Journal Article

·2022 OPEN ACCESS

The positioning performance of low-cost GNSS receivers in the Precise Point Positioning method

Mustafa Fahri Karabulut YTU , Nedim Onur Aykut YTU , Burak Akpınar YTU , Güldane Oku Topal YTU , Zübeyir Bilal ÇAKMAK YTU , Bilge Doran YTU , Ahmet Anıl Dindar YTU , Cemal Özer Yiğit , Mert Bezcioğlu , Anıl Zafer

Advances in Geodesy and Geoinformation

Abstract

Satellite-based positioning, which started being developed in the mid-1960s for military purposes, is now used in almost every area. For the studies single and/or double frequency receivers are used. The cost of a receiver and antenna couple that have capable of high coordinate accuracies ranges from $3000 to $15000. With the production of Original Equipment Manufacturer (OEM) receivers, the cost of satellite-based location determination decreases to approximately one in 10 for the civilian user compared to the operations performed with geodetic receivers and antennas. However, although these receivers collect data in multi-Global Navigation Satellite System (GNSS) and frequencies, the accuracy of the coordinate values estimated is not as high as geodetic receivers and antennas. Therefore, it is necessary to carry out an accuracy study to obtain information about which studies can be used in. In this study, measurements were made at the UZEL point located on the roof of the Yıldız Technical University Geomatics Engineering Department by using the ZED-F9P-02B OEM multi GNSS receiver and ANN-MB L1/L2 multi-band GNSS patch antenna. The performance of the test results has been examined by comparing the results from CSRS(Canadian Spatial Reference System)-PPP with the coordinates of the UZEL point. As a result of the comparison, the difference between the coordinate determined with collected 3.5 hr data and the coordinates of the UZEL point has been determined as – 1.4 cm, 2.8 cm, and 9.3 cm in the East, North, and Height directions, respectively

Keywords

Precise Point Positioning GNSS applications Hybrid positioning system Computer science Point (geometry) Global Positioning System Positioning system Telecommunications Mathematics

Subject Areas

GNSS positioning and interference ·Aerospace Engineering ·Physical Sciences
Geophysics and Gravity Measurements ·Oceanography ·Physical Sciences
Inertial Sensor and Navigation ·Aerospace Engineering ·Physical Sciences

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