Publication | Closed Access
Uncertainties associated with parameter estimation in atmospheric infrasound arrays
117
Citations
10
References
2003
Year
AeroacousticsEngineeringSensor ArrayAtmospheric AcousticAtmospheric SoundingGeophysical Signal ProcessingEarth ScienceGeophysicsUncertainty QuantificationAtmospheric ScienceTrace VelocityNoisePractical UncertaintiesStatisticsMeteorologySynthetic Aperture RadarSignal ProcessingRadarArray ProcessingAtmospheric Infrasound ArraysAerospace EngineeringStatistical Confidence
This study describes a method for determining the statistical confidence in estimates of direction-of-arrival and trace velocity stemming from signals present in atmospheric infrasound data. It is assumed that the signal source is far enough removed from the infrasound sensor array that a plane-wave approximation holds, and that multipath and multiple source effects are not present. Propagation path and medium inhomogeneities are assumed not to be known at the time of signal detection, but the ensemble of time delays of signal arrivals between array sensor pairs is estimable and corrupted by uncorrelated Gaussian noise. The method results in a set of practical uncertainties that lend themselves to a geometric interpretation. Although quite general, this method is intended for use by analysts interpreting data from atmospheric acoustic arrays, or those interested in designing and deploying them. The method is applied to infrasound arrays typical of those deployed as a part of the International Monitoring System of the Comprehensive Nuclear-Test-Ban Treaty Organization.
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