level. This excludes the use of conventional fast Fourier transform techniques for spectral calculations. To obtain a complete and accurate image of the height variability of the wave activity in the thermosphere-ionosphere, a method is required that would provide physically comparable results at all altitudes, regardless of the variations in sampling. In addition, the true geophysical variability should be distinguished from overlapping noise. The proposed solution is a combination of the well-known Lomb-Scargle and Welch methods, with the dataset of interest being divided into several overlapping subintervals and the mean spectrum calculated using results for those subintervals for which the power spectral density integral equals the time domain variance within a preset tolerance. The choice of the tolerance value is justified by means of numerical simulations using synthetic data similar to the tilt measurements. The proposed method is verified using a 10 day long dataset obtained with the Wallops Island Dynasonde. Results obtained with this method are compared in this paper with those obtained with a basic implementation and with a filtering method based on the amount of available data. A considerable reduction in the number of artifacts is observed with the use of this innovative approach, allowing reliable conclusions to be derived regarding the acoustic gravity wave spectrum and its height variability.
机译:使用广泛的遥感技术,数十年来已在电离层等离子体中观察到波状干扰。在本文中,通过使用Dynasonde的电离层“倾斜”测量值来确定基础声重力波谱及其高度变化的主导特征。日间电离层的变化性会导致在任何恒定高度水平上变化长度和分布的数据间隙。这不包括将常规的快速傅立叶变换技术用于频谱计算。为了获得热球-电离层中波活动高度变化的完整而准确的图像,需要一种方法,该方法将在所有高度提供物理上可比的结果,而与采样的变化无关。此外,应将真实的地球物理变化与重叠噪声区分开。提出的解决方案是著名的Lomb-Scargle和Welch方法的组合,将感兴趣的数据集划分为几个重叠的子间隔,并使用功率谱密度积分等于时域的那些子间隔的结果计算出平均频谱预设公差范围内的方差。公差值的选择通过使用类似于倾斜测量值的合成数据的数值模拟来证明。使用Wallops Island Dynasonde获得的为期10天的数据集对提出的方法进行了验证。本文将使用这种方法获得的结果与通过基本实现以及使用基于可用数据量的过滤方法获得的结果进行比较。通过使用这种创新方法,观察到的伪像数量大大减少,从而可以得出关于声重力波谱及其高度可变性的可靠结论。

著录项

  • 来源
    《Radio Science》 |2016年第3期|213-222|共10页
  • 作者单位

    Department of Electrical, Computer and Energy Engineering, University of Colorado Boulder, Boulder, Colorado, USA, Cooperative Institute for Research in Environmental Sciences, University of Colorado Boulder, Boulder, Colorado, USA, Space Weather Prediction Center, National Oceanic and Atmospheric Administration, Boulder, Colorado, USA, Institute of Space Science, Magurele, Romania;

    Department of Electrical, Computer and Energy Engineering, University of Colorado Boulder, Boulder, Colorado, USA, Cooperative Institute for Research in Environmental Sciences, University of Colorado Boulder, Boulder, Colorado, USA, Space Weather Prediction Center, National Oceanic and Atmospheric Administration, Boulder, Colorado, USA, Institute of Space Science, Magurele, Romania;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Gravity; Time series analysis; Acoustics; Radar; Spectral analysis; Harmonic analysis; Time-frequency analysis;

    机译:重力;时间序列分析;声学;雷达;频谱分析;谐波分析;时频分析;

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