[EN] Single point positioning (SPP) mode, related to pseudorange measurements, limits the level of accuracy to several meters in open sky and to several dozens of meters in urban canyons. This paper explores the effect of using a large number of SPP observations from low-cost global navigation system (GNSS) receivers, smartphones, and handheld GNSS units. Data segmentation and bootstrapping statistical methods were used to obtain the deviation, which can describe the accuracy of the large sample. The empirical test recording data showed that the error may achieve a sub-meter horizontal accuracy by the simple process of increasing the measurements of smartphones and handheld GNSS units. However, the drawback is the long period of time requir...
Global Navigation Satellite System (GNSS) constitutes the foremost provider for geo-localization in ...
Raw global navigation satellite system (GNSS) measurements from a smartphone are used for position d...
Millimetre-precise GNSS measurements may only be achieved by static relative (differential) position...
Single point positioning (SPP) mode, related to pseudorange measurements, limits the level of accura...
This paper demonstrates for the first time that centimeteraccurate positioning is possible based on...
Global Navigation Satellite System (GNSS) positioning is currently a common practice thanks to the d...
The access and the use of the global navigation satellite system (GNSS) pseudo-range and carrier-pha...
The possibility to manage pseudorange and carrier-phase measurements from the Global Navigation Sate...
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...
With access to the raw data collected by certain Android smartphones, it is possible to perform post...
The recent access to GNSS (Global Navigation Satellite System) phase observations on smart devices, ...
With the availability of raw GNSS code and carrier-phase measurements from dual-frequency chips in s...
GNSS positioning in urban scenarios suffers for the scarce visibility of satellites. Integration wit...
Since the introduction of the Android 7 in August 2016, it has become possible to use raw data colle...
Global Navigation Satellite System (GNSS) constitutes the foremost provider for geo-localization in ...
Raw global navigation satellite system (GNSS) measurements from a smartphone are used for position d...
Millimetre-precise GNSS measurements may only be achieved by static relative (differential) position...
Single point positioning (SPP) mode, related to pseudorange measurements, limits the level of accura...
This paper demonstrates for the first time that centimeteraccurate positioning is possible based on...
Global Navigation Satellite System (GNSS) positioning is currently a common practice thanks to the d...
The access and the use of the global navigation satellite system (GNSS) pseudo-range and carrier-pha...
The possibility to manage pseudorange and carrier-phase measurements from the Global Navigation Sate...
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...
With access to the raw data collected by certain Android smartphones, it is possible to perform post...
The recent access to GNSS (Global Navigation Satellite System) phase observations on smart devices, ...
With the availability of raw GNSS code and carrier-phase measurements from dual-frequency chips in s...
GNSS positioning in urban scenarios suffers for the scarce visibility of satellites. Integration wit...
Since the introduction of the Android 7 in August 2016, it has become possible to use raw data colle...
Global Navigation Satellite System (GNSS) constitutes the foremost provider for geo-localization in ...
Raw global navigation satellite system (GNSS) measurements from a smartphone are used for position d...
Millimetre-precise GNSS measurements may only be achieved by static relative (differential) position...