Satellite-based localization systems like GPS or Galileo are one of the most commonly used tools in outdoor navigation. While for most applications, like car navigation or hiking, the level of precision provided by commercial solutions is satisfactory it is not always the case for mobile robots. In the case of long-time autonomy and robots that operate in remote areas battery usage and access to synchronization data becomes a problem. In this paper, a solution providing a real-time onboard clock synchronization is presented. Results achieved are better than the current state-of-the-art solution in real-time clock bias prediction for most satellites
Continuous and stable precision satellite clock offsets are an important guarantee for real-time pre...
Global navigation satellite system (GNSS) signals are affected by refraction when traveling through ...
Clock offset predictions along with satellite orbit predictions are used in self-assisted GNSS to re...
The prediction of Satellites’ Clock Bias (SCB) plays an important role in optimizing the cloc...
The application of real-time precise point positioning (PPP) requires real-time precise orbit and cl...
Aim of this paper is to present a method to improve the accuracy of a GPS receiver. It is well known...
International audienceThis work presents a new approach for detection and exclusion (or de-weighting...
Treball de Final de Màster Universitari Erasmus Mundus en Tecnologia Geoespacial (Pla de 2013). Codi...
[EN] Real-time Precise Point Positioning (PPP) can provide the Global Navigation Satellites Systems ...
Abstract:- This study discusses time syntonization and frequency stability calibration using GPS car...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
ABSTRACT: A method for real-time positioning of LEO satellites using dual frequency GPS receivers is...
In this paper, a real-time system for clock offset estimation of GPS satellites is presented. The al...
This paper describes a GPS receiver clock model that can improve the accuracy of kinematic orbit det...
The international GNSS service (IGS) real-time service (RTS) provides orbit and clock corrections fo...
Continuous and stable precision satellite clock offsets are an important guarantee for real-time pre...
Global navigation satellite system (GNSS) signals are affected by refraction when traveling through ...
Clock offset predictions along with satellite orbit predictions are used in self-assisted GNSS to re...
The prediction of Satellites’ Clock Bias (SCB) plays an important role in optimizing the cloc...
The application of real-time precise point positioning (PPP) requires real-time precise orbit and cl...
Aim of this paper is to present a method to improve the accuracy of a GPS receiver. It is well known...
International audienceThis work presents a new approach for detection and exclusion (or de-weighting...
Treball de Final de Màster Universitari Erasmus Mundus en Tecnologia Geoespacial (Pla de 2013). Codi...
[EN] Real-time Precise Point Positioning (PPP) can provide the Global Navigation Satellites Systems ...
Abstract:- This study discusses time syntonization and frequency stability calibration using GPS car...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
ABSTRACT: A method for real-time positioning of LEO satellites using dual frequency GPS receivers is...
In this paper, a real-time system for clock offset estimation of GPS satellites is presented. The al...
This paper describes a GPS receiver clock model that can improve the accuracy of kinematic orbit det...
The international GNSS service (IGS) real-time service (RTS) provides orbit and clock corrections fo...
Continuous and stable precision satellite clock offsets are an important guarantee for real-time pre...
Global navigation satellite system (GNSS) signals are affected by refraction when traveling through ...
Clock offset predictions along with satellite orbit predictions are used in self-assisted GNSS to re...