Results 151 to 160 of about 1,293 (182)
Real-time tropospheric delay retrieval with GPS, GLONASS, Galileo and BDS data. [PDF]
Pan L, Guo F.
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Hourly PWV Dataset Derived from GNSS Observations in China. [PDF]
Zhao Q, Yang P, Yao W, Yao Y.
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Establishment of a Site-Specific Tropospheric Model Based on Ground Meteorological Parameters over the China Region. [PDF]
Zhou C +6 more
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Performance Analysis of BDS Medium-Long Baseline RTK Positioning Using an Empirical Troposphere Model. [PDF]
Shu B +5 more
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Study on Optimization Method for InSAR Baseline Considering Changes in Vegetation Coverage. [PDF]
Guo J +8 more
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Jurnal Tekno Global
ABSTRACT The propagation of GNSS signals from satellites orbiting at an altitude of approximately 22,000 km above the Earth's surface to the receiver must pass through the Earth's atmosphere. Within the atmospheric layers, the signals encounter numerous interferences, which are a significant source of errors in position determination using GNSS. Zenith
Sari, Atika +3 more
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ABSTRACT The propagation of GNSS signals from satellites orbiting at an altitude of approximately 22,000 km above the Earth's surface to the receiver must pass through the Earth's atmosphere. Within the atmospheric layers, the signals encounter numerous interferences, which are a significant source of errors in position determination using GNSS. Zenith
Sari, Atika +3 more
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Precise estimation of Zenith Tropospheric Delay (ZTD) is crucial for improving the accuracy of data from Continuously Operating Reference Stations (CORS), particularly in applications requiring high-precision GNSS positioning. This study focuses on evaluating various ZTD models to identify the most accurate approach for mitigating atmospheric delays in
Drishti Agarwal +4 more
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Drishti Agarwal +4 more
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A global zenith tropospheric delay model with ERA5 and GNSS-based ZTD difference correction
GPS Solutions, 2023Haojun Li +4 more
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