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Detection of infrasound from natural and civilization sources: measurement of complex signal/noise environments

机译:从自然和文明源检测到基础源:复杂信号/噪声环境的测量

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Detection of low-level, infrasonic sound waves in the presence of noise can require a combination of processing techniques depending upon the details of signal as well as noise characteristics. Forms of noise include local, nonacoustic pressure changes in the atmospheric boundary layer, natural sound sources (not of interest for some specific application), civilization sound sources (masking other sounds), instrumentation noise, and "noise" introduced by processing. Examples of the various noise types are presented together with techniques for identification and elimination. At higher infrasonic frequencies (e.g. between 1 and 10 Hz) a variety of promising geophysical applications are possible, yet sources are more frequent. Particular attention is given to this frequency range. Recent measurements correlating infrasonic signals with sprites and other transient luminescent phenomena will be used as an example of the potential of infrasound for geophysical remote sensing.
机译:在噪声存在下检测低电平,射频声波可能需要组合处理技术,这取决于信号的细节以及噪声特性。噪声形式包括局部,局部边界层的局部压力变化,天然声源(对某些特定应用而不感兴趣),文明声源(掩蔽其他声音),仪器化噪声和“噪声”通过处理引入。各种噪声类型的示例与用于识别和消除的技术一起呈现。在较高的速率频率(例如,在1到10 Hz之间)可以进行各种有前途的地球物理应用,但源更频繁。特别注意这个频率范围。最近的测量与精灵和其他瞬态发光现象相关的速率与瞬时发光现象的潜在潜在的潜在潜在遥感。

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