Contribution to Uncertainty Propagation Associated with On-Site Calibration of Infrasound Monitoring Systems

被引:1
|
作者
Demeyer, Severine [1 ]
Kristoffersen, Samuel K. [2 ]
Le Pichon, Alexis [2 ]
Larsonnier, Franck [2 ]
Fischer, Nicolas [1 ]
机构
[1] Lab Natl Metrol & Essais, 29 Ave Roger Hennequin, F-78197 Trappes, France
[2] Commissariat Energie Atom & Energies Alternat, DAM, DIF, F-91297 Arpajon, France
关键词
infrasound monitoring; on-site calibration; uncertainty propagation; Monte Carlo method; sensitivity study; ARRAY; LOCATION;
D O I
10.3390/rs15071892
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
To improve the confidence and quality of measurements produced by regional and international infrasound monitoring networks, this work investigates a methodology for propagating uncertainty associated with on-site measurement systems. We focus on the propagation of sensor calibration uncertainties. The proposed approach is applied to synthetic infrasound signals with known back azimuth and trace velocity, recorded at the array elements. Relevant input uncertainties are investigated for propagation targeting the incoming signals (noise), instrumentation (microbarometers, calibration system, wind noise reduction system), and the time-delay-of-arrival (TDOA) model (frequency band). Uncertainty propagation is performed using the Monte Carlo method to obtain the corresponding uncertainties of the relevant output quantities of interest, namely back azimuth and trace velocity. The results indicate that, at high frequencies, large sensor uncertainties are acceptable. However, at low frequencies (< 0.1 Hz), even a 2 degrees sensor phase uncertainty can lead to errors in the back azimuth of up to 5 degrees and errors in the trace velocity of 20 m/s.
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页数:32
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