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Article

Investigation of Displacement and Ionospheric Disturbance during an Earthquake Using Single-Frequency PPP

School of Land Science and Technology, China University of Geosciences Beijing, 29 Xueyuan Road, Beijing 100083, China
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Author to whom correspondence should be addressed.
Remote Sens. 2022, 14(17), 4286; https://doi.org/10.3390/rs14174286
Submission received: 1 August 2022 / Revised: 26 August 2022 / Accepted: 28 August 2022 / Published: 30 August 2022
(This article belongs to the Special Issue Beidou/GNSS Precise Positioning and Atmospheric Modeling)

Abstract

Currently, it is still challenging to detect earthquakes by using the measurements of Global Navigation Satellite System (GNSS), especially while only adopting single-frequency GNSS. To increase the accuracy of earthquake detection and warning, extra information and techniques are required that lead to high costs. Therefore, this work tries to find a low-cost method with high-accuracy performance. The contributions of our research are twofold: (1) an improved earthquake-displacement estimation approach by considering the relation between earthquake and ionospheric disturbance is presented. For this purpose, we propose an undifferenced uncombined Single-Frequency Precise Point Positioning (SF-PPP) approach, in which both the ionospheric delay of each observed satellite and receiver Differential Code Bias (DCB) are parameterized. When processing the 1 Hz GPS data collected during the 2013 Mw7.0 Lushan earthquake and the 2011 Mw9.0 Tohoku-Oki earthquake, the proposed SF-PPP method can provide coseismic deformation signals accurately. Compared to the results from GAMIT/TRACK, the accuracy of the proposed SF-PPP was not influenced by the common mode errors that exist in the GAMIT/TRACK solutions. (2) Vertical Total Electron Content (VTEC) anomalies before an earthquake are investigated by applying time-series analysis and spatial interpolation methods. Furthermore, on the long-term scale, it is revealed that significant positive/negative VTEC anomalies appeared around the earthquake epicenter on the day the earthquake occurred compared to about 4–5 days before the earthquake, whereas, on the short-term scale, positive/negative VTEC anomalies emerged several-hours before or after an earthquake.
Keywords: single-frequency precise point positioning (SF-PPP); vertical total electron content (VTEC); earthquake displacement; ionospheric disturbance single-frequency precise point positioning (SF-PPP); vertical total electron content (VTEC); earthquake displacement; ionospheric disturbance

Share and Cite

MDPI and ACS Style

Lv, J.; Gao, Z.; Yang, C.; Wei, Y.; Peng, J. Investigation of Displacement and Ionospheric Disturbance during an Earthquake Using Single-Frequency PPP. Remote Sens. 2022, 14, 4286. https://doi.org/10.3390/rs14174286

AMA Style

Lv J, Gao Z, Yang C, Wei Y, Peng J. Investigation of Displacement and Ionospheric Disturbance during an Earthquake Using Single-Frequency PPP. Remote Sensing. 2022; 14(17):4286. https://doi.org/10.3390/rs14174286

Chicago/Turabian Style

Lv, Jie, Zhouzheng Gao, Cheng Yang, Yingying Wei, and Junhuan Peng. 2022. "Investigation of Displacement and Ionospheric Disturbance during an Earthquake Using Single-Frequency PPP" Remote Sensing 14, no. 17: 4286. https://doi.org/10.3390/rs14174286

APA Style

Lv, J., Gao, Z., Yang, C., Wei, Y., & Peng, J. (2022). Investigation of Displacement and Ionospheric Disturbance during an Earthquake Using Single-Frequency PPP. Remote Sensing, 14(17), 4286. https://doi.org/10.3390/rs14174286

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