This paper presents a high-precision positioning method using raw global navigation satellite system (GNSS) observations from smartphones in the Google smartphone decimeter challenge (GSDC). Compared to commercial GNSS receivers, smartphone GNSS observations are noisy owing to antenna limitations, making it difficult to apply conventional high-precision positioning methods. In addition, it is important to exclude outliers in GSDC because GSDC includes data in environments where GNSS is shielded, such as tunnels and elevated structures. Therefore, this study proposes a smartphone positioning method based on a two-step optimization method, using factor graph optimization (FGO). Here, the velocity and position optimization process are separate...
The possibility to manage pseudorange and carrier-phase measurements from the Global Navigation Sate...
In this study it was examined if positioning can be improved by utilising raw Global Navigation Sate...
The goals of this Final Year Project are to (1) investigate the application of raw GNSS measurements...
With the availability of raw GNSS code and carrier-phase measurements from dual-frequency chips in s...
Position and navigation are key advancements of smartphones technology. Nowadays, any smartphone is ...
Nowadays, a chip-scale Global Navigation Satellite System (GNSS) receiver is ubiquitous in smartphon...
The possibility to access undifferenced and uncombined Global Navigation Satellite System (GNSS) meas...
Over the past decade, GPS and other Global Navigation Satellite System (GNSS) chipsets have become s...
Single point positioning (SPP) mode, related to pseudorange measurements, limits the level of accura...
Based on the quality and peculiarity of smartphone GNSS measurements, the existing methods of real-t...
In this dissertation, we used a data logger app developed by Google to collect the Global Navigation...
The recent access to GNSS (Global Navigation Satellite System) phase observations on smart devices, ...
Many studies have focused on the smartphone-based global navigation satellite system (GNSS) for its ...
The access and the use of the global navigation satellite system (GNSS) pseudo-range and carrier-pha...
Precise positioning using smartphones has been a topic of interest especially after Google decided t...
The possibility to manage pseudorange and carrier-phase measurements from the Global Navigation Sate...
In this study it was examined if positioning can be improved by utilising raw Global Navigation Sate...
The goals of this Final Year Project are to (1) investigate the application of raw GNSS measurements...
With the availability of raw GNSS code and carrier-phase measurements from dual-frequency chips in s...
Position and navigation are key advancements of smartphones technology. Nowadays, any smartphone is ...
Nowadays, a chip-scale Global Navigation Satellite System (GNSS) receiver is ubiquitous in smartphon...
The possibility to access undifferenced and uncombined Global Navigation Satellite System (GNSS) meas...
Over the past decade, GPS and other Global Navigation Satellite System (GNSS) chipsets have become s...
Single point positioning (SPP) mode, related to pseudorange measurements, limits the level of accura...
Based on the quality and peculiarity of smartphone GNSS measurements, the existing methods of real-t...
In this dissertation, we used a data logger app developed by Google to collect the Global Navigation...
The recent access to GNSS (Global Navigation Satellite System) phase observations on smart devices, ...
Many studies have focused on the smartphone-based global navigation satellite system (GNSS) for its ...
The access and the use of the global navigation satellite system (GNSS) pseudo-range and carrier-pha...
Precise positioning using smartphones has been a topic of interest especially after Google decided t...
The possibility to manage pseudorange and carrier-phase measurements from the Global Navigation Sate...
In this study it was examined if positioning can be improved by utilising raw Global Navigation Sate...
The goals of this Final Year Project are to (1) investigate the application of raw GNSS measurements...