On the impact of correlations on the congruence test: a bootstrap approach: Case study: B-spline surface fitting from TLS observations

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

Organisationseinheiten

Externe Organisationen

  • Hochschule Anhalt
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)495-513
Seitenumfang19
FachzeitschriftActa Geodaetica et Geophysica
Jahrgang55
Ausgabenummer3
Frühes Online-Datum6 Juli 2020
PublikationsstatusVeröffentlicht - Sept. 2020

Abstract

The detection of deformation is one of the major tasks in surveying engineering. It is meaningful only if the statistical significance of the distortions is correctly investigated, which often underlies a parametric modelization of the object under consideration. So-called regression B-spline approximation can be performed for point clouds of terrestrial laser scanners, allowing the setting of a specific congruence test based on the B-spline surfaces. Such tests are known to be strongly influenced by the underlying stochastic model chosen for the observation errors. The latter has to be correctly specified, which includes accounting for heteroscedasticity and correlations. In this contribution, we justify and make use of a parametric correlation model called the Matérn model to approximate the variance covariance matrix (VCM) of the residuals by performing their empirical mode decomposition. The VCM obtained is integrated into the computation of the congruence test statistics for a more trustworthy test decision. Using a real case study, we estimate the distribution of the test statistics with a bootstrap approach, where no parametric assumptions are made about the underlying population that generated the random sample. This procedure allows us to assess the impact of neglecting correlations on the critical value of the congruence test, highlighting their importance.

ASJC Scopus Sachgebiete

Zitieren

On the impact of correlations on the congruence test: a bootstrap approach: Case study: B-spline surface fitting from TLS observations. / Kermarrec , Gaël; Kargoll, Boris; Alkhatib, Hamza.
in: Acta Geodaetica et Geophysica, Jahrgang 55, Nr. 3, 09.2020, S. 495-513.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Download
@article{680fd6d06ba44196a1263d7e2767ad94,
title = "On the impact of correlations on the congruence test: a bootstrap approach: Case study: B-spline surface fitting from TLS observations",
abstract = "The detection of deformation is one of the major tasks in surveying engineering. It is meaningful only if the statistical significance of the distortions is correctly investigated, which often underlies a parametric modelization of the object under consideration. So-called regression B-spline approximation can be performed for point clouds of terrestrial laser scanners, allowing the setting of a specific congruence test based on the B-spline surfaces. Such tests are known to be strongly influenced by the underlying stochastic model chosen for the observation errors. The latter has to be correctly specified, which includes accounting for heteroscedasticity and correlations. In this contribution, we justify and make use of a parametric correlation model called the Mat{\'e}rn model to approximate the variance covariance matrix (VCM) of the residuals by performing their empirical mode decomposition. The VCM obtained is integrated into the computation of the congruence test statistics for a more trustworthy test decision. Using a real case study, we estimate the distribution of the test statistics with a bootstrap approach, where no parametric assumptions are made about the underlying population that generated the random sample. This procedure allows us to assess the impact of neglecting correlations on the critical value of the congruence test, highlighting their importance.",
keywords = "Bootstrap, Congruency test, Correlation, Deformation, Mat{\'e}rn covariance function, Statistical test, Terrestrial laser scanner, Variance component estimation",
author = "Ga{\"e}l Kermarrec and Boris Kargoll and Hamza Alkhatib",
year = "2020",
month = sep,
doi = "10.1007/s40328-020-00302-8",
language = "English",
volume = "55",
pages = "495--513",
journal = "Acta Geodaetica et Geophysica",
issn = "2213-5812",
publisher = "Springer Science + Business Media",
number = "3",

}

Download

TY - JOUR

T1 - On the impact of correlations on the congruence test: a bootstrap approach

T2 - Case study: B-spline surface fitting from TLS observations

AU - Kermarrec , Gaël

AU - Kargoll, Boris

AU - Alkhatib, Hamza

PY - 2020/9

Y1 - 2020/9

N2 - The detection of deformation is one of the major tasks in surveying engineering. It is meaningful only if the statistical significance of the distortions is correctly investigated, which often underlies a parametric modelization of the object under consideration. So-called regression B-spline approximation can be performed for point clouds of terrestrial laser scanners, allowing the setting of a specific congruence test based on the B-spline surfaces. Such tests are known to be strongly influenced by the underlying stochastic model chosen for the observation errors. The latter has to be correctly specified, which includes accounting for heteroscedasticity and correlations. In this contribution, we justify and make use of a parametric correlation model called the Matérn model to approximate the variance covariance matrix (VCM) of the residuals by performing their empirical mode decomposition. The VCM obtained is integrated into the computation of the congruence test statistics for a more trustworthy test decision. Using a real case study, we estimate the distribution of the test statistics with a bootstrap approach, where no parametric assumptions are made about the underlying population that generated the random sample. This procedure allows us to assess the impact of neglecting correlations on the critical value of the congruence test, highlighting their importance.

AB - The detection of deformation is one of the major tasks in surveying engineering. It is meaningful only if the statistical significance of the distortions is correctly investigated, which often underlies a parametric modelization of the object under consideration. So-called regression B-spline approximation can be performed for point clouds of terrestrial laser scanners, allowing the setting of a specific congruence test based on the B-spline surfaces. Such tests are known to be strongly influenced by the underlying stochastic model chosen for the observation errors. The latter has to be correctly specified, which includes accounting for heteroscedasticity and correlations. In this contribution, we justify and make use of a parametric correlation model called the Matérn model to approximate the variance covariance matrix (VCM) of the residuals by performing their empirical mode decomposition. The VCM obtained is integrated into the computation of the congruence test statistics for a more trustworthy test decision. Using a real case study, we estimate the distribution of the test statistics with a bootstrap approach, where no parametric assumptions are made about the underlying population that generated the random sample. This procedure allows us to assess the impact of neglecting correlations on the critical value of the congruence test, highlighting their importance.

KW - Bootstrap

KW - Congruency test

KW - Correlation

KW - Deformation

KW - Matérn covariance function

KW - Statistical test

KW - Terrestrial laser scanner

KW - Variance component estimation

UR - http://www.scopus.com/inward/record.url?scp=85087618037&partnerID=8YFLogxK

U2 - 10.1007/s40328-020-00302-8

DO - 10.1007/s40328-020-00302-8

M3 - Article

VL - 55

SP - 495

EP - 513

JO - Acta Geodaetica et Geophysica

JF - Acta Geodaetica et Geophysica

SN - 2213-5812

IS - 3

ER -

Von denselben Autoren