This paper presents an analysis of the ionospheric corrections required to get a significant improvement in PPP-RTK performance. The main aim was to determine the improvement in the position precision and Time-To-First-Fix in the PPP-RTK user side using ionospheric corrections computed from a network. The study consists of two main steps. The first one includes an empirical investigation of the ionosphere model precision necessary to greatly improve the PPP-RTK performance in a simulated environment in terms of precision and convergence time. In the second one, an optimal ionosphere representation was developed to provide precise ionospheric corrections by parameterizing the ionospheric slant delays after the PPP-RTK network processing in t...
The ionosphere is one of the largest error sources in GNSS-based positioning, causing a delay in the...
Precise Point Positioning (PPP) is a powerful method for GNSS data processing, when observations fro...
A part of the atmosphere is ionized by the UV radiation from the Sun. This part is often referred to...
This paper presents an analysis of the ionospheric corrections required to get a significant improve...
The long convergence time required to achieve high-precision position solutions with integer ambigui...
High-precision atmospheric modification is an important prerequisite for accelerating the convergenc...
The ionosphere is one of the major error sources in Global Navigation Satellite System (GNSS) positi...
GNSS RTK (Real-Time Kinematic) positioning techniques are based on precise but ambiguous carrier pha...
Combining advantages of precise point positioning (PPP) and real-time kinematic (RTK), PPP-RTK has b...
Precise Point Positioning (PPP) has become a very hot topic in GNSS research and applications. Howev...
The main objective of this thesis is to develop a procedure for modeling and predicting ionospheric ...
By convention, IGS precise clock products are computed using the ionosphere-free linear combination....
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
It is well know that GNSS permanent networks for real-time positioning with stations spaced at few t...
Precise GNSS positioning services and infrastructure are becoming increasingly important to support ...
The ionosphere is one of the largest error sources in GNSS-based positioning, causing a delay in the...
Precise Point Positioning (PPP) is a powerful method for GNSS data processing, when observations fro...
A part of the atmosphere is ionized by the UV radiation from the Sun. This part is often referred to...
This paper presents an analysis of the ionospheric corrections required to get a significant improve...
The long convergence time required to achieve high-precision position solutions with integer ambigui...
High-precision atmospheric modification is an important prerequisite for accelerating the convergenc...
The ionosphere is one of the major error sources in Global Navigation Satellite System (GNSS) positi...
GNSS RTK (Real-Time Kinematic) positioning techniques are based on precise but ambiguous carrier pha...
Combining advantages of precise point positioning (PPP) and real-time kinematic (RTK), PPP-RTK has b...
Precise Point Positioning (PPP) has become a very hot topic in GNSS research and applications. Howev...
The main objective of this thesis is to develop a procedure for modeling and predicting ionospheric ...
By convention, IGS precise clock products are computed using the ionosphere-free linear combination....
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
It is well know that GNSS permanent networks for real-time positioning with stations spaced at few t...
Precise GNSS positioning services and infrastructure are becoming increasingly important to support ...
The ionosphere is one of the largest error sources in GNSS-based positioning, causing a delay in the...
Precise Point Positioning (PPP) is a powerful method for GNSS data processing, when observations fro...
A part of the atmosphere is ionized by the UV radiation from the Sun. This part is often referred to...