Various measurement monitoring techniques are investigated to mitigate the effect of global navigation satellite systems (GNSS) code multipath through error correction, stochastic weighting of measurements and detection and exclusion (or de-weighting) of affected measurements. Following a comprehensive review of each approach, the paper focuses on detection/exclusion and detection/de-weighting techniques where several single and dual-frequency monitoring metrics are employed in a combination with time-averaging and the M of N detection strategy. A new Geometry-Free (GF) detection metric is proposed given its capability to be combined with a preceding Code-Minus-Carrier (CMC)-based error correction to reduce the number of excluded or de-weig...
Ground transportation systems demand accurate and robust localization functions. Satellite navigatio...
In natural and urban canyon environments, Global Navigation Satellite System (GNSS) signals suffer f...
With the rapid development of BeiDou system (BDS) and steady progress of Galileo system, the current...
Abstract Multipath interference seriously degrades the performance of Global Navigation Satellite Sy...
Global Navigation Satellite Systems (GNSS) based high-precision positioning techniques have been wid...
The paper presents a new multipath mitigation strategy suitable to current Global Navigation Satelli...
There have been many advances in the modeling of Global Navigation Satellite System (GNSS) observabl...
The paper presents a new multipath mitigation strategy suitable to current Global Navigation Satelli...
Multipath is the dominant error source for most fixed Global Navigation Satellite Systems (GNSS) sit...
Multipath, where GPS signals arrive by more than one path and thereby create a range error, has rema...
The performance of Signal Quality Monitoring (SQM) techniques under different multipath scenarios is...
With the rapid development of BeiDou system (BDS) and steady progress of Galileo system, the current...
Ground transportation systems demand accurate and robust localization functions. Satellite navigatio...
Combined multi-global navigation satellite system (GNSS) signals are capable of improving satel-lite...
Ground transportation systems demand accurate and robust localizationfunctions. Satellite navigation...
Ground transportation systems demand accurate and robust localization functions. Satellite navigatio...
In natural and urban canyon environments, Global Navigation Satellite System (GNSS) signals suffer f...
With the rapid development of BeiDou system (BDS) and steady progress of Galileo system, the current...
Abstract Multipath interference seriously degrades the performance of Global Navigation Satellite Sy...
Global Navigation Satellite Systems (GNSS) based high-precision positioning techniques have been wid...
The paper presents a new multipath mitigation strategy suitable to current Global Navigation Satelli...
There have been many advances in the modeling of Global Navigation Satellite System (GNSS) observabl...
The paper presents a new multipath mitigation strategy suitable to current Global Navigation Satelli...
Multipath is the dominant error source for most fixed Global Navigation Satellite Systems (GNSS) sit...
Multipath, where GPS signals arrive by more than one path and thereby create a range error, has rema...
The performance of Signal Quality Monitoring (SQM) techniques under different multipath scenarios is...
With the rapid development of BeiDou system (BDS) and steady progress of Galileo system, the current...
Ground transportation systems demand accurate and robust localization functions. Satellite navigatio...
Combined multi-global navigation satellite system (GNSS) signals are capable of improving satel-lite...
Ground transportation systems demand accurate and robust localizationfunctions. Satellite navigation...
Ground transportation systems demand accurate and robust localization functions. Satellite navigatio...
In natural and urban canyon environments, Global Navigation Satellite System (GNSS) signals suffer f...
With the rapid development of BeiDou system (BDS) and steady progress of Galileo system, the current...