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On User Algorithms for GNSS Precise Point Positioning
Peter de Bakker
Mathematical Geodesy and Positioning
Research output
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Thesis
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Dissertation (TU Delft)
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Dive into the research topics of 'On User Algorithms for GNSS Precise Point Positioning'. Together they form a unique fingerprint.
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INIS
positioning
100%
satellites
100%
ionosphere
100%
navigation
100%
algorithms
100%
carriers
50%
errors
50%
data
43%
orbits
37%
slip
31%
accuracy
31%
hypothesis
25%
geometry
25%
solutions
25%
testing
18%
variations
18%
correlations
18%
performance
18%
detection
18%
stochastic processes
18%
prediction
12%
dynamics
12%
precision
12%
convergence
12%
values
12%
noise
12%
monitoring
12%
troposphere
12%
modeling
12%
surfaces
6%
atmospheres
6%
levels
6%
power
6%
budgets
6%
oceans
6%
processing
6%
gps
6%
comparative evaluations
6%
relativistic range
6%
signal-to-noise ratio
6%
probability
6%
equations
6%
wind
6%
loading
6%
solids
6%
size
6%
hydrostatics
6%
tide
6%
Earth and Planetary Sciences
GNSS
100%
Model
100%
Ionosphere
88%
Delay
66%
Error
38%
Clock
33%
Accuracy
27%
Parameter
22%
Geometry
22%
Variation
16%
Estimate
16%
Approach
16%
Station
16%
Detection
16%
Description
16%
Hypothesis Testing
11%
Real Time
11%
Estimating
11%
Troposphere
11%
Statics
11%
Autoregressive Process
11%
Condition
11%
Time Series
11%
Shape
11%
Need
11%
Modeling
11%
Show
5%
Agreement
5%
Solid Earth
5%
Order
5%
Ellipsoid
5%
Starting
5%
Relativistic Effect
5%
Null Hypothesis
5%
Signal to Noise Ratios
5%
Cycle
5%
Hydrostatics
5%
Planetary Atmosphere
5%
Convention
5%
Ionospherics
5%
Earth Tide
5%
Earth
5%
Site
5%
Outlier
5%
Area
5%
Loop
5%
Receiver
5%
Hypothesis
5%
Aspect
5%
Global Positioning System
5%
Engineering
Pseudorange Measurement
7%