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Dispersion constraints and the Hilbert transform for electromagnetic system response validation

journal contribution
posted on 2024-11-01, 08:43 authored by James MacnaeJames Macnae, Ryan Springall
As a check on calibration and drift in each discrete sub-system of a commercial frequency-domain airborne electromagnetic system, we aim to use causality constraints alone to predict in-phase from wide-band quadrature data. There are several possible applications of the prediction of in-phase response from quadrature data including: (1) quality control on base level drift, calibration and phase checks; (2) prediction and validation of noise levels in in-phase from quadrature measurements and vice versa and in future; and (3) interpolation and extrapolation of sparsely sampled data enforcing causality and better frequency-domain ¿ time-domain transformations. In practice, using tests on both synthetic and measured Resolve helicopter-borne electromagnetic frequency domain data, in-phase data points could be predicted using a scaled Hilbert transform with a standard deviation between 40 and 80 ppm. However, relative differences between base levels between tight could be resolved to better than 1 ppm, which allows an independent quality control check on the accuracy of drift correction

History

Related Materials

  1. 1.
    DOI - Is published in 10.1071/EG10017
  2. 2.
    ISSN - Is published in 08123985

Journal

Exploration Geophysics

Volume

42

Issue

1

Start page

1

End page

6

Total pages

6

Publisher

CSIRO Publishing

Place published

Australia

Language

English

Copyright

© ASEG/SEGJ/KSEG 2011

Former Identifier

2006026513

Esploro creation date

2020-06-22

Fedora creation date

2012-04-12

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