Precise Positioning in Nitrogen Fertility Sensing in Maize (Zea mays L.)

Author:

Setiyono Tri1

Affiliation:

1. Louisiana State University Agriculture Center, School of Plant, Environmental and Soil Sciences, Baton Rouge, LA 70803, USA

Abstract

This study documented the contribution of precise positioning involving a global navigation satellite system (GNSS) and a real-time kinematic (RTK) system in unmanned aerial vehicle (UAV) photogrammetry, particularly for establishing the coordinate data of ground control points (GCPs). Without augmentation, GNSS positioning solutions are inaccurate and pose a high degree of uncertainty if such data are used in UAV data processing for mapping. The evaluation included a comparative assessment of sample coordinates involving RTK and an ordinary GPS device and the application of precise GCP data for UAV photogrammetry in field crop research, monitoring nitrogen deficiency stress in maize. This study confirmed the superior performance of the RTK system in providing positional data, with 4 cm bias as compared to 311 cm with the non-augmented GNSS technique, making it suitable for use in agronomic research involving row crops. Precise GCP data in this study allow the UAV-based Normalized Difference Red-Edge Index (NDRE) data to effectively characterize maize crop responses to N nutrition during the growing season, with detailed analyses revealing the causal relationship in that a compromised optimum canopy chlorophyll content under limiting nitrogen environment was the reason for reduced canopy cover under an N-deficiency environment. Without RTK-based GCPs, different and, to some degree, misleading results were evident, and therefore, this study warrants the requirement of precise GCP data for scientific research investigations attempting to use UAV photogrammetry for agronomic field crop study.

Funder

Louisiana Soybean and Grains Research and Promotion Board

Publisher

MDPI AG

Reference25 articles.

1. Kaplan, E.D., and Hegarthy, C.J. (2007). Understanding GPS/GNSS Principles (GNSS Technology and Applications Series), Artech House Inc.. [3rd ed.].

2. Eissfeller, B., Ameres, G., Kropp, V., and Sanroma, D. (2017). Performance of GPS, GLONASS, and Galileo. Photogrammetric Week 2017, Wichmann-Verlag.

3. GPS RTK performance characteristics and analysis;Feng;J. Glob. Position. Syst.,2008

4. Coyne, P.I., Casey, S.J., and Milliken, G.A. (2020). Comparison of Differentially Corrected GPS Sources for Support of Site-Specific Management in Agriculture, Special Publication; Kansas State University Agricultural Experiment Station and Cooperative Extension Service. Precision Agriculture Research.

5. Experimental testbed and methodology for the assessment of RTK GNSS receivers used in precision agriculture;Pini;IEEE Access,2020

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