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  • De Gruyter  (18)
  • München : Beck  (1)
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  • 1
    Signatur: S 99.0125(311)
    In: Deutsche Geodätische Kommission bei der Bayerischen Akademie der Wissenschaften
    Materialart: Schriftenreihen ausleihbar
    Seiten: 55 S.
    ISBN: 3769685911
    Serie: Deutsche Geodätische Kommission bei der Bayerischen Akademie der Wissenschaften : Reihe B 311
    Klassifikation:
    Geodätische Messverfahren
    Standort: Kompaktmagazin unten
    Zweigbibliothek: GFZ Bibliothek
    Standort Signatur Erwartet Verfügbarkeit
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  • 2
    Publikationsdatum: 2018-04-25
    Beschreibung: The ability to acquire rapid, dense and high quality 3D data has made terrestrial laser scanners (TLS) a desirable instrument for tasks demanding a high geometrical accuracy, such as geodetic deformation analyses. However, TLS measurements are influenced by systematic errors due to internal misalignments of the instrument. The resulting errors in the point cloud might exceed the magnitude of random errors. Hence, it is important to assure that the deformation analysis is not biased by these influences. In this study, we propose and evaluate several strategies for reducing the effect of TLS misalignments on deformation analyses. The strategies are based on the bundled in-situ self-calibration and on the exploitation of two-face measurements. The strategies are verified analyzing the deformation of the Onsala Space Observatory’s radio telescope’s main reflector. It is demonstrated that either two-face measurements as well as the in-situ calibration of the laser scanner in a bundle adjustment improve the results of deformation analysis. The best solution is gained by a combination of both strategies.
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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  • 3
    Publikationsdatum: 2014-01-01
    Beschreibung: The presented work aims to give an overview of different calibration methods for magnetic field sensors, which are used for attitude determination. These methods are applicable in the field without any additional equipment. However, sometimes they require simplification assumptions. The paper addresses the validity of these assumptions, the accuracy and efficiency of the methods and the influence of the calibration error on the orientation estimation. Both simulations and measurements are used for evaluation. The measurements are performed using a GNSS multi-antenna system, providing an orientation reference (roll, pitch, yaw) without unknown external magnetic disturbances and with a sufficient accuracy (about 0.5 degrees). It is shown in simulations, that a full calibration of the sensor (including soft and hard iron disturbances by nearby materials) is possible without any additional equipment. However, experiments show, that some parts of the full calibration procedure are sensitive to an accurate execution of the necessary movements, which may lead to calibration errors in the same order of magnitude as a simplified method, which ignores the presence of soft iron disturbances.
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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  • 4
    Publikationsdatum: 2016-01-01
    Beschreibung: Due to improved laser scanning technology, laser scanner based deformation analyses are presently widespread. These deformation analyses are no longer based on individual points representing the deformation of an object at selected positions. Instead, they are based on a large number of scan points sampling the whole object. This fact either leads to challenges regarding metrological aspects as well as regarding modeling aspects:
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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  • 5
    Publikationsdatum: 2018-10-25
    Beschreibung: The accuracy of georeferenced TLS point clouds is directly influenced by site-dependent GNSS effects, deteriorating the accuracy of the ground control point coordinate estimation. Especially under challenging GNSS conditions, this is a crucial problem. One common approach is to minimize these effects by longer observation durations, which in turn increases the effort in time and cost. In this paper, an algorithm is proposed that provides accurate georeferencing results, even under challenging measurement conditions and short observation durations. It iteratively improves the georeferencing accuracy by determining and applying obstruction adaptive elevation masks to the GNSS observations. The algorithm is tested and assessed using the data of a field test. It is demonstrated that after only 5 minutes observation duration, the ground control point coordinates can be estimated with an accuracy of 1 to 2 cm, independent from the GNSS measurement conditions. Initial states of the elevation masks are determined from a point cloud that is georeferenced using coordinates from a single point positioning solution, enhanced by a RAIM-FDE approach. Afterwards, the coordinates are estimated in a weighted least-squares baseline solution and both, the elevation masks and the coordinate estimation, are iteratively improved. Besides the significant reduction of measurement time, the proposed algorithm allows for increasing the amount of ground control points and can be applied to other direct or indirect GNSS-based georeferencing approaches.
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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  • 6
    Publikationsdatum: 2014-01-01
    Beschreibung: The estimates based on laser scans of surfaces with unknown deformations are biased and not reproducible when changing the scanning geometry. While the existence of a bias is only disadvantageous at some applications, non-reproducible estimates are never desired. Hence, this varying bias and its origin need to be investigated - since this situation has not been examined sufficiently in the literature. Analyzing this situation, the dependence of the estimation on the network configuration is highlighted: the network configuration - studied similarly to geodetic networks - rules about the impact of the deformation.As pointed out, this impact can be altered by manipulating the network configuration. Therefore, several strategies are proposed. These include manipulations of the leastsquares adjustment as well as robust estimation. It is revealed that the reproducibility of the estimates can indeed be significantly increased by some of the proposed leastsquares manipulations. However, the bias can only be significantly reduced by robust estimation.
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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  • 7
    Publikationsdatum: 2017-01-26
    Beschreibung: In terms of high precision requested deformation analyses, evaluating laser scan data requires the exact knowledge of the functional and stochastic model. If this is not given, a parameter estimation leads to insufficient results. Simulating a laser scanning scene provides the knowledge of the exact functional model of the surface. Thus, it is possible to investigate the impact of neglecting spatial correlations in the stochastic model. Here, this impact is quantified through statistical analysis.The correlation function, the number of scanning points and the ratio of colored noise in the measurements determine the covariances in the simulated observations. It is shown that even for short correlation lengths of less than 10 cm and a low ratio of colored noise the global test as well as the parameter test are rejected. This indicates a bias and inconsistency in the parameter estimation. These results are transferable to similar tasks of laser scanner based surface approximation.
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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  • 8
    Publikationsdatum: 2015-01-01
    Beschreibung: The main reflectors of radio telescopes deform due to gravitation when changing their elevation angle. This can be analyzed by scanning the paraboloid surface with a terrestrial laser scanner and by determining focal length variations and local deformations from best-fit approximations.For the Effelsberg radio telescope, both groups of deformations are estimated from seven points clouds measured at different elevation angles of the telescope: the focal length decreases by 22.7 mm when tilting the telescope from 90 deg to 7.5 deg elevation angle. Variable deformations of ± 2 mm are detected as well at certain areas. Furthermore, a few surface panels seem to be misaligned.Apart from these results, the present study highlights the need for an appropriate measurement concept and for preprocessing stepswhen using laser scanners for area-based deformation analyses. Especially, data reduction, object segmentation and laser scanner calibration are discussed in more detail. An omission of these steps would significantly degrade the deformation analysis and the significance of its results. This holds for all sorts of laser scanner based analyses.
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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  • 9
    Publikationsdatum: 2014-01-01
    Beschreibung: When using terrestrial laser scanners for high quality analyses, calibrating the laser scanner is crucial due to unavoidable misconstruction of the instrument leading to systematic errors. Consequently, the development of calibration fields for laser scanner self-calibration is widespread in the literature. However, these calibration fields altogether suffer from the fact that the calibration parameters are estimated by analyzing the parameter differences of a limited number of substitute objects (targets or planes) scanned from different stations. This study investigates the potential of self-calibrating a laser scanner by scanning one single object with one single scan. This concept is new since it uses the deviation of each sampling point to the scanned object for calibration. Its applicability rests upon the integration of model knowledge that is used to parameterize the scanned object. Results show that this calibration approach is feasible leading to improved surface approximations. However, it makes great demands on the functional model of the calibration parameters, the stochastic model of the adjustment, the scanned object and the scanning geometry. Hence, to gain constant and physically interpretable calibration parameters, further improvement especially regarding functional and stochastic model is demanded.
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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  • 10
    Publikationsdatum: 2014-01-01
    Beschreibung: Triangulation-based range sensors, e.g. laser line scanners, are used for high-precision geometrical acquisition of free-form surfaces, for reverse engineering tasks or quality management. In contrast to classical tactile measuring devices, these scanners generate a great amount of 3D-points in a short period of time and enable the inspection of soft materials. However, for accurate measurements, a number of aspects have to be considered to minimize measurement uncertainties. This study outlines possible sources of uncertainties during the measurement process regarding the scanner warm-up, the impact of laser power and exposure time as well as scanner’s reaction to areas of discontinuity, e.g. edges. All experiments were performed using a fixed scanner position to avoid effects resulting from imaging geometry. The results show a significant dependence of measurement accuracy on the correct adaption of exposure time as a function of surface reflectivity and laser power. Additionally, it is illustrated that surface structure as well as edges can cause significant systematic uncertainties.
    Print ISSN: 1862-9016
    Digitale ISSN: 1862-9024
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Publiziert von De Gruyter
    Standort Signatur Erwartet Verfügbarkeit
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