| Literature DB >> 33922822 |
Tomáš Řezník1, Lukáš Herman1, Martina Klocová1, Filip Leitner1, Tomáš Pavelka1, Šimon Leitgeb1, Kateřina Trojanová1, Radim Štampach1, Dimitrios Moshou2, Abdul M Mouazen3, Thomas K Alexandridis4, Jakub Hrádek1, Vojtěch Lukas5, Petr Širůček5.
Abstract
Efforts related to minimizing the environmental burden caused by agricultural activities and increasing economic efficiency are key contemporary drivers in the precision agriculture domain. Controlled Traffic Farming (CTF) techniques are being applied against soil compaction creation, using the on-line optimization of trajectory planning for soil-sensitive field operations. The research presented in this paper aims at a proof-of-concept solution with respect to optimizing farm machinery trajectories in order to minimize the environmental burden and increase economic efficiency. As such, it further advances existing CTF solutions by including (1) efficient plot divisions in 3D, (2) the optimization of entry and exit points of both plot and plot segments, (3) the employment of more machines in parallel and (4) obstacles in a farm machinery trajectory. The developed algorithm is expressed in terms of unified modeling language (UML) activity diagrams as well as pseudo-code. Results were visualized in 2D and 3D to demonstrate terrain impact. Verifications were conducted at a fully operational commercial farm (Rostěnice, the Czech Republic) against second-by-second sensor measurements of real farm machinery trajectories.Entities:
Keywords: controlled traffic farming; coverage path planning; digital elevation model; mission planning; soil compaction
Year: 2021 PMID: 33922822 DOI: 10.3390/s21092980
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576