The coming decade will bring a proliferation of Global Navigation Satellite Systems (GNSSs) that are likely to enable a much wider range of demanding applications compared to the current GPS-only situation. One such important area of application is single-frequency real-time kinematic (RTK) positioning. Presently, however, such systems lack real-time performance. In this contribution we analyze the ambiguity resolution performance of the single-frequency RTK model for different next generation GNSS configurations and positioning scenarios. For this purpose, a closed form expression of the single-frequency Ambiguity Dilution of Precision (ADOP) is derived. This form gives a clear insight into how and to what extent the various factors of the...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
In the next five to ten years, the evolution of Global Navigation Satellite Systems (GNSSs) will hav...
Successful carrier phase ambiguity resolution is the key to high-precision positioning with Global N...
The single-receiver integer ambiguity resolution-enabled variant of precise point positioning (PPP),...
The single-receiver integer ambiguity resolution-enabled variant of precise point positioning (PPP),...
We will focus on single-frequency single-baseline real-time kinematic (RTK) combining four Code Divi...
The benefits of an increased number of global navigation satellite systems (GNSS) in space have been...
A single-receiver integer ambiguity resolution-enabled precise point positioning (PPP-RTK) user expe...
GNSS positioning has become popular in the past decade as an efficient method of precise and real-ti...
A single-receiver integer ambiguity resolution-enabled precise point positioning (PPP-RTK) user expe...
GNSS positioning has become popular in the past decade as an efficient method of precise and real-ti...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
GNSS positioning has become popular in the past decade as an efficient method of precise and real-ti...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
In the next five to ten years, the evolution of Global Navigation Satellite Systems (GNSSs) will hav...
Successful carrier phase ambiguity resolution is the key to high-precision positioning with Global N...
The single-receiver integer ambiguity resolution-enabled variant of precise point positioning (PPP),...
The single-receiver integer ambiguity resolution-enabled variant of precise point positioning (PPP),...
We will focus on single-frequency single-baseline real-time kinematic (RTK) combining four Code Divi...
The benefits of an increased number of global navigation satellite systems (GNSS) in space have been...
A single-receiver integer ambiguity resolution-enabled precise point positioning (PPP-RTK) user expe...
GNSS positioning has become popular in the past decade as an efficient method of precise and real-ti...
A single-receiver integer ambiguity resolution-enabled precise point positioning (PPP-RTK) user expe...
GNSS positioning has become popular in the past decade as an efficient method of precise and real-ti...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
GNSS positioning has become popular in the past decade as an efficient method of precise and real-ti...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...