Reprint

Design, Optimization and Analysis of Agricultural Machinery

Edited by
July 2024
286 pages
  • ISBN978-3-7258-1457-2 (Hardback)
  • ISBN978-3-7258-1458-9 (PDF)

This is a Reprint of the Special Issue Design, Optimization and Analysis of Agricultural Machinery that was published in

Biology & Life Sciences
Engineering
Environmental & Earth Sciences
Summary

With the growing population, the challenges imposed by the EU Green Deal and Farm2Fork strategies are pushing farmers to increase the productivity and efficiency of their practices. In this context, the design, optimization and analysis of agricultural machinery are key topics that are currently being addressed by scholars and major world producers in the sector. These topics cover the applications of engineering principles to develop, improve and evaluate machines used in the agricultural sector. These machines include tractors, harvesters, planters and other equipment used to plant, harvest and process crops. It is necessary to promote research and the dissemination of results in this field, specifically concerning technologies for which their efficiency, safety and environmental impacts could be improved through methods such as the use of alternative fuels, innovative transmissions and traction devices, machinery electrification, as well as precision and digital farming technologies.

This Special Issue focuses on the role that agricultural mechanization plays in the development of a more efficient, safe and sustainable agricultural sector. Thus, it collects a high-quality, interdisciplinary research in a variety of areas, such as engineering design, safety and health, robotics and automation, agronomy, as well as field data collection and analysis.

Format
  • Hardback
License and Copyright
© 2024 by the authors; CC BY-NC-ND license
Keywords
tractor; peak over threshold (POT) model; generalized pareto distribution (GPD); genetic algorithm; miner fatigue theory; natural rubber; intelligent profiling progressive automatic glue cutter; FMECA method; fuzzy comprehensive evaluation; reliability analysis; fresh corn; directional clamping; reverse ear breaking; bench test; optimal design; spiral cutter; discrete element simulation; parameter optimization; tractor; power-split; continuously variable transmission; power shift; single screw fertilizer discharger; double arc groove screw fertilizer discharger; precision fertilization; structural optimization; discrete element; wheat seeding; high-speed seeding; centrifugal; CFD–DEM coupling; crawler harvester; steering mode; kinematics; steering parameters; slip rate; planting machine; seedling; working speed; dibble-type transplanting device; transplanting characteristic coefficient; ADAMS; kinematic analysis; film-breaking experiment; ANSYS WORKBENCH; linear parameter-varying systems; traction systems; validation; wheel–terrain interaction; discrete element method; cylindrical pellet; hopper; unloading paddle; flow capacity; residual film recovery machine; static analysis; modal analysis; modal testing; dimensional optimization; tractors; power shift transmission; starting process; driver’s intention