Mapping Gaps in Sugarcane Fields Using UAV-RTK Platform

Author:

de Oliveira Matheus Pereira de1,Cardoso Paulo Henrique1ORCID,Oliveira Romário Porto de1ORCID,Barbosa Júnior Marcelo Rodrigues1ORCID,da Silva Rouverson Pereira1ORCID

Affiliation:

1. Department of Engineering and Mathematical Sciences, School of Agricultural and Veterinarian Sciences, São Paulo State University (Unesp), Jaboticabal 14884-900, SP, Brazil

Abstract

Unmanned aerial vehicles (UAVs) equipped with a global real-time kinematic navigation satellite system (GNSS RTK) could be a state-of-the-art solution to measuring gaps in sugarcane fields and enable site-specific management. Recent studies recommend the use of UAVs to map these gaps. However, low-accuracy GNSS provides incomplete or inaccurate photogrammetric reconstructions, which could easily generate an error in the gap measurement and constrain the applicability of these techniques. Therefore, in this study, we evaluated the potential of UAV RTK imagery for mapping gaps in sugarcane. To compare this solution with conventional UAV approaches, the precision and accuracy of RTK and non-RTK flights were evaluated. To increase the robustness of the research, flights were performed to map gaps found naturally in the field and with plants at different stages of development. Our results showed that the lengths of gaps identified by both RTK and non-RTK UAV imagery were similar, with differences in precision and accuracy of about 1% for both systems. In contrast, RTK was much more efficient and provides stakeholders with guidelines for accurate and precise mapping gaps, allowing them to make confident decisions on site-specific management.

Funder

São Paulo Research Foundation

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference27 articles.

1. Barbosa Júnior, M.R., Moreira, B.R.A., Brito Filho, A.L., Tedesco, D., Shiratsuchi, L.S., and Silva, R.P. (2022). UAVs to Monitor and Manage Sugarcane: Integrative Review. Agronomy, 12.

2. Shahbandeh, M. (2022). Sugar Cane Production Worldwide—Forecast 2016–2026, Statista.

3. Spatial Variability of Sugarcane Row Gaps: Measurement and Mapping;Molin;Ciênc. Agrotecnol.,2016

4. Avaliação de Falhas Na Brotação Da Cana-de- Açúcar Em Função Da Disponibilidade Hídrica;Santos;Agropecu. Cient. No Semiárido,2013

5. Matsuoka, S., and Stolf, R. (2012). Sugarcane: Production, Cultivation and Uses, Nova Publishers.

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