Single-station PPP-RTK is a special case of PPP-RTK in that corrections are computed, instead of a network, by only one single GNSS receiver. The present contribution aims to develop a framework to generate multi-epoch, single-station corrections, thereby providing PPP-RTK users the capability to time-predict corrections that are subject to time delay or latency. By presenting analytical expressions of the user ambiguity variance matrix, we address how the ambiguity resolution performance is driven by the correction latency and therefore by the uncertainty involved in the time-prediction of single-station PPP-RTK corrections. Supported by numerical results, our analytical study shows that the number of satellites and number of frequencies w...
The corrections needed to realize integer ambiguity resolution-enabled precise point positioning (PP...
The network real-time kinematic (RTK) technique uses continuously operating reference stations (CORS...
Global Navigation Satellite System (GNSS) data from reference station networks deployed globally can...
PPP-RTK extends the PPP concept by providing single-receiver users, next to orbits and clocks, also ...
To obtain single-receiver Global Navigation Satellite System (GNSS) parameter solutions, the PPP-RTK...
Integer ambiguity resolution enabled Precise (cm-level) Point Positioning (PPP) is feasible if corre...
In PPP-RTK processing, the network corrections including the satellite clocks, the satellite phase b...
All rights reserved. In this contribution we study the impact of integer ambiguity resolution (IAR) ...
The benefits of an increased number of global navigation satellite systems (GNSS) in space have been...
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
In order to catch up the short-term clock variation of GNSS satellites, clock corrections must be es...
Precise Point Positioning (PPP) is a Global Navigation Satellite Systems (GNSS) modelling and proces...
The concept of PPP-RTK is to achieve integer ambiguity resolution (IAR) at a single GNSS user by pro...
A single-receiver integer ambiguity resolution-enabled precise point positioning (PPP-RTK) user expe...
Precise Point Positioning (PPP) is a powerful method for GNSS data processing, when observations fro...
The corrections needed to realize integer ambiguity resolution-enabled precise point positioning (PP...
The network real-time kinematic (RTK) technique uses continuously operating reference stations (CORS...
Global Navigation Satellite System (GNSS) data from reference station networks deployed globally can...
PPP-RTK extends the PPP concept by providing single-receiver users, next to orbits and clocks, also ...
To obtain single-receiver Global Navigation Satellite System (GNSS) parameter solutions, the PPP-RTK...
Integer ambiguity resolution enabled Precise (cm-level) Point Positioning (PPP) is feasible if corre...
In PPP-RTK processing, the network corrections including the satellite clocks, the satellite phase b...
All rights reserved. In this contribution we study the impact of integer ambiguity resolution (IAR) ...
The benefits of an increased number of global navigation satellite systems (GNSS) in space have been...
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
In order to catch up the short-term clock variation of GNSS satellites, clock corrections must be es...
Precise Point Positioning (PPP) is a Global Navigation Satellite Systems (GNSS) modelling and proces...
The concept of PPP-RTK is to achieve integer ambiguity resolution (IAR) at a single GNSS user by pro...
A single-receiver integer ambiguity resolution-enabled precise point positioning (PPP-RTK) user expe...
Precise Point Positioning (PPP) is a powerful method for GNSS data processing, when observations fro...
The corrections needed to realize integer ambiguity resolution-enabled precise point positioning (PP...
The network real-time kinematic (RTK) technique uses continuously operating reference stations (CORS...
Global Navigation Satellite System (GNSS) data from reference station networks deployed globally can...