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    Evaluation of High-Rate GNSS-PPP for Monitoring Structural Health and Seismogeodesy Applications

    75881.pdf (1.214Mb)
    Access Status
    Open access
    Authors
    Yigit, Cemal Ozer
    Dindar, Ahmed
    Bezcioglu, Mert
    El-Mowafy, Ahmed
    Date
    2018
    Type
    Conference Paper
    
    Metadata
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    Citation
    Yigit, C. and Dindar, A. and Bezcioglu, M. and El-Mowafy, A. 2018. Evaluation of High-Rate GNSS-PPP for Monitoring Structural Health and Seismogeodesy Applications. In: XXVI FIG Congress 2018, 6th May 2018, Istanbul, Turkey.
    Source Title
    XXVI FIG Congress 2018: Proceedings
    Source Conference
    XXVI FIG Congress 2018
    Additional URLs
    https://www.fig.net/resources/proceedings/fig_proceedings/fig2018/papers/ts04f/TS04F_yigit_dindar_et_al_9512.pdf
    ISBN
    978-87-92853-78-3
    ISSN
    2308-3441
    Faculty
    Faculty of Science and Engineering
    School
    School of Earth and Planetary Sciences (EPS)
    URI
    http://hdl.handle.net/20.500.11937/75699
    Collection
    • Curtin Research Publications
    Abstract

    This study evaluates the usability of the GNSS-PPP method for structural health monitoring and seismogeodesy applications. Two test scenarios were considered. The first test scenario included monitoring hormonic oscillations in amplitude of 5 mm to 20 mm with the frequency range of 0.2 Hz to 2.5 Hz that were generated using a shaking table, which has the ability to move in one direction in a horizontal plane. The second test scenario was carried out by simulating the El-Centro Earthquake as a seismogeodesy application. The used GNSS data comprised dual-frequency observations with a 10 Hz sampling rate. GNSS-derived positioning time series were obtained by processing the data using a post-mission kinematic PPP method and results were compared, in both the frequency domain and time domain, with LVDT (Linear Variable Differential Transformer) data, taking as a reference. Results show that the high-rate GNSS PPP method can capture the frequencies of harmonic movements comparable to the LVDT. The observed amplitudes of the harmonic oscillations are slightly different from the LVDT data at the order of mm level. These results demonstrate the ability of the high-rate GNSS PPP method to reliably monitor structural and earthquake-induced vibration frequencies and amplitudes for both the structural health and seismogeodesy applications.

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