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A low-cost global navigation satellite system positioning accuracy assessment method for agricultural machinery (CROSBI ID 303738)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Radočaj, Dorijan ; Plaščak, Ivan ; Heffer, Goran ; Jurišić, Mladen A low-cost global navigation satellite system positioning accuracy assessment method for agricultural machinery // Applied sciences (Basel), 12 (2022), 2; 693, 14. doi: 10.3390/app12020693

Podaci o odgovornosti

Radočaj, Dorijan ; Plaščak, Ivan ; Heffer, Goran ; Jurišić, Mladen

engleski

A low-cost global navigation satellite system positioning accuracy assessment method for agricultural machinery

The high-precision positioning and navigation of agricultural machinery represent a backbone for precision agriculture, while its worldwide implementation is in rapid growth. Previous studies improved low-cost global navigation satellite system (GNSS) hardware solutions and fused GNSS data with complementary sources, but there is still no affordable and flexible framework for positioning accuracy assessment of agricultural machinery. Such a low-cost method was proposed in this study, simulating the actual movement of the agricultural machinery during agrotechnical operations. Four of the most commonly used GNSS corrections in Croatia were evaluated in two repetitions: Croatian Positioning System (CROPOS), individual base station, Satellite-based Augmentation Systems (SBASs), and an absolute positioning method using a smartphone. CROPOS and base station produced the highest mean GNSS positioning accuracy of 2.4 and 2.9 cm, respectively, but both of these corrections produced lower accuracy than declared. All evaluated corrections produced significantly different median values in two repetitions, representing inconsistency of the positioning accuracy regarding field conditions. While the proposed method allowed flexible and effective application in the field, future studies will be directed towards the reduction of the operator’s subjective impact, mainly by implementing autosteering solutions in agricultural machinery.

real-time kinematic (RTK) ; precision agriculture ; ISO standard ; global positioning system (GPS) ; GLONASS ; agricultural tractor

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Podaci o izdanju

12 (2)

2022.

693

14

objavljeno

2076-3417

10.3390/app12020693

Povezanost rada

Interdisciplinarne biotehničke znanosti, Interdisciplinarne tehničke znanosti, Poljoprivreda (agronomija)

Poveznice
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